Techno-Economic Analysis of State-of-the-Art Carbon Capture Technologies and Their Applications: Scient Metric Review

Raghad Adam, Bertug Ozarisoy
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Abstract

Carbon dioxide (CO2) emissions are a serious hazard to human life and the ecosystem. This is the reason that many measures have been put in place by the International Energy Agency (IEA) to reduce the anthropogenic-derived CO2 concentration in the atmosphere. Today, the potential of renewable energy sources has led to an increased interest in investment in carbon capture and storage technologies worldwide. The aim of this paper is to investigate state-of-the-art carbon capture and storage (CCS) technologies and their derivations for the identification of effective methods during the implementation of evidence-based energy policies. To this extent, this study reviews the current methods in three concepts: post-combustion; pre-combustion; and oxy-fuel combustion processes. The objective of this study is to explore the knowledge gap in recent carbon capture methods and provide a comparison between the most influential methods with high potential to aid in carbon capture. The study presents the importance of using all available technologies during the post-combustion process. To accomplish this, an ontological approach was adopted to analyze the feasibility of the CCS technologies available on the market. The study findings demonstrate that priority should be given to the applicability of certain methods for both industrial and domestic applications. On the contrary, the study also suggests that using the post-combustion method has the greatest potential, whereas other studies recommend the efficiency of the oxy-fuel process. Furthermore, the study findings also highlight the importance of using life cycle assessment (LCA) methods for the implementation of carbon capture technologies in buildings. This study contributes to the energy policy design related to carbon capture technologies in buildings.
最新碳捕集技术及其应用的技术经济分析:科学计量评论
二氧化碳(CO2)排放严重危害人类生命和生态系统。这就是为什么国际能源机构(IEA)已经采取了许多措施来减少大气中人为产生的二氧化碳浓度。今天,可再生能源的潜力导致全球对碳捕获和储存技术投资的兴趣增加。本文的目的是研究最先进的碳捕集与封存(CCS)技术及其衍生产品,以便在实施循证能源政策期间确定有效的方法。在此程度上,本研究回顾了目前的方法在三个概念:燃烧后;预燃;以及氧燃料燃烧过程。本研究的目的是探索最近碳捕获方法的知识差距,并提供最有影响力的方法之间的比较,这些方法具有高潜力,有助于碳捕获。该研究提出了在燃烧后过程中使用所有可用技术的重要性。为了实现这一目标,采用本体论方法分析了市场上可用的CCS技术的可行性。研究结果表明,应优先考虑某些方法对工业和家庭应用的适用性。相反,该研究还表明,使用燃烧后方法具有最大的潜力,而其他研究则建议使用氧燃料过程的效率。此外,研究结果还强调了使用生命周期评估(LCA)方法在建筑物中实施碳捕获技术的重要性。本研究为建筑碳捕获技术相关的能源政策设计提供了参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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