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篇目详细内容

【篇名】 Removal of decabromodiphenyl ether (BDE-209) by sepiolite-supported nanoscale zerovalent iron
【刊名】 Frontiers of Environmental Science & Engineering
【刊名缩写】 Front. Environ. Sci. Eng.
【ISSN】 2095-2201
【EISSN】
【DOI】 10.1007/s11783-015-0800-3
【出版社】
【出版年】 2015
【卷期】 9 卷5期
【页码】 867-878 页,共 12 页
【作者】 Rongbing FU; Na MU; Xiaopin GUO; Zhen XU; Dongsu BI;
【关键词】 sepiolite-supported nanoscale zerovalent iron|decabromodiphenyl ether|debromination|adsorption|mechanism

【摘要】

Nanoscale zerovalent iron (nZVI) synthesized using sepiolite as a supporter was used to investigate the removal kinetics and mechanisms of decabromodiphenyl ether (BDE-209). BDE-209 was rapidly removed by the prepared sepiolite-supported nZVI with a reaction rate that was 5 times greater than that of the conventionally prepared nZVI because of its high surface area and reactivity. The degradation of BDE-209 occurred in a stepwise debromination manner, which followed pseudo-first-order kinetics. The removal efficiency of BDE-209 increased with increasing dosage of sepiolite-supported nZVI particles and decreasing pH, and the efficiency decreased with increasing initial BDE-209 concentrations. The presence of tetrahydrofuran (THF) as a cosolvent at certain volume fractions in water influenced the degradation rate of sepiolite-supported nZVI. Debromination pathways of BDE-209 with sepiolite-supported nZVI were proposed based on the identified reaction intermediates, which ranged from nona- to mono-brominated diphenylethers (BDEs) under acidic conditions and nona- to penta-BDEs under alkaline conditions. Adsorption on sepiolite-supported nZVI particles also played a role in the removal of BDE-209. Our findings indicate that the particles have potential applications in removing environmental pollutants, such as halogenated organic contaminants.

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