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Synthesis of dimethyl carbonate by vapor phase oxidative carbonylation of methanol

机译:甲醇气相氧化羰基化合成碳酸二甲酯

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摘要

To develop a vapor phase dimethyl carbonate synthesis process, the effects of reaction conditions and contaminants in feed materials on reaction performance have been investigated for CuCl_2/NaOH/activated carbon catalysts. A small spherical activated carbon particle with an average diameter of 60 μm was newly prepared. Optimal conditions for reaction temperature, pressure, contact time and reactant molar ratio were determined as follows: 393-423 K, 0.7-1.0 MPa, 0.1-0.3 kg-cat h m~(-3) and CH_3OH : CO : O_2 = 1: 3-4 : 0.07-0.12, respectively. Among contaminants introduced, N_2, H_2, and CO_2 did not affect the catalyst performance. However, H_2O in the feed decreased the conversion of methanol and the selectivity of carbon monoxide to dimethyl carbonate. A fluidized bed reactor is preferable for the vapor phase reaction, considering the required temperature control and continual catalyst regeneration.
机译:为了发展气相碳酸二甲酯的合成方法,研究了反应条件和进料中污染物对CuCl_2 / NaOH /活性炭催化剂反应性能的影响。新制备了平均直径为60μm的球形活性炭小颗粒。确定反应温度,压力,接触时间和反应物摩尔比的最佳条件如下:393-423 K,0.7-1.0 MPa,0.1-0.3 kg-cat hm〜(-3)和CH_3OH:CO:O_2 = 1: 3-4:分别为0.07-0.12。在引入的污染物中,N_2,H_2和CO_2不影响催化剂的性能。然而,进料中的H_2O降低了甲醇的转化率和一氧化碳对碳酸二甲酯的选择性。考虑到所需的温度控制和催化剂的连续再生,流化床反应器优选用于气相反应。

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