2017
DOI: 10.24054/16927257.v25.n25.2015.2361
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Análisis Exergético De Un Horno De Lecho Fijo en La Producción De Panela

Abstract: Abstract:The furnaces used for the manufacture of sugar cane have energy losses due to incomplete combustion of sugar cane bagasse and sensible heat in the flue gases. During production of sugar cane, bagasse from sugar cane is used as fuel, with mass fractions of humidity between 30% and 50%, which affect the combustion efficiency in the furnace. The objective of this research is to study the influence of bagasse which is introduced into the furnace of a fixed bed, features, analysis and conclusions. Looking … Show more

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“…Biomass is the third most important source used to generate electricity and thermal applications [14,15]. The most common biomass feedstocks are banana peel, rice and coffee husks, sugarcane bagasse, palm oil processing residues, and the waste of animals [16,17]. Biomass can be considered as a blend of organic resources and minor amounts of minerals, which also contains carbon, oxygen, hydrogen, nitrogen, sulphur, and chlorine [18].Different types of energy can be produced through the thermal conversion of biomass, such as combustion, pyrolysis, gasification, fermentation, and anaerobic decomposition.…”
mentioning
confidence: 99%
“…Biomass is the third most important source used to generate electricity and thermal applications [14,15]. The most common biomass feedstocks are banana peel, rice and coffee husks, sugarcane bagasse, palm oil processing residues, and the waste of animals [16,17]. Biomass can be considered as a blend of organic resources and minor amounts of minerals, which also contains carbon, oxygen, hydrogen, nitrogen, sulphur, and chlorine [18].Different types of energy can be produced through the thermal conversion of biomass, such as combustion, pyrolysis, gasification, fermentation, and anaerobic decomposition.…”
mentioning
confidence: 99%
“…Otros métodos más avanzados, como el análisis dinámico que, basado en una rigurosa y bien fundamentada teoría (v.g., singularidad y bifurcaciones (Kuznetsov, 2004)), ha permitido caracterizar en profundidad la topología de sistemas reactivos (los puntos críticos o bifurcaciones y las regiones de inestabilidad )) a partir de modelos variantes en el tiempo (Elnashaie y Uhlig, 2007). Entre los fenómenos de inestabilidad inherentes a procesos reactivos exotérmicos, los de histéresis y/o multiplicidad de estados estacionarios son especialmente complejos y pueden surgir en sistemas de diferente naturaleza (Durán y Córdoba, 2007;Rincón et. al, 2009).…”
Section: Introductionunclassified