Method for recycling esterification acid wastewater produced in ethyl cyanoacetate production
A technology of cyanoacetate and acidic wastewater, applied in chemical instruments and methods, multi-stage water treatment, water/sewage treatment, etc., can solve problems such as complex mixed salt composition, low market demand, secondary pollution, etc. Achieve the effects of good processing effect, filling the gap in the industry, and strong applicability
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Embodiment 1
[0028] A method for recycling acidic waste water from esterification in cyanoacetate production, comprising the steps of:
[0029] In 500g of acidic wastewater, slowly add 10g of solid sodium hydroxide to adjust the pH of the wastewater to 11, convert all the sulfuric acid and acid salts in the wastewater into sodium sulfate, and then deammoniate at 50°C for 4 hours to obtain 8g of ammonia water with a purity of 20%. Then add 2.5 g of activated carbon, decolorize at 80° C. for 10 minutes, and filter to obtain a light yellow transparent solution. Then the temperature was lowered to 0°C, sodium sulfate decahydrate crystals were precipitated and filtered to obtain 75 g of sodium sulfate decahydrate solid with a purity of 95.6%. The remaining filtrate was vacuum dehydrated and concentrated to a solid-to-liquid volume ratio of 1:1, then filtered to obtain 60 g of sodium chloride solid with a purity of 98%. The remaining cyanoacetate solution is 60g, with a purity of 9.5%. After d...
Embodiment 2
[0031] A method for recycling acidic waste water from esterification in cyanoacetate production, comprising the steps of:
[0032] Slowly add 30g of liquid sodium hydroxide (30% sodium hydroxide aqueous solution) to 500g of acidic wastewater to adjust the pH of the wastewater to 12, convert all the sulfuric acid and acid salts in the wastewater into sodium sulfate, and then deammoniate at 20°C After 6 hours, 8 g of aqueous ammonia was produced with a purity of 20%. Then add 0.05 g of activated carbon, decolorize at 20° C. for 60 minutes, and filter to obtain a light yellow transparent solution. Then the temperature was lowered to -5°C, sodium sulfate decahydrate crystallized and filtered to obtain 75 g of sodium sulfate decahydrate solid with a purity of 96%. The remaining filtrate was vacuum dehydrated and concentrated to a solid-to-liquid volume ratio of 1:0.8, then filtered to obtain 60 g of sodium chloride solid with a purity of 97%. The remaining cyanoacetate solution i...
Embodiment 3
[0034] A method for recycling acidic waste water from esterification in cyanoacetate production, comprising the steps of:
[0035] In 1000g of acidic wastewater, slowly add 20g of solid sodium hydroxide to adjust the pH of the wastewater to 11, convert all the sulfuric acid and acid salts in the wastewater into sodium sulfate, and then deammoniate at 80°C for 1 hour to obtain 16g of ammonia water with a purity of 20%. Then add 1 g of activated carbon, decolorize at 50° C. for 40 minutes, and filter to obtain a light yellow transparent solution. Then the temperature was lowered to 0°C, sodium sulfate decahydrate crystallized and filtered to obtain 150 g of sodium sulfate decahydrate as a solid with a purity of 96.5%. The remaining filtrate was vacuum dehydrated and concentrated to a solid-to-liquid volume ratio of 1:1.2, then filtered to obtain 120 g of sodium chloride solid with a purity of 97%. The remaining cyanoacetate solution was 120g, with a purity of 9.8%, and 614g of...
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