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将二氧化碳捕集与氧化钙相结合的流化床燃烧系统

Fluidized bed combustion systems integrating CO2 capture with CaO.

作者信息

Abanades J Carlos, Anthony Edward J, Wang Jinsheng, Oakey John E

机构信息

Instituto Nacional del Carbón (CSIC), Oviedo, Spain.

出版信息

Environ Sci Technol. 2005 Apr 15;39(8):2861-6. doi: 10.1021/es0496221.

Abstract

Capturing CO2 from large-scale power generation combustion systems such as fluidized bed combustors (FBCs) may become important in a CO2-constrained world. Using previous experience in capturing pollutants such as SO2 in these systems, we discuss a range of options that incorporate capture of CO2 with CaO in FBC systems. Natural limestones emerge from this study as suitable high-temperature sorbents for these systems because of their low price and availability. This is despite their limited performance as regenerable sorbents. We have found a range of process options that allow the sorbent utilization to maintain a given level of CO2 separation efficiency, appropriate operating conditions, and sufficiently high power generation efficiencies. A set of reference case examples has been chosen to discuss the critical scientific and technical issues of sorbent performance and reactor design for these novel CO2 capture concepts.

摘要

在一个受二氧化碳排放限制的世界中,从大规模发电燃烧系统(如流化床燃烧器)中捕获二氧化碳可能变得至关重要。利用以往在这些系统中捕获诸如二氧化硫等污染物的经验,我们讨论了一系列在流化床燃烧系统中结合使用氧化钙捕获二氧化碳的方案。由于天然石灰石价格低廉且易于获取,本研究表明它们是适用于这些系统的高温吸附剂。尽管它们作为可再生吸附剂的性能有限。我们已经找到了一系列工艺方案,这些方案能使吸附剂利用率维持给定水平的二氧化碳分离效率、合适的运行条件以及足够高的发电效率。我们选择了一组参考案例来讨论这些新型二氧化碳捕获概念中吸附剂性能和反应器设计的关键科学技术问题。

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