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首页> 外文期刊>Current Physical Chemistry >Theoretical Investigation on Debromination Model of Deca-BromoDiphenyl Ester (BDE209)
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Theoretical Investigation on Debromination Model of Deca-BromoDiphenyl Ester (BDE209)

机译:十溴二苯醚(BDE209)脱溴模型的理论研究

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The debromination of deca-bromodiphenyl ester (BDE209) is one of the most important processes in its removal from the environment. Despite numerous experimental studies improved the efficiency of poly brominated diphenyl ethers (PBDEs') debromination, few studies focused on the mechanism. This work provides a preliminary investigation on studying the debromination mechanism of BDE209 with density functional theory (DFT). Experimental results suggest a stepwise process catalyzed by Ni/Fe bimetallic nano particles..So, a potential debromination mechanism of BDE209 via a four-membered ring transition state has been proposed. The B3LYP calculations indicate lower activation energies catalyzed by Ni relative to Fe, which agrees with the experimental result that a much higher debromination efficiency with Ni/Fe bimetallic nano particles than nano zero-valent iron. Also water has small solvent effect on the activation energies of debromination. The efficiency of debromination improves greatly in solvent mixture with higher ratio of water in experiment probably because of more protons provided by more water for the corrosion and debromination. Finally, the meta-bromine atoms are the most susceptible to be debrominated.
机译:十溴二苯酯(BDE209)的脱溴是将其从环境中去除的最重要过程之一。尽管进行了大量的实验研究,提高了多溴二苯醚(PBDEs)脱溴的效率,但很少有研究关注其机理。这项工作为利用密度泛函理论(DFT)研究BDE209的脱溴机理提供了初步的研究。实验结果表明,Ni / Fe双金属纳米粒子具有逐步催化作用。因此,提出了BDE209通过四元环跃迁态的潜在脱溴机理。 B3LYP计算表明Ni相对于Fe催化的活化能较低,这与实验结果相一致,Ni / Fe双金属纳米粒子的脱溴效率比纳米零价铁高得多。另外,水对脱溴活化能的溶剂影响很小。实验中在水比例较高的溶剂混合物中脱溴效率大大提高,这可能是由于更多的水为腐蚀和脱溴提供了更多的质子。最后,间溴原子最容易被脱溴。

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