Method for preparing cuprous cyanide by using high-concentration cyanogen-containing wastewater
A technology for cuprous cyanide and cyanide wastewater, applied in the direction of metal cyanide, which can solve the problems of high treatment costs, pollution, and ineffective recycling of cyanide
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Embodiment 1
[0018] A method for preparing cuprous cyanide by utilizing high-concentration cyanide-containing wastewater,
[0019] The high-concentration cyanide-containing wastewater sample mainly contains CN-, [Cu(CN)3]2-, [Fe(CN)6]2-,
[0020] The preparation steps are as follows:
[0021] (1) Prepare Cu+ by reducing copper sulfate solution with sulfite, and the reaction formula is as follows:
[0022] 2Cu2+ + SO32- + 2OH- = 2Cu+ + 4SO2- + H2O
[0023] (2) Take a certain amount of cyanide-containing wastewater (determine its cyanide content and copper content, and calculate the required amount of copper sulfate) and add it to the Cu+ solution obtained by reducing the copper sulfate solution, and stir to carry out the CuCN synthesis reaction. The reaction time is After 1.5h, a small amount of Cu2 (Fe(CN)6) precipitated at the same time.
[0024] (3) Waste liquid is continuously added to the solution, and the pH value continues to rise. After the reaction, the pH value is alkaline, so ...
Embodiment 2
[0028] The high-concentration cyanide-containing wastewater sample mainly contains CN-, [Cu(CN)3]2-, [Fe(CN)6]2-,
[0029] The preparation steps are as follows:
[0030] (1) Prepare Cu+ by reducing copper sulfate solution with sulfite, and the reaction formula is as follows:
[0031] 2Cu2+ + SO32- + 2OH- = 2Cu+ + 4SO2- + H2O
[0032] (2) Take a certain amount of cyanide-containing wastewater (determine its cyanide content and copper content, and calculate the required amount of copper sulfate) and add it to the Cu+ solution obtained by reducing the copper sulfate solution, and stir to carry out the CuCN synthesis reaction. The reaction time is After 0.5h, a small amount of Cu2 (Fe(CN)6) precipitated at the same time.
[0033] (3) Waste liquid is continuously added to the solution, and the pH value continues to rise. After the reaction, the pH value is alkaline, so the pH value of the solution will continue to rise with the addition of waste liquid. After the reaction, the pH...
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