화학공학소재연구정보센터
검색결과 : 25건
No. Article
1 A feasibility study on optimization of combined advanced oxidation processes for municipal solid waste leachate treatment
Umamaheswari J, Bharathkumar T, Shanthakumar S, Gothandam KM
Process Safety and Environmental Protection, 143, 212, 2020
2 Solar photolytic ozonation for the removal of recalcitrant herbicides in river water
Solis RR, Medina S, Gimeno O, Beltran FJ
Separation and Purification Technology, 212, 280, 2019
3 Raman and inelastic neutron scattering spectra of (NH4)(2)SO3, an intermediate for solar hydrogen production
Orozco-Mena RE, Parker SF, Herrera-Peraza EF, Chavez-Flores D, Romero-Paredes H, Ramos-Sanchez VH
International Journal of Hydrogen Energy, 42(51), 30216, 2017
4 The photolytic behavior of diluted bitumen in simulated seawater by exposed to the natural sunlight
Yang ZY, Hollebone BP, Brown CE, Yang C, Wang ZD, Zhang G, Lambert P, Landriault M, Shah K
Fuel, 186, 128, 2016
5 Synthesis, characterization and photolytic degradation activity of poly-o-toluidine-thorium(IV)molybdophosphate cation exchanger: Analytical application in metal ion treatment
Akhtar A, Khan MDA, Nabi SA
Desalination, 361, 1, 2015
6 Degradation and kinetics of H2O2 assisted photochemical oxidation of Remazol Turquoise Blue
Kalsoom U, Ashraf SS, Meetani MA, Rauf MA, Bhatti HN
Chemical Engineering Journal, 200, 373, 2012
7 Online photolytic optical gating of caged fluorophores in capillary zone electrophoresis utilizing an ultraviolet light-emitting diode
Gallagher ES, Comi TJ, Braun KL, Aspinwall CA
Electrophoresis, 33(18), 2903, 2012
8 Fast Photolytic Release of Nano-Encapsulated Biocides for Neutralizing Bacteria
Ramadurai D, Orosz WC, Nelson A, Garland JW, Stephenson LD, Kumar A
Particulate Science and Technology, 29(3), 252, 2011
9 Determination of optimum operating conditions of carmine decoloration by UV/H2O2 using response surface methodology
Korbahti BK, Rauf MA
Journal of Hazardous Materials, 161(1), 281, 2009
10 Simultaneous recovery of metals and degradation of organic species: Copper and 2,4,5-trichlorophenoxyacetic acid (2,4,5-T)
Chaudhary AJ, Hassan MU, Grimes SM
Journal of Hazardous Materials, 165(1-3), 825, 2009