globalchange  > 影响、适应和脆弱性
DOI: 10.1016/j.jcou.2017.06.007
Scopus记录号: 2-s2.0-85027523177
论文题名:
Overcoming the equilibrium barriers of CO2 hydrogenation to methanol via water sorption: A thermodynamic analysis
作者: Zachopoulos A.; Heracleous E.
刊名: Journal of CO2 Utilization
ISSN: 22129820
出版年: 2017
卷: 21
起始页码: 360
结束页码: 367
语种: 英语
英文关键词: In-situ water sorption ; Process simulation ; Sorption enhanced CO2 hydrogenation to methanol ; Thermodynamic analysis
Scopus关键词: Auxiliary equipment ; Carbon dioxide ; Distillation ; Distillation equipment ; Hydrogenation ; Methanol ; Operating costs ; Recycling ; Sorption ; Thermoanalysis ; Thermodynamic properties ; Thermodynamics ; Capital and operating costs ; CO2 hydrogenation ; Operating parameters ; Process intensification ; Process simulations ; Thermo dynamic analysis ; Thermodynamic equilibria ; Water sorption ; Water recycling
英文摘要: In this work, a detailed thermodynamic analysis and simulation of an intensified process for CO2 hydrogenation to methanol with in-situ water sorption is presented. The study focused on the effect of different operating parameters, such as temperature, pressure, H2/CO2 molar ratio and adsorbent volume capacity, on the reactor performance with the aim to define the optimum operating window. The analysis was also performed for the conventional process as benchmark. The continuous removal of H2O shifts the thermodynamic equilibrium and drives the reactions of CO2 to completion under the entire investigated parameter range. In temperatures and pressures of interest for practical application (220 °C-270 °C and 50-70 bar), the methanol yield is up to 130% higher in the sorption-enhanced process compared to direct hydrogenation. The only negative aspect was the decrease of CH3OH selectivity in favor of CO production. Despite this, the benefits of water sorption are indisputable and overcome the slight decrease in selectivity. The simulation of the complete process, including gas recycle, showed that with in-situ water removal 15% higher methanol productivity can be attained, with very high once-through CO2 conversion and CH3OH yield and very low gas recycle. This has important implications on the economics of the process, as it decreases the size of the reactor and the auxiliary equipment and practically eliminates the need for downstream methanol-water separation via distillation, leading to substantial process intensification and reduction of capital and operating costs. Copy; 2017 Elsevier Ltd. All rights reserved.
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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/52682
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Recommended Citation:
Zachopoulos A.,Heracleous E.. Overcoming the equilibrium barriers of CO2 hydrogenation to methanol via water sorption: A thermodynamic analysis[J]. Journal of CO2 Utilization,2017-01-01,21
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