首页> 外文期刊>The Science of the Total Environment >An examination of the role of biochar and biochar water-extractable substances on the sorption of ionizable herbicides in rice paddy soils
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An examination of the role of biochar and biochar water-extractable substances on the sorption of ionizable herbicides in rice paddy soils

机译:考察生物炭和生物炭水可萃取物在稻田土壤中对可离子化除草剂的吸附作用

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摘要

The application of biochar as a soil amendment can increase concentrations of soil organic matter, especially water-extractable organic substances. Due to their mobility and reactivity, more studies are needed to address the potential impact of biochar water-extractable substances (BWES) on the sorption of herbicides in agricultural soils that are periodically flooded. Two paddy soils (100 and 700 years of paddy soil development), unamended or amended with raw (BC) or washed biochar (BCW), were used to test the influence of BWES on the sorption behavior of the herbicides azimsulfuron (AZ) and penoxsulam (PE). The adsorption of AZ to biochar was much stronger than that to the soils, and it was adsorbed to a much larger extent to BC than to BCW. The depletion of polar groups in the BWES from the washed biochar reduced AZ adsorption but had no effect on PE adsorption. The adsorption of AZ increased when the younger soil (P100) was amended with BC and decreased when it was amended with BCW. In P700, which has lower dissolved organic carbon (DOC) content than P100, the adsorption of AZ increased regardless of whether biochar was raw or washed. The adsorption of PE slightly decreased when P100 was amended with BC or BCW and slightly increased when P700 was amended with BC or BCW. In order to evaluate compositional differences in the biochar and BWES before and after the washing treatment, we performed solid-state ~(13)C NMR spectroscopy of BC and BCW, and high resolution mass spectrometry of BWES. Our observations stress the importance of proper consideration of soil and biochar properties before their incorporation into paddy soils, since biochar may reduce or increase the mobility of AZ and PE depending on soil properties and time of application.
机译:生物炭作为土壤改良剂的应用可以增加土壤有机物的浓度,尤其是水可萃取的有机物质。由于它们的流动性和反应性,需要进行更多的研究以解决生物炭水提取物(BWES)对定期淹没的农业土壤中除草剂吸附的潜在影响。使用两种未经改良或未经原料(BC)或洗涤过的生物炭(BCW)进行改良的水稻土(水稻土发展了100和700年)来测试BWES对除草剂阿齐磺隆(AZ)和戊草磺胺的吸附行为的影响。 (PE)。 AZ对生物炭的吸附要比对土壤的吸附强得多,并且它对BC的吸附程度远大于对BCW的吸附程度。洗涤过的生物炭中BWES中极性基的减少减少了AZ吸附,但对PE吸附没有影响。当年轻土壤(P100)用BC改性时,AZ的吸附增加,而用BCW改性时,AZ的吸附降低。在溶解有机碳(DOC)含量低于P100的P700中,无论生物炭是生料还是洗涤物,AZ的吸附量都会增加。当P100用BC或BCW改性时,PE的吸附略有降低,而P700用BC或BCW改性时,PE的吸附略有增加。为了评估洗涤前后生物炭和BWES的成分差异,我们进行了BC和BCW的固态〜(13)C NMR光谱,以及BWES的高分辨率质谱。我们的观察结果强调了在将土壤和生物炭掺入水稻土之前适当考虑土壤和生物炭特性的重要性,因为根据土壤特性和施用时间,生物炭可能会降低或增加AZ和PE的迁移率。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第1期|135682.1-135682.10|共10页
  • 作者单位

    USDA-ARS Forage Seed and Cereal Research Unit Corvallis OR USA Instituto de Recursos Naturales y Agrobiologia de Sevilla (IRNAS-CSIC) P. O. Box 1052 41080 Seville. Spain Institute for Biodiversity and Ecosystem Dynamics (IBED) University of Amsterdam P.O. Box 94248 1090 GE Amsterdam the Netherlands;

    USDA-ARS Forage Seed and Cereal Research Unit Corvallis OR USA;

    Institute for Biodiversity and Ecosystem Dynamics (IBED) University of Amsterdam P.O. Box 94248 1090 GE Amsterdam the Netherlands;

    Instituto de Recursos Naturales y Agrobiologia de Sevilla (IRNAS-CSIC) P. O. Box 1052 41080 Seville. Spain;

    Institute for Biodiversity and Ecosystem Dynamics (IBED) University of Amsterdam P.O. Box 94248 1090 GE Amsterdam the Netherlands Institute of Soil Science and Site Ecology Soil Resources and Land Use Technische Universitat Dresden Pienner Strasse 19 01737 Tharandt Germany;

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

    Biochar; Azimsulfuron; Penoxsulam; Paddy soils; Rice production;

    机译:生物炭嘧磺隆;Penoxsulam;水稻土;大米生产;
  • 入库时间 2022-08-18 05:24:57

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