Assessing the potential of energy saving in a traditional sugar cane mill during steady state and transient conditions—part I: base case plant model

Author:

Birru Eyerusalem,Erlich Catharina,Beyene Getachew Bekele,Martin Andrew

Publisher

Springer Science and Business Media LLC

Subject

Renewable Energy, Sustainability and the Environment

Reference30 articles.

1. Morandin M, Toffolo A, Lazzaretto A, Maréchal F, Ensinas A, Nebra S (2011) Synthesis and parameter optimization of a combined sugar and ethanol production process integrated with a CHP system. Energy 36:3675–3690

2. Deshmukh R, Jacobson A, Chamberlin C, Kammen C (2013) Thermal gasification or direct combustion? Comparison of advanced cogeneration systems in the sugarcane industry. Biomass Bioenergy 55:163–164

3. WADE, World Alliance for Decentralized Energy (2004) Bagasse cogeneration global review and potential. https://cdm.unfccc.int/filestorage/2/K/J/2KJXDVUHFZ0MYG3WOBT91NA7QE6LP5/4057Annex6BagasseCogeneration-GlobalReviewandPotential.pdf?t=M098bm9qdTNxfDBDkAsZVdlUBjCPmWdKPybd . Accessed January 2014

4. ISO (International Sugar Organization)(2009) Cogeneration-opportunities in the world sugar industry. http://www.scribd.com/doc/26300484/Co-Generation-in-Sugar-Industry#scribd . Accessed January 2014

5. R.S. Enviro Engineers (2007) Bagasse assessment report for 31MW bagasse based cogeneration project. https://cdm.unfccc.int . Accessed February 2014

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