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Tungstophosphoric acid incorporated hierarchical HZSM-5 catalysts for direct synthesis of dimethyl ether

机译:钨磷酸掺入分层HZSM-5催化剂,用于直接合成二甲醚

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HZSM-5 zeolites are active materials in dimethyl ether (DME) production with high surface acidity. In this study, hierarchical HZSM-5 catalysts were synthesized with steam-assisted crystallization (SAC) method and then in order to increase its surface acidity, TPA was loaded into the HZSM-5 catalyst having various mass ratios (5, 10, 25%) by wet impregnation method. Synthesized catalysts were characterized by N-2 physisorption (BET analysis), X-Ray diffraction and pyridine adsorbed diffuse reflectance FTIR spectroscopy techniques. Characterization analysis of tungstophosphoric acid (TPA) impregnated catalysts indicated that hierarchical HZSM-5 possesses mesoporous structures. The average pore size distribution of TPA impregnated HZSM-5 catalysts were between 17 and 20 nm. TPA impregnation promoted Bronsted acid sites of the catalyst, which favors methanol dehydration reaction. Activity tests have been performed at reaction temperatures of 200 -300 degrees C at 50 bar reaction pressure in the presence of admixed catalysts (physically mixed commercial HifuelR-120 and HZSM-5 based catalysts with a weight ratio of 1:1). Results revealed that the increase in the amount of heteropoly acid has enhanced DME selectivity and CO conversion. Maximum DME selectivity of 57% and CO conversion of 46% were achieved in the presence of the 25TPA@HZSM-5 catalyst at the optimum reaction temperature of 275 degrees C. TGA analysis result of spent catalysts presented the highest amount of coke over HZSM-5. TPA incorporation decreased coke formation due to suppression of the Lewis acid site, which is responsible for the coke formation. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:HZSM-5沸石是具有高表面酸度的二甲醚(DME)生产中的活性材料。在该研究中,用蒸汽辅助结晶(SAC)方法合成了等级HZSM-5催化剂,然后为了增加其表面酸度,将TPA加载到具有各种质量比(5,10,25%的HZSM-5催化剂中(5,10,25%) )通过湿浸渍方法。通过N-2物理吸附(BET分析),X射线衍射和吡啶吸附弥散反射FTIR光谱技术的合成催化剂的特征在于。钨磷酸(TPA)浸渍催化剂的表征分析表明,等级HZSM-5具有中孔结构。 TPA浸渍HZSM-5催化剂的平均孔径分布在17至20nm之间。 TPA浸渍促进催化剂的刚性酸位点,其利用甲醇脱水反应。在混合催化剂(物理混合的商业HIFUELR-120和重量比为1:1的重量比的催化剂)的混合催化剂(物理混合的商业HIFUELR-120和HZSM-5催化剂的存在下,在50巴反应压力下在200 -300℃的反应温度下进行活性试验。结果表明,杂多酸量的增加具有增强的DME选择性和CO转化。在25TPA @ HZSM-5催化剂存在下在275摄氏度的最佳反应温度下实现57%和CO转化46%的CO转化率为46%。花费催化剂的TGA分析结果呈现出最高量的HZSM- 5。 TPA掺入因抑制路易斯酸部位而降低焦炭形成,这对焦炭形成负责。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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