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Optimum Location of Biomass Waste Residue Power Plant in Northern Region: Economic and Environmental Assessment. (2020). Othman, Z ; Shafie, S M ; Hami, N.
In: International Journal of Energy Economics and Policy.
RePEc:eco:journ2:2020-01-22.

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  3. D’Ovidio, A., Pagano, M. (2009), Probabilistic multicriteria analyses for optimal biomass power plant design. Electric Power Systems Research, 79(4), 645-652.
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  7. Jeong, J.S., Ramírez-Gómez, . (2018), Optimizing the location of a biomass plant with a fuzzy-DEcision-MAking trial and evaluation laboratory (F-DEMATEL) and multi-criteria spatial decision assessment for renewable energy management and long-term sustainability. Jounal of Cleaner Production, 182, 509-520.
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  8. Liu, L., Ye, J., Zhao, Y., Zhao, E. (2015), The plight of the biomass power generation industry in China a supply chain risk perspective. Renewable and Sustainable Energy Reviews, 49, 680-692.
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  9. Mao, G., Huang, N., Chen, L., Wang, H. (2018), Research on biomass energy and environment from the past to the future: A bibliometric analysis. Science of the Total Environment, 635, 1081-1090.
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  10. Martínez-Guido, S.I., Ríos-Badrán, I.M., Gutiérrez-Antonio, C., PonceOrtega, J.M. (2018), Strategic planning for the use of waste biomass pellets in Mexican power plants. Renewable Energy, 130, 622-632.
    Paper not yet in RePEc: Add citation now
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  12. Shi, X., Elmore, A., Li, X., Gorence, N.J., Jin, H., Zhang, X., Wang, F. (2008), Using spatial information technologies to select sites for biomass power plants: A case study in Guangdong Province, China. Biomass and Bioenergy, 32, 35-43.
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  13. Stich, J., Ramachandran, S., Hamacher, T., Stimming, U. (2017), Technoeconomic estimation of the power generation potential from biomass residues in Southeast Asia. Energy, 135, 930-942.

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