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git-subtree-dir: phreeqc3-examples git-subtree-mainline: 8de0e98ed90bb2b639659c820168ab18c1062992 git-subtree-split: e977363da4c1ae1708ebddca38d5312b6813a337
1061 lines
55 KiB
Plaintext
1061 lines
55 KiB
Plaintext
Input file: ..\examples\ex14
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Output file: ex14.out
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Database file: ..\database\phreeqc.dat
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------------------
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Reading data base.
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------------------
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SOLUTION_MASTER_SPECIES
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SOLUTION_SPECIES
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PHASES
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EXCHANGE_MASTER_SPECIES
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EXCHANGE_SPECIES
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SURFACE_MASTER_SPECIES
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SURFACE_SPECIES
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RATES
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END
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------------------------------------
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Reading input data for simulation 1.
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------------------------------------
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TITLE Example 14.--Transport with equilibrium_phases, exchange, and surface reactions
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SURFACE_MASTER_SPECIES
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Surf SurfOH
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SURFACE_SPECIES
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SurfOH = SurfOH
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log_k 0.0
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SurfOH + H+ = SurfOH2+
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log_k 7.29
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SurfOH = SurfO- + H+
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log_k -8.93
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SurfOH + AsO4-3 + 3H+ = SurfH2AsO4 + H2O
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log_k 29.31
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SurfOH + AsO4-3 + 2H+ = SurfHAsO4- + H2O
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log_k 23.51
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SurfOH + AsO4-3 = SurfOHAsO4-3
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log_k 10.58
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SOLUTION_MASTER_SPECIES
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As H3AsO4 -1.0 74.9216 74.9216
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SOLUTION_SPECIES
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H3AsO4 = H3AsO4
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log_k 0.0
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H3AsO4 = AsO4-3 + 3H+
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log_k -20.7
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H+ + AsO4-3 = HAsO4-2
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log_k 11.50
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2H+ + AsO4-3 = H2AsO4-
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log_k 18.46
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SOLUTION 1 Brine
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pH 5.713
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pe 4.0 O2(g) -0.7
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temp 25.
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units mol/kgw
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Ca .4655
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Mg .1609
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Na 5.402
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Cl 6.642 charge
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C .00396
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S .004725
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As .025 umol/kgw
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END
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-----
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TITLE
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-----
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Example 14.--Transport with equilibrium_phases, exchange, and surface reactions
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-------------------------------------------
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Beginning of initial solution calculations.
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-------------------------------------------
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Initial solution 1. Brine
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-----------------------------Solution composition------------------------------
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Elements Molality Moles
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As 2.500e-008 2.500e-008
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C 3.960e-003 3.960e-003
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Ca 4.655e-001 4.655e-001
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Cl 6.642e+000 6.642e+000 Charge balance
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Mg 1.609e-001 1.609e-001
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Na 5.402e+000 5.402e+000
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S 4.725e-003 4.725e-003
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----------------------------Description of solution----------------------------
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pH = 5.713
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pe = 14.962 Equilibrium with O2(g)
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Specific Conductance (uS/cm, 25 oC) = 485621
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Density (g/cm3) = 1.21497
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Volume (L) = 1.13864
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Activity of water = 0.785
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Ionic strength = 7.268e+000
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Mass of water (kg) = 1.000e+000
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Total alkalinity (eq/kg) = 3.842e-003
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Total CO2 (mol/kg) = 3.960e-003
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Temperature (deg C) = 25.00
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Electrical balance (eq) = -2.921e-013
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Percent error, 100*(Cat-|An|)/(Cat+|An|) = -0.00
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Iterations = 11
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Total H = 1.110163e+002
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Total O = 5.553698e+001
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----------------------------Distribution of species----------------------------
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Log Log Log mole V
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Species Molality Activity Molality Activity Gamma cm3/mol
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H+ 2.756e-006 1.936e-006 -5.560 -5.713 -0.153 0.00
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OH- 8.878e-009 4.101e-009 -8.052 -8.387 -0.335 6.33
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H2O 5.551e+001 7.846e-001 1.744 -0.105 0.000 18.07
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As 2.500e-008
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H2AsO4- 2.498e-008 1.373e-007 -7.602 -6.862 0.740 (0)
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H3AsO4 8.667e-012 4.621e-011 -11.062 -10.335 0.727 (0)
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HAsO4-2 8.521e-012 7.775e-009 -11.070 -8.109 2.960 (0)
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AsO4-3 2.775e-021 1.270e-014 -20.557 -13.896 6.661 (0)
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C(-4) 0.000e+000
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CH4 0.000e+000 0.000e+000 -144.725 -143.999 0.727 32.22
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C(4) 3.960e-003
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CaHCO3+ 1.691e-003 1.024e-003 -2.772 -2.990 -0.218 10.08
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MgHCO3+ 1.385e-003 6.898e-004 -2.859 -3.161 -0.303 6.01
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NaHCO3 5.704e-004 3.041e-003 -3.244 -2.517 0.727 19.41
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HCO3- 1.953e-004 1.129e-004 -3.709 -3.947 -0.238 54.45
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CO2 1.175e-004 6.266e-004 -3.930 -3.203 0.727 30.26
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CaCO3 6.125e-007 3.265e-006 -6.213 -5.486 0.727 -14.60
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MgCO3 2.556e-007 1.363e-006 -6.592 -5.866 0.727 -17.09
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NaCO3- 2.264e-007 1.310e-007 -6.645 -6.883 -0.238 20.09
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CO3-2 2.444e-008 2.735e-009 -7.612 -8.563 -0.951 17.09
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Ca 4.655e-001
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Ca+2 4.631e-001 7.107e-001 -0.334 -0.148 0.186 -13.79
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CaHCO3+ 1.691e-003 1.024e-003 -2.772 -2.990 -0.218 10.08
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CaSO4 7.014e-004 3.739e-003 -3.154 -2.427 0.727 7.50
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CaCO3 6.125e-007 3.265e-006 -6.213 -5.486 0.727 -14.60
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CaOH+ 8.695e-009 4.779e-008 -8.061 -7.321 0.740 (0)
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CaHSO4+ 8.659e-009 4.759e-008 -8.063 -7.322 0.740 (0)
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Cl 6.642e+000
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Cl- 6.642e+000 4.165e+000 0.822 0.620 -0.203 20.27
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H(0) 0.000e+000
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H2 0.000e+000 0.000e+000 -45.226 -44.499 0.727 28.61
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Mg 1.609e-001
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Mg+2 1.588e-001 5.221e-001 -0.799 -0.282 0.517 -17.22
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MgHCO3+ 1.385e-003 6.898e-004 -2.859 -3.161 -0.303 6.01
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MgSO4 6.792e-004 3.621e-003 -3.168 -2.441 0.727 5.84
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MgOH+ 1.227e-006 7.680e-007 -5.911 -6.115 -0.204 (0)
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MgCO3 2.556e-007 1.363e-006 -6.592 -5.866 0.727 -17.09
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Na 5.402e+000
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Na+ 5.399e+000 1.072e+001 0.732 1.030 0.298 1.77
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NaSO4- 2.749e-003 1.590e-003 -2.561 -2.799 -0.238 42.57
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NaHCO3 5.704e-004 3.041e-003 -3.244 -2.517 0.727 19.41
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NaCO3- 2.264e-007 1.310e-007 -6.645 -6.883 -0.238 20.09
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NaOH 8.247e-019 4.397e-018 -18.084 -17.357 0.727 (0)
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O(0) 9.589e-005
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O2 4.794e-005 2.556e-004 -4.319 -3.592 0.727 30.40
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S(-2) 0.000e+000
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H2S 0.000e+000 0.000e+000 -141.065 -140.338 0.727 37.16
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HS- 0.000e+000 0.000e+000 -141.232 -141.567 -0.335 23.12
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S-2 0.000e+000 0.000e+000 -147.759 -148.772 -1.013 (0)
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S(6) 4.725e-003
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NaSO4- 2.749e-003 1.590e-003 -2.561 -2.799 -0.238 42.57
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CaSO4 7.014e-004 3.739e-003 -3.154 -2.427 0.727 7.50
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MgSO4 6.792e-004 3.621e-003 -3.168 -2.441 0.727 5.84
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SO4-2 5.958e-004 2.959e-005 -3.225 -4.529 -1.304 24.07
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CaHSO4+ 8.659e-009 4.759e-008 -8.063 -7.322 0.740 (0)
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HSO4- 1.013e-009 5.570e-009 -8.994 -8.254 0.740 42.16
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------------------------------Saturation indices-------------------------------
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Phase SI log IAP log K(298 K, 1 atm)
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Anhydrite -0.40 -4.68 -4.28 CaSO4
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Aragonite -0.38 -8.71 -8.34 CaCO3
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Calcite -0.23 -8.71 -8.48 CaCO3
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CH4(g) -141.16 -144.00 -2.84 CH4
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CO2(g) -1.74 -3.20 -1.46 CO2
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Dolomite -0.47 -17.56 -17.09 CaMg(CO3)2
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Gypsum -0.31 -4.89 -4.58 CaSO4:2H2O
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H2(g) -41.40 -44.50 -3.10 H2
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H2O(g) -1.61 -0.11 1.50 H2O
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H2S(g) -139.29 -147.28 -7.99 H2S
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Halite 0.08 1.65 1.57 NaCl
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O2(g) -0.70 -3.59 -2.89 O2 Pressure 0.2 atm, phi 1.000.
