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首页> 外文期刊>Journal of Hazardous Materials >Insights into unexpected photoisomerization from photooxidation of tribromoacetic acid in aqueous environment using ultrafast spectroscopy
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Insights into unexpected photoisomerization from photooxidation of tribromoacetic acid in aqueous environment using ultrafast spectroscopy

机译:使用超速度光谱从含水环境中从三溴乙酸光氧化中的意外光学探讨

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摘要

Haloacetic acids are carcinogenic disinfection by-products (DPBs) and their photo-decomposition pathways, especially for those containing bromine and iodine, are not fully understood. In this study, femtosecond transient absorption (fs-TA) spectroscopy experiments were introduced for the first time to investigate the photochemistry of tribromoacetic acid. The fs-TA experiments showed that a photoisomerization intermediate species HOOCCBr2-Br (iso-TBAA) was formed within several picoseconds after the excitation of TBAA. The absorption wavelength of the iso-TBAA was supported by time-dependent density calculations. With the Second-order Moller-Plesset perturbation theory, the structures and thermodynamics of the OH-insertion reactions of isoTBAA were elucidated when water molecules were involved in the reaction complex. The calculations also revealed that the isomer species were able to react with water with its reaction dynamics dramatically catalyzed by the hydrogen bonding network. The proposed water catalyzed OH-insertion/HBr elimination mechanism predicted three major photoproducts, namely, HBr, CO and CO2, which was consistent with the photolysis experiments with firstly reported CO formation rate and mass conversion yield as 0.096 min-1 and 0.75 +/- 0.1 respectively. The spectroscopic technique, numerical tool and disclosed mechanisms provided insights on photodecomposition and subsequent reactions of polyhalo-DPBs contain heavy atom(s) (e.g., Br, I) with water, aliphatic alcohols or other nucleophiles.
机译:卤代乙酸是致癌消毒副产物(DPBS)及其光学分解途径,特别是对于含有溴和碘的光学分解途径不完全理解。在该研究中,首次引入了Femtosecond瞬态吸收(FS-TA)光谱实验,研究了三溴乙酸的光化学。 FS-TA实验表明,在TBAA激发后,在几种皮秒内形成光致硅化中间物种HOOCCBR2-BR(ISO-TBAA)。通过时间依赖性密度计算支持ISO-TBAA的吸收波长。利用二阶Moller-Plesset扰动理论,当水分子参与反应络合物时,阐明了isotbaa的OH插入反应的结构和热力学。该计算还显示异构体物种能够与水反应,其反应动力学显着地被氢键网络显着催化。所提出的水催化的OH-插入/ HBR消除机构预测了三个主要的光调节,即HBr,Co和CO 2,其与首先报道的CO形成速率和质量转化率为0.096 min-1和0.75 + /的光解实验一致。 - 分别为0.1。光谱技术,数值工具和公开的机制提供了对光分解的见解,并且多麦族-DPBS的后续反应含有水,脂族醇或其他亲核试剂的重原子(例如,例如,例如,Br,I)。

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