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过硫酸盐氧化泡沫喷射在生物修复预处理柴油污染土壤中的应用。

Application of persulfate-oxidation foam spraying as a bioremediation pretreatment for diesel oil-contaminated soil.

机构信息

Department of Environmental Engineering, Kunsan National University, Kunsan 54150, South Korea.

Department of Environmental Engineering, Kunsan National University, Kunsan 54150, South Korea.

出版信息

Chemosphere. 2018 Sep;207:565-572. doi: 10.1016/j.chemosphere.2018.05.081. Epub 2018 May 15.

Abstract

This study investigated a persulfate-bioaugmentation serial foam spraying technique to remove total petroleum hydrocarbons (TPHs) present in diesel-contaminated unsaturated soil. Feeding of remedial agents by foam spraying increased the infiltration/unsaturated hydraulic conductivity of reagents into the unsaturated soil. Persulfate mixed with a surfactant solution infiltrated the soil faster than peroxide, resulting in relatively even soil moisture content. Persulfate had a higher soil infiltration tendency, which would facilitate its distribution over a wide soil area, thereby enhancing subsequent biodegradation efficiency. Nearly 80% of soil-TPHs were degraded by combined persulfate-bioaugmentation foam spraying, while bioaugmentation foam spraying alone removed 52%. TPH fraction analysis revealed that the removal rate for the biodegradation recalcitrant fraction (C to C) in deeper soil regions was higher for persulfate-bioaugmentation serial foam application than for peroxide-bioaugmentation foam application. Persulfate-foam spraying may be superior to peroxide for TPH removal even at a low concentration (50 mN) because persulfate-foam is more permeable, persistent, and does not change soil pH in the subsurface. Although the number of soil microbes declines by oxidation pretreatment, bioaugmentation-foam alters the microbial population exponentially.

摘要

本研究采用过硫酸盐-生物增强连续泡沫喷射技术去除受柴油污染的不饱和土壤中的总石油烃(TPH)。通过泡沫喷射给补救剂供料增加了试剂在不饱和土壤中的渗透/不饱和水力传导率。过硫酸盐与表面活性剂溶液混合后比过氧化物更快地渗透到土壤中,从而使土壤湿度相对均匀。过硫酸盐具有更高的土壤渗透倾向,这将有助于其在更广泛的土壤区域内分布,从而提高后续的生物降解效率。过硫酸盐-生物增强连续泡沫喷射联合处理可去除近 80%的土壤 TPH,而单独的生物增强泡沫喷射仅去除 52%。TPH 馏分分析表明,在深层土壤区域,过硫酸盐-生物增强连续泡沫应用比过氧化物-生物增强泡沫应用对生物降解顽固馏分(C 至 C)的去除率更高。即使在低浓度(50 mN)下,过硫酸盐泡沫喷射也可能优于过氧化物用于 TPH 去除,因为过硫酸盐泡沫更具渗透性、更持久,并且不会改变地下土壤的 pH 值。虽然氧化预处理会降低土壤微生物的数量,但生物增强泡沫会使微生物种群呈指数级增长。

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