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多溴二苯醚在制备好的Fe3O4微纳材料上的热降解及推测机理

Thermal degradation of polybrominated diphenyl ethers over as-prepared Fe3O4 micro/nano-material and hypothesized mechanism.

作者信息

Li Qianqian, Yang Fan, Su Guijin, Huang Linyan, Lu Huijie, Zhao Yuyang, Zheng Minghui

机构信息

State Key Laboratory of Environmental Chemistry and Ecotoxicology, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, P.O. Box 2871, Beijing, 100085, China.

出版信息

Environ Sci Pollut Res Int. 2016 Jan;23(2):1540-51. doi: 10.1007/s11356-015-5400-z. Epub 2015 Sep 16.

Abstract

The thermal degradation of decabromodiphenyl ether (BDE-209) featuring fully substituted bromines was investigated over an as-prepared Fe3O4 micro/nano-material at 300 °C. Degradation followed pseudo-first-order kinetics with kobs = 0.15 min(-1) higher than that for decachlorobiphenyl (CB-209). Twenty-six newly produced polybrominated diphenyl ether (PBDE) congeners were identified using the available PBDE standards, while four PBDE congener products were predicted using third-order polynomial regression equation. Analysis of the products indicated that BDE-209 underwent stepwise hydrodebromination over as-prepared Fe3O4. Similar to the case for CB-209, two initial hydrodebromination steps are favored at the BDE-209 meta-positions, giving the major products BDE-207 and BDE-197. However, the variance about the preferred products began to emerge from the start of heptabromodiphenyl ethers (hepta-BDEs). The majorly produced hepta-BDE isomer with BDE-183 is unbrominated at one ortho-position. However, this is different from the reported degradation of CB-209, which always produced the products chlorinated at all four ortho-positions until the ortho-position had to be removed for the formation of trichlorobiphenyls and dichlorobiphenyl still majorly chlorinated at three or two ortho-positions. The early BDE-209 hydrodebromination steps appear to be strongly influenced by steric effects, whereas subsequent hydrodebromination steps, as more bromine atoms are removed, will be gradually governed more by thermodynamics.

摘要

在300℃下,研究了在制备好的Fe3O4微纳材料上,全溴代十溴二苯醚(BDE - 209)的热降解情况。降解过程遵循准一级动力学,其表观速率常数kobs = 0.15 min⁻¹,高于十氯联苯(CB - 209)的表观速率常数。使用现有的多溴二苯醚(PBDE)标准品鉴定出26种新生成的多溴二苯醚同系物,同时使用三阶多项式回归方程预测了4种PBDE同系物产物。产物分析表明,BDE - 209在制备好的Fe3O4上进行逐步加氢脱溴反应。与CB - 209的情况类似,BDE - 209的间位上的两个初始加氢脱溴步骤更易发生,生成主要产物BDE - 207和BDE - 197。然而,从七溴二苯醚(hepta - BDEs)开始,关于优先产物的差异开始显现。主要生成的具有BDE - 183的七溴二苯醚异构体在一个邻位未被溴化。然而,这与报道的CB - 209的降解情况不同,CB - 209的降解总是生成在所有四个邻位都被氯化的产物,直到为了形成三氯联苯和仍主要在三个或两个邻位被氯化的二氯联苯而必须去除邻位。BDE - 209早期的加氢脱溴步骤似乎受空间效应的强烈影响,而随着更多溴原子被去除,随后的加氢脱溴步骤将逐渐更多地受热力学控制。

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