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Enhanced bioremediation of oil contaminated soil by graded modified Fenton oxidation

机译:分级改良Fenton氧化增强石油污染土壤的生物修复。

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Graded modified Fenton's (MF) oxidation is a strategy in which H_2O_2 is added intermittently to prevent a sharp temperature increase and undesired soil sterilization at soil circumneutral pH versus adding the same amount of H_2O_2 continuously. The primary objective of the present study was to investigate whether a mild MF pre-oxidation such as a stepwise addition of H_2O_2 can prevent sterilization and achieve a maximum degradation of tank oil in soil. Optimization experiments of graded MF oxidation were conducted using citric acid, oxalic acid and SOLV-X as iron chelators under different frequencies of H_2O_2 addition. The results indicated that the activity order of iron chelates decreased as: citric acid (51%) > SOLV-X (44%) > oxalic acid (9%), and citric acid was found to be an optimized iron chelating agent of graded MF oxidation. Three-time addition of H_2O_2 was found to be favorable and economical due to decreasing total petroleum hydrocarbon removal from three time addition (51%) to five time addition (59%). Biological experiments were conducted after graded MF oxidation of tank oil completed under optimum conditions mentioned above. After graded oxidation, substantially higher increase (31%) in microbial activity was observed with excessive H_2O_2 (1470 mmol/L, the mol ratio of H_2O_2:Fe~(2+) was 210:1) than that of non-oxidized soil. Removal efficiency of tank oil was up to 93% after four weeks. Especially, the oil fraction (C_(10)-C_(40)) became more biodagradable after graded MF oxidation than its absence. Therefore, graded MF oxidation is a mild pretreatment to achieve an effective bioremediation of oil contaminated soil.
机译:与连续添加相同量的H_2O_2相比,分级改性的Fenton(MF)氧化是一种策略,在该策略中,间歇添加H_2O_2可以防止温度急剧升高和在土壤环境pH值下进行不希望的土壤灭菌。本研究的主要目的是研究温和的MF预氧化(例如逐步加入H_2O_2)是否可以防止灭菌并实现土壤中油的最大降解。在不同的H_2O_2添加频率下,以柠檬酸,草酸和SOLV-X为铁螯合剂,进行了分级MF氧化的优化实验。结果表明,铁螯合物的活性顺序依次为:柠檬酸(51%)> SOLV-X(44%)>草酸(9%),柠檬酸是分级MF的最佳铁螯合剂。氧化。由于将总石油烃去除量从三次添加(51%)减少到五次添加(59%),发现三次添加H_2O_2是有利且经济的。在上述最佳条件下完成罐车油的MF渐变氧化后,进行了生物学实验。分级氧化后,与未氧化土壤相比,过量的H_2O_2(1470 mmol / L,H_2O_2:Fe〜(2+)的摩尔比为210:1)观察到微生物活性显着提高(31%)。四周后,油罐的去除效率高达93%。特别是,分级MF氧化后的油馏分(C_(10)-C_(40))变得比不存在时更具生物可降解性。因此,分级MF氧化是温和的预处理,可以实现对油污土壤的有效生物修复。

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