화학공학소재연구정보센터
검색결과 : 17건
No. Article
1 Portland cement clinker production using concentrated solar energy - A proof-of-concept approach
Oliveira FAC, Fernandes JC, Galindo J, Rodriguez J, Canadas I, Vermelhudo V, Nunes A, Rosa LG
Solar Energy, 183, 677, 2019
2 Thermal resistance of solar volumetric absorbers made of mullite, brown alumina and ceria foams under concentrated solar radiation
Oliveira FAC, Fernandes JC, Galindo J, Rodriguez J, Canadas I, Rosa LG
Solar Energy Materials and Solar Cells, 194, 121, 2019
3 Concentrated solar energy used for sintering magnesium titanates for electronic applications
Apostol I, Rodriguez J, Canadas I, Galindo J, Mendez SL, Martins PLD, Cunha L, Saravanan KV
Applied Surface Science, 438, 59, 2018
4 Concentrated solar energy used for heat treatment of Ti6Al4V alloy manufactured by selective laser melting
Chicos LA, Zaharia SM, Lancea C, Pop MA, Canadas I, Rodriguez J, Galindo J
Solar Energy, 173, 76, 2018
5 Reactions of IVa-group metals, Ti and Zr, with uncracked NH3 gas at a temperature in the range between 600 and 800 degrees C under heating with concentrated solar beam at PSA
Oliveira FAC, Vasques IF, Fernandes JC, Canadas I, Rodriguez J, Rosa LG, Shohoji N
Solar Energy, 138, 119, 2016
6 Temperature uniformity improvement in a solar furnace by indirect heating
Oliveira FAC, Fernandes JC, Rodriguez J, Canadas I, Galindo J, Rosa LG
Solar Energy, 140, 141, 2016
7 Nitriding VI-group metals (Cr, Mo and W) in stream of NH3 gas under concentrated solar irradiation in a solar furnace at PSA (Plataforma Solar de Almeria)
Oliveira FAC, Rosa LG, Fernandes JC, Rodriguez J, Canadas I, Magalhaes T, Shohoji N
Solar Energy, 114, 51, 2015
8 Solar blind pyrometry not relying on atmospheric absorption bands
Marzo A, Ballestrin J, Barbero J, Canadas I, Rodriguez J
Solar Energy, 107, 415, 2014
9 Thermal analysis and design of a solar prototype for high-temperature processes
Roldan MI, Canadas I, Casas JL, Zarza E
International Journal of Heat and Mass Transfer, 56(1-2), 309, 2013
10 Sulphur based thermochemical cycles: Development and assessment of key components of the process (vol 38, pg 6197, 2013)
Roeb M, Thomey D, de Oliveira L, Sattler C, Fleury G, Pra F, Tochon P, Breuet A, Roux G, Gruet N, Mansilla C, LeNaour F, Poitou S, Allen RWK, Elder R, Karagiannakis G, Agrafiotis C, Zygogianni A, Pagkoura C, Konstandopoulos AG, Giaconia A, Sau S, Tarquini P, Haussener S, Steinfeld A, Canadas I, Orden A, Ferrato M
International Journal of Hydrogen Energy, 38(20), 8478, 2013