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- W4387421658 abstract "To promote the transformation of traditional coal industry to clean energy, and promote the upgrading and sustainable development of energy industry. A novel integrated system coupled coalbed methane recovery and PEMFC are proposed. Exergy, economic, exergoeconomic, and environmental analysis (4E) models are established to analyze the proposed system. The multi-objective optimization is conducted to obtain Pareto frontiers, and TOPSIS and Shannon entropy method are used for the final optimal solution. The results show that the total exergy destruction of the system is 348.83 W, and the exergy efficiency is 34.56%, at the reforming temperature of 800 °C. As the reforming temperature increases, the total annual costs of the proposed system decreases from 173.04 × 104 $ to 165.72 × 104 $. The PEMFC has the highest total cost rate than all other components, with the lowest exergoeconomic benefits. Life cycle assessment results show that the construction phase has the serious environmental damage. The total exergy destruction, total annual cost, and Ecological Indicator 16 (EI16) are used as objective functions for multi-objective optimization and the results show that the reforming temperature of 774.29 °C is the optimal operating condition of the system. The total annual cost, total exergy destruction, EI16 and the exergy efficiency of the system are 172.01 × 104 $, 336.31 W, 684.11 and 34.91%, respectively. The findings of this research can provide new ideas for the development and utilization of coalbed methane." @default.
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- W4387421658 date "2023-12-01" @default.
- W4387421658 modified "2023-10-18" @default.
- W4387421658 title "Exergy, economic, exergoeconomic and environmental (4E) analyses and multi-objective optimization of a PEMFC system for coalbed methane recovery" @default.
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- W4387421658 doi "https://doi.org/10.1016/j.enconman.2023.117734" @default.
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