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Reductive dechlorination of organochlorine pesticides in soils from an abandoned manufacturing facility by zero-valent iron

机译:零价铁对废弃工厂中土壤中有机氯农药的还原脱氯

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摘要

Several experiments and a model were constructed using conventional granular zero-valent iron (ZVI) particles as the reducing agent to study the reductive dechlorination characteristics of hexachlorocyclohex-anes (HCHs) and dichlorodiphenyltrichloroethane (DDTs) in soils from a former pesticide-manufacturing site. The results showed that ZVI had good ability for the reductive dechlorination for both HCHs and DDTs. The reductive dechlorination of HCHs and DDTs proceeded at different rates. The pseudo first-order constants of HCHs were greater than those of DDTs. The reductive dechlorination rates in a descending order were γ-HCH>δ-HCH>β-HCH>α-HCH>o,p'-DDT>p,p'-DDT>p,p'-DDE. To discuss the major influential factors over the reductive dechlorination rates of HCHs and DDTs by ZVI, 22 quantum chemical descriptors were computed with the density functional theory at B3LYP/6-31G~* level, which characterizes different molecular structures and physicochemical properties of HCHs and DDTs. A polyparameter linear free energy relationship (LFER) model was established, which correlates the reductive dechlorination properties of pollutants with their structural descriptors. Using the partial least squares (PLS) analysis, an optimal two-parameter LFER model was established. q ~+ and q_(CI)~-were more important factors in determining the dechlorination rate of OCPs in the chemical reductive reaction. This optimal model was stable and had good predictability. The model study also showed that the coefficient value of q~+ was 0.511, which positively correlated with the reductive dechlorination rate constant, whereas q_(CI)~- was negatively correlated with it. The reductive dechlorination rate of pollutants appears to be limited mainly by the rate of dissolution in the aqueous phase. This model can be used to explain the degradation potential of organochlorine pesticides (OCPs) and the trend of residues changing during the soil remediation. Therefore, the study is of practical importance for understanding the process of dechlorination in the presence of multiple OCPs and the development of remediation techniques for the soils contaminated by OCPs.
机译:使用传统的零价铁颗粒(ZVI)作为还原剂构建了多个实验和模型,以研究原农药制造场所的土壤中六氯环己烷(HCH)和二氯二苯基三氯乙烷(DDT)的还原性脱氯特性。结果表明,ZVI对六氯环己烷和滴滴涕均具有良好的还原脱氯能力。六氯环己烷和滴滴涕的还原脱氯速率不同。 HCH的伪一阶常数大于DDT的伪一阶常数。还原脱氯率降序为:γ-HCH>δ-HCH>β-HCH>α-HCH> o,p'-DDT> p,p'-DDT> p,p'-DDE。为探讨影响六六六的六氯环己烷和滴滴涕还原脱氯速率的主要影响因素,采用密度泛函理论在B3LYP / 6-31G〜*水平上计算了22个量子化学描述符,表征了六氯环己烷和六氯环己烷的不同分子结构和理化特性。滴滴涕。建立了多参数线性自由能关系(LFER)模型,该模型将污染物的还原性脱氯特性与其结构描述符相关联。使用偏最小二乘(PLS)分析,建立了一个最佳的两参数LFER模型。 q〜+和q_(CI)〜-是决定化学还原反应中OCP脱氯速率的重要因素。该最优模型稳定且具有良好的可预测性。模型研究还表明,q〜+的系数值为0.511,与还原性脱氯速率常数正相关,而q_(CI)〜-与它的负相关。污染物的还原性脱氯速率似乎主要受水相中溶解速率的限制。该模型可用于解释土壤修复过程中有机氯农药(OCP)的降解潜力和残留物变化的趋势。因此,该研究对于理解多种OCPs存在下的脱氯过程以及开发OCPs污染土壤的修复技术具有实际意义。

著录项

  • 来源
    《Science of the total environment》 |2010年第16期|P.3418-3423|共6页
  • 作者单位

    Department of Soil Pollution Control, Chinese Research Academy of Environmental Sciences, Beijing 100012, China Liaoning Technical University, Liaoning 123000, China;

    rnDepartment of Soil Pollution Control, Chinese Research Academy of Environmental Sciences, Beijing 100012, China;

    rnDepartment of Soil Pollution Control, Chinese Research Academy of Environmental Sciences, Beijing 100012, China University of Science & Technology Beijing, Beijing 100083, China;

    rnUniversity of Science & Technology Beijing, Beijing 100083, China;

    rnDepartment of Soil Pollution Control, Chinese Research Academy of Environmental Sciences, Beijing 100012, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    organochlorine pesticides; zero-valent iron; dechlorination; modeling;

    机译:有机氯农药;零价铁脱氯造型;
  • 入库时间 2022-08-17 13:56:14

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