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ECOS 2015 - 28th International Conference on Efficiency, Cost, Optimization, Simulation and Environmental Impact of Energy Systems(2)
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scopus(24)
Assessing the exergy degradation of the natural capital: From Szargut's updated reference environment to the new thermoecological-cost methodology
ArticleAbstract: This paper shows the common developments performed by the Institute of Thermal Technology and the RePalabras claves:Chemical exergy, Exergoecology Portal, Exergy Replacement Cost, Mineral resources, Reference environment, Thermo-ecological costAutores:Alicia Valero, Antonio Valero, Stanek W.Fuentes:scopusAvoided energy cost of producing minerals: The case of iron ore
ArticleAbstract: There is growing concern about the decline of the ore grade in mines and the increased energy usagePalabras claves:Energy consumption, Exergy Replacement Cost, Iron, Metallurgy, MINING, ThanatiaAutores:Abadías Llamas A., Alicia Valero, Antonio Valero, Fernandes I., Jose Luis Palacios, Reuter M.A.Fuentes:scopusAn exergy flow analysis of the energy transition
Conference ObjectAbstract: To keep the increase in global mean temperature from global warming to well below 2ºC above pre-induPalabras claves:energy transition, Exergy, Fossil fuels, Green technologies, IEA, Raw material demand, transportAutores:Alicia Valero, Antonio Valero, Ascaso S., Calvo G., Jose Luis Palacios, Ortego A.Fuentes:scopusGlobal material requirements for the energy transition. An exergy flow analysis of decarbonisation pathways
ArticleAbstract: Moving towards a low-carbon economy will imply a considerable increase in the deployment of green tePalabras claves:Energy scenarios, energy transition, Exergy, Green technologies, IEA, Mineral requirementsAutores:Alicia Valero, Antonio Valero, Ascaso S., Calvo G., Jose Luis Palacios, Ortego A.Fuentes:scopusEnergy or Material Savings? Exergy replacement cost applied to a thermoeconomic analysis of three different resource-intensive industries
Conference ObjectAbstract: Thermoeconomics is largely used to assess industries where energy flows come into play. However, howPalabras claves:cement, ceramic, Exergy, Exergy Replacement Cost, Fertilizer, Resource consumption, Resource-intensive industries, thermoeconomic analysis, Thermoeconomic diagnosisAutores:Abadías Llamas A., Alicia Valero, Antonio ValeroFuentes:scopusEngineering application of exergy analysis: Gas recovery system in steel industry
Conference ObjectAbstract: The Basic Oxygen Furnace (BOF) for steel making produces a stream of waste gas at high temperature wPalabras claves:Basic oxygen furnace, Exergy analysis, Gas recoveryAutores:Alicia Valero, Arribas J.J., Llera R., Uche J., Usón S.Fuentes:scopusExergy accounting applied to metallurgical systems: The case of nickel processing
ArticleAbstract: Exergy accounting of energy and material flows for the two main routes of nickel production (from laPalabras claves:Exergoecology, Exergy analysis, Metallurgical systems, Nickel miningAutores:Alicia Valero, Antonio Valero, Domínguez A.Fuentes:scopusExergy analysis of the industrial symbiosis model in Kalundborg
Conference ObjectAbstract: In this paper, the first exergy analysis of the main energy and material flows interchanged in the ePalabras claves:Eco-industrial park, Exergy, industrial symbiosis, Kalundborg, Material flow analysisAutores:Alicia Valero, Costa J., Usón S.Fuentes:scopusExergy as an indicator for resources scarcity. The exergy loss of Australian mineral capital, a case study
Conference ObjectAbstract: Over the span of the 20th century, the global demand for metals and minerals has increased dramaticaPalabras claves:Autores:Alicia Valero, Antonio Valero, Arauzo I.Fuentes:scopusExergy cost assesment for water-related technologies
Conference ObjectAbstract: Fresh water withdrawal increases yearly twice faster than the world population. The trend towards moPalabras claves:exergy cost, Physical hydronomics, Water treatment plantsAutores:Alicia Valero, Carrasquer B., Martínez A., Rubio-Maya C., Uche J.Fuentes:scopus