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economic environmental rock milling production line price in mexico city

economic environmental rock milling production line price in mexico city

The sugar cane production is one of the main economic activities of the agriculture sector in several places around the world. Nowadays, the sugarcane production zones face different technologic, economic, and social problems that impact negatively their profitability. The low price of sugar in the market demands the search of alternatives; being the bioethanol production from resides of the sugar cane industry an attractive option. This way, this paper presents a new approach for using the residues from the sugar cane industry to yield a sustainable biorefinery. In this approach, process integration techniques have been implemented to optimize the overall process. A case study from the State of Michoacán in Mexico is presented, where the proposed approach shows significant economic, environmental, and social benefits

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optimal reconfiguration of a sugar cane industry to yield

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Cavalett O, Junqueria TL, Dias MOS, Charles DFJ, Mantelatto PE, Cunha MP, Franco HCJ, Cardoso TF, Filho RM, Rossell CEV, Bonomi A (2012) Environmental and economic assessment of sugarcane first generation biorefineries in Brazil. Clean Technol Environ Policy 14(3):399–410

Chouinard-Dessault P, Bradt L, El-Halwagi MM, Ponce-Ortega JM (2011) Incorporation of the process integration into life cycle analysis for the production of biofuels. Clean Technol Environ Policy 13(5):673–685

optimal reconfiguration of a sugar cane industry to yield

Dias M, Ensinas A, Nebra S, Filho R, Rossell C, Wolf-Maciel M (2009) Production of bioethanol and other bio-based materials from sugarcane bagasse: integration to conventional bioethanol production process. Chem Eng Res Des 89(9):1206–1216

Dias M, Junqueira T, Cavalett O, Cunha M, Jesus C, Rossell C, Maciel-Filho R, Bonomi A (2012) Integrated versus stand-alone second generation ethanol production from sugarcane bagasse and trash. Bioresour Technol 103(1):152–161

Dos-Santos SF, Siqueira H (2015) Model framework to construct a single aggregate sustainability indicator: an application to the biodiesel supply chain. Clean Technol Environ Policy. doi:10.1007/s10098-015-0919-8

optimal reconfiguration of a sugar cane industry to yield

González-Delgado AD, Kafaroz V, El-Halwagi M (2015) Development of a topology of microalgae-based biorefinery: process synthesis and optimization using a combined forward backward screening and superstructure approach. Clean Technol Environ Policy. doi:10.1007/s10098-015-0946-5

Kravanja P, Könighofer K, Canella L, Jungmeier G, Friedl A (2012) Perspectives for the production of bioethanol from wood and straw in Austria: technical, economic, and ecological aspects. Clean Technol Environ Policy 14(3):411–425

Martínez-Guido SI, González-Campos JB, Del-Río RE, Ponce-Ortega JM, Nápoles-Rivera F, Serna-González M, El-Halwagi MM (2014) A multiobjective optimization approach for the development of a sustainable supply chain of a new fixative in the perfume industry. ACS Sustain Chem Eng 2(10):2380–2390

optimal reconfiguration of a sugar cane industry to yield

Murillo-Alvarado PE, Santibañez-Aguilar JE, Ponce-Ortega JM, Castro-Montoya AJ, Serna-González M, El-Halwagi MM (2014) Optimization of the supply chain associated to the production of bioethanol from residues of Agave from the Tequila process in Mexico. Ind Eng Chem Res 53(13):5524–5538

Ojeda K, Suárez J, Ávila O, Kafarov V (2011) Evaluation of technological alternatives for process integration of sugarcane bagasse for sustainable biofuels production Part 1. Chem Eng Res Des 89(3):270–279

SAGARPA (Secretary of Agriculture, Livestock, Rural Development, Fisheries and Food), (2009). Evaluation, modeling and recommendations of soils fertility in the sugar canes fields: Ingenio Pedernales, S.A. de C.V. available in www.sagarpa.gob.mx

optimal reconfiguration of a sugar cane industry to yield

Sakumara S, Amundson J, Badurdeen F, Seay J (2015) A comprehensive techno-economic analysis tool to validate long-term viability of emerging biorefining processes. Clean Technol Environ Policy. doi:10.1007/s10098-015-0945-6

Santibañez-Aguilar JE, Ponce-Ortega JM, González-Campos JB, Serna-González M, El-Halwagi MM (2013) Synthesis of distributed biorefining networks for the value –added processing of Water Hyacinth. ACS Sustain Chem Eng 1(2):284–305

Santibañez-Aguilar JE, González-Campos JB, Ponce-Ortega JM, Serna-González M, El-Halwagi MM (2014) Optimal planning and site selection for the distributed multiproduct biorefineries involving economic, environmental and social objectives. J Clean Prod 65(1):270–294

optimal reconfiguration of a sugar cane industry to yield

Martínez-Guido, S.I., Betzabe González-Campos, J., Ponce-Ortega, J.M. et al. Optimal reconfiguration of a sugar cane industry to yield an integrated biorefinery. Clean Techn Environ Policy 18, 553–562 (2016). https://doi.org/10.1007/s10098-015-1039-1

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