@research fellow
Integrated Systems Laboratory (LabSin)
Universidade Estadual de Campinas - Unicamp
Mechanical engineering from the Industrial University of Santander, UIS (Colombia, 2012). Master's degree (Brazil, 2015) and Ph.D. (Brazil, 2019), in the area of thermal and fluids, in mechanical engineering from State University of Campinas (Unicamp)
Renewable Energy, Sustainability and the Environment, Mechanical Engineering, Energy, Energy Engineering and Power Technology
The research aims to develop a technological route for the recovery of valuable elements from lithium batteries.
Research in urban mining, aiming to meet the technological demands of the government, industry and academia, related to the development of sustainability technologies for the recovery of valuable elements from electronic waste that, in addition to minimizing the impact of these products on the environment and , consequently, to public health, promote the circular economy and social and economic development.
The project focuses on recovering a portion of the energy lost during braking and downhill movement and subsequently using it in the refrigeration system of the cold chamber. The electrification of the cold chamber system will be achieved through modules that enable the generation of electric power recovered during braking, energy storage, recharging via the power grid or a generator, and a power management control module. This control module ensures the correct operation and synergy among all systems. This modular solution will be developed in partnership with the company Original and funded by the ROTA2030 project.
Scopus Publications
Scholar Citations
Scholar h-index
Scholar i10-index
Marcos B. C. Pimentel, Deyber A. Ramirez-Quintero, Sebastião Eleutério, and Carlos R. M. de Oliveira
IEEE
In 2021, Brazil initiated the implementation of its Electric Electronic Waste Reverse Logistics System (EEWRLS), aiming to collect and the environmentally sound management of the post-consumer of electric electronic across the country, as regulated by decree 10.240 of 2020. The System is based on shared responsibility among manufacturers, traders, and electric electronic equipment consumers and, its implementation, was carried out through Managing Entities, with the voluntary participation of municipalities and social organizations. The EEWRLS goals is gradually, over 5 years, achieve the rate of 17% of Electrical Electronic Equipment volume placed on the market. In 2022, the second year of system implementation, the country's two largest Managing Entities achieved the goals set by the System for that period. This paper presents the results of Electric Electronic Waste Reverse Logistic System in Brazil, between 2021 and 2022, and discusses the main challenges identified during the System implementation, which include: (i) the establishment of new recycling companies over all the country; (ii) the management of collecting and recycling services around the Brazilian 400 largest cities, spread over a continental area; (iii) ensuring the quality of electric electronic waste recycling companies in compliance with Brazilian recycling standards; and (iv) raising consumer awareness to encourage effective disposal of electric electronic waste in an environmentally sound way.
Deyber A. Ramirez-Quintero and Waldir A. Bizzo
Elsevier BV
Paulo César Lenço, Deyber Alexander Ramirez-Quintero, and Waldir Antonio Bizzo
Elsevier BV
Setti, A. F. R.; Ramirez-Quintero, D. A.; Pimentel, M. B. C. Métodos alternativos de pré-tratamento das baterias de íon-lítio descartadas. In: XXIV Jornada de Iniciação Científica do CTI Renato Archer, 2022, Campinas. XXIV Jornada de Iniciação Científica do CTI Renato Archer, 2022. v. 2022.
Santos, N. G.; Ramirez-Quintero, D. A.; Oliveira, C. R. M.; Eleuterio Filho, S. Desenvolvimento de Tecnologias de Sustentabilidade para Minimizar o Impacto dos Produtos Eletroeletrônicos no Meio Ambiente. In: XXIII Jornada de Iniciação Científica do CTI Renato Archer, 2021, Campinas. XXIII Jornada de Iniciação Científica do CTI Renato Archer, 2021. v. 2021.
Ramirez-Quintero, Deyber Alexander. A lixiviação verde na recuperação de elementos valiosos das baterias de íon lítio. In: XI Seminário em Tecnologia da Informação do Programa de Capacitação Institucional (PCI) do CTI Renato Archer, 2021, Campinas. XI Seminário em TI do PCI/CTI, 2021. v. 2021.
Ramirez-Quintero, Deyber Alexander. Revisão de processos de recuperação de elementos valiosos de resíduos eletroeletrônicos para o desenvolvimento de uma rota tecnológica no CTI Renato Archer. In: X Seminário em Tecnologia da Informação do Programa de Capacitação Institucional (PCI) do CTI Renato Archer, 2020, Campinas. X Seminário em TI do PCI/CTI, 2020. v. 2020.
Ramirez-Quintero, D. A.; Pecora, A. A. B. Experimental study on fluidization of biomass-sand mixtures. In: Advanced School on the Present and Future of Bioenergy, 2014, Campinas. Experim