Issue
Total 27 articles [ 키워드: H2O ]
No. Article
1 Korean Journal of Chemical Engineering, 40 (11), pp.2771-2777 (2023)
Facile antisolvent crystallization-based synthesis of Cu/CoO nanocomposites as catalysts for the electrochemical detection of H2O2
Cun Liu, Jinyoung Choi, Jiyu Hyun, et al.
2 Korean Journal of Chemical Engineering, 39 (4), pp.913-919 (2022)
Facile construction of a Bi6O6(OH)3(NO3)3·1.5H2O/Bi2O2CO3 heterojunction with enhanced photocatalytic degradation activity
Ye H, Wu Y, Zhong Z, et al.
3 Korean Journal of Chemical Engineering, 37 (4), pp.597-603 (2020)
Oxidation of Zhundong subbituminous coal by Fe2+/H2O2 system under mild conditions
Chen S, Zhou W, Liu M, et al.
4 Korean Journal of Chemical Engineering, 37 (1), pp.65-71 (2020)
Direct synthesis of H2O2 over Pd/C catalysts prepared by the incipient wetness impregnation method: Effect of heat treatment on catalytic activity
Hang VTT, Chung YM
5 Korean Journal of Chemical Engineering, 36 (9), pp.1417-1420 (2019)
Synthesis RhAg bimetallic composite nanoparticles for improved catalysts on direct synthesis of hydrogen peroxide generation
Jang YP, Nam HB, Song J, et al.
6 Korean Journal of Chemical Engineering, 36 (7), pp.1090-1101 (2019)
Kinetic effect and absorption performance of piperazine activator into aqueous solutions of 2-amino-2-methyl-1-propanol through post-combustion CO2 capture
Khan AA, Halder G, Saha AK
7 Korean Journal of Chemical Engineering, 35 (11), pp.2172-2184 (2018)
Effect of H2O2 modification of H3PW12O40@carbon for m-xylene oxidation
Fang ZW, Wen D, Wang ZH, et al.
8 Korean Journal of Chemical Engineering, 34 (6), pp.1858-1866 (2017)
Iron-manganese-magnesium mixed oxides catalysts for selective catalytic reduction of NOx with NH3
Zhang K, Xu L, Niu S, et al.
9 Korean Journal of Chemical Engineering, 34 (4), pp.1229-1237 (2017)
DeNOx performance and characteristic study for transition metals doped iron based catalysts
Zhu L, Zhong Z, Yang H, et al.
10 Korean Journal of Chemical Engineering, 33 (12), pp.3407-3416 (2016)
Enhancement of NO absorption in ammonium-based solution using heterogeneous Fenton reaction at low H2O2 consumption
Xu B, Xiong Y, Ru J, et al.
1 [2] [3]