首页> 外文期刊>The Science of the Total Environment >Improvement of the electro-bioremediation process of a non-polar herbicide-polluted soil by means of surfactant addition
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Improvement of the electro-bioremediation process of a non-polar herbicide-polluted soil by means of surfactant addition

机译:通过表面活性剂加入改善非极性除草剂污染土壤的电生物化方法

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摘要

Oxyfluorfen is a non-polar herbicide that may cause severe soil pollution. The present work studies the possible improvement due to surfactant addition in the efficiency of electro-bioremediation of a clay soil polluted which such a non-polar, low-mobility pollutant. Two-week-long batch electro-bioremediation experiments were performed in a bench-scale device. Oxyfluorfen-polluted soil (20 mg kg~(-1)) was inoculated with an acclimated mi-crobial culture, and several experiments were performed using different surfactant concentrations in the electrode wells (0.0,2.5,5.0,10.0 and 20.0 g L~(-1) of SDS, sodium dodecyl sulphate). Experiments were performed under 1.0 Ⅴ cm~(-1) and electrode polarity reversal. It was observed that the electro-osmotic flow (EOF) increased with SDS concentration and that SDS was successfully distributed across the soil, probably improving the oxyfluorfen mobility. Additionally, microbiological activity was fully maintained during the experiments. Electro-bioremediation without SDS removed 14% of the oxyfluorfen, while under 2.5 g L~(-1) SDS, the efficiency increased to 22% because of an expected improvement in the contact between the different species in the soil. However, higher SDS concentrations (between 10.0 and 20.0 g L~(-1)) caused a decrease in the oxyfluorfen removal efficiency, as SDS is an easily biodegradable compound and was preferably used as substrate by the microbial culture instead of oxyfluorfen. Additionally, the use of high concentrations of SDS was clearly inefficient, as high amounts of the surfactant were lost through the EOF, and even low amounts of oxyfluorfen were removed to the electrode wells, which means that ex situ treatment of the polluted water would be needed.
机译:Oxyfluorfen是一种非极性除草剂,可能导致严重的土壤污染。目前的工作研究了由于表面活性剂添加剂的可能改善,以粘土土壤的电生生物修复效率污染,这种非极性低迁移率污染物。在台式装置中进行两周长的批量电生物生物化实验。用适应的Mi-Crobial培养接种氧氟荷芬污染的土壤(20mg kg〜(-1)),使用电极孔中的不同表面活性剂浓度进行几个实验(0.0,2.5,5.0,10.0和20.0g l〜 (-1)SDS,十二烷基硫酸钠)。在1.0℃cm〜(-1)和电极极性逆转下进行实验。观察到电渗透流量(EOF)随SDS浓度而增加,并且SDS成功分布在土壤上,可能改善氧氟荷芬迁移率。另外,在实验期间完全保持微生物活性。没有SDS的电生物修复除去14%的氧氟量,而在2.5g L〜(-1)SDS下,效率增加到22%,因为土壤中不同物种之间的接触预期改善。然而,较高的SDS浓度(在10.0和20.0g L〜(-1)之间)导致氧氟荷芬去除效率的降低,因为SDS是一种易生物降解的化合物,并且优选用微生物培养代替氧氟氟醚作为底物。另外,使用高浓度的SDS明显低效率,随着高量的表面活性剂被EOF损失,甚至将氧氟量的含量甚至氧氟量除去电极孔,这意味着污染水的原位处理是污染的需要。

著录项

  • 来源
    《The Science of the Total Environment》 |2019年第2期|1961-1968|共8页
  • 作者单位

    Chemical Engineering Department Research Institute for Chemical and Environmental Technology (ITQUIMA) University of Castilla-La Mancha 13071 Ciudad Real Spain;

    Chemical Engineering Department Research Institute for Chemical and Environmental Technology (ITQUIMA) University of Castilla-La Mancha 13071 Ciudad Real Spain;

    Chemical Engineering Department Research Institute for Chemical and Environmental Technology (ITQUIMA) University of Castilla-La Mancha 13071 Ciudad Real Spain;

    Chemical Engineering Department Faculty of Chemical Sciences and Technology University of Castilla-La Mancha 13071 Ciudad Real Spain;

    Chemical Engineering Department Faculty of Chemical Sciences and Technology University of Castilla-La Mancha 13071 Ciudad Real Spain;

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

    Oxyfluorfen; Polluted soil; Electro-bioremediation; Surfactant; Sodium dodecyl sulphate;

    机译:oxyfluorfen;污染土壤;电生生物修复;表面活性剂;十二烷基硫酸钠;

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