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Persulfate Oxidation Activated by Peroxide with and without Iron for Remediation of Soil Contaminated by Heavy Fuel Oil:Laboratory and Pilot-Scale Demonstrations

机译:用过氧化物加或不加铁活化过硫酸盐氧化,以修复被重质燃油污染的土壤:实验室和中试示范

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The main objective of this study was to evaluate and optimize the chemical oxidation process to be implemented at a power plant in Penghu County,Taiwan through laboratory and pilot-scale experiments were used to evaluate and optimize the chemical oxidation process at a power plant in Penghu County,Taiwan.Prior to pilot test,bench-scale tests were performed in the laboratory and analytical results indicated that persulfate oxidation achieved 90% removal of fuel oil while Fenton-like oxidation achieved only 41% removal of fuel oil within three days of testing period.Persulfate oxidation coupled with Fenton-like reaction was then used in a pilot test to treat the contaminated soil onsite.The Fenton-like reaction served the first stage of oxidation which formed hydroxyl radicals to break down fuel oil.The excess heat and ferrous ions resulted from such oxidation process would then activate persulfate oxidation which,in turn,produced sulfate radicals for continual brake-down of fuel oil.Result of soil pilot test indicated that the concentration of fuel oil was reduced to below the regulated standard in less than a week.Because the treated soil was originated from the local basaltic basement rock,it is rich in heavy metals,by nature.As such,the heavy metals as nickel and chromium were detected in leachate collected from the treatment cells,at concentrations exceeding the Taiwan Contaminant Control Standard and would have posed secondary contamination to the ambient environment if in-situ soil persulfate oxidation was implemented.Therefore,the result of this case study provides an alert that implementation of in-situ persulfate oxidation for soil and groundwater treatment could pose a threat of secondary contamination of heavy metals to the ambient environment.
机译:这项研究的主要目的是通过实验室和中试规模的实验来评估和优化台湾澎湖县某电厂要实施的化学氧化工艺,以评估和优化澎湖某电厂中的化学氧化工艺。台湾县。在进行中试之前,先在实验室进行了基准测试,分析结果表明,过硫酸盐氧化可在三天的测试中去除90%的燃油,而Fenton样氧化仅可去除41%的燃油。然后将过硫酸盐氧化与Fenton样反应结合在一起进行中试,以现场处理受污染的土壤.Fenton样反应在氧化的第一阶段就形成了羟基自由基,从而分解了燃油,多余的热量和亚铁由这种氧化过程产生的离子然后将激活过硫酸盐氧化,继而产生硫酸根自由基以持续制动燃油。大量的土壤试验表明,燃料油的浓度在不到一周的时间内就降低到了规定的标准以下。由于处理过的土壤是从当地的玄武岩基岩中产生的,因此自然含有丰富的重金属。如果从处理池收集的渗滤液中检测到重金属,如镍和铬,其浓度超过台湾污染物控制标准,如果实施土壤过硫酸盐原位氧化,将对周围环境造成二次污染。因此,结果本案例研究提供了一个警告,即在土壤和地下水处理中实施过硫酸盐氧化可能会对周围环境造成二次重金属污染的威胁。

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