iphreeqc/ex17.out
David L Parkhurst 2c9cad2010 Tony changes for pr_in
git-svn-id: svn://136.177.114.72/svn_GW/phreeqc3/trunk@7742 1feff8c3-07ed-0310-ac33-dd36852eb9cd
2013-05-29 20:21:11 +00:00

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Input file: ../examples/ex17
Output file: ex17.out
Database file: ../database/pitzer.dat
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Reading data base.
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SOLUTION_MASTER_SPECIES
SOLUTION_SPECIES
PHASES
PITZER
EXCHANGE_MASTER_SPECIES
EXCHANGE_SPECIES
SURFACE_MASTER_SPECIES
SURFACE_SPECIES
END
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Reading input data for simulation 1.
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TITLE Example 17.--Inverse modeling of Black Sea water evaporation
SOLUTION 1 Black Sea water
units mg/L
density 1.014
pH 8.0 # estimated
Ca 233
Mg 679
Na 5820
K 193
S(6) 1460
Cl 10340
Br 35
C 1 CO2(g) -3.5
SOLUTION 2 Composition during halite precipitation
units mg/L
density 1.271
pH 5.0 # estimated
Ca 0.0
Mg 50500
Na 55200
K 15800
S(6) 76200
Cl 187900
Br 2670
C 1 CO2(g) -3.5
INVERSE_MODELING
solutions 1 2
uncertainties .025
range
balances
Br
K
Mg
phases
H2O(g) pre
Calcite pre
CO2(g) pre
Gypsum pre
Halite pre
Glauberite pre
Polyhalite pre
END
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TITLE
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Example 17.--Inverse modeling of Black Sea water evaporation
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Beginning of initial solution calculations.
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Initial solution 1. Black Sea water
-----------------------------Solution composition------------------------------
Elements Molality Moles
Br 4.401e-04 4.401e-04
C 8.430e-04 8.430e-04 Equilibrium with CO2(g)
Ca 5.841e-03 5.841e-03
Cl 2.930e-01 2.930e-01
K 4.960e-03 4.960e-03
Mg 2.807e-02 2.807e-02
Na 2.544e-01 2.544e-01
S(6) 1.527e-02 1.527e-02
----------------------------Description of solution----------------------------
pH = 8.000
pe = 4.000
Specific Conductance (uS/cm, 25 oC) = 31361
Density (g/cm3) = 1.01094
Volume (L) = 1.00889
Activity of water = 0.990
Ionic strength = 3.752e-01
Mass of water (kg) = 1.000e+00
Total alkalinity (eq/kg) = 8.660e-04
Total CO2 (mol/kg) = 8.430e-04
Temperature (deg C) = 25.00
Electrical balance (eq) = 2.253e-03
Percent error, 100*(Cat-|An|)/(Cat+|An|) = 0.35
Iterations = 9
Gamma iterations = 3
Osmotic coefficient = 0.89851
Density of water = 0.99704
Total H = 1.110132e+02
Total O = 5.556982e+01
----------------------------Distribution of species----------------------------
MacInnes MacInnes
MacInnes Log Log Log mole V
Species Molality Activity Molality Activity Gamma cm3/mol
