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MUTAGENICITY ASSESSMENT OF PRODUCED WATER DURING PHOTOELECTROCATALYTIC DEGRADATION

机译:光电解降解过程中生产水的致突变性评估

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Oilfield produced water was treated by photocatalysis, electro-oxidation, and photoelectrocatalysis, respectively. The chemical composition and toxicity of the raw effluent and treated products were assessed by chemical and mutagenicity analysis. The raw effluent exhibited mutagenic activity in both strains of Salmonella typhimurium. The lowest concentration of the dichlo-romethane extract capable of inducing a positive response in strains TA98 and TA100 were as low as 4 and 5 μg/plate, respectively. All three technologies could detoxify direct-acting mutagenic organic pollutants efficiently, although they could not completely eliminate mutagenicity in the water after 60 min of treatment. At equivalent doses, photoelectrocatalysis exhibited the greatest capability to reduce genotoxicity, whereas photocatalysis was the least effective and did not cause appreciable change in mutagenicity. The gas chromatography-mass spectrometry (GC-MS) analysis revealed that n-alkanes (259.4 ng/L) and phenolic compounds (2,501.4 ng/L) were the main organic constituents in the oilfield produced water. Thus, the results of both biological and chemical analysis indicate that photoelectocatalysis was the most effective technology for degradation of oilfield wastewater.
机译:油田采出水分别通过光催化,电氧化和光电催化处理。通过化学和致突变性分析评估了原始废水和处理过的产品的化学成分和毒性。在两种鼠伤寒沙门氏菌菌株中,原始废水均表现出诱变活性。能够在菌株TA98和TA100中引起阳性反应的二氯甲烷提取物的最低浓度分别低至4和5μg/板。尽管这三种技术在处理60分钟后仍不能完全消除水中的致突变性,但它们可以有效地对直接作用的致突变性有机污染物进行解毒。在相同剂量下,光催化作用显示出最大的降低遗传毒性的能力,而光催化作用最差,并且不会引起明显的诱变变化。气相色谱-质谱(GC-MS)分析表明,正构烷烃(259.4 ng / L)和酚类化合物(2,501.4 ng / L)是油田采出水中的主要有机成分。因此,生化分析结果均表明,光电催化是降解油田废水最有效的技术。

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