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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:scopusAn exergoecological analysis of the mineral economy in Spain
ArticleAbstract: This paper shows how exergy can be used to assess the mineral balance of a country and at the same tPalabras claves:Domestic material consumption, Exergy analysis, Exergy replacement costs, Material extractionAutores:Alicia Valero, Antonio Valero, Calvo G., Carpintero O.Fuentes:scopusA pbkp_rediction of the exergy loss of the world's mineral reserves in the 21st century
ArticleAbstract: This paper makes an assessment of the exergy loss of the main minerals produced in the world throughPalabras claves:21st Century, Depletion, Energy scenarios, Exergy, exergy cost, Fuels, mineralsAutores:Alicia Valero, Antonio ValeroFuentes: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:scopusEnvironmental costs of a river watershed within the European water framework directive: Results from physical hydronomics
ArticleAbstract: Physical hydronomics (PH) is the specific application of thermodynamics that physically characterizePalabras claves:Environmental costs, European Water Framework Directive, Exergy, Physical hydronomics, River basinAutores:Alicia Valero, Antonio Valero, Martínez A., Uche J.Fuentes:scopusEvolution of the decrease in mineral exergy throughout the 20th century. The case of copper in the US
ArticleAbstract: A mineral deposit is a natural resource whose exergy can be calculated from a defined reference enviPalabras claves:Chemical exergy, Concentration exergy, Copper production, Exergy degradation, Exergy of a mine, Exergy replacement cost of a mine, minerals, Natural resourcesAutores:Alicia Valero, Antonio Valero, Arauzo I.Fuentes:scopusExergoecology: A thermodynamic approach for accounting the Earth's mineral capital. The case of bauxite-aluminium and limestone-lime chains
ArticleAbstract: As man extracts minerals, the natural deposits become depleted in quantity and concentration, and hePalabras claves:Aluminium industry, Exergoecology, exergy cost, Lime industry, Mineral exergy bonus, minerals, ResourcesAutores:Alicia Valero, Antonio ValeroFuentes: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 of comminution and the Thanatia Earth's model
ArticleAbstract: The exergy assessment of the mineral capital on Earth has been usually calculated as the minimum andPalabras claves:Crepuscular planet, Exergy of comminution, minerals, ThanatiaAutores:Alicia Valero, Antonio ValeroFuentes:scopusInventory of the exergy resources on earth including its mineral capital
ArticleAbstract: This paper makes an inventory of the natural capital on earth in terms of exergy, which includes notPalabras claves:ENERGY RESOURCES, Exergy, exergy cost, minerals, Natural capitalAutores:Alicia Valero, Antonio Valero, Martínez A.Fuentes:scopus