OH- 1.671e-06 1.002e-06 -5.777 -5.999 -0.222 -3.15
H+ 1.290e-08 1.000e-08 -7.889 -8.000 -0.111 0.00
H2O 5.551e+01 9.903e-01 1.744 -0.004 0.000 18.07
Br 4.401e-04
Br- 4.401e-04 3.004e-04 -3.356 -3.522 -0.166 25.36
C(4) 8.430e-04
HCO3- 8.022e-04 4.931e-04 -3.096 -3.307 -0.211 25.95
CO3-2 1.608e-05 2.258e-06 -4.794 -5.646 -0.853 -1.27
MgCO3 1.437e-05 1.437e-05 -4.843 -4.843 0.000 -17.09
CO2 1.033e-05 1.093e-05 -4.986 -4.961 0.024 29.09
Ca 5.841e-03
Ca+2 5.841e-03 1.473e-03 -2.233 -2.832 -0.598 -16.97
Cl 2.930e-01
Cl- 2.930e-01 1.960e-01 -0.533 -0.708 -0.175 18.61
K 4.960e-03
K+ 4.960e-03 3.418e-03 -2.305 -2.466 -0.162 9.48
Mg 2.807e-02
Mg+2 2.805e-02 7.511e-03 -1.552 -2.124 -0.572 -20.69
MgCO3 1.437e-05 1.437e-05 -4.843 -4.843 0.000 -17.09
MgOH+ 1.244e-06 1.155e-06 -5.905 -5.938 -0.032 (0)
Na 2.544e-01
Na+ 2.544e-01 1.836e-01 -0.595 -0.736 -0.142 -0.79
S(6) 1.527e-02
SO4-2 1.527e-02 2.117e-03 -1.816 -2.674 -0.858 17.27
HSO4- 2.952e-09 2.017e-09 -8.530 -8.695 -0.165 40.79
------------------------------Saturation indices-------------------------------
Phase SI log IAP log K(298 K, 1 atm)
Anhydrite -1.28 -5.51 -4.22 CaSO4
Aragonite -0.26 -8.48 -8.22 CaCO3
Arcanite -5.83 -7.61 -1.78 K2SO4
Bischofite -8.02 -3.57 4.46 MgCl2:6H2O
Bloedite -6.62 -8.96 -2.35 Na2Mg(SO4)2:4H2O
Brucite -3.24 -14.12 -10.88 Mg(OH)2
Burkeite -14.64 -15.41 -0.77 Na6CO3(SO4)2
Calcite -0.07 -8.48 -8.41 CaCO3
Carnallite -11.07 -6.74 4.33 KMgCl3:6H2O
CO2(g) -3.50 -4.96 -1.46 CO2 Pressure 0.0 atm, phi 1.000
Dolomite 0.83 -16.25 -17.08 CaMg(CO3)2
Epsomite -2.95 -4.83 -1.88 MgSO4:7H2O
Gaylussite -6.20 -15.62 -9.42 CaNa2(CO3)2:5H2O
Glaserite -9.68 -13.48 -3.80 NaK3(SO4)2
Glauberite -4.41 -9.65 -5.25 Na2Ca(SO4)2
Gypsum -0.93 -5.51 -4.58 CaSO4:2H2O
H2O(g) -1.51 -0.00 1.50 H2O
Halite -3.01 -1.44 1.57 NaCl
Hexahydrite -3.19 -4.82 -1.63 MgSO4:6H2O
Kainite -7.79 -7.99 -0.19 KMgClSO4:3H2O
Kalicinite -6.05 -16.11 -10.06 KHCO3
Kieserite -4.68 -4.80 -0.12 MgSO4:H2O
Labile_S -8.14 -13.81 -5.67 Na4Ca(SO4)3:2H2O
Leonhardite -3.93 -4.82 -0.89 MgSO4:4H2O
Leonite -8.44 -12.42 -3.98 K2Mg(SO4)2:4H2O
Magnesite 0.06 -7.77 -7.83 MgCO3
Mirabilite -2.98 -4.19 -1.21 Na2SO4:10H2O
Misenite -75.64 -86.45 -10.81 K8H6(SO4)7
Nahcolite -3.64 -14.38 -10.74 NaHCO3
Natron -6.34 -7.16 -0.82 Na2CO3:10H2O
Nesquehonite -2.62 -7.78 -5.17 MgCO3:3H2O
Pentahydrite -3.53 -4.82 -1.28 MgSO4:5H2O
Pirssonite -6.37 -15.61 -9.23 Na2Ca(CO3)2:2H2O
Polyhalite -9.68 -23.43 -13.74 K2MgCa2(SO4)4:2H2O
Portlandite -9.64 -14.83 -5.19 Ca(OH)2
Schoenite -8.10 -12.43 -4.33 K2Mg(SO4)2:6H2O
Sylvite -4.07 -3.17 0.90 KCl
Syngenite -5.67 -13.12 -7.45 K2Ca(SO4)2:H2O
Thenardite -3.80 -4.15 -0.35 Na2SO4
Trona -10.13 -21.51 -11.38 Na3H(CO3)2:2H2O
