4.8 Article

Opportunities for Decarbonizing Existing US Coal-Fired Power Plants via CO2 Capture, Utilization and Storage

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ENVIRONMENTAL SCIENCE & TECHNOLOGY
卷 49, 期 13, 页码 7571-7579

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AMER CHEMICAL SOC
DOI: 10.1021/acs.est.5b01120

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  1. CMU's Berkman Faculty Development Fund

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This study employs a power plant modeling tool to explore the feasibility of reducing unit-level emission rates of CO2 by 30% by retrofitting carbon capture, utilization, and storage (CCUS) to existing U.S. coal-fired electric generating units (EGUs). Our goal is to identify feasible EGUs and their key attributes. The results indicate that for about 60 gigawatts of the existing coal-fired capacity, the implementation of partial CO2 capture appears feasible, though its cost is highly dependent on the unit characteristics and fuel prices. Auxiliary gas-fired boilers can be employed to power a carbon capture process without significant increases in the cost of electricity generation. A complementary CO2 emission trading program can provide additional economic incentives for the deployment of CCS with 90% CO2 capture. Selling and utilizing the captured CO2 product for enhanced oil recovery can further accelerate CCUS deployment and also help reinforce a CO2 emission trading market. These efforts would allow existing coal-fired EGUs to continue to provide a significant share of the U.S. electricity demand.

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