利用碳捕集减缓气候变化:概述

O. Towoju, Moses Omolayo Petinrin
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引用次数: 2

摘要

由于气候变化的影响,世界正处于灾难的边缘。需要采取激烈的行动来扭转这种丑陋的趋势。针对全球变暖的一些解决方案是采用可再生能源和停止燃烧化石燃料。然而,低容量系数和能源回报率一直是一些可再生能源使用的祸根。然而,在被称为碳捕获的去除温室气体的技术中存在回旋余地。广泛采用的方法是点源法,因为它的高浓度有利于更容易的去除过程。从过去五年的数据可以看出,这项技术近年来受到越来越多的关注。然而,这项技术本身并不能保证将全球气温上升控制在1.5摄氏度以下所需的大气二氧化碳水平。以直接空气捕获(DAC)为代表的负排放技术亟待发展。DAC技术的初级阶段和围绕其成本的不确定性仍然构成挑战。使用DAC技术去除一吨二氧化碳的成本可能高达600美元,这是不可持续的,必须大幅降低。虽然预计到2050年,DAC技术每年可以减少980公吨二氧化碳,但目前的数字为0.008公吨。我们认为,固体吸附剂的发展和对太阳固有热能的利用可以改变游戏规则。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Climate change mitigation with carbon capture: An overview
The world is at the verge of catastrophe occasioned by the effect of climate change. Drastic action needs to be taken to reverse this ugly trend. Some of the proffered solutions to global warming is the adoption of renewable energy usage and a stop of fossil fuels combustion. However, the low capacity factor and energy return has been the bane on the usage of some renewable energy sources. A leeway however, exists in the technology of removal of greenhouse gases referred to as Carbon Capture. The widely adopted method being at point source because of its high concentration favouring easier processes of removal. This technology has received increased attention over the years as evident from data for the past five years. However, this technology alone cannot guarantee atmospheric CO2 levels required to maintain global temperature rise below the 1.50C mark. Negative emission technology processes of which the Direct Air Capture (DAC) is one needs to be developed. The infancy of the DAC technology and the uncertainties that surrounds its cost still pose as challenges. The cost of removing a tonne of CO2 with DAC technology can be as high as $600, this is unsustainable and has to be drastically reduced. While it is projected that DAC technology can take out 980 Metric Tonne (MT) CO2/annum by 2050, current figures stand at 0.008 MT. It is our view that the development of solid adsorbents and the harnessing of the thermal energy inherent in the sun can be a game changer.
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