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Hydroxyl radical reactions with 2-chlorophenol as a model for oxidation in supercritical water

机译:以2-氯苯酚为羟自由基模型在超临界水中氧化

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To determine the detailed mechanism of 2-chlorophenol (2-CP) oxidation in supercritical water, both the experiments and theoretical calculations were conducted in this paper. A set of experiments was performed to oxidize 2-CP in supercritical water under temperatures of 380–420 ℃, pressure of 25 MPa, residence times of 0–60 s, and H2O2 as oxidant. By determining the molar yields of products, the primary single-ring products were identified as chlorohydroquinone, 2,4-dichlorophenol (2,4-DCP), 2,6-DCP, and 4-CP. The trends for the molar yields of the four products were analyzed at various temperatures and residence times. And built upon the trends, the possible reaction pathways were conjectured. Subsequently, the reaction mechanism was further verified by theoretical calculations, in which density functional theory was adopted as the computational method. The calculated results have well illustrated the experimental results and ascertained the reaction paths we proposed.
机译:为了确定2-氯苯酚(2-CP)在超临界水中氧化的详细机理,本文进行了实验和理论计算。进行了一系列实验,以在380-420℃,25 MPa的压力,0-60 s的停留时间和H2O2作为氧化剂的超临界水中氧化2-CP。通过确定产物的摩尔产率,初级单环产物被鉴定为氯氢醌,2,4-二氯苯酚(2,4-DCP),2,6-DCP和4-CP。分析了四种产物在不同温度和停留时间下摩尔产率的趋势。根据趋势,推测可能的反应途径。随后,通过理论计算进一步验证了反应机理,其中采用密度泛函理论作为计算方法。计算结果很好地说明了实验结果并确定了我们提出的反应路径。

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