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首页> 外文期刊>European journal of organic chemistry >Mechanistic study on the production of hydrogen peroxide in the anthraquinone process
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Mechanistic study on the production of hydrogen peroxide in the anthraquinone process

机译:蒽醌法生产过氧化氢的机理研究

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Hydrogen peroxide is produced from hydrogen gas and air in industry by using the anthraquinone process. The mechanism for the production of hydrogen peroxide in this process is studied by using DFT calculations and reaction rate measurements. A hydrogen atom of anthrahydroquinone (AHQ) is directly abstracted by triplet dioxygen to produce a hydroperoxide radical (HOO·) and a 10-hydroxy-9-anthroxyl radical (AQH·), followed by subsequent hydrogen atom abstraction that leads to the formation of hydrogen peroxide and anthraquinone (AQ). Hydrogen atom abstraction was found to be the rate-determining step in this process. Tetrahydroanthrahydroquinone (THAHQ) is also used in this process in a similar way to AHQ, but a higher activation energy is required for the rate-determining step when THAHQ is used, which would lead to a 25-fold rate deacceleration compared with AHQ at 27 °C. The reactivities of AHQ and THAHQ are not significantly influenced by effects of side alkyl chain that is used in the industrial process for increasing the solubility of AHQ and AQ in working solution. The relative reaction rate of AHQ and THAHQ is measured under laboratory conditions. The computational results are consistent with an observed lower rate of the oxidation process of THAHQ.
机译:过氧化氢是使用蒽醌法从工业中的氢气和空气中产生的。通过使用DFT计算和反应速率测量,研究了该过程中过氧化氢的产生机理。蒽氢醌(AHQ)的氢原子被三重态双氧直接提取,产生氢过氧化物基团(HOO·)和10-羟基-9-蒽基基团(AQH·),随后发生氢原子抽象,从而形成过氧化氢和蒽醌(AQ)。发现氢原子提取是该过程中的决定速率的步骤。四氢蒽氢醌(THAHQ)也以与AHQ相似的方式用于此过程中,但使用THAHQ时,速率测定步骤需要更高的活化能,与AHQ在27时相比,它会导致速率降低25倍。 ℃。 AHQ和THAHQ的反应性不受烷基烷基链影响的显着影响,工业生产中使用该烷基烷基链来提高AHQ和AQ在工作溶液中的溶解度。 AHQ和THAHQ的相对反应速率是在实验室条件下测量的。计算结果与所观察到的THAHQ氧化过程的较低速率一致。

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