二氧化碳捕获技术的发展路径:综述

Ashokkumar Shyam , Kalilur Rahiman Arshad Ahmed , Jeyaraman Prasanna Naveen Kumar , Selvarasan Iniyan , Ranko Goic
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引用次数: 0

摘要

全球变暖和气候变化是一个全球性的重大问题。人类活动排放的二氧化碳(CO2)被认为是导致全球变暖的人为温室气体(ghg)中的主要污染物之一。二氧化碳的总排放量可以通过有效使用低碳燃料,也可以通过使用氢和可再生能源系统,也可以通过采用有效的碳捕获技术来减少。在上述三种方法中,二氧化碳的捕获和储存是最有前途的方法。从物理吸收、化学吸收、混合溶剂和膜吸收等传统方法到低温分离、天然气水合物、先进膜、矿物碳酸化、生物固定、直接空气捕获和储存等现代方法,目前大约有50-60种不同的二氧化碳捕获技术。这篇综述文章试图解决所有关键的可用碳捕获技术,从实验室规模的原型到商业实践。此外,本文试图对各种二氧化碳捕集技术进行清晰的介绍和累积比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Path of carbon dioxide capture technologies: An overview
Global warming and climate change is a critical issue worldwide. Carbon dioxide (CO2) emissions from human activities are considered to be one of the major pollutants among all the anthropogenic greenhouse gases (GHGs) contributing to global warming. The total carbon dioxide emissions can be reduced either by efficient use of low carbon fuels and also by using hydrogen and renewable energy systems and also by employing efficient carbon capture technologies. Among the aforesaid three approaches, carbon dioxide capture and storage is the most promising approach. There are literally around 50–60 different ways of carbon dioxide capture technologies available as from traditional approaches like physical absorption, chemical absorption, mixed solvents, and membrane based absorption to modern methodologies like cryogenic separation, gas hydrates, advanced membrane, mineral carbonation, biological fixation, direct air capture and storage. This review paper tries to address all the key available carbon capture technologies from lab-scale prototypes to commercial practices. In addition, this article attempts to provide a clear introduction and cumulative comparison of all the carbon dioxide capture technologies.
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