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蒙脱石黏土模板亚纳米零价铁的快速广泛脱溴作用研究。

Rapid and extensive debromination of decabromodiphenyl ether by smectite clay-templated subnanoscale zero-valent iron.

机构信息

State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing 210093, PR China.

出版信息

Environ Sci Technol. 2012 Aug 21;46(16):8969-75. doi: 10.1021/es300516e. Epub 2012 Jul 31.

Abstract

Subnanoscale zerovalent iron (ZVI) synthesized using smectite clay as a template was utilized to investigate reduction of decabromodiphenyl ether (DBDE). The results revealed that DBDE was rapidly debrominated by the prepared smectite-templated ZVI with a reaction rate 10 times greater than that by conventionally prepared nanoscale ZVI. This enhanced reduction is plausibly attributed to the smaller-sized smectite-templated ZVI clusters (∼0.5 nm) vs that of the conventional nanoscale ZVI (∼40 nm). The degradation of DBDE occurred in a stepwise debromination manner. Pentabromodiphenyl ethers were the terminal products in an alkaline suspension (pH 9.6) of smectite-templated ZVI, whereas di-, tri-, and tetrabromodiphenyl ethers formed at the neutral pH. The presence of tetrahydrofuran (THF) as a cosolvent at large volume fractions (e.g., >70%) in water reduced the debromination rates due to enhanced aggregation of clay particles and/or diminished adsorption of DBDE to smectite surfaces. Modification of clay surfaces with tetramethylammonium (TMA) attenuated the colsovent effect on the aggregation of clay particles, resulting in enhanced debromination rates. Smectite clay provides an ideal template to form subnanoscale ZVI, which demonstrated superior debromination reactivity with DBDE compared with other known forms of ZVIs. The ability to modify the nature of smectite clay surface by cation exchange reaction utilizing organic cations can be harnessed to create surface properties compatible with various contaminated sites.

摘要

利用蒙脱石粘土作为模板合成的亚纳观零价铁(ZVI)被用于研究十溴二苯醚(DBDE)的还原。结果表明,DBDE 被制备的蒙脱石模板 ZVI 迅速脱溴,反应速率比常规制备的纳米 ZVI 快 10 倍。这种增强的还原可能归因于较小尺寸的蒙脱石模板 ZVI 簇(0.5nm)与常规纳米 ZVI(40nm)相比。DBDE 的降解以逐步脱溴的方式发生。在碱性悬浮液(pH9.6)中,五溴二苯醚是蒙脱石模板 ZVI 的末端产物,而二溴、三溴和四溴二苯醚在中性 pH 下形成。在水中,由于粘土颗粒的聚集增强和/或 DBDE 对蒙脱石表面的吸附减少,四氢呋喃(THF)作为共溶剂的大量体积分数(例如,>70%)会降低脱溴速率。用四甲基铵(TMA)修饰粘土表面会减弱共溶剂对粘土颗粒聚集的影响,从而提高脱溴速率。蒙脱石粘土提供了形成亚纳观 ZVI 的理想模板,与其他已知形式的 ZVI 相比,它表现出对 DBDE 的优越脱溴反应性。利用有机阳离子进行阳离子交换反应来修饰蒙脱石粘土表面的性质的能力,可以用于创建与各种污染场地兼容的表面特性。

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