SOC Effects on Diethyl Phthalate Sorption to Four Soils in China

Jiabin Wang, Yanhua Wu, Weilin Shi, Juan Gao
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Abstract

Purpose: Phthalate esters (PAEs) are commonly detected in agricultural soils of China, which can post potential threats to human health. Understanding their sorption to soils is important in assessing their transport and bioavailability in environment. Limited research focuses on the influence of soil organic carbon (SOC) on PAEs adsorption to soils at different depths and increased dissolved organic carbon (DOC) after adsorption. Materials and Methods: Batch sorption experiments of diethyl phthalate (DEP) to four types of soils were conducted in this study, including black soil, fluvo-aquic soil, paddy soil, and red soil. Total concentration of solute DEP and the concentration of free DEP not sorbed to DOC were measured with HPLC. The UV absorbance of supernatant was measured and specific UV absorbance at 254 nm was calculated for DOC aromaticity. Sorption isotherms of DEP to soil particles were fitted to the Langmuir model and the Freundlich model. Results and Discussion: Partial SOC can dissolve to DOC in solution, and 47.4- 89.4% of total DEP can be sorbed to DOC. Increasing DEP in solution can enhance aliphatic SOC dissolving. The sorption coefficients of DEP are higher to fluvo-aquic soils (Koc for surface soils 1820 L kg-1 and subsurface soils 1388 L kg-1) than to other soils (<520 L kg-1), which indicates that SOC fractions of different soils have varied affinity to DEP. Conclusions: SOC plays an important role in DEP sorption to soil particles. Soil samples from surface layers have higher affinity than those from subsurface layers. DOC from SOC in solution is important for DEP transport in soil, and organic pollution can accelerate SOC dissolving.
中国4种土壤对邻苯二甲酸二乙酯吸附的有机碳效应
目的:邻苯二甲酸酯(PAEs)在中国农业土壤中普遍存在,对人体健康有潜在威胁。了解它们对土壤的吸附对评估它们在环境中的迁移和生物有效性具有重要意义。有限的研究主要集中在土壤有机碳(SOC)对PAEs在不同深度土壤吸附的影响以及吸附后溶解有机碳(DOC)的增加。材料与方法:研究了邻苯二甲酸二乙酯(DEP)在黑土、潮土、水稻土和红壤四种土壤上的批量吸附实验。用高效液相色谱法测定溶质DEP总浓度和未吸附到DOC上的游离DEP浓度。测定了上清液的紫外吸光度,计算了254 nm处DOC芳香性的比紫外吸光度。DEP对土壤颗粒的吸附等温线拟合为Langmuir模型和Freundlich模型。结果与讨论:部分有机碳能在溶液中溶解到DOC中,总DEP的47.4 ~ 89.4%能吸附到DOC中。增加溶液中的DEP可以促进脂肪族有机碳的溶解。河流-潮土对DEP的吸附系数(表层土壤Koc为1820 L kg-1,地下土壤Koc为1388 L kg-1)高于其他土壤(<520 L kg-1),表明不同土壤有机碳组分对DEP的亲和力存在差异。结论:有机碳对土壤颗粒对DEP的吸附起重要作用。表层土壤样品的亲和力高于亚表层土壤样品。溶液中有机碳的DOC对土壤中DEP的运移起重要作用,有机污染会加速有机碳的溶解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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