首页> 外文期刊>Chemical Engineering and Processing >Direct conversion of syngas to DME as a green fuel in a high pressure microreactor: Influence of slurry solid content on characteristics and reactivity of washcoated CuO-ZnO-Al2O3/HZSM-5 nanocatalyst
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Direct conversion of syngas to DME as a green fuel in a high pressure microreactor: Influence of slurry solid content on characteristics and reactivity of washcoated CuO-ZnO-Al2O3/HZSM-5 nanocatalyst

机译:高压微反应器中合成气直接转化为绿色燃料的二甲醚:浆液固体含量对活化涂层CuO-ZnO-Al2O3 / HZSM-5纳米催化剂的特性和反应性的影响

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摘要

Microchannels of a stainless steel microreactor were successfully washcoated with slurry of Cu-ZnO-Al2O3/HZSM-5 (CZAZ) nanocatalyst with different concentrations (10, 20 and 30 wt.%). The properties of nanocatalyst and the washcoated microchannels were investigated by XRD, FESEM, N-2 physisorption, FTIR, EDX-Dot mapping and EDX-Line mapping analysis. The best adherence was observed for 20 wt.% catalyst which has a uniform coating, almost no cracks and homogenous dispersion of copper and zinc. Trend of weight gain during 10 soaks in catalyst slurry was very slow for 10 wt.% but faster for 20 and 30 wt.%. Low amount of weight gain was observed for the last soaks of catalyst slurry in the case of 30 wt.% washcoating. The performance of microreactor with different slurry concentrations were evaluated in direct synthesis of DME at 200-300 degrees C, 60-150 cm(3)/min and 40 bar. Regardless of slurry concentration, the microreactor exhibited a better reactivity in comparison to fixed-bed reactor performance. Among three different slurry concentrations, 20 wt.% catalyst slurry revealed the best reactivity in direct DME synthesis. The reduction in reactor performance at higher flow rates was significant in the fixed-bed reactor while microreactor, particularly 20 wt.% washcoated channels, revealed less drastic reduction. (C) 2014 Elsevier B.V. All rights reserved.
机译:不锈钢微反应器的微通道成功地用不同浓度(10、20和30 wt。%)的Cu-ZnO-Al2O3 / HZSM-5(CZAZ)纳米催化剂的浆液进行了修补。通过XRD,FESEM,N-2物理吸附,FTIR,EDX-Dot谱图和EDX-Line谱图分析研究了纳米催化剂和表面涂层微通道的性能。对于具有均匀涂层,几乎没有裂纹以及铜和锌均匀分散的20重量%催化剂,观察到最佳的粘附性。在催化剂浆料中浸泡10次期间重量增加的趋势对于10重量%非常慢,但是对于20和30重量%则更快。在30重量%修补基面涂料的情况下,对于催化剂浆料的最后浸泡观察到少量的增重。在200-300摄氏度,60-150 cm(3)/ min / min和40 bar的DME直接合成中评估了具有不同浆料浓度的微反应器的性能。不管淤浆浓度如何,与固定床反应器性能相比,微反应器都表现出更好的反应性。在三种不同的淤浆浓度中,20 wt。%的催化剂淤浆在直接DME合成中显示出最佳的反应性。在较高的流速下,反应器性能的下降在固定床反应器中是显着的,而微反应器,特别是20wt。%的修补基面涂覆的通道,则显示出较少的急剧下降。 (C)2014 Elsevier B.V.保留所有权利。

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