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Sulfur -103.87 -98.99 4.88 S
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------------------
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End of simulation.
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------------------
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------------------------------------
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Reading input data for simulation 2.
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------------------------------------
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USE solution 1
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EQUILIBRIUM_PHASES 1
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Dolomite 0.0 1.6
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Calcite 0.0 0.1
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SAVE solution 1
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SELECTED_OUTPUT
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file ex14.sel
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reset false
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step
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USER_PUNCH
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heading m_Ca m_Mg m_Na umol_As pH mmol_sorbedAs
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10 PUNCH TOT("Ca"), TOT("Mg"), TOT("Na"), TOT("As")*1e6, -LA("H+"), SURF("As", "Surf")*1000
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END
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-----------------------------------------
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Beginning of batch-reaction calculations.
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-----------------------------------------
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Reaction step 1.
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Using solution 1. Brine
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Using pure phase assemblage 1.
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-------------------------------Phase assemblage--------------------------------
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Moles in assemblage
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Phase SI log IAP log K(T, P) Initial Final Delta
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Calcite 0.00 -8.48 -8.48 1.000e-001 1.020e-001 1.984e-003
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Dolomite -0.00 -17.09 -17.09 1.600e+000 1.599e+000 -1.016e-003
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-----------------------------Solution composition------------------------------
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Elements Molality Moles
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As 2.500e-008 2.500e-008
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C 4.008e-003 4.008e-003
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Ca 4.645e-001 4.645e-001
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Cl 6.642e+000 6.642e+000
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Mg 1.619e-001 1.619e-001
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Na 5.402e+000 5.402e+000
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S 4.725e-003 4.725e-003
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----------------------------Description of solution----------------------------
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pH = 5.936 Charge balance
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pe = 14.739 Adjusted to redox equilibrium
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Specific Conductance (uS/cm, 25 oC) = 485604
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Density (g/cm3) = 1.21496
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Volume (L) = 1.13864
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Activity of water = 0.785
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Ionic strength = 7.268e+000
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Mass of water (kg) = 1.000e+000
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Total alkalinity (eq/kg) = 3.939e-003
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Total CO2 (mol/kg) = 4.008e-003
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Temperature (deg C) = 25.00
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Electrical balance (eq) = -2.917e-013
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Percent error, 100*(Cat-|An|)/(Cat+|An|) = -0.00
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Iterations = 5
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Total H = 1.110163e+002
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Total O = 5.553712e+001
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----------------------------Distribution of species----------------------------
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Log Log Log mole V
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Species Molality Activity Molality Activity Gamma cm3/mol
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H+ 1.651e-006 1.160e-006 -5.782 -5.936 -0.153 0.00
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OH- 1.482e-008 6.848e-009 -7.829 -8.164 -0.335 6.33
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H2O 5.551e+001 7.846e-001 1.744 -0.105 0.000 18.07
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As 2.500e-008
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H2AsO4- 2.498e-008 1.373e-007 -7.602 -6.862 0.740 (0)
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HAsO4-2 1.423e-011 1.298e-008 -10.847 -7.887 2.960 (0)
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H3AsO4 5.190e-012 2.767e-011 -11.285 -10.558 0.727 (0)
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AsO4-3 7.735e-021 3.540e-014 -20.112 -13.451 6.660 (0)
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C(-4) 0.000e+000
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CH4 0.000e+000 0.000e+000 -144.938 -144.211 0.727 32.22
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C(4) 4.008e-003
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CaHCO3+ 1.726e-003 1.045e-003 -2.763 -2.981 -0.218 10.08
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MgHCO3+ 1.425e-003 7.100e-004 -2.846 -3.149 -0.303 6.01
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NaHCO3 5.835e-004 3.111e-003 -3.234 -2.507 0.727 19.41
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HCO3- 1.997e-004 1.155e-004 -3.700 -3.937 -0.238 54.45
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CO2 7.201e-005 3.839e-004 -4.143 -3.416 0.727 30.26
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CaCO3 1.044e-006 5.565e-006 -5.981 -5.255 0.727 -14.60
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MgCO3 4.392e-007 2.341e-006 -6.357 -5.631 0.727 -17.09
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NaCO3- 3.868e-007 2.237e-007 -6.413 -6.650 -0.238 20.09
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CO3-2 4.175e-008 4.671e-009 -7.379 -8.331 -0.951 17.09
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Ca 4.645e-001
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Ca+2 4.621e-001 7.091e-001 -0.335 -0.149 0.186 -13.79
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CaHCO3+ 1.726e-003 1.045e-003 -2.763 -2.981 -0.218 10.08
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CaSO4 6.995e-004 3.729e-003 -3.155 -2.428 0.727 7.50
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CaCO3 1.044e-006 5.565e-006 -5.981 -5.255 0.727 -14.60
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CaOH+ 1.449e-008 7.962e-008 -7.839 -7.099 0.740 (0)
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CaHSO4+ 5.172e-009 2.842e-008 -8.286 -7.546 0.740 (0)
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Cl 6.642e+000
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Cl- 6.642e+000 4.165e+000 0.822 0.620 -0.203 20.27
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H(0) 0.000e+000
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H2 0.000e+000 0.000e+000 -45.226 -44.499 0.727 28.61
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Mg 1.619e-001
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Mg+2 1.598e-001 5.253e-001 -0.796 -0.280 0.517 -17.22
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MgHCO3+ 1.425e-003 7.100e-004 -2.846 -3.149 -0.303 6.01
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MgSO4 6.830e-004 3.641e-003 -3.166 -2.439 0.727 5.84
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MgOH+ 2.062e-006 1.290e-006 -5.686 -5.889 -0.204 (0)
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MgCO3 4.392e-007 2.341e-006 -6.357 -5.631 0.727 -17.09
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Na 5.402e+000
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Na+ 5.399e+000 1.072e+001 0.732 1.030 0.298 1.77
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NaSO4- 2.747e-003 1.589e-003 -2.561 -2.799 -0.238 42.57
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NaHCO3 5.835e-004 3.111e-003 -3.234 -2.507 0.727 19.41
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NaCO3- 3.868e-007 2.237e-007 -6.413 -6.650 -0.238 20.09
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NaOH 1.377e-018 7.341e-018 -17.861 -17.134 0.727 (0)
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O(0) 9.589e-005
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O2 4.794e-005 2.556e-004 -4.319 -3.592 0.727 30.40
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S(-2) 0.000e+000
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HS- 0.000e+000 0.000e+000 -141.455 -141.790 -0.335 23.12
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H2S 0.000e+000 0.000e+000 -141.511 -140.784 0.727 37.16
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S-2 0.000e+000 0.000e+000 -147.759 -148.772 -1.013 (0)
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S(6) 4.725e-003
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NaSO4- 2.747e-003 1.589e-003 -2.561 -2.799 -0.238 42.57
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CaSO4 6.995e-004 3.729e-003 -3.155 -2.428 0.727 7.50
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MgSO4 6.830e-004 3.641e-003 -3.166 -2.439 0.727 5.84
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SO4-2 5.955e-004 2.957e-005 -3.225 -4.529 -1.304 24.07
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CaHSO4+ 5.172e-009 2.842e-008 -8.286 -7.546 0.740 (0)
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HSO4- 6.066e-010 3.334e-009 -9.217 -8.477 0.740 42.16
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------------------------------Saturation indices-------------------------------
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Phase SI log IAP log K(298 K, 1 atm)
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Anhydrite -0.40 -4.68 -4.28 CaSO4
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Aragonite -0.14 -8.48 -8.34 CaCO3
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Calcite 0.00 -8.48 -8.48 CaCO3
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CH4(g) -141.37 -144.21 -2.84 CH4
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CO2(g) -1.96 -3.42 -1.46 CO2
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Dolomite -0.00 -17.09 -17.09 CaMg(CO3)2
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Gypsum -0.31 -4.89 -4.58 CaSO4:2H2O
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H2(g) -41.40 -44.50 -3.10 H2
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H2O(g) -1.61 -0.11 1.50 H2O
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H2S(g) -139.73 -147.73 -7.99 H2S
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Halite 0.08 1.65 1.57 NaCl
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O2(g) -0.70 -3.59 -2.89 O2
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Sulfur -104.32 -99.43 4.88 S
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------------------
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End of simulation.
