Method for measuring concentration of silicate in high-concentration hydrogen sulfide hydrothermal solution
A hydrogen sulfide, high-concentration technology, applied in the field of nutrient salt analysis, can solve problems such as complex operation, and achieve the effect of simple operation, high accuracy and good stability
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Embodiment 1
[0019] (1) Take some hydrothermal water samples, and use a sulfur ion selective electrode to measure the concentration of sulfur ions in the high-concentration hydrothermal water samples to be 150 μM;
[0020] (2) Get silicate solution, add sodium sulfide solution, prepare silicate-sulfide ion standard solution, make the concentration of sulfur ion in the standard solution substantially consistent with water sample;
[0021] (3) Measure two parts of 90mL silicate-sulfide ion standard solution of the same concentration, one part is added to 100mL beaker A, and one part is added to 100mL volumetric flask B;
[0022] (4) In beaker A, add dilute sulfuric acid to adjust the pH to 5.00, record the amount V of dilute sulfuric acid used 1 mL, according to V 1 mL to adjust the pH of the solution in the volumetric flask to 5.00;
[0023] (5) Add 1.0mL 0.5mol / L zinc sulfate solution into 100mL volumetric flask B, the solution becomes turbid, use deionized water to make up to 100mL, sha...
Embodiment 2
[0028] (1) The laboratory prepares simulated high-concentration hydrogen sulfide hydrothermal water samples, in which the concentration of sulfide ions is 300 μM and the concentration of silicates is 5.00 μM;
[0029] (2) Get silicate solution, add sodium sulfide solution, prepare silicate-sulfide ion standard solution, make the concentration of sulfur ion in the standard solution substantially consistent with water sample;
[0030] (3) Measure two parts of 90mL silicate-sulfide ion standard solution of the same concentration, one part is added to 100mL beaker A, and one part is added to 100mL volumetric flask B;
[0031] (4) In beaker A, add dilute sulfuric acid to adjust the pH to 6.00, and record the amount V of dilute sulfuric acid used 1 mL, according to V 1 mL to adjust the pH of the solution in the volumetric flask to 6.00;
[0032] (5) Add 3.0mL of 1.0mol / L zinc sulfate solution into 100mL volumetric flask B, the solution becomes turbid, use deionized water to make u...
Embodiment 3
[0037] (1) The laboratory prepares simulated high-concentration hydrogen sulfide hydrothermal water samples, in which the concentration of sulfide ions is 700 μM and the concentration of silicates is 20.00 μM;
[0038] (2) Get silicate solution, add sodium sulfide solution, prepare silicate-sulfide ion standard solution, make the concentration of sulfur ion in the standard solution substantially consistent with water sample;
[0039] (3) Measure two parts of 90mL silicate-sulfide ion standard solution of the same concentration, one part is added to 100mL beaker A, and one part is added to 100mL volumetric flask B;
[0040] (4) In beaker A, add dilute sulfuric acid to adjust the pH to 5.13, record the amount V of dilute sulfuric acid used 1 mL, according to V 1 mL to adjust the pH of the solution in the volumetric flask to 5.13;
[0041] (5) Add 5mL of 1.0mol / L zinc sulfate solution into 100mL volumetric flask B, the solution becomes cloudy, dilute to 100mL with deionized wat...
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