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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Degradation of phthalate esters (PAEs) in soil and the effects of PAEs on soilmicrocosm activity
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Degradation of phthalate esters (PAEs) in soil and the effects of PAEs on soilmicrocosm activity

机译:土壤中邻苯二甲酸酯(PAE)的降解及其对土壤微观活动的影响

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BACKGROUND: Phthalate esters (PAEs), a class of refractory and toxic organic compounds, are becoming one of the most widespread contaminants in the environment. Degradation of PAEs in soil has been investigated, but limited to one or a few kinds of PAEs. Microorganisms could be regarded as a sensitive bio-indicator for soil contaminants. Therefore, four commonly used PAEs were chosen to investigate their degradation patterns and potential impacts on soil microbial activity with a series of bioassays. RESULT: PAEs in sterile soils changed slightly, while degradation of PAEs in non-sterile soil followed a single first-order kinetic. Higher concentrations of PAEs led to lower β-glucosidase activity and higher protease activity, with smooth changes of phosphatase and urease activities. PAEs decreased average well color development (AWCD), while Shannon index (H) showed a tendency to increase after a decrease. Carbon utilization profile was affected significantly by PAEs, especially at 10 mg kg~(-1) soil. CONCLUSION: Degradation of PAEs was driven mainly by microbial mediated processes. PAEs affected carbon, nitrogen and phosphorus cycles variously, and had temporal effects on metabolic diversity, owing to the adaptation of microbes. Carbon substrates utilization changed from easily degradable sugars and carboxylic acids to recalcitrant compounds during the simulation.
机译:背景:邻苯二甲酸酯(PAE)是一类难降解和有毒的有机化合物,正在成为环境中最广泛的污染物之一。已经研究了土壤中PAE的降解,但仅限于一种或几种PAE。微生物可以被视为土壤污染物的敏感生物指标。因此,选择了四种常用的PAE,以进行一系列的生物测定,以研究其降解模式以及对土壤微生物活性的潜在影响。结果:无菌土壤中PAE的变化很小,而非无菌土壤中PAE的降解遵循一个一级动力学。较高浓度的PAE导致较低的β-葡萄糖苷酶活性和较高的蛋白酶活性,并具有磷酸酶和脲酶活性的平稳变化。 PAEs降低了平均孔的显色性(AWCD),而Shannon指数(H)呈现出下降后增加的趋势。 PAEs对碳的利用率有显着影响,特别是在10 mg kg〜(-1)土壤上。结论:PAEs的降解主要是由微生物介导的过程驱动的。由于微生物的适应性,PAEs对碳,氮和磷循环的影响不同,并且对代谢多样性具有暂时性影响。在模拟过程中,碳底物的利用率从易于降解的糖和羧酸变为难降解的化合物。

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