首页> 外文期刊>Journal of Contaminant Hydrology >Experimental and modeling of the unsaturated transports of S-metolachlor and its metabolites in glaciofluvial vadose zone solids
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Experimental and modeling of the unsaturated transports of S-metolachlor and its metabolites in glaciofluvial vadose zone solids

机译:实验和建模的硫代甲草胺及其代谢产物在冰川流质渗流带固体中的不饱和转运

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摘要

The transport of pesticides to groundwater is assumed to be impacted by flow processes and geochemical interactions occurring in the vadose zone. In this study, the transport of S-metolachlor (SMOC) and its two metabolites ESA-metolachlor (MESA) and OXA-metolachlor (MOXA) in vadose zone materials of a glaciofluvial aquifer is studied at laboratory scale. Column experiments are used to study the leaching of a conservative tracer (bromide) and SMOC, MESA and MOXA under unsaturated conditions in two lithofacies, a bimodal gravel (Gcm,b) and a sand (S-x). Tracer experiments showed water fractionation into mobile and immobile compartments more pronounced in bimodal gravel columns. In both lithofacies columns, SMOC outflow is delayed (retardation factor > 2) and mass balance reveals depletion (mass balance of 0.59 and 0.77 in bimodal gravel and sand, respectively). However, complete mass elution associated with retardation factors dose to unity shows that there is no adsorption of MESA and MOXA in either lithofacies. SMOC transport is characterized by non-equilibrium sorption and sink term in both bimodal gravel and sand columns. Batch experiments carried out using agitation times consistent with column water residence times confirmed a time-dependence of SMOC sorption and high adsorption rates (>80%) of applied concentrations. Desorption experiments confirm the irreversibility of a major part of the SMOC adsorption onto particles, corresponding to the sink term in columns. In the bimodal gravel column, SMOC adsorption occurs mainly on reactive particles in contact with mobile water because of flow regionalization whereas in the sand column, there is pesticide diffusion to the immobile water. Such results clearly show that sorption mechanisms in the vadose zone solids below the soil are both solute and contact-time-dependent and are impacted by hydrodynamic conditions. The more rapid transport of MESA and MOXA to the aquifer would be controlled mainly by water flow through the unsaturated zone whereas SMOC transport is retarded by sorption processes within the vadose zone. (C) 2016 Elsevier B.V. All rights reserved.
机译:假设农药流向地下水的过程受到渗流区中发生的流动过程和地球化学相互作用的影响。在这项研究中,在实验室规模下研究了S-甲草胺(SMOC)及其两种代谢产物ESA-甲草胺(MESA)和OXA-甲草胺(MOXA)在冰川水含水层渗流带材料中的运输。柱实验用于研究在两个岩相,双峰碎石(Gcm,b)和沙子(S-x)中非饱和条件下保守示踪剂(溴化物)和SMOC,MESA和MOXA的浸出。示踪剂实验表明,在双峰砾石柱中,水分离成流动和不流动的隔室更为明显。在两个岩相柱中,SMOC流出均被延迟(延迟因子> 2),质量平衡显示出枯竭(双峰砾石和沙子的质量平衡分别为0.59和0.77)。然而,与阻滞因子统一的完整质量洗脱表明,在任一岩相中均未吸附MESA和MOXA。 SMOC传输的特征是在双峰砾石和砂柱中都存在非平衡吸附和下沉期。使用与色谱柱水停留时间一致的搅拌时间进行的分批实验证实了SMOC吸附与时间的相关性以及所施加浓度的高吸附率(> 80%)。解吸实验证实了大部分SMOC吸附在颗粒上的不可逆性,这与色谱柱中的下沉项相对应。在双峰砾石塔中,由于流动分区,SMOC吸附主要发生在与流动水接触的反应性颗粒上,而在沙塔中,农药扩散到固定水中。这些结果清楚地表明,土壤下方渗流带中固体的吸附机制既取决于溶质,也取决于接触时间,并且受流体动力学条件的影响。 MESA和MOXA向含水层的更快速传输将主要通过流经不饱和区的水来控制,而SMOC的传输受渗流区内的吸附过程所阻碍。 (C)2016 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Journal of Contaminant Hydrology》 |2016年第7期|1-14|共14页
  • 作者单位

    Bur Rech Geol & Minieres, 3 Ave Claude Guillemin,BP 36009, F-45060 Orleans 2, France|Univ Lyon 1, Ecol Hydrosyst Nat & Anthropises UMR5023, CNRS, ENTPE, 3 Rue Maurice Audin, F-69518 Vaulx En Velin, France;

    Univ Lyon 1, Ecol Hydrosyst Nat & Anthropises UMR5023, CNRS, ENTPE, 3 Rue Maurice Audin, F-69518 Vaulx En Velin, France;

    Univ Lyon 1, Ecol Hydrosyst Nat & Anthropises UMR5023, CNRS, ENTPE, 3 Rue Maurice Audin, F-69518 Vaulx En Velin, France;

    Bur Rech Geol & Minieres, 3 Ave Claude Guillemin,BP 36009, F-45060 Orleans 2, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Pesticide; ESA-metolachlor; OXA-metolachlor; Non-equilibrium sorption; Unsaturated zone; Mobile-immobile model;

    机译:农药;ESA-甲草胺;OXA-甲草胺;非平衡吸附;不饱和区;移动固定模型;
  • 入库时间 2022-08-17 13:37:51

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