An overview of technologies for capturing, storing, and utilizing carbon dioxide: Technology readiness, large-scale demonstration, and cost

比例(比率) 碳捕获和储存(时间表) 碳中和 工艺工程 新兴技术 过程(计算) 环境科学 计算机科学 风险分析(工程) 环境经济学 温室气体 系统工程 气候变化 工程类 业务 物理 量子力学 生态学 人工智能 经济 生物 操作系统
作者
Divya Baskaran,Panchamoorthy Saravanan,L. Nagarajan,Hun‐Soo Byun
出处
期刊:Chemical Engineering Journal [Elsevier]
卷期号:491: 151998-151998 被引量:22
标识
DOI:10.1016/j.cej.2024.151998
摘要

Concerns are growing regarding the impact of human-caused CO2 emissions on global warming, which is directly linked to climate change. To achieve carbon neutrality, we must prioritize the development of technologies that capture, store, and use CO2. This review provides an updated overview of the technologies for carbon capture, storage, and utilization (CCUS). It focuses on technology readiness, cost analysis, and large-scale facility demonstrations. A deep insight has been conducted into the state-of-the-art of pre-, oxy-fuel, post-, and chemical looping combustion technologies. Geological storage and dynamic models as well as seepage investigations for storing captured carbon are detailed. Furthermore, we explained how waste CO2 can be utilized in industrial processes and discussed the current development stages of these technologies. We also analyzed the stages of various carbon capture technologies based on their technology readiness levels. While reutilizing emitted CO2 can contribute to a circular economy, some technologies may not be economically profitable. The potential challenges and obstacles associated with implementing CCUS facilities on a larger scale are addressed. The review confirms that the cost of CO2 utilization is higher than the capture cost. For the first time, we elucidated the environmental impact of CCUS, and the risks and safety associated with the transportation and storage of CO2. Machine learning algorithms are crucial in CCUS research, but they require appropriate selection and combination for optimal results. This review is a valuable reference point for recent advances in carbon capture and will help understand the CCUS process and future needs.
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