首页> 外文期刊>Journal of Hazardous Materials >Degradation of imazapic and imazapyr herbicides in the presence of optimized oil palm empty fruit bunch and rice husk biochars in soil
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Degradation of imazapic and imazapyr herbicides in the presence of optimized oil palm empty fruit bunch and rice husk biochars in soil

机译:优化的油棕空果束和稻壳生物炭在土壤中降解马来吡和马来吡除草剂

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摘要

Imidazolinones as a persistent and active herbicides group have potential risks to non-target organisms in the environment. Biochar is a carbon-rich sorbent used as an amendment to change soil properties and its microbial communities effective on pesticides degradation rate.The present study was the first to compare empty fruit bunch (EFB) of oil palm and rice husk (RH) biomasses as biochar feedstock for remediation of imidazolinones-contaminated soils. Degradations of imazapic, imazapyr, and a mixture of them (Onduty (R)) was investigated in the presence of the optimized biochars in the soil during a 70-days incubation. Based on the results, the polar herbicides were resistant to hydrolysis degradation. Photolysis rates of the herbicides reduced significantly in the presence of the biochars in the soil. EFB biochar had greater effects due to its chemical compositions and surface functional groups. Photo-degradation of imazapyr was more affected by biochars amendment. The imidazolinones bio-degradation, however, accelerated significantly with the presence of EFB and RH biochars in soil with the greater effects of RH biochar. It was concluded that the application of the optimized EFB and RH biochars as an innovative sustainable strategy has the potential to decrease the persistence of the imidazolinones and minimize their environmental hazards.
机译:咪唑啉酮类作为持久性和活性除草剂类对环境中的非目标生物具有潜在风险。生物炭是一种富含碳的吸附剂,可作为改变土壤特性及其微生物群落的改良剂,对农药的降解速率有效。本研究首次将油棕和稻壳(RH)生物量的空果束(EFB)进行了比较。生物炭原料,用于修复被咪唑啉酮污染的土壤。在培养70天的过程中,在土壤中存在优化的生物炭的情况下,研究了吡虫啉,吡虫啉和它们的混合物(Onduty(R))的降解情况。根据结果​​,极性除草剂具有抗水解降解的能力。在土壤中存在生物炭的情况下,除草剂的光解速率大大降低。 EFB生物炭由于其化学成分和表面官能团而具有更大的作用。吡虫啉的光降解更受生物炭修正的影响。然而,在土壤中存在EFB和RH生物炭的情况下,咪唑啉酮的生物降解显着加快,而RH生物炭的影响更大。结论是,优化的EFB和RH生物炭作为一种创新的可持续策略的应用可能会降低咪唑啉酮的持久性并将其环境危害降至最低。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2019年第15期|636-642|共7页
  • 作者单位

    Univ Teknol PETRONAS, Dept Civil & Environm Engn, Bandar Seri Iskandar 32610, Malaysia;

    Univ Teknol PETRONAS, Dept Civil & Environm Engn, Bandar Seri Iskandar 32610, Malaysia;

    Univ Teknol PETRONAS, Dept Civil & Environm Engn, Bandar Seri Iskandar 32610, Malaysia;

    Univ Teknol PETRONAS, Dept Civil & Environm Engn, Bandar Seri Iskandar 32610, Malaysia;

  • 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

    Imidazolinones; Sorbent; Photo-degradation; Bio-degradation;

    机译:咪唑啉酮;吸附剂;光降解;生物降解;

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