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表面活性剂强化修复有机污染土壤和水体。

Surfactant-enhanced remediation of organic contaminated soil and water.

作者信息

Paria Santanu

机构信息

National Institute of Technology, Department of Chemical Engineering, Rourkela-769 008, Orissa, India.

出版信息

Adv Colloid Interface Sci. 2008 Apr 21;138(1):24-58. doi: 10.1016/j.cis.2007.11.001. Epub 2007 Nov 17.

Abstract

Surfactant based remediation technologies for organic contaminated soil and water (groundwater or surface water) is of increasing importance recently. Surfactants are used to dramatically expedite the process, which in turn, may reduce the treatment time of a site compared to use of water alone. In fact, among the various available remediation technologies for organic contaminated sites, surfactant based process is one of the most innovative technologies. To enhance the application of surfactant based technologies for remediation of organic contaminated sites, it is very important to have a better understanding of the mechanisms involved in this process. This paper will provide an overview of the recent developments in the area of surfactant enhanced soil and groundwater remediation processes, focusing on (i) surfactant adsorption on soil, (ii) micellar solubilization of organic hydrocarbons, (iii) supersolubilization, (iv) density modified displacement, (v) degradation of organic hydrocarbon in presence surfactants, (vi) partitioning of surfactants onto soil and liquid organic phase, (vii) partitioning of contaminants onto soil, and (viii) removal of organics from soil in presence of surfactants. Surfactant adsorption on soil and/or sediment is an important step in this process as it results in surfactant loss reduced the availability of the surfactants for solubilization. At the same time, adsorbed surfactants will retained in the soil matrix, and may create other environmental problem. The biosurfactants are become promising in this application due to their environmentally friendly nature, nontoxic, low adsorption on to soil, and good solubilization efficiency. Effects of different parameters like the effect of electrolyte, pH, soil mineral and organic content, soil composition etc. on surfactant adsorption are discussed here. Micellar solubilization is also an important step for removal of organic contaminants from the soil matrix, especially for low aqueous solubility organic contaminants. Influences of different parameters such as single and mixed surfactant system, hydrophilic and hydrophobic chain length, HLB value, temperature, electrolyte, surfactant type that are very important in micellar solubilization are reviewed here. Microemulsion systems show higher capacity of organic hydrocarbons solubilization than the normal micellar system. In the case of biodegradation of organic hydrocarbons, the rate is very slow due to low water solubility and dissolution rate but the presence of surfactants may increase the bioavailability of hydrophobic compounds by solubilization and hence increases the degradation rate. In some cases the presence of it also reduces the rate. In addition to fundamental studies, some laboratory and field studies on removal of organics from contaminated soil are also reviewed to show the applicability of this technology.

摘要

基于表面活性剂的有机污染土壤和水体(地下水或地表水)修复技术近年来越来越重要。表面活性剂被用于大幅加快这一过程,相比仅用水,这反过来可能会缩短场地的处理时间。事实上,在各种现有的有机污染场地修复技术中,基于表面活性剂的工艺是最具创新性的技术之一。为了加强基于表面活性剂的技术在有机污染场地修复中的应用,更好地理解这一过程所涉及的机制非常重要。本文将概述表面活性剂强化土壤和地下水修复过程领域的最新进展,重点关注:(i)表面活性剂在土壤上的吸附;(ii)有机碳氢化合物的胶束增溶作用;(iii)超增溶作用;(iv)密度改性驱替;(v)在表面活性剂存在下有机碳氢化合物的降解;(vi)表面活性剂在土壤和液态有机相之间的分配;(vii)污染物在土壤上的分配;以及(viii)在表面活性剂存在下从土壤中去除有机物。表面活性剂在土壤和/或沉积物上的吸附是这一过程中的重要步骤,因为它会导致表面活性剂损失,降低表面活性剂用于增溶的有效性。同时,吸附的表面活性剂会保留在土壤基质中,并可能引发其他环境问题。生物表面活性剂因其环境友好的性质、无毒、对土壤吸附低以及良好的增溶效率,在该应用中变得很有前景。本文讨论了不同参数如电解质、pH值、土壤矿物质和有机含量、土壤组成等对表面活性剂吸附的影响。胶束增溶作用也是从土壤基质中去除有机污染物的重要步骤,特别是对于水溶解度低的有机污染物。本文综述了不同参数如单一和混合表面活性剂体系、亲水和疏水链长度、HLB值、温度、电解质、表面活性剂类型等在胶束增溶作用中非常重要的影响。微乳液体系比普通胶束体系表现出更高的有机碳氢化合物增溶能力。在有机碳氢化合物的生物降解方面,由于其低水溶性和溶解速率,降解速率非常缓慢,但表面活性剂的存在可能通过增溶作用提高疏水性化合物的生物可利用性,从而提高降解速率。在某些情况下,表面活性剂的存在也会降低降解速率。除了基础研究外,本文还综述了一些关于从污染土壤中去除有机物的实验室和现场研究,以展示该技术的适用性。

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