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Influence of Reaction Conditions on Methanol Synthesis and WGS Reaction in the Syngas-to-DME Process

机译:合成气制二甲醚工艺中反应条件对甲醇合成和WGS反应的影响

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A series of CuO-ZnO catalysts (with different Cu/Zn molar ratios) were prepared, and evaluated under the reaction conditions of syngas-to-dimethyl ether (DME) with three sorts of feed gas and different space velocity. The catalysts were characterized by X-ray diffraction (XRD) and temperature-programmed reduction (TPR). The experiment results showed that the reaction conditions of syngas-to-DME process greatly affected the methanol synthesis and WGS reaction. The influence caused by Cu/Zn molar ratio was quite different on the two reactions; increasing of percentage of CO_2 in feed gas was unfavorable for catalyst activity, and also inhibited both reactions; enhancement of reaction space velocity heavily influenced the performance of the catalyst, and the benefits were relatively less for methanol synthesis than for the WGS reaction.
机译:制备了一系列Cu / Zn摩尔比不同的CuO-ZnO催化剂,并在合成气-二甲醚(DME)与三种进料气和不同空速的反应条件下进行了评价。通过X射线衍射(XRD)和程序升温还原(TPR)表征催化剂。实验结果表明,合成气制二甲醚的反应条件对甲醇合成和WGS反应有很大影响。 Cu / Zn摩尔比对两个反应的影响差异很大。进料气中CO_2百分比的增加不利于催化剂的活性,也抑制了两个反应。反应空间速度的提高严重影响了催化剂的性能,与WGS反应相比,甲醇合成的益处相对较少。

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