Institute of Natural Resources and Agrobiology of Salamanca (IRNASA-CSIC), 40-52 Cordel de Merinas, 37008, Salamanca, Spain; Department of Geology and Geochemistry, Autonomous University of Madrid. 28049, Madrid, Spain.
Institute of Natural Resources and Agrobiology of Salamanca (IRNASA-CSIC), 40-52 Cordel de Merinas, 37008, Salamanca, Spain.
J Hazard Mater. 2020 May 15;390:122162. doi: 10.1016/j.jhazmat.2020.122162. Epub 2020 Jan 21.
The spread of organic pollutants from soil to other environments is one important source of environmental pollution. The addition of organic amendments to soil is an interesting strategy to control pollutants leaching. However, the contribution of different carbon types of organic amendments to organic pollutants adsorption is not clear. Hence, the objective of this work was to determine the role of carbon types of organic amendments into the adsorption of four herbicides. To this extent, organic amendments were characterized by elemental analysis and C-NMR and adsorption-desorption isotherms of herbicides by the organic amendments and two soils amended with them were obtained. Adsorption coefficients were correlated with the organic carbon content of the organic amendments and the adsorption process was enhanced by the hydrophobicity of herbicides and the aliphatic and aromatic carbon of amendments. Organic amendments increased the adsorption of herbicides by soils but it is not possible to extrapolate results from one soil to another because organo-mineral interactions between soils and organic amendments can modify this process. Desorption isotherms of herbicides from organic amendments and/or amended soils presented hysteresis indicating the irreversible adsorption of herbicides. Desorption results indicated, the abundance of O-alkyl and N-alkyl groups in organic amendments enhanced the hysteresis in amended soils.
有机污染物从土壤向其他环境的扩散是环境污染的一个重要来源。向土壤中添加有机改良剂是控制污染物淋溶的一种有趣策略。然而,不同类型的有机改良剂对有机污染物吸附的贡献尚不清楚。因此,本工作的目的是确定有机改良剂的碳类型在吸附四种除草剂中的作用。为此,通过元素分析和 C-NMR 对有机改良剂进行了表征,并获得了添加有机改良剂和两种土壤的除草剂吸附解吸等温线。吸附系数与有机改良剂的有机碳含量相关,除草剂的疏水性以及改良剂的脂肪族和芳族碳增强了吸附过程。有机改良剂增加了土壤对除草剂的吸附,但不能将结果从一种土壤外推到另一种土壤,因为土壤和有机改良剂之间的有机-矿物相互作用可以改变这一过程。从有机改良剂和/或添加土壤中解吸除草剂的等温线呈现滞后,表明除草剂的不可逆吸附。解吸结果表明,有机改良剂中 O-烷基和 N-烷基基团的丰度增加了添加土壤中的滞后。