Initial solution 2. Composition during halite precipitation
-----------------------------Solution composition------------------------------
Elements Molality Moles
Br 3.785e-02 3.785e-02
C 7.187e-06 7.187e-06 Equilibrium with CO2(g)
Cl 6.004e+00 6.004e+00
K 4.578e-01 4.578e-01
Mg 2.354e+00 2.354e+00
Na 2.720e+00 2.720e+00
S(6) 8.986e-01 8.986e-01
----------------------------Description of solution----------------------------
pH = 5.000
pe = 4.000
Specific Conductance (uS/cm, 25 oC) = 598313
Density (g/cm3) = 1.26987
Volume (L) = 1.17915
Activity of water = 0.681
Ionic strength = 1.111e+01
Mass of water (kg) = 1.000e+00
Total alkalinity (eq/kg) = 7.746e-06
Total CO2 (mol/kg) = 7.187e-06
Temperature (deg C) = 25.00
Electrical balance (eq) = 4.629e-02
Percent error, 100*(Cat-|An|)/(Cat+|An|) = 0.29
Iterations = 16
Gamma iterations = 7
Osmotic coefficient = 1.71249
Density of water = 0.99704
Total H = 1.110124e+02
Total O = 5.910065e+01
----------------------------Distribution of species----------------------------
MacInnes MacInnes
MacInnes Log Log Log mole V
Species Molality Activity Molality Activity Gamma cm3/mol
H+ 5.602e-07 1.000e-05 -6.252 -5.000 1.252 0.00
OH- 1.211e-08 6.889e-10 -7.917 -9.162 -1.245 11.12
H2O 5.551e+01 6.806e-01 1.744 -0.167 0.000 18.07
Br 3.785e-02
Br- 3.785e-02 4.950e-02 -1.422 -1.305 0.116 27.92
C(4) 7.187e-06
HCO3- 4.546e-06 3.389e-07 -5.342 -6.470 -1.128 47.51
CO2 2.568e-06 1.093e-05 -5.590 -4.961 0.629 29.09
MgCO3 6.694e-08 6.694e-08 -7.174 -7.174 0.000 -17.09
CO3-2 5.861e-09 1.552e-12 -8.232 -11.809 -3.577 14.84
Cl 6.004e+00
Cl- 6.004e+00 4.512e+00 0.778 0.654 -0.124 20.71
K 4.578e-01
K+ 4.578e-01 4.785e-01 -0.339 -0.320 0.019 14.34
Mg 2.354e+00
Mg+2 2.354e+00 5.091e+01 0.372 1.707 1.335 -15.59
MgOH+ 6.271e-06 5.379e-06 -5.203 -5.269 -0.067 (0)
MgCO3 6.694e-08 6.694e-08 -7.174 -7.174 0.000 -17.09
Na 2.720e+00
Na+ 2.720e+00 8.671e+00 0.435 0.938 0.503 2.74
S(6) 8.986e-01
SO4-2 8.986e-01 2.260e-03 -0.046 -2.646 -2.599 31.36
HSO4- 2.669e-06 2.153e-06 -5.574 -5.667 -0.093 42.44
------------------------------Saturation indices-------------------------------
Phase SI log IAP log K(298 K, 1 atm)
Arcanite -1.51 -3.29 -1.78 K2SO4
Bischofite -2.44 2.01 4.46 MgCl2:6H2O
Bloedite -0.03 -2.38 -2.35 Na2Mg(SO4)2:4H2O
Brucite -5.74 -16.62 -10.88 Mg(OH)2
Burkeite -10.70 -11.47 -0.77 Na6CO3(SO4)2
Carnallite -1.98 2.35 4.33 KMgCl3:6H2O
CO2(g) -3.50 -4.96 -1.46 CO2 Pressure 0.0 atm, phi 1.000
Epsomite -0.23 -2.11 -1.88 MgSO4:7H2O
Glaserite -1.51 -5.31 -3.80 NaK3(SO4)2
H2O(g) -1.67 -0.17 1.50 H2O
Halite 0.02 1.59 1.57 NaCl
Hexahydrite -0.31 -1.94 -1.63 MgSO4:6H2O
Kainite -0.91 -1.11 -0.19 KMgClSO4:3H2O
Kalicinite -7.07 -17.13 -10.06 KHCO3
Kieserite -0.98 -1.11 -0.12 MgSO4:H2O
Leonhardite -0.72 -1.61 -0.89 MgSO4:4H2O
