Exploration and Optimisation of High-Salt Wastewater Defluorination Process

废水 氟化物 石灰 化学 氯化物 降水 盐(化学) 无机化学 絮凝作用 污水处理 水处理 制浆造纸工业 环境工程 环境科学 材料科学 冶金 有机化学 气象学 物理化学 工程类 物理
作者
Dianhua Chen,Minyan Zhao,Xinyuan Tao,Jing Ma,Ankang Liu,Wang Mingxiu
出处
期刊:Water [MDPI AG]
卷期号:14 (23): 3974-3974 被引量:2
标识
DOI:10.3390/w14233974
摘要

The typical lime precipitation method is used to treat high-concentration fluorine-containing wastewater. In this way, the fluorine in the wastewater can be removed in the form of CaF2. Thus, this method has a good fluoride removal effect. In this study, calcium hydroxide was used to adjust the pH and achieve a significant fluoride removal effect at the same time. The removal rate of fluoride ion decreases gradually with the increase in the concentration of sulphate in the raw water. When the synergistic defluorination cannot meet the requirements of water production, adding a step of aluminium salt flocculation and precipitation can further reduce the fluoride ion concentration. According to the feasibility of the actual project, this study improves the lime coagulation precipitation defluorination process on this basis, and the combined process is synchronised. In the process optimisation, barium chloride is added to remove the influence of sulphate radicals in the water, and then, the pH is adjusted to 5–6. The fluoride ion concentration in high-salt wastewater can be reduced from 446.6 mg/L to 35.4 mg/L by defluorination after pre-treatment whose removal rate was 92.1%. The combined process synchronously removes fluorine and purifies the water quality to a certain extent. Indicators such as COD, total phosphorus, ammonia nitrogen, and chloride ions in wastewater are reduced, and the removal rate is increased by 35.5% under the same conditions. This scheme improves the wastewater treatment effect without increasing the existing treatment equipment. Thus, it achieves a better defluorination effect and reduces the dosage of chemicals as much as possible, which is conducive to lowering the discharge of sludge after treatment.
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