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Treatment of Wastewaters from Phosphate Fertilizer Industry

机译:从磷肥处理的废水行业

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摘要

The phosphate (P) fertilizer industry generates a highly hazardous and acidic wastewater. The present study reports the evaluation of an integrated precipitation and Enhanced Biological Phosphorus Removal (EBPR) process for the treatment of fertilizer plant wastewater and effluent detoxification, assessed by microtoxicity and seed germination tests. Effluent samples were collected from a local P fertilizer industry and were characterized by their high fluoride and P content. First, the samples were pre-treated by precipitation of P and fluoride ions using hydrated lime. The resulting low-fluoride and phosphorus effluent was then treated with the EBPR process to monitor the simultaneous removal of carbon, nitrogen, and phosphorus. Phosphorus removal included a two-stage anaerobic/aerobic system operating under continuous flow. Pre-treated wastewater was added to the activated sludge and operated for 160 days in the reactor. The operating strategy included increasing the organic loading rate from 0.3 to 1.2 g chemical oxygen demand (COD)/L day. The stable and high removal rates of COD, NH_4~+-N, and PO_4~(3-)-P were then recorded. The mean concentrations of the influent were approximately 3600 mg COD/L, 60 mg N/L and 14 mg P/L, which corresponded to removal efficiencies of approximately 98%, 86%, and 92%, respectively. The microtoxicity of the treated wastewater was then monitored by LUMIStox and its phytotoxicity was investigated on cress, tomato, wheat, maize, ryegrass, and alfalfa seed germination. LUMIStox tests showed that treatment allowed a significant toxicity removal. Moreover, the untreated wastewater inhibited the species germination even when diluted 10 times, whereas a positive effect of treated wastewater was noticed.
机译:磷(P)肥料行业生成一个高度危险和酸性废水。本研究报告的评价综合降水和增强的生物除磷(EBPR)的过程化肥厂废水和待遇废水解毒,评估microtoxicity和种子发芽试验。废水样本收集从本地P化肥行业的特征氟化物和P含量高。样品预处理的降水的P用熟石灰和氟离子。low-fluoride和磷废水当时对待EBPR过程监控吗同时去除碳、氮和磷。两级厌氧/好氧系统操作在连续流动。添加到活性污泥和运营160天的反应堆。包括增加有机加载速率0.3到1.2 g化学需氧量(COD) / L的一天。稳定和COD的去除率高,NH_4 ~ + - n, PO_4 ~ (3 -) - p被记录下来。平均浓度的影响大约3600毫克鳕鱼/ L, 60毫克N / L和14毫克P / L,这与去除效率分别约为98%、86%、和92%。的microtoxicity处理废水然后由LUMIStox及其危害植物的毒性监测研究水芹,番茄,小麦、玉米、黑麦草、紫花苜蓿种子萌发。测试表明,允许一个重要的治疗毒性去除。污水抑制甚至物种发芽当稀释10倍,而积极的影响处理废水的注意。

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