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首页> 外文期刊>Environmental Science and Pollution Research >Application of modified attapulgite in phthalate acid ester-contaminated soil: Effects on phthalate acid ester dissipation and the composition of soil microbial community
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Application of modified attapulgite in phthalate acid ester-contaminated soil: Effects on phthalate acid ester dissipation and the composition of soil microbial community

机译:改性亚己酸酯在邻苯二甲酸酸酯污染土壤中的应用:对邻苯二甲酸酯散热的影响及土壤微生物群落的组成

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摘要

The effects of modified attapulgite (MA) on the dissipations of the plasticizers di-n-butyl phthalate (DBP) and di-(2-ethylhexyl) phthalate (DEHP) in soil, as well as on the composition of soil microbial community, were studied. DBP, DEHP (50 mg kg(-1) in soil, respectively), and MA (1, 5, and 10% in soil) were mixed thoroughly with soil and incubated for 60 days. DBP- and DEHP-contaminated soils without MA were used as the controls. Both of DBP and DEHP residues in bulk soils and four soil fractions were measured at five incubation times 1, 7, 15, 30, and 60 days, and their dissipation kinetic equations were analyzed. The microbial phospholipid fatty acid (PLFA) concentrations were also measured at the end of experiment. Our results showed that the effect of modified attapulgite on DBP dissipation was related to its dosage in soil. The DEHP dissipation was both inhibited by MA at the 5 and 10% rates in soils. The application of MA changed the content percentages but did not change the concentration order of phthalate acid esters (PAEs) in soil particle-size fractions. The total microbial PLFA content was significantly increased by 5 and 10% MA in the contaminated soils. Meanwhile, the gram-negative (GN)/gram-positive (GP) ratios increased when MA was applied at the dosages of 5 and 10% in DBP and 10% in DEHP-contaminated soils. Principal component analysis (PCA) indicated that the change of bacteria PLFA, especially the GN bacterial PLFA, depended on the dosages of MA added into soil. The application of MA into soil has a positive effect on reducing the eco-toxicity of PAEs in soil based on the analysis of the soil microbial PLFA.
机译:改性凹凸棒石上的增塑剂二正丁基邻苯二甲酸酯(DBP),并在土壤二 - (2-乙基己基)邻苯二甲酸酯(DEHP),的耗散以及对土壤的微生物群落的组合物中的作用(MA),分别为研究。 DBP,DEHP(50毫克公斤分别(-1)在土壤,)和MA(1,5,和在土壤中10%)与土壤充分混合,并温育60天。 DBP-和DEHP污染土壤不MA被用作对照。无论是在大部分土壤和四个土壤部分DBP和DEHP残留物在5周孵育时间1,7,15,30,和60天测量,以及它们的耗散动力学方程进行分析。微生物磷脂脂肪酸(PLFA)浓度也在实验结束时测得的。我们的研究结果表明,改性土对DBP的散热效果与它在土壤中的用量。的DEHP耗散既抑制由MA在土壤中的5个10%的速率。 MA的应用改变了内容的百分比,但不改变的邻苯二甲酸酯类(PAES)在土壤中的粒度级分的浓度顺序。总微生物含量PLFA在污染土壤中显著增加了5和10%的MA。同时,当在MA中的DBP 5和10%和10%中DEHP污染土壤的剂量施加革兰氏阴性(GN)/革兰氏阳性(GP)的比率增加。主成分分析(PCA)表明,加入到土壤细菌磷脂脂肪酸的变化,尤其是GN细菌PLFA,取决于MA的剂量。 MA的应用到土壤中对降低基于土壤微生物磷脂脂肪酸的分析在土壤邻苯二甲酸酯的生态毒性产生积极影响。

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