Steam Plastic Waste Gasification
Author:
Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-31160-4_5
Reference19 articles.
1. Ayub, H.M.U., Qyyum, M.A., Qadeer, K., Binns, M., Tawfik, A., Lee, M.: Robustness enhancement of biomass steam gasification thermodynamic models for biohydrogen production: introducing new correction factors. J. Clean. Prod. 321, 128954 (2021)
2. Sun, Y., Chen, J., Zhang, Z.: Biomass gasification using the waste heat from high temperature slags in a mixture of CO2 and H2O. Energy 167, 688–697 (2019)
3. Talero, G., Kansha, Y.: Simulation of the steam gasification of Japanese waste wood in an indirectly heated downdraft reactor using PRO/II™: numerical comparison of stoichiometric and kinetic models. Energies 15(12), 4181 (2022)
4. Lampropoulos, A., Binas, V., Konsolakis, M., Marnellos, G.E.: Steam gasification of Greek lignite and its chars by co-feeding CO2 toward syngas production with an adjustable H2/CO ratio. Int. J. Hydrogen Energy 46(56), 28486–28500 (2021)
5. Mojaver, P., Khalilarya, S., Chitsaz, A.: Multi-objective optimization using response surface methodology and exergy analysis of a novel integrated biomass gasification, solid oxide fuel cell and high-temperature sodium heat pipe system. Appl. Therm. Eng. 156, 627–639 (2019)
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1. A metaheuristic Multi-Objective optimization of energy and environmental performances of a Waste-to-Energy system based on waste gasification using particle swarm optimization;Energy Conversion and Management;2024-10
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