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使用阴离子和非离子复合生物表面活性剂修复石油污染土壤。

Remediation of oil-polluted soil using anionic and non-ionic composite biosurfactants.

作者信息

Zhao Yanxin, Sun Yuhuan, Zuo Fang, Sun Haihan, Kuang Shaoping, Zhang Shuwu, Wang Fayuan

机构信息

College of Environment and Safety Engineering, Qingdao University of Science and Technology, Qingdao, People's Republic of China.

出版信息

Environ Technol. 2025 Jan;46(4):636-650. doi: 10.1080/09593330.2024.2366448. Epub 2024 Jun 14.

Abstract

Petroleum hydrocarbons as pervasive pollutants pose a significant threat to soil ecology and human health. Surfactant washing as an established technique can effectively remediate soils contaminated by hydrocarbons. Biosurfactants, which combine the properties of surfactants and environmental compatibility, have attracted increasing interest. However, due to the high production cost of biosurfactants, their practical application is restricted. This study addressed these limitations by selecting two biosurfactants, β-cyclodextrin (C1) and sodium carboxymethyl cellulose (C2), and developed a promising cleaning agent formula through compounding and the addition of suitable additives. When the volume ratio of C1 to C2 was 8:2 and an 8 g/L mixture of sodium humate and sodium carbonate electrolyte was added, the surfactant system's surface tension reached a minimum, yielding optimal oil removal. The formation and synergistic behaviour of mixed micelles of surfactants were explained using ideal solution theory and the Rubingh model. By optimising the oil washing process parameters - normal temperature of 25 °C, pH 11, washing time of 2 h, solid-liquid ratio of 1:5, and oscillation frequency of 200 r/min - the oil removal rate achieved 76%. This cleaning agent, characterised by low production cost, straightforward application, environmental compatibility, and rapid, significant cleaning effect, shows potential for field-scale purification of petroleum-contaminated soil.

摘要

石油烃作为普遍存在的污染物,对土壤生态和人类健康构成重大威胁。表面活性剂冲洗作为一种成熟技术,可有效修复受烃类污染的土壤。兼具表面活性剂特性与环境相容性的生物表面活性剂已引起越来越多的关注。然而,由于生物表面活性剂的生产成本高昂,其实际应用受到限制。本研究通过选择两种生物表面活性剂β-环糊精(C1)和羧甲基纤维素钠(C2),并通过复配和添加合适的添加剂,开发出一种有前景的清洗剂配方。当C1与C2的体积比为8:2并添加8 g/L的腐殖酸钠和碳酸钠电解质混合物时,表面活性剂体系的表面张力达到最小值,实现了最佳除油效果。利用理想溶液理论和鲁宾模型解释了表面活性剂混合胶束的形成及协同行为。通过优化洗油工艺参数——常温25℃、pH值11、洗涤时间2 h、固液比1:5以及振荡频率200 r/min,除油率达到76%。这种清洗剂生产成本低、应用简便、环境相容性好且清洗效果快速显著,在石油污染土壤的现场规模净化方面具有潜力。

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