Exergy, Economical and Environmental analysis of a natural gas Direct Chemical Looping Carbon capture and Formic acid-based hydrogen storage system

IF 1 4区 工程技术 Q4 CHEMISTRY, MULTIDISCIPLINARY Iranian Journal of Chemistry & Chemical Engineering-international English Edition Pub Date : 2021-08-09 DOI:10.30492/IJCCE.2021.528164.4669
N. Norouzi, S. Talebi
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引用次数: 2

Abstract

Chemical looping combustion is one of the novel technologies in energy, which can co-generate hydrogen and power with an efficient carbon capture process to control the system’s emission. This system’s carbon capture process is one of the main processes to achieve the United nations’ environmental goals and other climate change control agencies. This paper aims to study Designing a Natural Gas Direct Chemical Looping Carbon capture and Formic acid Hydrogen storage system for a combined cycle power plant and analyze it with energy, exergy, and environmental factors. The model was implemented on a 500 MW combined cycle power plant unit in Iran, and the results show that if the model is implemented on the plant, overall energy efficiency can be increased by 33%. Furthermore, according to the references, the carbon emissions decreased more than 93%, which is an achievable target using the Chemical looping combustion.
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天然气直接化学环捕碳与甲酸储氢系统的能源、经济与环境分析
化学环燃烧是一种新型的能源技术,它可以通过有效的碳捕获过程来控制系统的排放,从而实现氢和电的联产。该系统的碳捕获过程是实现联合国环境目标和其他气候变化控制机构的主要过程之一。本文旨在研究设计一种用于联合循环电厂的天然气直接化学环捕碳和甲酸储氢系统,并对其进行能源、能源和环境因素分析。在伊朗某500mw联合循环电厂机组上实施了该模型,结果表明,该模型在该电厂上实施后,整体能源效率可提高33%。此外,根据参考文献,碳排放量减少了93%以上,这是使用化学环燃烧可以实现的目标。
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来源期刊
CiteScore
2.80
自引率
22.20%
发文量
0
审稿时长
6-12 weeks
期刊介绍: The aim of the Iranian Journal of Chemistry and Chemical Engineering is to foster the growth of educational, scientific and Industrial Research activities among chemists and chemical engineers and to provide a medium for mutual communication and relations between Iranian academia and the industry on the one hand, and the world the scientific community on the other.
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