화학공학소재연구정보센터
검색결과 : 26건
No. Article
1 Forward osmosis concentration of a vanadium leaching solution
Dou PJ, Zhao SW, Song JF, He HL, She QH, Li XM, Zhang YB, He T
Journal of Membrane Science, 582, 164, 2019
2 Electroflotation recovery of highly dispersed carbon materials from aqueous solutions of electrolyte
Kolesnikov A, Milyutina A, Desyatov A, Kolesnikov V
Separation and Purification Technology, 209, 73, 2019
3 Correlations for the ignition characteristics of six different fuels and their application to predict ignition delays under transient thermodynamic conditions
Desantes JM, Bermudez V, Lopez JJ, Lopez-Pintor D
Energy Conversion and Management, 152, 124, 2017
4 Detonation wave propagation in semi-confined layers of hydrogen-air and hydrogen-oxygen mixtures
Grune J, Sempert K, Friedrich A, Kuznetsov M, Jordan T
International Journal of Hydrogen Energy, 42(11), 7589, 2017
5 Salting-out and salting-in effects of amphiphilic salt on cloud point of aqueous methylcellulose
Nishida K, Morita H, Katayama Y, Inoue R, Kanaya T, Sadakane K, Seto H
Process Biochemistry, 59, 52, 2017
6 Critical concentration and scaling exponents of one soluble polyimide-from dilute to semidilute entangled solutions
Zhang ES, Dai XM, Dong ZX, Qiu XP, Ji XL
Polymer, 84, 275, 2016
7 Effects of monovalent anions and cations on drainage and lifetime of foam films at different interface approach speeds
Firouzi M, Nguyen AV
Advanced Powder Technology, 25(4), 1212, 2014
8 Role of critical concentration of PEI in NMP solutions on gas permeation characteristics of PEI gas separation membranes
Shamsabadi AA, Kargari A, Babaheidari MB, Laki S, Ajami H
Journal of Industrial and Engineering Chemistry, 19(2), 677, 2013
9 Direct microscopic observation of forward osmosis membrane fouling by microalgae: Critical flux and the role of operational conditions
Zou S, Wang YN, Wicaksana F, Aung T, Wong PCY, Fane AG, Tang CY
Journal of Membrane Science, 436, 174, 2013
10 Numerical investigation on two-grain-bed collisions in windblown sand transport
Duan SZ, Zhu W, Zheng XJ
Powder Technology, 235, 431, 2013