A Review of Empirical Models of Sorption Isotherms of Hydrophobic Contaminants

G. M. Mafuyai
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Abstract

Renewed focus on empirical models of sorption isotherms of hydrophobic organic contaminants (HOCs) onto mineral surfaces and soil components is required because of the importance attached to numerous pollutants released into the environment. This examines the various models and isotherms with their assumptions by different scholars on the contribution of sorption of contaminants onto clay mineral sorbents and soil organic matter with the possible ways of prevention of environmental contamination by HOCs. Literature indicated that empirical models and isotherms have been used to ascertain several surfaces that can be sorbed by hydrophobic organic contaminants. These models also show that soils can retain HOCs even at low soil organic levels and the extent depends on the structure of the pollutant type and concentration of clay minerals in the sorbent. It also revealed the important role played by soil organic carbon in the sorption of contaminants onto soils and how it is strongly affected by the nature and structure of the organic soil matter. Contamination by different pollutants required a renewed approach in the context of the sorption of organic pollutants onto clay minerals from aqueous and non-aqueous solutions.
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疏水污染物吸附等温线的经验模型综述
由于对释放到环境中的众多污染物的重视,需要重新关注疏水有机污染物(hoc)在矿物表面和土壤组分上吸附等温线的经验模型。本文考察了不同学者对粘土矿物吸附剂和土壤有机质对污染物吸附的贡献的各种模型和等温线及其假设,以及防止hoc污染环境的可能方法。文献表明,经验模型和等温线已用于确定可被疏水性有机污染物吸附的几种表面。这些模型还表明,即使在较低的土壤有机水平下,土壤也能保留hoc,其程度取决于污染物类型的结构和吸附剂中粘土矿物的浓度。揭示了土壤有机碳在土壤吸附污染物中的重要作用及其受有机土壤物质性质和结构的强烈影响。不同污染物的污染需要在粘土矿物从水和非水溶液中吸收有机污染物的背景下采用新的方法。
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