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------------------
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------------------------------------
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Reading input data for simulation 3.
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------------------------------------
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PRINT
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selected_output false
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EXCHANGE 1
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equilibrate with solution 1
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X 1.0
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SURFACE 1
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equilibrate solution 1
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SurfOH 0.07 600. 30.
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END
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-------------------------------------------------------
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Beginning of initial exchange-composition calculations.
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-------------------------------------------------------
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Exchange 1.
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X 1.000e+000 mol
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Equiv- Equivalent Log
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Species Moles alents Fraction Gamma
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NaX 9.011e-001 9.011e-001 9.011e-001 0.298
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CaX2 4.061e-002 8.122e-002 8.122e-002 0.186
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MgX2 8.861e-003 1.772e-002 1.772e-002 0.517
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------------------------------------------------------
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Beginning of initial surface-composition calculations.
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------------------------------------------------------
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Surface 1.
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Surf
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4.995e-002 Surface charge, eq
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2.678e-001 sigma, C/m**2
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3.950e-002 psi, V
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-1.537e+000 -F*psi/RT
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2.149e-001 exp(-F*psi/RT)
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6.000e+002 specific area, m**2/g
|
|
1.800e+004 m**2 for 3.000e+001 g
|
|
|
|
|
|
Surf
|
|
7.000e-002 moles
|
|
Mole Log
|
|
Species Moles Fraction Molality Molality
|
|
|
|
SurfOH2+ 5.572e-002 0.796 5.572e-002 -1.254
|
|
SurfOH 1.146e-002 0.164 1.146e-002 -1.941
|
|
SurfOHAsO4-3 1.554e-003 0.022 1.554e-003 -2.809
|
|
SurfHAsO4- 1.047e-003 0.015 1.047e-003 -2.980
|
|
SurfH2AsO4 1.647e-004 0.002 1.647e-004 -3.783
|
|
SurfO- 5.403e-005 0.001 5.403e-005 -4.267
|
|
|
|
------------------
|
|
End of simulation.
|
|
------------------
|
|
|
|
------------------------------------
|
|
Reading input data for simulation 4.
|
|
------------------------------------
|
|
|
|
SOLUTION 0 20 x precipitation
|
|
pH 4.6
|
|
pe 4.0 O2(g) -0.7
|
|
temp 25.
|
|
units mmol/kgw
|
|
Ca .191625
|
|
Mg .035797
|
|
Na .122668
|
|
Cl .133704
|
|
C .01096
|
|
S .235153 charge
|
|
EQUILIBRIUM_PHASES 0
|
|
Dolomite 0.0 1.6
|
|
Calcite 0.0 0.1
|
|
CO2(g) -1.5 10.
|
|
SAVE solution 0
|
|
END
|
|
-------------------------------------------
|
|
Beginning of initial solution calculations.
|
|
-------------------------------------------
|
|
|
|
Initial solution 0. 20 x precipitation
|
|
|
|
-----------------------------Solution composition------------------------------
|
|
|
|
Elements Molality Moles
|
|
|
|
C 1.096e-005 1.096e-005
|
|
Ca 1.916e-004 1.916e-004
|
|
Cl 1.337e-004 1.337e-004
|
|
Mg 3.580e-005 3.580e-005
|
|
Na 1.227e-004 1.227e-004
|
|
S 2.351e-004 2.351e-004 Charge balance
|
|
|
|
----------------------------Description of solution----------------------------
|
|
|
|
pH = 4.600
|
|
pe = 16.022 Equilibrium with O2(g)
|
|
Specific Conductance (uS/cm, 25 oC) = 83
|
|
Density (g/cm3) = 0.99708
|
|
Volume (L) = 1.00299
|
|
Activity of water = 1.000
|
|
Ionic strength = 1.037e-003
|
|
Mass of water (kg) = 1.000e+000
|
|
Total alkalinity (eq/kg) = -2.630e-005
|
|
Total CO2 (mol/kg) = 1.096e-005
|
|
Temperature (deg C) = 25.00
|
|
Electrical balance (eq) = 7.348e-016
|
|
Percent error, 100*(Cat-|An|)/(Cat+|An|) = 0.00
|
|
Iterations = 9
|
|
Total H = 1.110125e+002
|
|
Total O = 5.550769e+001
|
|
|
|
----------------------------Distribution of species----------------------------
|
|
|
|
Log Log Log mole V
|
|
Species Molality Activity Molality Activity Gamma cm3/mol
|
|
|
|
H+ 2.600e-005 2.512e-005 -4.585 -4.600 -0.015 0.00
|
|
OH- 4.179e-010 4.029e-010 -9.379 -9.395 -0.016 -4.11
|
|
H2O 5.551e+001 1.000e+000 1.744 -0.000 0.000 18.07
|
|
C(-4) 0.000e+000
|
|
CH4 0.000e+000 0.000e+000 -145.553 -145.553 0.000 32.22
|
|
C(4) 1.096e-005
|
|
CO2 1.076e-005 1.076e-005 -4.968 -4.968 0.000 30.26
|
|
HCO3- 1.975e-007 1.906e-007 -6.704 -6.720 -0.016 24.59
|
|
CaHCO3+ 4.061e-010 3.919e-010 -9.391 -9.407 -0.015 9.67
|
|
