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Feasibility of oxidation-biodegradation serial foam spraying for total petroleum hydrocarbon removal without soil disturbance

机译:氧化-生物降解系列泡沫喷雾在不影响土壤的情况下去除石油中的全部石油烃的可行性

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摘要

This study evaluated surface foam spraying technology, which avoids disturbing the soil, to deliver chemical oxidant and oil-degrading microbes to unsaturated soil for 30 days. Hydrogen peroxide foam was sprayed once onto diesel contaminated soil for oxidation of soil total petroleum hydrocarbon (TPH). Periodic bioaugmentation foam was sprayed every three days for biodegradation of soil TPH. Foam spraying employing oxidation-bioaugmentation serial application significantly reduced soil TPH concentrations to 550 mg·kg−1from an initial 7470 mg·kg−1. This study selected an optimal hydrogen peroxide concentration of 5%, which is capable of treating diesel oil contaminated soil following biodegradation without supplementary iron. Application of hydrogen peroxide by foam spraying increased the infiltration of hydrogen peroxide into the unsaturated soil. Surface foam spraying provided the aqueous phase of remediation agents evenly to the unsaturated soil and resulted in relatively similar soil water content throughout the soil. The easy and even infiltration of remediation reagents increased their contact with contaminants, resulting in enhanced oxidation and biodegradation. Fractional analysis of TPH showed C18-C22 present in diesel as biodegradation recalcitrant hydrocarbons. Recalcitrant hydrocarbons were reduced by 92% using oxidation-biodegradation serial foam, while biodegradation alone only reduced the recalcitrant fraction by 25%.
机译:这项研究评估了表面泡沫喷涂技术,该技术可避免扰动土壤,将化学氧化剂和降解油脂的微生物输送至非饱和土壤30天。将过氧化氢泡沫一次喷洒到柴油污染的土壤上,以氧化土壤总石油烃(TPH)。每三天喷洒定期的生物增强泡沫,以对土壤TPH进行生物降解。采用氧化-生物强化系列应用的泡沫喷涂将土壤TPH浓度从最初的7470 mg·kg-1显着降低至550 mg·kg-1。这项研究选择了5%的最佳过氧化氢浓度,该浓度能够在生物降解后无需添加铁的情况下处理受柴油污染的土壤。通过泡沫喷涂施加过氧化氢可增加过氧化氢向不饱和土壤中的渗透。表面泡沫喷洒可将补救剂的水相均匀地提供给不饱和土壤,并导致整个土壤的土壤含水量相对相似。修复剂容易甚至渗透,增加了它们与污染物的接触,从而增强了氧化和生物降解。 TPH的分数分析显示,柴油中存在C18-C22作为生物降解性顽固烃。使用氧化-生物降解系列泡沫可将顽固烃减少92%,而仅生物降解仅可将顽固分数降低25%。

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