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简单的表面泡沫应用增强了寒冷条件下受污染土壤的生物修复。

Simple surface foam application enhances bioremediation of oil-contaminated soil in cold conditions.

机构信息

Department of Environmental Engineering, Kunsan National University, Kunsan 573-701, South Korea.

Department of Life Science, Kyonggi University, Suwon 443-760, South Korea.

出版信息

J Hazard Mater. 2015 Apr 9;286:164-70. doi: 10.1016/j.jhazmat.2014.12.058. Epub 2015 Jan 2.

Abstract

Landfarming of oil-contaminated soil is ineffective at low temperatures, because the number and activity of micro-organisms declines. This study presents a simple and versatile technique for bioremediation of diesel-contaminated soil, which involves spraying foam on the soil surface without additional works such as tilling, or supply of water and air. Surfactant foam containing psychrophilic oil-degrading microbes and nutrients was sprayed twice daily over diesel-contaminated soil at 6 °C. Removal efficiencies in total petroleum hydrocarbon (TPH) at 30 days were 46.3% for landfarming and 73.7% for foam-spraying. The first-order kinetic biodegradation rates for landfarming and foam-spraying were calculated as 0.019 d(-1) and 0.044 d(-1), respectively. Foam acted as an insulating medium, keeping the soil 2 °C warmer than ambient air. Sprayed foam was slowly converted to aqueous solution within 10-12h and infiltrated the soil, providing microbes, nutrients, water, and air for bioaugmentation. Furthermore, surfactant present in the aqueous solution accelerated the dissolution of oil from the soil, resulting in readily biodegradable aqueous form. Significant reductions in hydrocarbon concentration were simultaneously observed in both semi-volatile and non-volatile fractions. As the initial soil TPH concentration increased, the TPH removal rate of the foam-spraying method also increased.

摘要

土壤的陆地耕作在低温下是无效的,因为微生物的数量和活性会下降。本研究提出了一种简单而通用的柴油污染土壤生物修复技术,涉及在土壤表面喷洒泡沫,而无需进行耕作或补充水和空气等额外工作。含有嗜冷石油降解微生物和营养物的表面活性剂泡沫每天在 6°C 下两次喷洒在柴油污染的土壤上。在 30 天时,陆地耕作和泡沫喷洒的总石油烃(TPH)去除效率分别为 46.3%和 73.7%。陆地耕作和泡沫喷洒的一阶生物降解速率分别计算为 0.019 d(-1)和 0.044 d(-1)。泡沫充当绝缘介质,使土壤比环境空气温暖 2°C。喷洒的泡沫在 10-12 小时内缓慢转化为水溶液并渗透到土壤中,为生物增强提供微生物、营养物、水和空气。此外,水溶液中存在的表面活性剂加速了土壤中石油的溶解,形成了可生物降解的水溶液形式。在半挥发性和非挥发性馏分中同时观察到烃浓度的显著降低。随着初始土壤 TPH 浓度的增加,泡沫喷洒法的 TPH 去除率也随之增加。

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