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An approach of CO2 capture technology for mitigating global warming and climate change-an overview

机译:CO 2 捕获技术缓解全球变暖和气候变化的方法-概述

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Energy and the environment are two of the most important issues this century. More than 80 % of our energy comes from the combustion of fossil fuels, which will still remain the dominant energy source for years to come. It is agreed that carbon dioxide produced from the combustion process to be the most important anthropogenic greenhouse gas leading to global warming. Atmospheric CO2 concentrations have indeed increased by almost 100 ppm since their pre-industrial level, reaching 384 ppm in 2007 and still increasing with a total annual emission of over 35 Gt. Prompt global actions to resolve the CO2 crisis is therefore needed. To pursue such an action, we are urged to save energy without the unnecessary production of carbon emissions and to use energy in more efficient ways, but alternative methods to mitigate the greenhouse gas have to be considered. There is a large energy penalty in the proven technology of chemical absorption/stripping of CO2 using amine solvents. The aim in this study is to develop fast catalytic absorption/ desorption of CO2 at low temperatures using water as solvent. The naturally occurring zinc metallo-enzyme carbonic anhydrase (CA) can concentrate CO2 using a reversible Hydration /dehydration cycle at neutral pH and at ambient temperatures. Some tripodal complexes of zinc (II), and other metals mimic the CA catalytic process, which proceeds by hydration of CO2 to bicarbonate followed by the reverse dehydration of the bicarbonate to regenerate CO2. This Minireview highlights some recent promising research activities and their prospects in the areas of carbon capture and storage and chemical fixation of CO2 in constructing a future low-carbon global economy with reference to energy
机译:能源和环境是本世纪最重要的两个问题。我们80%以上的能源来自化石燃料的燃烧,在未来的几年中,化石燃料仍将是主要的能源。人们一致认为,燃烧过程中产生的二氧化碳是导致全球变暖的最重要的人为温室气体。自工业化前的水平以来,大气中的CO 2 浓度确实增加了近100 ppm,在2007年达到384 ppm,并且仍在增加,年总排放量超过35 Gt。因此,需要立即采取全球行动解决CO 2 危机。为了采取这样的行动,我们敦促在不产生不必要的碳排放的情况下节约能源,并以更有效的方式使用能源,但是必须考虑减少温室气体的替代方法。使用胺类溶剂对CO 2 进行化学吸收/汽提的行之有效的技术有很大的能量损失。本研究的目的是利用水作为溶剂,在低温下快速发展CO 2 的催化吸收/解吸。天然存在的锌金属酶碳酸酐酶(CA)可以在中性pH和环境温度下使用可逆的水合/脱水循环来浓缩CO 2 。锌(II)和其他金属的某些三脚架络合物模仿CA催化过程,该过程通过将CO 2 水合为碳酸氢盐,然后将碳酸氢盐反向脱水以再生CO 2 < / inf>。这份小型回顾着重介绍了一些近期有前途的研究活动及其在CO 2 的碳捕获,存储和化学固定领域中的前景,在构建未来低碳全球经济方面涉及能源

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