MgHCO3+ 6.903e-011 6.657e-011 -10.161 -10.177 -0.016 5.48
|
|
NaHCO3 5.658e-011 5.659e-011 -10.247 -10.247 0.000 19.41
|
|
CO3-2 4.106e-013 3.559e-013 -12.387 -12.449 -0.062 -4.37
|
|
CaCO3 9.631e-014 9.634e-014 -13.016 -13.016 0.000 -14.60
|
|
MgCO3 1.013e-014 1.014e-014 -13.994 -13.994 0.000 -17.09
|
|
NaCO3- 1.947e-016 1.879e-016 -15.711 -15.726 -0.016 -0.66
|
|
Ca 1.916e-004
|
|
Ca+2 1.860e-004 1.612e-004 -3.731 -3.793 -0.062 -18.14
|
|
CaSO4 5.643e-006 5.644e-006 -5.248 -5.248 0.000 7.50
|
|
CaHSO4+ 9.664e-010 9.319e-010 -9.015 -9.031 -0.016 (0)
|
|
CaHCO3+ 4.061e-010 3.919e-010 -9.391 -9.407 -0.015 9.67
|
|
CaOH+ 1.104e-012 1.065e-012 -11.957 -11.973 -0.016 (0)
|
|
CaCO3 9.631e-014 9.634e-014 -13.016 -13.016 0.000 -14.60
|
|
Cl 1.337e-004
|
|
Cl- 1.337e-004 1.289e-004 -3.874 -3.890 -0.016 18.08
|
|
H(0) 0.000e+000
|
|
H2 0.000e+000 0.000e+000 -44.394 -44.394 0.000 28.61
|
|
Mg 3.580e-005
|
|
Mg+2 3.442e-005 2.985e-005 -4.463 -4.525 -0.062 -21.82
|
|
MgSO4 1.378e-006 1.378e-006 -5.861 -5.861 0.000 5.84
|
|
MgHCO3+ 6.903e-011 6.657e-011 -10.161 -10.177 -0.016 5.48
|
|
MgOH+ 4.470e-012 4.314e-012 -11.350 -11.365 -0.015 (0)
|
|
MgCO3 1.013e-014 1.014e-014 -13.994 -13.994 0.000 -17.09
|
|
Na 1.227e-004
|
|
Na+ 1.225e-004 1.182e-004 -3.912 -3.927 -0.016 -1.39
|
|
NaSO4- 1.209e-007 1.167e-007 -6.917 -6.933 -0.016 18.43
|
|
NaHCO3 5.658e-011 5.659e-011 -10.247 -10.247 0.000 19.41
|
|
NaCO3- 1.947e-016 1.879e-016 -15.711 -15.726 -0.016 -0.66
|
|
NaOH 4.762e-024 4.763e-024 -23.322 -23.322 0.000 (0)
|
|
O(0) 5.111e-004
|
|
O2 2.555e-004 2.556e-004 -3.593 -3.592 0.000 30.40
|
|
S(-2) 0.000e+000
|
|
H2S 0.000e+000 0.000e+000 -137.289 -137.289 0.000 37.16
|
|
HS- 0.000e+000 0.000e+000 -139.615 -139.631 -0.016 20.60
|
|
S-2 0.000e+000 0.000e+000 -147.886 -147.949 -0.062 (0)
|
|
S(6) 2.351e-004
|
|
SO4-2 2.274e-004 1.970e-004 -3.643 -3.706 -0.062 14.01
|
|
CaSO4 5.643e-006 5.644e-006 -5.248 -5.248 0.000 7.50
|
|
MgSO4 1.378e-006 1.378e-006 -5.861 -5.861 0.000 5.84
|
|
HSO4- 4.988e-007 4.810e-007 -6.302 -6.318 -0.016 40.28
|
|
NaSO4- 1.209e-007 1.167e-007 -6.917 -6.933 -0.016 18.43
|
|
CaHSO4+ 9.664e-010 9.319e-010 -9.015 -9.031 -0.016 (0)
|
|
|
|
------------------------------Saturation indices-------------------------------
|
|
|
|
Phase SI log IAP log K(298 K, 1 atm)
|
|
|
|
Anhydrite -3.22 -7.50 -4.28 CaSO4
|
|
Aragonite -7.91 -16.24 -8.34 CaCO3
|
|
Calcite -7.76 -16.24 -8.48 CaCO3
|
|
CH4(g) -142.71 -145.55 -2.84 CH4
|
|
CO2(g) -3.51 -4.97 -1.46 CO2
|
|
Dolomite -16.13 -33.22 -17.09 CaMg(CO3)2
|
|
Gypsum -2.92 -7.50 -4.58 CaSO4:2H2O
|
|
H2(g) -41.29 -44.39 -3.10 H2
|
|
H2O(g) -1.50 -0.00 1.50 H2O
|
|
H2S(g) -136.24 -144.23 -7.99 H2S
|
|
Halite -9.39 -7.82 1.57 NaCl
|
|
O2(g) -0.70 -3.59 -2.89 O2 Pressure 0.2 atm, phi 1.000.
|
|
Sulfur -100.93 -96.05 4.88 S
|
|
|
|
|
|
-----------------------------------------
|
|
Beginning of batch-reaction calculations.
|
|
-----------------------------------------
|
|
|
|
Reaction step 1.
|
|
|
|
Using solution 0. 20 x precipitation
|
|
Using pure phase assemblage 0.
|
|
|
|
-------------------------------Phase assemblage--------------------------------
|
|
|
|
Moles in assemblage
|
|
Phase SI log IAP log K(T, P) Initial Final Delta
|
|
|
|
CO2(g) -1.50 -2.96 -1.46 1.000e+001 9.996e+000 -4.106e-003
|
|
Calcite 0.00 -8.48 -8.48 1.000e-001 9.966e-002 -3.445e-004
|
|
Dolomite 0.00 -17.09 -17.09 1.600e+000 1.599e+000 -1.359e-003
|
|
|
|
-----------------------------Solution composition------------------------------
|
|
|
|
Elements Molality Moles
|
|
|
|
C 7.180e-003 7.180e-003
|
|
Ca 1.895e-003 1.895e-003
|
|
Cl 1.337e-004 1.337e-004
|
|
Mg 1.395e-003 1.395e-003
|
|
Na 1.227e-004 1.227e-004
|
|
S 2.351e-004 2.351e-004
|
|
|
|
----------------------------Description of solution----------------------------
|
|
|
|
pH = 7.042 Charge balance
|
|
pe = 13.580 Adjusted to redox equilibrium
|
|
Specific Conductance (uS/cm, 25 oC) = 589
|
|
Density (g/cm3) = 0.99748
|
|
Volume (L) = 1.00341
|
|
Activity of water = 1.000
|
|
Ionic strength = 9.697e-003
|
|
Mass of water (kg) = 9.999e-001
|
|
Total alkalinity (eq/kg) = 6.099e-003
|
|
Total CO2 (mol/kg) = 7.180e-003
|
|
Temperature (deg C) = 25.00
|
|
Electrical balance (eq) = 4.958e-015
|
|
Percent error, 100*(Cat-|An|)/(Cat+|An|) = 0.00
|
|
Iterations = 9
|
|
Total H = 1.110125e+002
|
|
Total O = 5.552509e+001
|
|
|
|
----------------------------Distribution of species----------------------------
|
|
|
|
Log Log Log mole V
|
|
Species Molality Activity Molality Activity Gamma cm3/mol
|
|
|
|
OH- 1.236e-007 1.114e-007 -6.908 -6.953 -0.045 -4.03
|
|
H+ 9.931e-008 9.080e-008 -7.003 -7.042 -0.039 0.00
|
|
H2O 5.551e+001 9.998e-001 1.744 -0.000 0.000 18.07
|
|
C(-4) 0.000e+000
|
|
CH4 0.000e+000 0.000e+000 -143.548 -143.547 0.001 32.22
|
|
C(4) 7.180e-003
|
|
HCO3- 5.921e-003 5.366e-003 -2.228 -2.270 -0.043 24.69
|
|
CO2 1.093e-003 1.096e-003 -2.961 -2.960 0.001 30.26
|
|
CaHCO3+ 9.015e-005 8.183e-005 -4.045 -4.087 -0.042 9.72
|
|
MgHCO3+ 6.159e-005 5.559e-005 -4.211 -4.255 -0.044 5.53
|
|
CaCO3 5.552e-006 5.565e-006 -5.256 -5.255 0.001 -14.60
|
|
CO3-2 4.109e-006 2.771e-006 -5.386 -5.557 -0.171 -4.11
|
|
MgCO3 2.336e-006 2.341e-006 -5.631 -5.631 0.001 -17.09
|
|
NaHCO3 1.474e-006 1.477e-006 -5.832 -5.831 0.001 19.41
|
|
NaCO3- 1.497e-009 1.356e-009 -8.825 -8.868 -0.043 -0.58
|
|
Ca 1.895e-003
|
|
Ca+2 1.773e-003 1.195e-003 -2.751 -2.923 -0.171 -17.93
|
|
CaHCO3+ 9.015e-005 8.183e-005 -4.045 -4.087 -0.042 9.72
|
|
