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The flocculation mechanism and treatment of oily wastewater by flocculation

机译:絮凝絮凝机制及油性废水处理

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In the present study, the performance of compound flocculants composed of different concentrations of polyaluminum chloride (PAC) and cationic polyacrylamide (CPAM), the influencing mechanism of the flocculation process and the effects of temperature, settling time, and speed and time of stirring were investigated. The results show that the poor water quality with high concentrations of oil, suspended solids (SS) and polymer greatly increases the oily wastewater emulsion stability and the difficulty of the flocculation treatment process. The compound flocculant in oily wastewater treatment can achieve best results at optimum conditions of temperature 45 degrees C, settling time 60 min, and two stirring stages, 250 r.min(-1) for 3 min followed by 100 r.min(-1) for 7 min. At the PAC dosage of 80 mg.L-1 and the CPAM dosage of 0.8 mg.L-1, the turbidity of oily wastewater is reduced from 153.8 NTU to 11.2 NTU, and the turbidity removal rate reaches 92.69%. Through further measurements, oil content and SS content are less than 10 mg.L-1, which meets the requirement of the Daqing oilfield re-injection standard.
机译:在本研究中,由不同浓度的聚铝氯化物(PAC)和阳离子聚丙烯酰胺(CPAM)组成的化合物絮凝剂的性能,絮凝过程的影响机制和温度,沉降时间和搅拌速度和速度的影响调查。结果表明,具有高浓度油的水质差,悬浮固体(SS)和聚合物大大增加了油性废水乳液稳定性和絮凝处理过程的难度。油性废水处理中的化合物絮凝剂可以在温度45℃,沉降时间60分钟和两个搅拌阶段的最佳条件下获得最佳结果,250 r.min(-1)3分,然后达​​到100 r.min(-1 )7分钟。在80mg.L-1的PAC剂量和0.8mg.L-1的CPAM剂量下,油性废水的浊度从153.8 NTU降低至11.2 NTU,浊度去除率达到92.69%。通过进一步的测量,油含量和SS含量小于10 mg.L-1,其符合大庆油田重新注入标准的要求。

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