Leonite -0.91 -4.89 -3.98 K2Mg(SO4)2:4H2O
Magnesite -2.27 -10.10 -7.83 MgCO3
Mirabilite -1.23 -2.44 -1.21 Na2SO4:10H2O
Misenite -40.28 -51.08 -10.81 K8H6(SO4)7
Nahcolite -5.13 -15.87 -10.74 NaHCO3
Natron -10.78 -11.60 -0.82 Na2CO3:10H2O
Nesquehonite -5.44 -10.60 -5.17 MgCO3:3H2O
Pentahydrite -0.49 -1.77 -1.28 MgSO4:5H2O
Schoenite -0.90 -5.23 -4.33 K2Mg(SO4)2:6H2O
Sylvite -0.57 0.33 0.90 KCl
Thenardite -0.42 -0.77 -0.35 Na2SO4
Trona -14.75 -26.14 -11.38 Na3H(CO3)2:2H2O
---------------------------------------------
Beginning of inverse modeling 1 calculations.
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Using Cl1 standard precision optimization routine.
Solution 1: Black Sea water
Input Delta Input+Delta
pH 8.000e+00 + 0.000e+00 = 8.000e+00
Alkalinity 8.660e-04 + 0.000e+00 = 8.660e-04
Br 4.401e-04 + 0.000e+00 = 4.401e-04
C(4) 8.430e-04 + 0.000e+00 = 8.430e-04
Ca 5.841e-03 + 0.000e+00 = 5.841e-03
Cl 2.930e-01 + 8.006e-04 = 2.938e-01
K 4.960e-03 + 1.034e-04 = 5.063e-03
Mg 2.807e-02 + -7.018e-04 = 2.737e-02
Na 2.544e-01 + 0.000e+00 = 2.544e-01
S(6) 1.527e-02 + 7.603e-05 = 1.535e-02
Solution 2: Composition during halite precipitation
Input Delta Input+Delta
pH 5.000e+00 + 0.000e+00 = 5.000e+00
Alkalinity 7.746e-06 + -1.936e-07 = 7.552e-06
Br 3.785e-02 + 9.440e-04 = 3.880e-02
C(4) 7.187e-06 + 1.797e-07 = 7.367e-06
Ca 0.000e+00 + 0.000e+00 = 0.000e+00
Cl 6.004e+00 + 1.501e-01 = 6.154e+00
K 4.578e-01 + -1.144e-02 = 4.464e-01
Mg 2.354e+00 + 5.884e-02 = 2.413e+00
Na 2.720e+00 + -4.642e-02 = 2.674e+00
S(6) 8.986e-01 + -2.247e-02 = 8.761e-01
Solution fractions: Minimum Maximum
Solution 1 8.815e+01 8.780e+01 8.815e+01
Solution 2 1.000e+00 1.000e+00 1.000e+00
Phase mole transfers: Minimum Maximum
H2O(g) -4.837e+03 -4.817e+03 -4.817e+03 H2O
Calcite -3.817e-02 -3.912e-02 -3.706e-02 CaCO3
CO2(g) -3.614e-02 -3.895e-02 -3.319e-02 CO2
Gypsum -4.768e-01 -4.906e-01 -4.611e-01 CaSO4:2H2O
Halite -1.975e+01 -2.033e+01 -1.901e+01 NaCl
Redox mole transfers:
Sum of residuals (epsilons in documentation): 1.926e+02
Sum of delta/uncertainty limit: 9.823e+00
Maximum fractional error in element concentration: 2.500e-02
Model contains minimum number of phases.
===============================================================================
Summary of inverse modeling:
Number of models found: 1
Number of minimal models found: 1
Number of infeasible sets of phases saved: 11
Number of calls to cl1: 29
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End of simulation.
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Reading input data for simulation 2.
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End of Run after 0.03 Seconds.
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