CaSO4 2.610e-005 2.616e-005 -4.583 -4.582 0.001 7.50
|
|
CaCO3 5.552e-006 5.565e-006 -5.256 -5.255 0.001 -14.60
|
|
CaOH+ 2.418e-009 2.184e-009 -8.616 -8.661 -0.044 (0)
|
|
CaHSO4+ 1.729e-011 1.561e-011 -10.762 -10.807 -0.044 (0)
|
|
Cl 1.337e-004
|
|
Cl- 1.337e-004 1.206e-004 -3.874 -3.919 -0.045 18.14
|
|
H(0) 0.000e+000
|
|
H2 0.000e+000 0.000e+000 -44.395 -44.394 0.001 28.61
|
|
Mg 1.395e-003
|
|
Mg+2 1.305e-003 8.854e-004 -2.884 -3.053 -0.169 -21.62
|
|
MgHCO3+ 6.159e-005 5.559e-005 -4.211 -4.255 -0.044 5.53
|
|
MgSO4 2.548e-005 2.554e-005 -4.594 -4.593 0.001 5.84
|
|
MgCO3 2.336e-006 2.341e-006 -5.631 -5.631 0.001 -17.09
|
|
MgOH+ 3.894e-008 3.539e-008 -7.410 -7.451 -0.041 (0)
|
|
Na 1.227e-004
|
|
Na+ 1.211e-004 1.096e-004 -3.917 -3.960 -0.044 -1.32
|
|
NaHCO3 1.474e-006 1.477e-006 -5.832 -5.831 0.001 19.41
|
|
NaSO4- 7.456e-008 6.757e-008 -7.127 -7.170 -0.043 18.60
|
|
NaCO3- 1.497e-009 1.356e-009 -8.825 -8.868 -0.043 -0.58
|
|
NaOH 1.218e-021 1.221e-021 -20.914 -20.913 0.001 (0)
|
|
O(0) 5.111e-004
|
|
O2 2.556e-004 2.561e-004 -3.593 -3.592 0.001 30.40
|
|
S(-2) 0.000e+000
|
|
HS- 0.000e+000 0.000e+000 -142.234 -142.279 -0.045 20.67
|
|
H2S 0.000e+000 0.000e+000 -142.380 -142.379 0.001 37.16
|
|
S-2 0.000e+000 0.000e+000 -147.982 -148.155 -0.173 (0)
|
|
S(6) 2.351e-004
|
|
SO4-2 1.834e-004 1.231e-004 -3.737 -3.910 -0.173 14.26
|
|
CaSO4 2.610e-005 2.616e-005 -4.583 -4.582 0.001 7.50
|
|
MgSO4 2.548e-005 2.554e-005 -4.594 -4.593 0.001 5.84
|
|
NaSO4- 7.456e-008 6.757e-008 -7.127 -7.170 -0.043 18.60
|
|
HSO4- 1.203e-009 1.086e-009 -8.920 -8.964 -0.044 40.34
|
|
CaHSO4+ 1.729e-011 1.561e-011 -10.762 -10.807 -0.044 (0)
|
|
|
|
------------------------------Saturation indices-------------------------------
|
|
|
|
Phase SI log IAP log K(298 K, 1 atm)
|
|
|
|
Anhydrite -2.55 -6.83 -4.28 CaSO4
|
|
Aragonite -0.14 -8.48 -8.34 CaCO3
|
|
Calcite 0.00 -8.48 -8.48 CaCO3
|
|
CH4(g) -140.70 -143.55 -2.84 CH4
|
|
CO2(g) -1.50 -2.96 -1.46 CO2 Pressure 0.0 atm, phi 1.000.
|
|
Dolomite 0.00 -17.09 -17.09 CaMg(CO3)2
|
|
Gypsum -2.25 -6.83 -4.58 CaSO4:2H2O
|
|
H2(g) -41.29 -44.39 -3.10 H2
|
|
H2O(g) -1.50 -0.00 1.50 H2O
|
|
H2S(g) -141.33 -149.32 -7.99 H2S
|
|
Halite -9.45 -7.88 1.57 NaCl
|
|
O2(g) -0.70 -3.59 -2.89 O2
|
|
Sulfur -106.02 -101.13 4.88 S
|
|
|
|
|
|
------------------
|
|
End of simulation.
|
|
------------------
|
|
|
|
------------------------------------
|
|
Reading input data for simulation 5.
|
|
------------------------------------
|
|
|
|
PRINT
|
|
selected_output true
|
|
status false
|
|
ADVECTION
|
|
cells 1
|
|
shifts 200
|
|
print_frequency 200
|
|
USER_GRAPH 1 Example 14
|
|
-headings PV As(ppb) Ca(M) Mg(M) Na(M) pH
|
|
-chart_title "Chemical Evolution of the Central Oklahoma Aquifer"
|
|
-axis_titles "Pore volumes or shift number" "Log(Concentration, in ppb or molal)" "pH"
|
|
-axis_scale x_axis 0 200
|
|
-axis_scale y_axis 1e-6 100 auto auto Log
|
|
10 GRAPH_X STEP_NO
|
|
20 GRAPH_Y TOT("As") * 74.92e6, TOT("Ca"), TOT("Mg"), TOT("Na")
|
|
30 GRAPH_SY -LA("H+")
|
|
END
|
|
------------------------------------
|
|
Beginning of advection calculations.
|
|
------------------------------------
|
|
|
|
Beginning of advection time step 1, cumulative pore volumes 1.000000.
|
|
Beginning of advection time step 2, cumulative pore volumes 2.000000.
|
|
Beginning of advection time step 3, cumulative pore volumes 3.000000.
|
|
Beginning of advection time step 4, cumulative pore volumes 4.000000.
|
|
Beginning of advection time step 5, cumulative pore volumes 5.000000.
|
|
Beginning of advection time step 6, cumulative pore volumes 6.000000.
|
|
Beginning of advection time step 7, cumulative pore volumes 7.000000.
|
|
Beginning of advection time step 8, cumulative pore volumes 8.000000.
|
|
Beginning of advection time step 9, cumulative pore volumes 9.000000.
|
|
Beginning of advection time step 10, cumulative pore volumes 10.000000.
|
|
Beginning of advection time step 11, cumulative pore volumes 11.000000.
|
|
Beginning of advection time step 12, cumulative pore volumes 12.000000.
|
|
Beginning of advection time step 13, cumulative pore volumes 13.000000.
|
|
Beginning of advection time step 14, cumulative pore volumes 14.000000.
|
|
Beginning of advection time step 15, cumulative pore volumes 15.000000.
|
|
Beginning of advection time step 16, cumulative pore volumes 16.000000.
|
|
Beginning of advection time step 17, cumulative pore volumes 17.000000.
|
|
Beginning of advection time step 18, cumulative pore volumes 18.000000.
|
|
Beginning of advection time step 19, cumulative pore volumes 19.000000.
|
|
Beginning of advection time step 20, cumulative pore volumes 20.000000.
|
|
Beginning of advection time step 21, cumulative pore volumes 21.000000.
|
|
Beginning of advection time step 22, cumulative pore volumes 22.000000.
|
|
Beginning of advection time step 23, cumulative pore volumes 23.000000.
|
|
Beginning of advection time step 24, cumulative pore volumes 24.000000.
|
|
Beginning of advection time step 25, cumulative pore volumes 25.000000.
|
|
Beginning of advection time step 26, cumulative pore volumes 26.000000.
|
|
Beginning of advection time step 27, cumulative pore volumes 27.000000.
|
|
Beginning of advection time step 28, cumulative pore volumes 28.000000.
|
|
Beginning of advection time step 29, cumulative pore volumes 29.000000.
|
|
Beginning of advection time step 30, cumulative pore volumes 30.000000.
|
|
Beginning of advection time step 31, cumulative pore volumes 31.000000.
