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Sorption of polar herbicides and herbicide metabolites by biochar-amended soil

机译:生物炭改良土壤对极性除草剂和除草剂代谢产物的吸附

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摘要

Biochar-amended soil has been proven to possess superior sorption capacities for several environmental pollutants compared with pure soil. However, the role of biochar in the immobilization of polar pesticides and their metabolites has hardly been tested. The aim of this study was therefore to investigate the effect of a soil amendment with biochar on the sorption of selected polar herbicides and herbicide metabolites (log K_(ow) 0.3-<2). To simulate worst-case sorption, a sandy soil (1.7% organic matter) was amended with 1.5% biochar (fresh or composted) to determine sorption/desorption isotherms of the test compounds. One herbicide (imazamox) and three herbicide metabolites (methyl-desphenyl-chloridazon, metazachlor oxalic acid, metazachlor sulfonic acid) were tested, i.e. three anionic and one neutral polar compound. The results showed that the presence of biochar increased the sorption capacity of the soil only in the case of the uncharged compound methyl-desphenyl-chloridazon, for which the average distribution coefficients in biochar-amended soils were higher than in pure soil by a factor of 2.1-2.5. However, this effect rather seemed to reflect the increased soil organic carbon content after the addition of biochar than a preferred sorption of methyl-desphenyl-chloridazon to biochar. In the case of the three anionic compounds imazamox, metazachlor oxalic acid and metazachlor sulfonic acid, biochar amendment did not increase the sorption capacity of the soil for these compounds, presumably as a result of its negative net charge. Similarly, desorption experiments did not show any significant effect of the biochar amendment on desorption. This suggests that the potential of using biochar to mitigate the leaching of the tested polar pesticides or metabolites is limited.
机译:与纯土壤相比,经生物炭改性的土壤已被证明对多种环境污染物具有优异的吸附能力。然而,几乎没有测试过生物炭在固定极性农药及其代谢产物中的作用。因此,本研究的目的是研究用生物炭进行土壤改良剂对所选极性除草剂和除草剂代谢物的吸附的影响(log K_(ow)0.3- <2)。为了模拟最坏的情况下的吸附,将沙土(1.7%的有机物)与1.5%的生物炭(新鲜或堆肥)一起修正,以确定测试化合物的吸附/解吸等温线。测试了一种除草剂(imazamox)和三种除草剂代谢物(甲基-脱苯基-氯达唑酮,间氮杂草酰草酸,间氮杂氯磺酸),即三种阴离子和一种中性极性化合物。结果表明,仅在不带电荷的化合物甲基-去苯基-氯达唑酮的情况下,生物炭的存在才增加了土壤的吸附能力,在这种情况下,生物炭改良土壤中的平均分布系数比纯土壤中的高。 2.1-2.5。但是,这种效果似乎反映了添加生物炭后土壤有机碳含量的增加,而不是甲基-去苯基-氯哒嗪对生物炭的优选吸附。就三种阴离子化合物咪唑胺,间草胺草酸和间草胺磺酸而言,生物炭改良剂并未增加土壤对这些化合物的吸附能力,这可能是由于其负净电荷所致。类似地,解吸实验没有显示出生物炭改良剂对解吸的任何显着影响。这表明使用生物炭减轻被测极性农药或代谢产物浸出的潜力是有限的。

著录项

  • 来源
    《Chemosphere》 |2014年第8期|180-186|共7页
  • 作者单位

    University of Bonn, Institute of Crop Science and Resource Conservation, Soil Science and Soil Ecology, Nussatlee 13, 53115 Bonn, Germany;

    University of Bonn, Institute of Crop Science and Resource Conservation, Soil Science and Soil Ecology, Nussatlee 13, 53115 Bonn, Germany;

    BASF SE, Global Sustainability and Product Stewardship - Crop Protection, 67117 Limburgerhof, Germany;

    University of Bonn, Institute of Crop Science and Resource Conservation, Soil Science and Soil Ecology, Nussatlee 13, 53115 Bonn, Germany;

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

    Biochar; Pesticides; Sorption; Leaching; Soil amendment; Metabolites;

    机译:生物炭农药;吸附;浸出土壤改良剂;代谢物;

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