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利用生物表面活性剂泡沫/纳米颗粒混合物处理土壤中的油污污染物。

Utilization of a biosurfactant foam/nanoparticle mixture for treatment of oil pollutants in soil.

机构信息

Department of Building, Civil and Environmental Engineering, Concordia University, Montreal, H3G 1M8, Canada.

出版信息

Environ Sci Pollut Res Int. 2022 Dec;29(59):88618-88629. doi: 10.1007/s11356-022-21938-9. Epub 2022 Jul 14.

Abstract

Oil contamination has become a primary environmental concern due to increased exploration, production, and use. When oil enters the soil, it may attach or adsorb to soil particles and stay in the soil for an extended period, contaminating the soil and surrounding areas. Nanoparticles have been widely used for the treatment of organic pollutants in the soil. Surfactant foam has effectively been employed to remediate various soil contaminants or recover oil compounds. In this research, a mixture of biosurfactant foam/nanoparticle was utilized for remediation of oil-contaminated soil. The results demonstrated that the biosurfactant/nanoparticle mixture and nitrogen gas formed high-quality and stable foams. The foam stability depended on the foam quality, biosurfactant concentration, and nanoparticle dosage. The pressure gradient change in the soil column relied on the flowrate (N gas + surfactant/nanoparticle mixture), foam quality, and biosurfactant concentration. The optimal conditions to obtain good quality and stable foams and high oil removal efficiency involved 1 vol% rhamnolipid, 1 wt% nanoparticle, and 1 mL/min flowrate. Biosurfactant foam/nanoparticle mixture was effectively used to remediate oil-contaminated soil, whereas the highest treatment efficiency was 67%, 59%, and 52% for rhamnolipid biosurfactant foam/nanoparticle, rhamnolipid biosurfactant/nanoparticle, and only rhamnolipid biosurfactant, respectively. The oil removal productivity decreased with the increase of flowrate due to the shorter contact time between the foam mixture and oil droplets. The breakthrough curves of oil pollutants in the soil column also suggested that the foam mixture's maximum oil treatment efficiency was higher than biosurfactant/nanoparticle suspension and only biosurfactant.

摘要

由于勘探、生产和使用的增加,石油污染已成为主要的环境问题。当石油进入土壤时,它可能会附着或吸附在土壤颗粒上,并在土壤中停留很长时间,从而污染土壤和周围地区。纳米颗粒已广泛用于处理土壤中的有机污染物。表面活性剂泡沫已被有效地用于修复各种土壤污染物或回收油类化合物。在这项研究中,使用生物表面活性剂泡沫/纳米颗粒混合物来修复受油污染的土壤。结果表明,生物表面活性剂/纳米颗粒混合物和氮气形成了高质量和稳定的泡沫。泡沫稳定性取决于泡沫质量、生物表面活性剂浓度和纳米颗粒用量。土壤柱中的压力梯度变化取决于流速(N 气+表面活性剂/纳米颗粒混合物)、泡沫质量和生物表面活性剂浓度。获得高质量和稳定泡沫以及高除油效率的最佳条件涉及 1 vol%鼠李糖脂、1 wt%纳米颗粒和 1 mL/min 的流速。生物表面活性剂泡沫/纳米颗粒混合物有效地用于修复受油污染的土壤,而鼠李糖脂生物表面活性剂泡沫/纳米颗粒、鼠李糖脂生物表面活性剂/纳米颗粒和仅鼠李糖脂生物表面活性剂的最高处理效率分别为 67%、59%和 52%。由于泡沫混合物与油滴之间的接触时间较短,因此油去除生产率随流速的增加而降低。土壤柱中油污染物的穿透曲线也表明,泡沫混合物的最大油处理效率高于生物表面活性剂/纳米颗粒悬浮液和仅生物表面活性剂。

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