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首页> 外文期刊>Chemosphere >Evolution of soil biological properties after addition of glyphosate, diflufenican and glyphosate+diflufenican herbicides
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Evolution of soil biological properties after addition of glyphosate, diflufenican and glyphosate+diflufenican herbicides

机译:添加草甘膦,二氟苯醚和草甘膦+二氟苯胺除草剂后土壤生物学特性的演变

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摘要

The aim of this paper was to study in laboratory the degradation and the effects on biological properties in two soils after the addition of glyphosate, diflufenican and glyphosate+diflufenican. One hundred grams of sieved soil (<2 mm) were mixed with (ⅰ) 13 mL of Zarpa~® (16% glyphosate and 4% diflufenican) prepared in a water solution of 1 L (0.52 g of glyphosate and 2.08 g of diflufenican), (ⅱ) 5.2 mL of Round up~® (40% glyphosate), prepared in a water solution of 1 L(0.52 g of glyphosate), and (ⅲ) 1.19 mL of Brod-al~®(43.5% diflufenican), prepared in a water solution of 1 L (2.08 g of diflufenican). Soil samples were collected after 0,1, 5, 10, 15, 30, 60, 120 and 180 d of incubation and analyzed for microbial biomass-C and dehydrogenase, urease, p-glucosidase, phosphatase, arylsulphatase activities and glyphosate and diflufenican contents. At the end of the experiment, in the clayey texture soil the glyphosate and diflufenican contents were higher 50% and 30.7%, respectively, for the glyphosate+diflufenican treatment compared to glyphosate and diflufenican treatments, respectively. In the sandy loam texture soil the glyphosate and diflufenican contents were higher (38.9% and 39.4%, respectively) when the glyphosate and diflufenican were added as Zarpa~® than Round up~® or Brodal~®. The application of glyphosate+diflufenican mixture to soil increased the toxic effects of both herbicides in the soil biological activity and the individual soil persistence of each herbicide.
机译:本文的目的是在实验室研究添加草甘膦,二氟苯醚和草甘膦+二氟苯醚后两种土壤的降解及其对生物学特性的影响。将100克筛分的土壤(<2 mm)与在1 L的水溶液(0.52 g的草甘膦和2.08 g的二氟苯甲酸酯)中制备的(ⅰ)13 mLZarpa®(16%的草甘膦和4%的二氟苯甲醚)混合。 ),(ⅱ)5.2毫升Rounded®(40%草甘膦),在1升(0.52克草甘膦)的水溶液中制备,以及(ⅲ)1.19毫升Brod-al〜®(43.5%二氟苯醚)在1 L的水溶液(2.08 g的二氟苯甲醚)中制备。孵育0、1、5、10、15、30、60、120和180天后收集土壤样品,并分析其微生物量-C和脱氢酶,脲酶,p-葡萄糖苷酶,磷酸酶,芳基硫酸酯酶活性以及草甘膦和二氟苯醚含量。在实验结束时,在草质质地的土壤中,与草甘膦和二氟苯醚处理相比,草甘膦+二氟苯醚处理的草甘膦和二氟苯醚的含量分别高出50%和30.7%。在沙质壤土中,当草甘膦和二氟苯醚以Zarpa®的形式添加时,草甘膦和二氟苯醚的含量要比Roundup®或Brodal®高(分别为38.9%和39.4%)。草甘膦+二氟苯醚混合物在土壤中的施用增加了两种除草剂对土壤生物活性的毒性作用,并增加了每种除草剂对土壤的持久性。

著录项

  • 来源
    《Chemosphere 》 |2009年第3期| 365-373| 共9页
  • 作者

    Manuel Tejada;

  • 作者单位

    Departamento de Cristalografia, Mineralogia y Quimica Agricola. E.U.I.TA. Universidad de Sevilla. Crta de Utrera km. 1, 4W13 Sevilla, Spain;

  • 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

    soil biological properties; glyphosate; diflufenican; glyphosate+diflufenican;

    机译:土壤生物学特性;草甘膦双氟替尼草甘膦+二氟苯醚;

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