Hydrogen production with an auto-thermal MSW steam gasification and direct melting system: A process modeling
Author:
Publisher
Elsevier BV
Subject
Energy Engineering and Power Technology,Condensed Matter Physics,Fuel Technology,Renewable Energy, Sustainability and the Environment
Reference53 articles.
1. Prospect of hydrogen production from oil palm biomass by thermochemical process - a review;Hossain;Int J Hydrogen Energy,2016
2. Solar hydrogen production: a comparative performance assessment;Joshi;Int J Hydrogen Energy,2011
3. Integration of renewable energies using the surplus capacity of wind farms to generate H-2 and electricity in Brazil and in the Rio Grande do Sul state: energy planning and avoided emissions within a circular economy;Nadaleti;Int J Hydrogen Energy,2020
4. Municipal solid waste (MSW) as a source of renewable energy in Bangladesh: Revisited;Zakir Hossain;Renew Sustain Energy Rev,2014
5. Municipal solid waste as a valuable renewable energy resource: a worldwide opportunity of energy recovery by using Waste-To-Energy Technologies;Moya;Energy Procedia,2017
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