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基于环境效益排序曲线选择 CO2 利用的 CO2 源。

Selecting CO2 Sources for CO2 Utilization by Environmental-Merit-Order Curves.

机构信息

Chair of Technical Thermodynamics, RWTH Aachen University , Schinkelstrasse 8, 52062 Aachen, Germany.

出版信息

Environ Sci Technol. 2016 Feb 2;50(3):1093-101. doi: 10.1021/acs.est.5b03474. Epub 2016 Jan 21.

Abstract

Capture and utilization of CO2 as alternative carbon feedstock for fuels, chemicals, and materials aims at reducing greenhouse gas emissions and fossil resource use. For capture of CO2, a large variety of CO2 sources exists. Since they emit much more CO2 than the expected demand for CO2 utilization, the environmentally most favorable CO2 sources should be selected. For this purpose, we introduce the environmental-merit-order (EMO) curve to rank CO2 sources according to their environmental impacts over the available CO2 supply. To determine the environmental impacts of CO2 capture, compression and transport, we conducted a comprehensive literature study for the energy demands of CO2 supply, and constructed a database for CO2 sources in Europe. Mapping these CO2 sources reveals that CO2 transport distances are usually small. Thus, neglecting transport in a first step, we find that environmental impacts are minimized by capturing CO2 first from chemical plants and natural gas processing, then from paper mills, power plants, and iron and steel plants. In a second step, we computed regional EMO curves considering transport and country-specific impacts for energy supply. Building upon regional EMO curves, we identify favorable locations for CO2 utilization with lowest environmental impacts of CO2 supply, so-called CO2 oases.

摘要

将 CO2 作为替代碳原料进行捕获和利用,以用于燃料、化学品和材料,旨在减少温室气体排放和化石资源的使用。对于 CO2 的捕获,存在着大量的 CO2 来源。由于它们排放的 CO2 远远超过了 CO2 利用的预期需求,因此应该选择环境效益最佳的 CO2 来源。为此,我们引入了环境效益排序曲线(EMO 曲线),根据 CO2 供应的环境影响对 CO2 来源进行排序。为了确定 CO2 捕获、压缩和运输的环境影响,我们进行了一项关于 CO2 供应能源需求的综合文献研究,并构建了一个欧洲 CO2 来源数据库。这些 CO2 来源的映射表明,CO2 运输距离通常较小。因此,在第一步中忽略运输因素,我们发现首先从化工厂和天然气处理厂、然后从纸浆厂、发电厂、钢铁厂捕获 CO2,可以将环境影响降到最低。在第二步中,我们考虑了运输和各国能源供应的具体影响,计算了区域 EMO 曲线。基于区域 EMO 曲线,我们确定了具有最低 CO2 供应环境影响的 CO2 利用的有利位置,即所谓的“CO2 绿洲”。

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