화학공학소재연구정보센터
검색결과 : 176건
No. Article
1 Comparison on Laser Ignition and Combustion Characteristics of Nano- and Micron-Sized Aluminum
Jin X, Li SJ, Yang YH, Huang XF
Combustion Science and Technology, 193(2), 341, 2021
2 The effect of particle size on removal of SO2 from flue gas by MgO absorbents
Zhao MX, Zou CJ
Powder Technology, 377, 506, 2021
3 Stronger Stimulation of Waste Activated Sludge Anaerobic Fermentation by a Particular Amount of Micron-Sized Zero Valent Iron
Guo RY, Liu XN, Hu YT, Li JJ, Chen JH, Pang LN, Yang P
Applied Biochemistry and Biotechnology, 192(1), 313, 2020
4 Flux preparation ofLiNi(0)(.)(6)Co(0)(.)(2)Mn(0)(.)(2)O(2)micron-sized crystals as cathode materials for highly reversible lithium storage
Zong YH, Guo ZX, Xu TT, Liu C, Li YH, Yang G
International Journal of Energy Research, 44(11), 8532, 2020
5 An ionic liquid-present hydrothermal method for preparing hawthorn sherry ball shaped palladium (Pd)-based composite catalysts for ethanol oxidation reaction (EOR)
Ding KQ, Han JW, Gao XJ, Wang L, Zhou LJ, Qu RL, He XM
International Journal of Hydrogen Energy, 45(3), 1930, 2020
6 Fabrication of BiInSn alloy powder via the combination of ultrasonic crushing with dispersants
Shi JT, Shu QQ, Tong BX, Fu JH, Tang SS, Wang Q, Liu J
Powder Technology, 373, 614, 2020
7 Facile preparation of Fe3O4@C/Cu core-shell sub-micron materials for oil removal from water surface
Liu TQ, Li ZJ, Shi GM, Zhao Q, Chen X, Chen XL, Li YL
Applied Surface Science, 466, 483, 2019
8 Micron-scaled MoS2/N-C particles with embedded nano-MoS2: A high-rate anode material for enhanced lithium storage
Shi YH, Li XY, Zhang WD, Li HH, Wang SG, Wu XL, Su ZM, Zhang JP, Sun HZ
Applied Surface Science, 486, 519, 2019
9 Ni-3(BO3)(2) as anode material with high capacity and excellent rate performance for sodium-ion batteries
Xu BB, Liu Y, Tian JL, Ma X, Ping QS, Wang BF, Xia YY
Chemical Engineering Journal, 363, 285, 2019
10 Penetration time of hydrophilic micron particles impacting into an unconfined planar gas-liquid interface
Zhu SJ, Liu RZ, Wang T, Niu YJ, Lu HF, Chen XL
Chemical Engineering Science, 193, 282, 2019