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An experimental study on single-step dimethyl ether (DME) synthesis from hydrogen and carbon monoxide under various catalysts

机译:氢和一氧化碳在多种催化剂下一步法合成二甲醚的实验研究

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Dimethyl ether (DME) is a potential and green substitute to diesel and liquefied petroleum gas. In this study, DME synthesized from hydrogen and carbon monoxide (i.e. syngas) through a single step process is investigated to figure out the reaction characteristics. The influences of reaction temperature, H-2/CO molar ratio, and prepared catalyst on DME synthesis are investigated, while the space velocity is fixed at 15,000 mL (g(cat) h)(-1). The results indicate that the optimal reaction temperature for DME synthesis develops at 220 degrees C where the chemical kinetics and thermodynamic equilibrium are in a comparable state. Increasing H-2/CO ratio increases the CO conversion but lowers the H-2 conversion. The maximum DME yield is 2.3 g (g(cat) h)(-1) which occurs at H-2/CO = 1. The addition of palladium (Pd) into a Cu-ZnO-Al2O3 catalyst intensifies the CO conversion and DME yield of a gas mixture with syngas and 10 vol% of CO2. This is the consequence of hydrogen spillover which is able to increase the stability of active Cu against CO2 oxidation. The results also suggest that the dehydration catalyst with higher acidity gives lower DME selectivity and yield. The higher the CO2 concentration in syngas, the lower the CO conversion and DME yield. The present study has provided comprehensive insights into DME synthesis which is conducive to DME production in industry. Copyright (C) 2015, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.
机译:二甲醚(DME)是柴油和液化石油气的潜在绿色替代品。在这项研究中,研究了通过一步法由氢气和一氧化碳(即合成气)合成的DME,以了解反应特性。研究了反应温度,H-2 / CO摩尔比和制备的催化剂对DME合成的影响,而空速固定为15,000 mL(g(cat)h)(-1)。结果表明,DME合成的最佳反应温度是在220摄氏度下发展的,此时化学动力学和热力学平衡处于可比状态。 H-2 / CO比的增加会增加CO的转化率,但会降低H-2的转化率。 DME的最大产量为2.3 g(g(cat)h)(-1),在H-2 / CO = 1时发生。向Cu-ZnO-Al2O3催化剂中添加钯(Pd)可提高CO转化率和DME含合成气和10体积%的二氧化碳的混合气体的收率。这是氢溢出的结果,其能够增加活性铜抗CO2氧化的稳定性。结果还表明,具有较高酸度的脱水催化剂产生较低的DME选择性和收率。合成气中的CO2浓度越高,CO转化率和DME产率越低。本研究为二甲醚的合成提供了全面的见解,有利于工业上二甲醚的生产。 Hydrogen Energy Publications,LLC版权所有(C)2015。由Elsevier Ltd.出版。保留所有权利。

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