Design optimization of oxygen-fuel combustion system of municipal solid waste driven by electrolytic oxygen production from renewable energy
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Elsevier BV
Reference51 articles.
1. Municipal solid waste generation and characterization in the City of Johannesburg: a pathway for the implementation of zero waste;Ayeleru;Waste Manage. (Tucson, Ariz.),2018
2. Method for size optimisation of large wind–hydrogen systems with high penetration on power grids;Beccali;Appl. Energy,2013
3. Economic analysis on sewage sludge drying and its co-combustion in municipal solid waste power plant;Chen;Waste Manage. (Tucson, Ariz.),2021
4. Process simulation and optimization of municipal solid waste fired power plant with oxygen/carbon dioxide combustion for near zero carbon dioxide emission;Ding;Energy Convers. Manag.,2018
5. A review of China's municipal solid waste (MSW) and comparison with international regions: management and technologies in treatment and resource utilization;Ding;J. Clean. Prod.,2021
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