Exergy Analysis of Waste Biorefineries
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Publisher
Springer International Publishing
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-06562-0_33
Reference31 articles.
1. Aghbashlo M, Mandegari M, Tabatabaei M, Farzad S, Soufiyan MM, Görgens JF (2018) Exergy analysis of a lignocellulosic-based biorefinery annexed to a sugarcane mill for simultaneous lactic acid and electricity production. Energy 149:623–638
2. Ayres RU, Ayres LW (1998) Accounting for resources 1: economy-wide applications of mass-balance principles to materials and waste. Edward Elgar, Cheltenham and Lyme MA
3. Fiorini P, Sciubba E (2005) Thermoeconomic analysis of an MSF desalination plant. Desalination 182:39–51
4. Julio AAV, Batlle EAO, Trindade AB, Nebra SA, Reyes AMM, Palacio JCE (2021) Energy, exergy, exergoeconomic, and environmental assessment of different technologies in the production of bio-jet fuel by palm oil biorefineries. Energy Convers Manag 243:114393
5. Kaza S, Yao LC, Bhada-Tata P, Van Woerden F (2018) What a waste 2.0: a global snapshot of solid waste management to 2050. Urban Development, Washington, DC: World Bank. Available at https://openknowledge.worldbank.org/handle/10986/30317 License: CC BY 3.0 IGO
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