|
|
Beginning of advection time step 32, cumulative pore volumes 32.000000.
|
|
Beginning of advection time step 33, cumulative pore volumes 33.000000.
|
|
Beginning of advection time step 34, cumulative pore volumes 34.000000.
|
|
Beginning of advection time step 35, cumulative pore volumes 35.000000.
|
|
Beginning of advection time step 36, cumulative pore volumes 36.000000.
|
|
Beginning of advection time step 37, cumulative pore volumes 37.000000.
|
|
Beginning of advection time step 38, cumulative pore volumes 38.000000.
|
|
Beginning of advection time step 39, cumulative pore volumes 39.000000.
|
|
Beginning of advection time step 40, cumulative pore volumes 40.000000.
|
|
Beginning of advection time step 41, cumulative pore volumes 41.000000.
|
|
Beginning of advection time step 42, cumulative pore volumes 42.000000.
|
|
Beginning of advection time step 43, cumulative pore volumes 43.000000.
|
|
Beginning of advection time step 44, cumulative pore volumes 44.000000.
|
|
Beginning of advection time step 45, cumulative pore volumes 45.000000.
|
|
Beginning of advection time step 46, cumulative pore volumes 46.000000.
|
|
Beginning of advection time step 47, cumulative pore volumes 47.000000.
|
|
Beginning of advection time step 48, cumulative pore volumes 48.000000.
|
|
Beginning of advection time step 49, cumulative pore volumes 49.000000.
|
|
Beginning of advection time step 50, cumulative pore volumes 50.000000.
|
|
Beginning of advection time step 51, cumulative pore volumes 51.000000.
|
|
Beginning of advection time step 52, cumulative pore volumes 52.000000.
|
|
Beginning of advection time step 53, cumulative pore volumes 53.000000.
|
|
Beginning of advection time step 54, cumulative pore volumes 54.000000.
|
|
Beginning of advection time step 55, cumulative pore volumes 55.000000.
|
|
Beginning of advection time step 56, cumulative pore volumes 56.000000.
|
|
Beginning of advection time step 57, cumulative pore volumes 57.000000.
|
|
Beginning of advection time step 58, cumulative pore volumes 58.000000.
|
|
Beginning of advection time step 59, cumulative pore volumes 59.000000.
|
|
Beginning of advection time step 60, cumulative pore volumes 60.000000.
|
|
Beginning of advection time step 61, cumulative pore volumes 61.000000.
|
|
Beginning of advection time step 62, cumulative pore volumes 62.000000.
|
|
Beginning of advection time step 63, cumulative pore volumes 63.000000.
|
|
Beginning of advection time step 64, cumulative pore volumes 64.000000.
|
|
Beginning of advection time step 65, cumulative pore volumes 65.000000.
|
|
Beginning of advection time step 66, cumulative pore volumes 66.000000.
|
|
Beginning of advection time step 67, cumulative pore volumes 67.000000.
|
|
Beginning of advection time step 68, cumulative pore volumes 68.000000.
|
|
Beginning of advection time step 69, cumulative pore volumes 69.000000.
|
|
Beginning of advection time step 70, cumulative pore volumes 70.000000.
|
|
Beginning of advection time step 71, cumulative pore volumes 71.000000.
|
|
Beginning of advection time step 72, cumulative pore volumes 72.000000.
|
|
Beginning of advection time step 73, cumulative pore volumes 73.000000.
|
|
Beginning of advection time step 74, cumulative pore volumes 74.000000.
|
|
Beginning of advection time step 75, cumulative pore volumes 75.000000.
|
|
Beginning of advection time step 76, cumulative pore volumes 76.000000.
|
|
Beginning of advection time step 77, cumulative pore volumes 77.000000.
|
|
Beginning of advection time step 78, cumulative pore volumes 78.000000.
|
|
Beginning of advection time step 79, cumulative pore volumes 79.000000.
|
|
Beginning of advection time step 80, cumulative pore volumes 80.000000.
|
|
Beginning of advection time step 81, cumulative pore volumes 81.000000.
|
|
Beginning of advection time step 82, cumulative pore volumes 82.000000.
|
|
Beginning of advection time step 83, cumulative pore volumes 83.000000.
|
|
Beginning of advection time step 84, cumulative pore volumes 84.000000.
|
|
Beginning of advection time step 85, cumulative pore volumes 85.000000.
|
|
Beginning of advection time step 86, cumulative pore volumes 86.000000.
|
|
Beginning of advection time step 87, cumulative pore volumes 87.000000.
|
|
Beginning of advection time step 88, cumulative pore volumes 88.000000.
|
|
Beginning of advection time step 89, cumulative pore volumes 89.000000.
|
|
Beginning of advection time step 90, cumulative pore volumes 90.000000.
|
|
Beginning of advection time step 91, cumulative pore volumes 91.000000.
|
|
Beginning of advection time step 92, cumulative pore volumes 92.000000.
|
|
Beginning of advection time step 93, cumulative pore volumes 93.000000.
|
|
Beginning of advection time step 94, cumulative pore volumes 94.000000.
|
|
Beginning of advection time step 95, cumulative pore volumes 95.000000.
|
|
Beginning of advection time step 96, cumulative pore volumes 96.000000.
|
|
Beginning of advection time step 97, cumulative pore volumes 97.000000.
|
|
Beginning of advection time step 98, cumulative pore volumes 98.000000.
|
|
Beginning of advection time step 99, cumulative pore volumes 99.000000.
|
|
Beginning of advection time step 100, cumulative pore volumes 100.000000.
|
|
Beginning of advection time step 101, cumulative pore volumes 101.000000.
|
|
Beginning of advection time step 102, cumulative pore volumes 102.000000.
|
|
Beginning of advection time step 103, cumulative pore volumes 103.000000.
|
|
Beginning of advection time step 104, cumulative pore volumes 104.000000.
|
|
Beginning of advection time step 105, cumulative pore volumes 105.000000.
|
|
Beginning of advection time step 106, cumulative pore volumes 106.000000.
|
|
Beginning of advection time step 107, cumulative pore volumes 107.000000.
|
|
Beginning of advection time step 108, cumulative pore volumes 108.000000.
|
|
Beginning of advection time step 109, cumulative pore volumes 109.000000.
|
|
Beginning of advection time step 110, cumulative pore volumes 110.000000.
|
|
Beginning of advection time step 111, cumulative pore volumes 111.000000.
|
|
Beginning of advection time step 112, cumulative pore volumes 112.000000.
|
|
Beginning of advection time step 113, cumulative pore volumes 113.000000.
|
|
Beginning of advection time step 114, cumulative pore volumes 114.000000.
|
|
Beginning of advection time step 115, cumulative pore volumes 115.000000.
|
|
Beginning of advection time step 116, cumulative pore volumes 116.000000.
|
|
Beginning of advection time step 117, cumulative pore volumes 117.000000.
|
|
Beginning of advection time step 118, cumulative pore volumes 118.000000.
|
|
Beginning of advection time step 119, cumulative pore volumes 119.000000.
|
|
Beginning of advection time step 120, cumulative pore volumes 120.000000.
|
|
Beginning of advection time step 121, cumulative pore volumes 121.000000.
|
|
Beginning of advection time step 122, cumulative pore volumes 122.000000.
|
|
Beginning of advection time step 123, cumulative pore volumes 123.000000.
|
|
Beginning of advection time step 124, cumulative pore volumes 124.000000.
|
|
Beginning of advection time step 125, cumulative pore volumes 125.000000.
|
|
Beginning of advection time step 126, cumulative pore volumes 126.000000.
|
|
Beginning of advection time step 127, cumulative pore volumes 127.000000.
|
|
Beginning of advection time step 128, cumulative pore volumes 128.000000.
|
|
Beginning of advection time step 129, cumulative pore volumes 129.000000.
|
|
Beginning of advection time step 130, cumulative pore volumes 130.000000.
|
|
Beginning of advection time step 131, cumulative pore volumes 131.000000.
|
|
Beginning of advection time step 132, cumulative pore volumes 132.000000.
