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来源类型 | Article |
规范类型 | 其他 |
DOI | 10.1016/j.energy.2011.09.007 |
Technoeconomic assessment of China's indirect coal liquefaction projects with different CO2 capture alternatives. | |
Zhou W; Zhu B; Chen D; Zhao F; Fei W | |
发表日期 | 2011 |
出处 | Energy 36 (11): 6559-6566 |
出版年 | 2011 |
语种 | 英语 |
摘要 | ICL (Indirect coal liquefaction), an alternative fuel-supplying technology, has drawn much attention and caused considerable debate in China's energy sector. The hurdles to its development include the high risk of investment into large-scale installations, the high CO2 emissions and water resource consumption. A comprehensive assessment of ICL is urgently needed. This study provides an economic assessment and a technical analysis based on process simulations. To address the future challenge of curbing CO2 emissions, three absorption methods are compared for capturing the CO2 released from the ICL process: DM (a novel absorbent), MEA and Rectisol. The comparative results suggest that physical absorbents, represented by Rectisol and DMC, have a remarkable advantage over chemical absorption processes, represented by MEA. The Rectisol process costs the least, while the DMC process is close to the same level. As a novel absorbent, DMC has the potential to be widely used in the future. The economic analysis of CL predicted a high capital cost of over 35 billion yuan and an overall product cost of approximately 3800 yuan/ton for the baseline. In addition, via a sensitivity analysis, coal price, electricity price and capacity factor were identified as the three most influential factors affecting the overall product cost. |
主题 | Energy (ENE) |
关键词 | ICL (Indirect coal liquefaction) CO2 capture Technoeconomic assessment |
URL | http://pure.iiasa.ac.at/id/eprint/9515/ |
来源智库 | International Institute for Applied Systems Analysis (Austria) |
引用统计 | |
资源类型 | 智库出版物 |
条目标识符 | http://119.78.100.153/handle/2XGU8XDN/129239 |
推荐引用方式 GB/T 7714 | Zhou W,Zhu B,Chen D,et al. Technoeconomic assessment of China's indirect coal liquefaction projects with different CO2 capture alternatives.. 2011. |
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