Greenhouse Gas Emission Reduction and Economic Benefit Evaluation of Carbon Mineralization Technology using CFBC Ash

Euntae Jung, Jeongyun Kim
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引用次数: 1

Abstract

This study analyzed the amount of carbon dioxide reduction and economic benefits of detailed processes of CO 2 6,000 tons plant facilities with mineral carbonation technology using carbon dioxide and coal materials emitted from domestic circulating fluidized bed combustion power plants. Coal ash reacted with carbon dioxide through carbon mineralization facilities is produced as a complex carbonate and used as a construction material, accompanied by a greenhouse gas reduction. In addition, it is possible to generate profits from the sales of complex carbonates and carbon credits produced in the process. The actual carbon dioxide reduction per ton of complex carbonate production was calculated as 45.8 kgCO 2 eq, and the annual carbon dioxide reduction was calculated as 805.3 tonCO 2 , and the benefit-cost ratio (B/C Ratio) is 1.04, the internal rate return (IRR) is 10.65 % and the net present value (NPV) is KRW 24,713,465 won, which is considered economical. Carbon mineralization technology is one of the best solutions to reduce carbon dioxide considering future carbon dioxide reduction and economic potential.
CFBC灰碳矿化技术的温室气体减排及经济效益评价
本研究利用国内循环流化床燃烧电厂排放的二氧化碳和煤料,分析了矿物碳化技术对2 000 000吨工厂设施详细工艺的二氧化碳减量和经济效益。煤灰通过碳矿化设施与二氧化碳反应产生复杂的碳酸盐,并用作建筑材料,同时减少温室气体。此外,还可以通过销售复杂碳酸盐和在此过程中产生的碳信用额来产生利润。综合碳酸盐生产每吨实际减少二氧化碳量为45.8 kgCO 2 eq,年减少二氧化碳量为805.3吨co 2,效益成本比(B/C比)为1.04,内部收益率(IRR)为10.65%,净现值(NPV)为24713465韩元,具有经济性。考虑到未来的二氧化碳减排和经济潜力,碳矿化技术是减少二氧化碳的最佳解决方案之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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