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scopus(7)
Global warming potential-based life cycle assessment and optimization of the compressive strength of fly ash-silica fume concrete; environmental impact consideration
ArticleAbstract: In this research study, extensive literature searches on the compressive strength of concrete producPalabras claves:CO emission 2, Environmental Impact, Fly ash, global warming potential, Life cycle assessment, Silica fume, sustainable concreteAutores:Ariel Riofrio, Ebid A.M., Haci Baykara, Jahangir H., Kontoni D.P.N., Mahdi H.A., Onyelowe K.C., Soleymani A.Fuentes:googlescopusEnvironmental and Economic Viability of Chitosan Production in Guayas-Ecuador: A Robust Investment and Life Cycle Analysis
ArticleAbstract: Ecuador is a country where shrimp production is one of its primary industries. It generates annuallyPalabras claves:Autores:Ariel Riofrio, Haci Baykara, Tania AlcivarFuentes:googlescopusEnvironmental performance of bamboo fibers and sugarcane bagasse reinforced metakaolin-based geopolymers
ArticleAbstract: Global warming and greenhouse gas emissions are significant concerns of the modern world. The cementPalabras claves:Bamboo Fiber, Environmental Impact, Fiber, Geopolymer Composite, Life cycle assessment, Metakaolin, sugar cane bagasseAutores:Ariel Riofrio, Haci Baykara, Mauricio Heriberto CornejoFuentes:googlescopusEffects of Recycled Rubber Particles Incorporated as Partial Sand Replacement on Fresh and Hardened Properties of Cement-Based Concrete: Mechanical, Microstructural and Life Cycle Analyses
ArticleAbstract: Cement is one of the most valuable materials in today’s society, as it is used in most constructionPalabras claves:Life cycle assessment, Mechanical properties, rubber concrete, rubber particlesAutores:Ariel Riofrio, Flores‐rada J., Haci Baykara, Mauricio Heriberto Cornejo, Natividad Troncoso-Garcia, Samantha Acosta-Calderon, Vargas-Moreno K.Fuentes:googlescopusMulti-Objective Pbkp_rediction of the Mechanical Properties and Environmental Impact Appraisals of Self-Healing Concrete for Sustainable Structures
ArticleAbstract: As the most commonly used construction material, concrete produces extreme amounts of carbon dioxidePalabras claves:Bacillus Subtilis, concrete strength and workability, Environmental Impact, Life cycle assessment (LCA), self-healing concrete (SHC), Sustainable Construction, sustainable environmentAutores:Ariel Riofrio, Ebid A.M., Haci Baykara, Ibe K., Jahangir H., Mahdi H.A., Onyelowe K.C., Soleymani A.Fuentes:googlescopusOptimal Compressive Strength of RHA Ultra-High-Performance Lightweight Concrete (UHPLC) and Its Environmental Performance Using Life Cycle Assessment
ArticleAbstract: Frequent laboratory needs during the production of concrete for infrastructure development purposesPalabras claves:Environmental Impact, Green Concrete, Life cycle impact assessment, Lightweight Concrete, Sustainable ConstructionAutores:Ariel Riofrio, Ebid A.M., Eidgahee D.R., Haci Baykara, Jahangir H., Kontoni D.P.N., Mahdi H.A., Onyelowe K.C., Shakeri J., Soleymani A.Fuentes:googlescopusLife cycle and environmental impact evaluation of polylactic acid (PLA) production in Ecuador
ArticleAbstract: Purpose: Plastics generate more than 500 tons of waste in Ecuador each year, according to statisticsPalabras claves:biopolymer, Climate Change, Environmental Impact, FILM, Life cycle assessment, Polylactic Acid (PLA)Autores:Ariel Riofrio, Haci Baykara, Mauricio Heriberto CornejoFuentes:googlescopus