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机构地区:[1]武汉科技大学资源与环境工程学院,湖北武汉430081
出 处:《环境科学与技术》2014年第12期16-19,30,共5页Environmental Science & Technology
基 金:国家自然科学基金项目(41102218);湖北省教育厅科技项目(Q20131102)
摘 要:选取3种不同深度的农田土壤作为吸附剂,采用批量实验方法,研究了有机氯农药p,p’-DDD和γ-HCH在等温条件下的吸附解吸行为。结果表明,p,p’-DDD和γ-HCH的吸附解吸曲线均可用Freundlich模型较好拟合,并且在表层土壤中表现为线性,而在深部土壤中表现为非线性,表明深部土壤的组成可能更加复杂和不均匀。3种土壤对p,p’-DDD的吸附容量参数Kf值与总有机碳(TOC)含量大小关系一致,而γ-HCH的吸附Kf值却与DOM含量显著正相关。p,p’-DDD和γ-HCH在所有样品中的解吸均有不同程度的滞后现象,其中p,p’-DDD的解吸主要受土壤中有机质含量的影响,TOC含量越低滞后性越不明显,而γ-HCH的解吸滞后性比较复杂。The sorption and desorption behaviors of p,p'-DDD and γ-HCH of organochlorine pesticides in three soils of different depths were studied in batch experiments. Results showed that the sorption and desorption isotherms of p,p'-DDD and γ-HCH could be fitted well by Freundlich model,and they were linear in the surface soil and non-linear in deeper soils,which may indicate the heterogeneity of composition in the deeper soils. Adsorption capacity parameter(Kf)of p,p'-DDD on three soils had significant positive correlation with TOC content. There was significant positive correlation between Kf of γ-HCH and DOM content. p,p'-DDD and γ-HCH in all samples had various desorption hysteresis. Desorption of p,p'-DDD was mainly controlled by TOC content,and hysteresis was not obvious with lower TOC content. However,desorption hysteresis of γ-HCH in soils was complex.
分 类 号:X131.3[环境科学与工程—环境科学]
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