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Title Optimal design of the pellet production supply chain from in Queretaro, Mexico
ID_Doc 17046
Authors Monroy-Garduno, LF; Murguia, DMA; Guzman-Martinez, CE; Gutierrez-Antonio, C; Martinez-Guido, SI
Title Optimal design of the pellet production supply chain from in Queretaro, Mexico
Year 2023
Published
DOI 10.18845/tm.v36i10.7008
Abstract Global energy demand has increased dramatically due to population growth. In Mexico, there has been a 209% increase in electricity consumption at the national level from 1990-2020, reaching 307.480 T1/Vh [1]. In this sense, it is now necessary to identify new sustainable energy sources with which it is possible to meet the needs economically and efficiently. Biomass is one of the most abundant and available components on the planet, so it is a crucial part of the production of bioenergetics that promote the circular economy [2]. Specifically, using residual biomass from agro-industrial processes as a raw material for biofuels is an attractive alternative with which it is possible to visualize a sustainable energy landscape while promoting the integral management of this waste. Thus, this paper proposes the optimal design of the supply chain of pellet production from agro-waste, taking as a case study the state of Quer & eacute;taro in Mexico. For this purpose, a linear integer mixed mathematical optimization model was proposed, encoded in GAMS. The results show that it is possible to satisfy 62% of energy in Quer & eacute;taro using pellets obtained from agro-biomass. In addition, these biofuels allow a 20% reduction in emissions by replacing conventional sources for energy production with agro-waste.
Author Keywords Biomass waste; circular economy; mathematical optimization
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Emerging Sources Citation Index (ESCI)
EID WOS:001237716000004
WoS Category Multidisciplinary Sciences
Research Area Science & Technology - Other Topics
PDF https://revistas.tec.ac.cr/index.php/tec_marcha/article/download/7008/6806
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