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首页> 外文期刊>Bulletin of the Korean Chemical Society >Sonochemical Reaction Mechanism of a Polycyclic Aromatic Sulfur Hydrocarbon in Aqueous Phase
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Sonochemical Reaction Mechanism of a Polycyclic Aromatic Sulfur Hydrocarbon in Aqueous Phase

机译:水相中多环芳烃的声化学反应机理

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Hydroxybenzothiophenes, dihydroxy-benzothiophenes, and benzothiophenedione were identified as inter-mediates of benzothiophene (BT) exposed to ultrasonic irradiation. It is proposed that benzothiophene is oxidized by OH radical to sequentially form hydroxybenzothiophenes, dihydroxybenzothiophenes, and benzothiophenedione. Benzothiophene is decomposed rapidly following pseudo-first-order kinetics in a first-order manner by ultrasonic irradiation in aqueous solution. The toxicity of sonochemically treated solutions was checked by E. coli and a less inhibition in bacterial respiration was observed from the 120-min treated benzothiophene sample than from the untreated benzothiophene sample. Also evolution of carbon dioxide and sulfite was observed during ultrasonic reaction. A pathway for ultrasonic decomposition of benzothiophene in aqueous solution is proposed.
机译:羟基苯并噻吩,二羟基苯并噻吩和苯并噻吩二酮被确定为暴露于超声辐射下的苯并噻吩(BT)的中间体。提出了苯并噻吩被OH自由基氧化以依次形成羟基苯并噻吩,二羟基苯并噻吩和苯并噻吩二酮。苯并噻吩在水溶液中通过超声辐照以伪一级动力学迅速分解。通过大肠杆菌检查了经声化学处理的溶液的毒性,与未处理的苯并噻吩样品相比,经120分钟处理的苯并噻吩样品对细菌呼吸的抑制作用较小。在超声反应过程中也观察到二氧化碳和亚硫酸盐的释放。提出了超声降解水溶液中苯并噻吩的途径。

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