화학공학소재연구정보센터
검색결과 : 11건
No. Article
1 Tubular reactor design for the oxidative dehydrogenation of butene using computational fluid dynamics (CFD) modeling
Mendoza JA, Hwang SW
Korean Journal of Chemical Engineering, 35(11), 2157, 2018
2 A nonlinear robust PI controller for an uncertain system
Aguilar-Ibanez C, Mendoza-Mendoza JA, Suarez-Castanon MS, Davila J
International Journal of Control, 87(5), 1094, 2014
3 Photocatalytic reduction of carbon dioxide using Co3O4 nanoparticles under visible light irradiation
Mendoza JA, Kim HK, Park HK, Park KY
Korean Journal of Chemical Engineering, 29(11), 1483, 2012
4 Divalent cations stabilize GroEL under conditions of oxidative stress
Melkani GC, Sielaff RL, Zardeneta G, Mendoza JA
Biochemical and Biophysical Research Communications, 368(3), 625, 2008
5 Protection of GroEL by its methionine residues against oxidation by hydrogen peroxide
Melkani GC, Kestetter J, Sielaff R, Zardeneta G, Mendoza JA
Biochemical and Biophysical Research Communications, 347(2), 534, 2006
6 Biofiltration of waste gases in a reactor with a split-feed
Mendoza JA, Veiga MC, Kennes C
Journal of Chemical Technology and Biotechnology, 78(6), 703, 2003
7 Optimization of nutrient supply in a downflow gas-phase biofilter packed with an inert carrier
Prado OJ, Mendoza JA, Veiga MC, Kennes C
Applied Microbiology and Biotechnology, 59(4-5), 567, 2002
8 GroEL interacts transiently with oxidatively inactivated rhodanese facilitating its reactivation
Melkani GC, Zardeneta G, Mendoza JA
Biochemical and Biophysical Research Communications, 294(4), 893, 2002
9 Modelling of a low-pressure reverse osmosis system with concentrate recirculation to obtain high recovery levels
Gozalvez JM, Lora J, Mendoza JA, Sancho M
Desalination, 144(1-3), 341, 2002
10 alpha-crystallin facilitates the reactivation of hydrogen peroxide-inactivated rhodanese
Del Fierro D, Zardeneta G, Mendoza JA
Biochemical and Biophysical Research Communications, 274(2), 461, 2000