Journal Article10.1016/j.energy.2022.125879
Methanol production from natural gas reforming and CO2 capturing process, simulation, design, and technical-economic analysis
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TL;DR: In this article , a methanol production process with high thermodynamic efficiency and a low production cost is presented, which is based on steam methane reforming, in which carbon dioxide (CO2) captured from a power plant flue gas is employed to improve the stoichiometric number and carbon efficiency and increase CO2 conversion.
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About: This article is published in Energy. The article was published on 01 Oct 2022. The article focuses on the topics: Flue gas & Methane.
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Novel core–shell and recyclable gas hydrate promoter for efficient solidified natural gas storage
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Electrified combined reforming of methane process for more effective CO2 conversion to methanol: Process development and environmental impact assessment
TL;DR: In this article , the authors developed an effective approach for the conversion of CO2 by incorporating the electrified combined reforming reactor (E-CRM), and the process simulation and life cycle assessment (LCA) of the proposed process are conducted considering a variety of recycling ratios of the unreacted syngas to the main reformer using Aspen Plus software.
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Multi-variable study of a novel multigeneration system using biogas separation unit and LNG cold energy utilization, producing electricity, cooling, heat, fresh water, liquid CO2, biomethane, and methanol
Yabing Song,Sayed Fayaz Ahmad,Mohamad Abou Houran,Manoj Kumar Agrawal,Tirumala Uday Kumar Nutakki,Masoom Raza Siddiqui,Aliashim Albani,Qiaolin Su +7 more
TL;DR: A novel multigeneration system utilizing biogas separation and LNG cold energy is proposed, achieving 91% energy and 83% exergy efficiencies, negative CO2 emissions, and favorable economic indicators, including a net present value of $1470.6M and 5.29-year payback period.
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