|
|
Beginning of advection time step 133, cumulative pore volumes 133.000000.
|
|
Beginning of advection time step 134, cumulative pore volumes 134.000000.
|
|
Beginning of advection time step 135, cumulative pore volumes 135.000000.
|
|
Beginning of advection time step 136, cumulative pore volumes 136.000000.
|
|
Beginning of advection time step 137, cumulative pore volumes 137.000000.
|
|
Beginning of advection time step 138, cumulative pore volumes 138.000000.
|
|
Beginning of advection time step 139, cumulative pore volumes 139.000000.
|
|
Beginning of advection time step 140, cumulative pore volumes 140.000000.
|
|
Beginning of advection time step 141, cumulative pore volumes 141.000000.
|
|
Beginning of advection time step 142, cumulative pore volumes 142.000000.
|
|
Beginning of advection time step 143, cumulative pore volumes 143.000000.
|
|
Beginning of advection time step 144, cumulative pore volumes 144.000000.
|
|
Beginning of advection time step 145, cumulative pore volumes 145.000000.
|
|
Beginning of advection time step 146, cumulative pore volumes 146.000000.
|
|
Beginning of advection time step 147, cumulative pore volumes 147.000000.
|
|
Beginning of advection time step 148, cumulative pore volumes 148.000000.
|
|
Beginning of advection time step 149, cumulative pore volumes 149.000000.
|
|
Beginning of advection time step 150, cumulative pore volumes 150.000000.
|
|
Beginning of advection time step 151, cumulative pore volumes 151.000000.
|
|
Beginning of advection time step 152, cumulative pore volumes 152.000000.
|
|
Beginning of advection time step 153, cumulative pore volumes 153.000000.
|
|
Beginning of advection time step 154, cumulative pore volumes 154.000000.
|
|
Beginning of advection time step 155, cumulative pore volumes 155.000000.
|
|
Beginning of advection time step 156, cumulative pore volumes 156.000000.
|
|
Beginning of advection time step 157, cumulative pore volumes 157.000000.
|
|
Beginning of advection time step 158, cumulative pore volumes 158.000000.
|
|
Beginning of advection time step 159, cumulative pore volumes 159.000000.
|
|
Beginning of advection time step 160, cumulative pore volumes 160.000000.
|
|
Beginning of advection time step 161, cumulative pore volumes 161.000000.
|
|
Beginning of advection time step 162, cumulative pore volumes 162.000000.
|
|
Beginning of advection time step 163, cumulative pore volumes 163.000000.
|
|
Beginning of advection time step 164, cumulative pore volumes 164.000000.
|
|
Beginning of advection time step 165, cumulative pore volumes 165.000000.
|
|
Beginning of advection time step 166, cumulative pore volumes 166.000000.
|
|
Beginning of advection time step 167, cumulative pore volumes 167.000000.
|
|
Beginning of advection time step 168, cumulative pore volumes 168.000000.
|
|
Beginning of advection time step 169, cumulative pore volumes 169.000000.
|
|
Beginning of advection time step 170, cumulative pore volumes 170.000000.
|
|
Beginning of advection time step 171, cumulative pore volumes 171.000000.
|
|
Beginning of advection time step 172, cumulative pore volumes 172.000000.
|
|
Beginning of advection time step 173, cumulative pore volumes 173.000000.
|
|
Beginning of advection time step 174, cumulative pore volumes 174.000000.
|
|
Beginning of advection time step 175, cumulative pore volumes 175.000000.
|
|
Beginning of advection time step 176, cumulative pore volumes 176.000000.
|
|
Beginning of advection time step 177, cumulative pore volumes 177.000000.
|
|
Beginning of advection time step 178, cumulative pore volumes 178.000000.
|
|
Beginning of advection time step 179, cumulative pore volumes 179.000000.
|
|
Beginning of advection time step 180, cumulative pore volumes 180.000000.
|
|
Beginning of advection time step 181, cumulative pore volumes 181.000000.
|
|
Beginning of advection time step 182, cumulative pore volumes 182.000000.
|
|
Beginning of advection time step 183, cumulative pore volumes 183.000000.
|
|
Beginning of advection time step 184, cumulative pore volumes 184.000000.
|
|
Beginning of advection time step 185, cumulative pore volumes 185.000000.
|
|
Beginning of advection time step 186, cumulative pore volumes 186.000000.
|
|
Beginning of advection time step 187, cumulative pore volumes 187.000000.
|
|
Beginning of advection time step 188, cumulative pore volumes 188.000000.
|
|
Beginning of advection time step 189, cumulative pore volumes 189.000000.
|
|
Beginning of advection time step 190, cumulative pore volumes 190.000000.
|
|
Beginning of advection time step 191, cumulative pore volumes 191.000000.
|
|
Beginning of advection time step 192, cumulative pore volumes 192.000000.
|
|
Beginning of advection time step 193, cumulative pore volumes 193.000000.
|
|
Beginning of advection time step 194, cumulative pore volumes 194.000000.
|
|
Beginning of advection time step 195, cumulative pore volumes 195.000000.
|
|
Beginning of advection time step 196, cumulative pore volumes 196.000000.
|
|
Beginning of advection time step 197, cumulative pore volumes 197.000000.
|
|
Beginning of advection time step 198, cumulative pore volumes 198.000000.
|
|
Beginning of advection time step 199, cumulative pore volumes 199.000000.
|
|
Beginning of advection time step 200, cumulative pore volumes 200.000000.
|
|
|
|
Cell 1.
|
|
|
|
Using solution 1. Solution after simulation 4.
|
|
Using exchange 1. Exchange assemblage after simulation 5.
|
|
Using surface 1.
|
|
Using pure phase assemblage 1. Pure-phase assemblage after simulation 5.
