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Treatment of drilling wastewater from a sulfonated mud system

机译:磺化泥浆系统钻井废水的处理

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Treatment of drilling wastewater from a sulfonated drilling mud system in the Shengli Oilfield, East China, was studied. The wastewater was deeply treated by a chemical coagulation-centrifugal separation-ozone catalytic oxidation combined process. The factors (i.e. pH value, chemical dosage, reaction time, etc.) influencing the treatment effect were investigated, and pH = 7 was determined as optimal for the coagulation; polymeric aluminum chloride (PAC) was selected as the optimal coagulant with a dosage of 18 g/L; cationic Polyacrylamide (CPAM) with molecular weight of 8 million was selected as the optimal coagulant aid with an optimum dosage of 8 mg/L; and the optimal condition of catalytic ozonation was found to be a pH of 12 and an oxidation time of 40 min. The results showed that the combined treatment process was effective. The oil content and suspended solids content of the effluent reached the first class discharge standard according to China’s standard GB 8978-1996 (Integrated Wastewater Discharge Standard) and the chemical oxygen demand (COD) decreased to 195 mg/L from 2.34×10~(4) mg/L after coagulation process and ozone oxidation at pH = 12 for 40 min.
机译:研究了华东胜利油田磺化钻井泥浆系统钻井废水的处理方法。采用化学混凝-离心分离-臭氧催化氧化联合工艺对废水进行深度处理。研究了影响处理效果的因素(即pH值,化学剂量,反应时间等),并确定pH = 7为最适合混凝的条件;选择聚合氯化铝(PAC)作为最佳混凝剂,剂量为18 g / L;选择分子量为800万的阳离子聚丙烯酰胺(CPAM)作为最佳的助凝剂,最佳剂量为8 mg / L;催化臭氧化的最佳条件为pH为12,氧化时间为40 min。结果表明,联合处理是有效的。废水的含油量和悬浮物含量达到了中国标准GB 8978-1996(废水综合排放标准)的一级排放标准,化学需氧量(COD)从2.34×10〜(降低至195 mg / L)。 4)凝结过程和pH = 12的臭氧氧化40分钟后的mg / L。

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