Wilberforce Tabbi, Olabi A G, Sayed Enas Taha, Elsaid Khaled, Abdelkareem Mohammad Ali
Mechanical Engineering and Design, Aston University, School of Engineering and Applied Science, Aston Triangle, Birmingham B4 7ET, UK.
Mechanical Engineering and Design, Aston University, School of Engineering and Applied Science, Aston Triangle, Birmingham B4 7ET, UK; Dept. of Sustainable and Renewable Energy Engineering, University of Sharjah, P.O. Box 27272, Sharjah, United Arab Emirates.
Sci Total Environ. 2021 Mar 20;761:143203. doi: 10.1016/j.scitotenv.2020.143203. Epub 2020 Nov 11.
Human factors are one of the key contributors to carbon dioxide emissions into the environment. Since the industrial revolution, the atmospheric carbon dioxide levels have increased appreciably. This has been attributed to the utilization of fossil fuels for energy generation coupled with the clearing of forests and extensive manufacturing of some industrial products such as cement. The increase in atmospheric concentrations of carbon dioxide has been widely linked to climate change and the Earth's temperature. A drastic approach is therefore needed in terms of policy formulation to address this global challenge. Carbon capture and storage are reliable tools that can be introduced to the industrial sector to address this issue. Therefore, this review presents a thorough investigation of the various technologies that can be harnessed to capture carbon dioxide. The cost associated with the capture, transport, and storage of the carbon dioxide is discussed. Socio-economic aspects of carbon capture and storage technologies are also presented in this review. Factors influencing public awareness of the technology and perceptions associated with carbon capture and storage should be a point for consideration in future research activities relating to this novel technology. This, in effect, this will ensure effective expert knowledge communication to the general public and foster social acceptance of this technology.
人为因素是向环境中排放二氧化碳的主要因素之一。自工业革命以来,大气中的二氧化碳水平显著上升。这归因于利用化石燃料发电,以及森林砍伐和一些工业产品(如水泥)的大规模生产。大气中二氧化碳浓度的增加与气候变化和地球温度广泛相关。因此,在政策制定方面需要采取严厉措施来应对这一全球挑战。碳捕获与封存是可以引入工业部门来解决这一问题的可靠工具。因此,本综述对可用于捕获二氧化碳的各种技术进行了全面调查。讨论了与二氧化碳捕获、运输和封存相关的成本。本综述还介绍了碳捕获与封存技术的社会经济方面。影响公众对该技术的认识以及与碳捕获与封存相关的看法的因素,应成为未来与这项新技术相关的研究活动的考虑要点。实际上,这将确保向公众有效传播专家知识,并促进社会对该技术的接受。