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- W2784872637 abstract "Minimizing the human health and environmental impacts from electricity generation at existing coal-fired power plants (CFPPs) will require extensive plant retrofit, but the separations technologies for reducing CO2 and wastewater emissions at CFPPs are energy intensive. This paper quantifies the electricity generation efficiency and revenue implications of allocating electricity, steam, or residual heat to these emission control processes under several different regulatory scenarios. We develop an energy balance model of the National Energy Technology Laboratory’s 550 MW CFPP without carbon capture (CC) and add models of five CC technologies (one electricity driven and four thermal processes) and five wastewater treatment (WT) technologies (one electricity driven and four thermal processes) to comply with the Clean Power Plan and Effluent Limitation Guidelines emissions regulations. Plant revenue is maximized by utilizing residual heat for WT or CC, but the optimal allocation of limited residual heat reso..." @default.
- W2784872637 created "2018-02-02" @default.
- W2784872637 creator A5042729674 @default.
- W2784872637 creator A5073746366 @default.
- W2784872637 date "2018-01-24" @default.
- W2784872637 modified "2023-10-12" @default.
- W2784872637 title "Retrofitting the Regulated Power Plant: Optimizing Energy Allocation to Electricity Generation, Water Treatment, and Carbon Capture Processes at Coal-Fired Generating Facilities" @default.
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- W2784872637 doi "https://doi.org/10.1021/acssuschemeng.7b04316" @default.
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