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Effect of biosurfactants on crude oil desorption and mobilization in a soil system

机译:生物表面活性剂对土壤系统中原油解吸和迁移的影响

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Microbially produced biosurfactants were studied to enhance crude oil desorption and mobilization in model soil column systems. The ability of biosurfactants from Rhodococcus ruber to remove the oil from the soil core was 1.4-2.3 times greater than that of a synthetic surfactant of suitable properties, Tween 60. Biosurfactant-enhanced oil mobilization was temperature-related, and it was slower at 15℃ than at 22-28℃. Mathematical modelling using a one-dimensional filtration model was applied to simulate the process of oil penetration through a soil column in the presence of (bio)surfactants. A strong positive correlation (R~2=0.99) was found between surfactant penetration through oil-contaminated soil and oil removal activity. Biosurfactant was less adsorbed to soil components than synthetic surfactant, thus rapidly penetrating through the soil column and effectively removing 65-82% of crude oil. Chemical analysis showed that crude oil removed by biosurfactant contained a lower proportion of high-molecular-weight paraffins and asphaltenes, the most nonbiodegradable compounds, compared to initial oil composition. This result suggests that oil mobilized by biosurfactants could be easily biodegraded by soil bacteria. Rhodococcus biosurfactants can be used for in situ remediation of oil-contaminated soils.
机译:对微生物产生的生物表面活性剂进行了研究,以提高模型土壤柱系统中原油的解吸和动员能力。来自红球菌的生物表面活性剂从土壤核心中去除油的能力比具有适当性能的合成表面活性剂吐温60高1.4-2.3倍。生物表面活性剂增强的油动员与温度有关,在15时较慢。 ℃比在22-28℃下。应用一维过滤模型进行数学建模,以模拟油在(生物)表面活性剂存在下穿过土壤柱的渗透过程。在表面活性剂穿透被油污染的土壤和除油活性之间发现了很强的正相关性(R〜2 = 0.99)。与合成表面活性剂相比,生物表面活性剂对土壤成分的吸附较少,因此可快速渗透穿过土壤柱,并有效去除65-82%的原油。化学分析表明,与初始油组成相比,被生物表面活性剂去除的原油所含的高分子量石蜡和沥青质(最不可生物降解的化合物)的比例较低。该结果表明,由生物表面活性剂带动的油很容易被土壤细菌生物降解。红球菌生物表面活性剂可用于油污染土壤的原位修复。

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