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首页> 外文期刊>Journal of soil science and plant nutrition >Rhizosphere effect on pesticide degradation in biobeds under different hydraulic loads
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Rhizosphere effect on pesticide degradation in biobeds under different hydraulic loads

机译:根际对不同水力作用下生物床中农药降解的影响

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Interactions between microorganisms and root exudates in a biobed system with vegetal (grass) cover could enhance pesticide degradation. Otherwise, a high water load may generate high concentrations of pesticides in lixiviates. We studied the effect of the vegetal cover on the degradation of a mixture of atrazine (ATZ), chlorpyrifos (CHL) and iprodione (IPR) (35 mg L-1 each) in a biobed system operated with two different hydraulic loads (0.6 and 1.2 L of tap water per day). The concentration of the pesticides and their main metabolites were measured in the lixiviates during 60 days, as well as in the biomixtures at the end of the study. Dehydrogenase activity in the biomixtures and organic acid exudation from the vegetal cover were also analysed. The vegetal cover diminished the lixiviation of pesticides and their metabolites mainly at the lower hydraulic load used. The degradation of the pesticides was high (>95%) and increased in biobeds with vegetal cover and low hydraulic load. Degradation metabolites of CHL and IPR were formed during pesticide degradation; however they were degraded in the biobed and were not detected in lixiviates at the end of the study. In general, an increase in organic acid exudation by vegetal cover was observed caused by chemical stress after pesticide application. The increase was similar at both hydraulic loads. Efficient colonisation of wheat straw by fungi was observed by confocal microscopy.
机译:生物床系统中具有植物(草)覆盖物的微生物与根系分泌物之间的相互作用可以促进农药降解。否则,高水负荷可能会在农药溶液中产生高浓度的农药。我们研究了在两种液压负载(0.6和0.6)下运行的生物床系统中,植物覆盖物对at去津(ATZ),毒死rif(CHL)和异丙隆(IPR)(每种35 mg L-1)混合物降解的影响。每天1.2升自来水)。在60天的时间里,以及研究结束时在生物混合物中测量了农药及其主要代谢产物的浓度。还分析了生物混合物中的脱氢酶活性和从植物覆盖物中渗出的有机酸。植被覆盖主要在较低的水力负荷下减少了农药及其代谢产物的浸出。在具有植物覆盖和低水力负荷的生物床上,农药的降解率很高(> 95%),并且降解率更高。农药降解过程中形成了CHL和IPR的降解代谢物。然而,它们在生物床上被降解,在研究结束时未在浸没物中被发现。通常,观察到由于农药施用后的化学胁迫,植物覆盖引起的有机酸渗出增加。在两个液压负载下,增加幅度相似。共聚焦显微镜观察到真菌对小麦秸秆的有效定植。

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