Effect of Pressure and Syngas Composition on Direct Synthesis of Dimethyl Ether using Dual Bed Catalyst

Q4 Chemical Engineering ASEAN Journal of Chemical Engineering Pub Date : 2019-10-24 DOI:10.22146/ajche.50873
A. Ardy, J. Rizkiana, M. Gunawan, H. Susanto
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Abstract

National General Energy Plan of Indonesia 2017 (RUEN 2017) stated that dimethyl ether (DME) is appointed as a blending of LPG to reduce LPG imports. DME can be made with two reaction pathways, namely direct synthesis and indirect synthesis. The objective of this study was to determine the effect of pressure and syngas composition on the direct synthesis of DME using dual fixed bed catalyst. The research was carried out with two types of catalyst: M-xxx as a commercial catalyst for methanol synthesis and γ-Al2O3 as catalyst for dehydration of methanol to DME. The later was prepared in our Laboratory of Chemical Reaction Engineering and Catalysis, ITB. The dual catalyst experiment was carried out at 5 and 7 bars, and a fixed temperature of 240oC. The mass ratio of the M-xxx to γ-Al2O3, so-called M/D ratios, were varied from 1/9 to 9/1. Two type of syngas were used, i.e. SA containing only H2 and CO with a SN of 2,3 and SB containing 4% CO2 with SN of 1,8. The dual bed with a M/D ratio of 1/4 gave a CO conversion up to 62% at 5 bars and 240oC (SA). As pressure increased, the conversion of CO and H2 increases to 85% and 83% at 7 bar and 240oC (SA). The presence of CO2 (SB) decreases catalyst activity, as indicated by the decrease in conversion of CO and H2 to 56% and 54%, at 7 bar and 240oC.
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压力和合成气组成对双床催化剂直接合成二甲醚的影响
印度尼西亚2017年国家总能源计划(RUEN 2017)指出,二甲醚(DME)被指定为液化石油气的混合物,以减少液化石油气进口。二甲醚有直接合成和间接合成两种反应途径。本研究的目的是确定压力和合成气组成对双固定床催化剂直接合成二甲醚的影响。采用两种催化剂进行了研究:M-xxx作为甲醇合成的商业催化剂和γ-Al2O3作为甲醇脱水制二甲醚的催化剂。后者是在我校化学反应工程与催化实验室制备的。双催化剂实验在5巴和7巴条件下进行,固定温度为240℃。M-xxx与γ-Al2O3的质量比,即M/D比值,变化范围为1/9 ~ 9/1。采用两种类型的合成气,即只含H2和CO的SA, SN为2,3;含4% CO2的SB, SN为1,8。M/D比为1/4的双层床在5 bar和240oC (SA)下的CO转化率高达62%。在7 bar和240℃(SA)下,随着压力的增加,CO和H2的转化率分别提高到85%和83%。CO2 (SB)的存在降低了催化剂的活性,在7 bar和240oC条件下,CO和H2的转化率分别降低了56%和54%。
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来源期刊
ASEAN Journal of Chemical Engineering
ASEAN Journal of Chemical Engineering Chemical Engineering-Chemical Engineering (all)
CiteScore
1.00
自引率
0.00%
发文量
15
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