Zobrazeno 1 - 10
of 27
pro vyhledávání: '"Marcos Sebastião De Paula Gomes"'
Autor:
Sully Milena Mejia Quintero, Luiz Carlos Guedes Valente, Marcos Sebastião de Paula Gomes, Hugo Gomes da Silva, Bernardo Caroli de Souza, Sergio R. K. Morikawa
Publikováno v:
Sensors, Vol 18, Iss 12, p 4393 (2018)
A realistic implementation of an all-fiber CO2 sensor, using 74 cm of hollow core photonic crystal fiber (HC-PCF) as the cavity for light/gas interaction, has been implemented. It is based on CO2 absorbance in the 2 µm region. The working range is f
Externí odkaz:
https://doaj.org/article/ae11417c6ede442c9d5a4cc337de3406
Publikováno v:
Procceedings of the 19th Brazilian Congress of Thermal Sciences and Engineering.
Publikováno v:
Energy Conversion and Management. 195:1359-1370
This article presents both an original contribution and a comprehensive technical review of the existing methods of “energy-ecologic efficiency” and “ecological efficiency”. As an original contribution, this work aims at investigating for the
Publikováno v:
Energy Conversion and Management. 179:397-417
Recently, studies have been evaluating the thermodynamic performance of new configurations of integrated waste-to-energy/gas turbine cycles, but a question still remains: “Instead of building new natural gas power plants or installing conventional
Autor:
Marcos Sebastião De Paula Gomes, Juliana Carvalho, Marbey M. Mosso, Luiz Carlos Guedes Valente, Sully Milena Mejia Quintero
Publikováno v:
Terahertz (THz), Mid Infrared (MIR) and Near Infrared (NIR) Technologies for Protection of Critical Infrastructures Against Explosives and CBRN ISBN: 9789402420814
The focus of this work is the development of gas detection system with acetylene (C2H2) and carbon dioxide (C2O). The system operates in the near infrared region (NIR) including an amplified spontaneous emission source (ASE) and microstructured optic
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::9a99c8ddd768cca9392844fb331af381
https://doi.org/10.1007/978-94-024-2082-1_16
https://doi.org/10.1007/978-94-024-2082-1_16
Publikováno v:
Journal of Petroleum Science and Engineering. 171:164-174
Mature oilfields and aquifers are the most favorable targets for the CO2 sequestration projects. In this work, the purpose is to investigate an alternative approach in which at very early stage of the oil production, combines CO2-EOR and CO2 sequestr
Autor:
Sergio Leal Braga, Renata Nohra Chaar Pradelle, Marcos Sebastião de Paula Gomes, Ana Rosa Fonseca de Aguiar Martins, Maria Luisa N.M. Carneiro, Franck Turkovics, Florian Pradelle
Publikováno v:
Renewable and Sustainable Energy Reviews. 73:632-653
Despite a substantial literature using life cycle assessment (LCA) approach, the extent to which second and third generation biofuels are more sustainable than the first generation remains a subject of debate. Although the existence of limitations du
Autor:
Victor Cabral da Hora Aragão Carvalho, Marco Antonio Díaz Díaz, Marcos Sebastião de Paula Gomes
Publikováno v:
Applied Mechanics and Materials. 830:117-124
With the demand for Biofuels growing – worldwide – and with the efforts to reduce greenhouse gas emissions (GHG), much would be gained, from an environmentally and economically, from increasing efficiency and offer of biofuels. Biofuels produced
Autor:
Marcos Sebastião de Paula Gomes, J. Lampreia, D. Berrêdo Viana, M.S. Muylaert de Araújo, Marcos Aurélio Vasconcelos de Freitas, N.B. Carvalho
Publikováno v:
Renewable and Sustainable Energy Reviews
This paper offers perspectives on the development of low-carbon energy technology in Brazil, pinpointing changes that have occurred since our former publication in 2011. It takes a fresh approach in terms of how likely Brazil will achieve its Nationa
Autor:
Hugo Gomes da Silva, Luiz Carlos Guedes Valente, Marcos Sebastião de Paula Gomes, Sully Milena Mejia Quintero, Bernardo Caroli de Souza
A realistic implementation of an all-fiber CO2 sensor, using 74 cm of hollow core PCF fiber as the cavity for light/gas interaction, has been implemented. It is based on CO2 absorbance in the 2 μm region. The working range is from 2% to 100% CO2 con
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_________::6a6604824c5fd8f78ea1ae51be85254f
https://doi.org/10.20944/preprints201810.0747.v1
https://doi.org/10.20944/preprints201810.0747.v1