|
|
|
|
-------------------------------Phase assemblage--------------------------------
|
|
|
|
Moles in assemblage
|
|
Phase SI log IAP log K(T, P) Initial Final Delta
|
|
|
|
Calcite -0.00 -8.48 -8.48 0.000e+000 0 0.000e+000
|
|
Dolomite 0.00 -17.09 -17.09 1.568e+000 1.568e+000 3.563e-007
|
|
|
|
------------------------------Surface composition------------------------------
|
|
|
|
Surf
|
|
2.228e-003 Surface charge, eq
|
|
1.195e-002 sigma, C/m**2
|
|
4.652e-002 psi, V
|
|
-1.811e+000 -F*psi/RT
|
|
1.636e-001 exp(-F*psi/RT)
|
|
6.000e+002 specific area, m**2/g
|
|
1.800e+004 m**2 for 3.000e+001 g
|
|
|
|
|
|
Surf
|
|
7.000e-002 moles
|
|
Mole Log
|
|
Species Moles Fraction Molality Molality
|
|
|
|
SurfOH 4.915e-002 0.702 4.916e-002 -1.308
|
|
SurfOH2+ 1.425e-002 0.204 1.425e-002 -1.846
|
|
SurfO- 3.885e-003 0.056 3.886e-003 -2.411
|
|
SurfOHAsO4-3 2.709e-003 0.039 2.709e-003 -2.567
|
|
SurfHAsO4- 5.095e-006 0.000 5.095e-006 -5.293
|
|
SurfH2AsO4 4.778e-008 0.000 4.779e-008 -7.321
|
|
|
|
-----------------------------Exchange composition------------------------------
|
|
|
|
X 1.000e+000 mol
|
|
|
|
Equiv- Equivalent Log
|
|
Species Moles alents Fraction Gamma
|
|
|
|
CaX2 3.393e-001 6.786e-001 6.786e-001 -0.171
|
|
MgX2 1.602e-001 3.204e-001 3.204e-001 -0.169
|
|
NaX 9.469e-004 9.469e-004 9.469e-004 -0.044
|
|
|
|
-----------------------------Solution composition------------------------------
|
|
|
|
Elements Molality Moles
|
|
|
|
As 4.412e-010 4.412e-010
|
|
C 7.179e-003 7.179e-003
|
|
Ca 1.882e-003 1.881e-003
|
|
Cl 1.337e-004 1.337e-004
|
|
Mg 1.408e-003 1.408e-003
|
|
Na 1.227e-004 1.227e-004
|
|
S 2.351e-004 2.351e-004
|
|
|
|
----------------------------Description of solution----------------------------
|
|
|
|
pH = 7.042 Charge balance
|
|
pe = 13.581 Adjusted to redox equilibrium
|
|
Specific Conductance (uS/cm, 25 oC) = 589
|
|
Density (g/cm3) = 0.99748
|
|
Volume (L) = 1.00341
|
|
Activity of water = 1.000
|
|
Ionic strength = 9.695e-003
|
|
Mass of water (kg) = 9.999e-001
|
|
Total alkalinity (eq/kg) = 6.097e-003
|
|
Total CO2 (mol/kg) = 7.179e-003
|
|
Temperature (deg C) = 25.00
|
|
Electrical balance (eq) = 6.577e-009
|
|
Percent error, 100*(Cat-|An|)/(Cat+|An|) = 0.00
|
|
Iterations = 13
|
|
Total H = 1.110125e+002
|
|
Total O = 5.552509e+001
|
|
|
|
----------------------------Distribution of species----------------------------
|
|
|
|
Log Log Log mole V
|
|
Species Molality Activity Molality Activity Gamma cm3/mol
|
|
|
|
OH- 1.235e-007 1.114e-007 -6.908 -6.953 -0.045 -4.03
|
|
H+ 9.940e-008 9.088e-008 -7.003 -7.042 -0.039 0.00
|
|
H2O 5.551e+001 9.998e-001 1.744 -0.000 0.000 18.07
|
|
As 4.412e-010
|
|
HAsO4-2 2.739e-010 1.823e-010 -9.562 -9.739 -0.177 (0)
|
|
H2AsO4- 1.673e-010 1.511e-010 -9.777 -9.821 -0.044 (0)
|
|
AsO4-3 1.586e-014 6.342e-015 -13.800 -14.198 -0.398 (0)
|
|
H3AsO4 2.380e-015 2.386e-015 -14.623 -14.622 0.001 (0)
|
|
C(-4) 0.000e+000
|
|
CH4 0.000e+000 0.000e+000 -143.548 -143.547 0.001 32.22
|
|
C(4) 7.179e-003
|
|
HCO3- 5.920e-003 5.365e-003 -2.228 -2.270 -0.043 24.69
|
|
CO2 1.094e-003 1.096e-003 -2.961 -2.960 0.001 30.26
|
|
CaHCO3+ 8.949e-005 8.123e-005 -4.048 -4.090 -0.042 9.72
|
|
MgHCO3+ 6.214e-005 5.610e-005 -4.207 -4.251 -0.044 5.53
|
|
CaCO3 5.507e-006 5.519e-006 -5.259 -5.258 0.001 -14.60
|
|
CO3-2 4.104e-006 2.769e-006 -5.387 -5.558 -0.171 -4.11
|
|
MgCO3 2.355e-006 2.361e-006 -5.628 -5.627 0.001 -17.09
|
|
NaHCO3 1.473e-006 1.477e-006 -5.832 -5.831 0.001 19.41
|
|
NaCO3- 1.495e-009 1.355e-009 -8.825 -8.868 -0.043 -0.58
|
|
Ca 1.882e-003
|
|
Ca+2 1.761e-003 1.187e-003 -2.754 -2.926 -0.171 -17.93
|
|
CaHCO3+ 8.949e-005 8.123e-005 -4.048 -4.090 -0.042 9.72
|
|
CaSO4 2.591e-005 2.597e-005 -4.587 -4.586 0.001 7.50
|
|
CaCO3 5.507e-006 5.519e-006 -5.259 -5.258 0.001 -14.60
|
|
CaOH+ 2.399e-009 2.167e-009 -8.620 -8.664 -0.044 (0)
|
|
CaHSO4+ 1.717e-011 1.551e-011 -10.765 -10.809 -0.044 (0)
|
|
Cl 1.337e-004
|
|
Cl- 1.337e-004 1.206e-004 -3.874 -3.919 -0.045 18.14
|
|
H(0) 0.000e+000
|
|
H2 0.000e+000 0.000e+000 -44.395 -44.394 0.001 28.61
|
|
Mg 1.408e-003
|
|
Mg+2 1.317e-003 8.936e-004 -2.880 -3.049 -0.169 -21.62
|
|
MgHCO3+ 6.214e-005 5.610e-005 -4.207 -4.251 -0.044 5.53
|
|
MgSO4 2.572e-005 2.577e-005 -4.590 -4.589 0.001 5.84
|
|
MgCO3 2.355e-006 2.361e-006 -5.628 -5.627 0.001 -17.09
|
|
MgOH+ 3.927e-008 3.569e-008 -7.406 -7.447 -0.041 (0)
|
|
Na 1.227e-004
|
|
Na+ 1.211e-004 1.096e-004 -3.917 -3.960 -0.044 -1.32
|
|
NaHCO3 1.473e-006 1.477e-006 -5.832 -5.831 0.001 19.41
|
|
NaSO4- 7.456e-008 6.757e-008 -7.127 -7.170 -0.043 18.60
|
|
NaCO3- 1.495e-009 1.355e-009 -8.825 -8.868 -0.043 -0.58
|
|
NaOH 1.217e-021 1.220e-021 -20.915 -20.914 0.001 (0)
|
|
O(0) 5.111e-004
|
|
O2 2.556e-004 2.561e-004 -3.593 -3.592 0.001 30.40
|
|
S(-2) 0.000e+000
|
|
HS- 0.000e+000 0.000e+000 -142.233 -142.278 -0.045 20.67
|
|
H2S 0.000e+000 0.000e+000 -142.379 -142.378 0.001 37.16
|
|
S-2 0.000e+000 0.000e+000 -147.982 -148.155 -0.173 (0)
|
|
S(6) 2.351e-004
|
|
SO4-2 1.834e-004 1.230e-004 -3.737 -3.910 -0.173 14.26
|
|
CaSO4 2.591e-005 2.597e-005 -4.587 -4.586 0.001 7.50
|
|
MgSO4 2.572e-005 2.577e-005 -4.590 -4.589 0.001 5.84
|
|
NaSO4- 7.456e-008 6.757e-008 -7.127 -7.170 -0.043 18.60
|
|
HSO4- 1.204e-009 1.087e-009 -8.919 -8.964 -0.044 40.34
|
|
CaHSO4+ 1.717e-011 1.551e-011 -10.765 -10.809 -0.044 (0)
|
|
|
|
------------------------------Saturation indices-------------------------------
|
|
|
|
Phase SI log IAP log K(298 K, 1 atm)
|
|
|
|
Anhydrite -2.56 -6.84 -4.28 CaSO4
|
|
Aragonite -0.15 -8.48 -8.34 CaCO3
|
|
Calcite -0.00 -8.48 -8.48 CaCO3
|
|
CH4(g) -140.70 -143.55 -2.84 CH4
|
|
CO2(g) -1.50 -2.96 -1.46 CO2
|
|
Dolomite 0.00 -17.09 -17.09 CaMg(CO3)2
|
|
Gypsum -2.25 -6.84 -4.58 CaSO4:2H2O
|
|
H2(g) -41.29 -44.39 -3.10 H2
|
|
H2O(g) -1.50 -0.00 1.50 H2O
|
|
H2S(g) -141.33 -149.32 -7.99 H2S
|
|
Halite -9.45 -7.88 1.57 NaCl
|
|
O2(g) -0.70 -3.59 -2.89 O2
|
|
Sulfur -106.02 -101.13 4.88 S
|
|
|
|
|
|
------------------
|
|
End of simulation.
|
|
------------------
|
|
|
|
------------------------------------
|
|
Reading input data for simulation 6.
|
|
------------------------------------
|
|
|
|
-------------------------------
|
|
End of Run after 1.012 Seconds.
|
|
-------------------------------
|
|
|