Research on Advanced Treatment Technology of Fluorine Containing Wastewater from Graphite Production

Yanli Liu, Iyang Qiao, Xiang Ma, Zhilong Zhao, Fengbiao Liu, Shifu Shen
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Abstract

With the gradual improvement of environmental emission requirements in China, the graphite industry is facing environmental pressure from advanced treatment. This article first conducted a study on the current status of advanced treatment technology for fluorinated wastewater. Subsequently, a single defluorination agent experiment was conducted, and it was found that compared to several agents used in the experiment, such as PAC, PAFS, and CaCl2, PAC had the best defluorination effect. The optimization of PAC conditions showed that its optimal reaction pH was 7, and equilibrium could be achieved after 3 minutes of reaction. The study also conducted orthogonal experiments with mixed salts, and the best conditions for the combination of fluoride removal agents were found to be PAC adding 400 mg/L, CaCl2 adding 400 mg/L, PAFS adding 200 mg/L, which can remove fluoride to 0.92 mg/L, below 1 mg/L, meeting the Class III water standard in the " Environmental quality standards for surface water ".The SEM image of the sludge generated by the reaction between the composite fluoride removal agent and fluoride containing wastewater shows a larger particle size of up to 50 μm which is beneficial for the separation and removal of sludge. The generated sediment sludge is mainly composed of Al, Fe, Ca, O, and Si according to EDS results, and belongs to general industrial solid waste.
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石墨生产含氟废水先进处理技术研究
随着我国环保排放要求的逐步提高,石墨行业面临着先进处理带来的环保压力。本文首先对含氟废水深度处理技术的现状进行了研究。随后,进行了单一除氟剂实验,发现与实验中使用的 PAC、PAFS、CaCl2 等几种除氟剂相比,PAC 的除氟效果最好。对 PAC 条件的优化表明,其最佳反应 pH 值为 7,反应 3 分钟后即可达到平衡。研究还进行了混合盐的正交实验,发现除氟剂组合的最佳条件为 PAC 加入量为 400 mg/L,CaCl2 加入量为 400 mg/L,PAFS 加入量为 200 mg/L,可将氟化物去除到 0.复合除氟剂与含氟废水反应生成的沉淀污泥的扫描电镜图像显示,其粒径较大,可达 50 μm,有利于污泥的分离和去除。根据 EDS 结果,生成的沉淀污泥主要由 Al、Fe、Ca、O 和 Si 组成,属于一般工业固体废物。
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