1 |
Cluster identification criterion with experimental validation for the cluster solid holdup model during fluidization Liu Y, Dai QT, Qi HY Powder Technology, 373, 459, 2020 |
2 |
New technique for simultaneous measurement of the local solid and gas holdup by using optical fiber probes in the slurry bubble column Mokhtari M, Chaouki J Chemical Engineering Journal, 358, 831, 2019 |
3 |
Prediction of Axial Solid Holdups in a CFB Riser Park SS, Chae HJ, Kim TW, Jeong KE, Kim CU, Jeong SY, Lim JH, Park YK, Lee DH Korean Chemical Engineering Research, 56(6), 878, 2018 |
4 |
Particle agglomeration studies in a slurry bubble column due to liquid bridging: Effects of particle size and sparger design Maclntyre S, Hammad A, Pjontek D Chemical Engineering Science, 170, 213, 2017 |
5 |
감압 순환유동층 플라즈마 반응기의 축방향 고체체류량 박성희 Korean Chemical Engineering Research, 54(4), 527, 2016 |
6 |
Experiments on particles flow in a dual circulating fluidized bed with symmetrical structure Geng CM, Shao YJ, Zhong WQ, Yu AB Powder Technology, 304, 81, 2016 |
7 |
Fluidized countercurrent solvent extraction of oil pollutants from contaminated soil. Part 1: Fluid mechanics Liu B, Li XG, Li ZY, Sui H, Li H Chemical Engineering Research & Design, 94, 501, 2015 |
8 |
Predicting the solid circulation rate in chemical looping combustion systems using pressure drop measurements Alghamdi Y, Peng ZB, Shah K, Moghtaderi B, Doroodchi E Powder Technology, 286, 572, 2015 |
9 |
Grid zone performance of a fluidized bed through analysis of local solids holdup signals Fan CG, Bi XTT, Grace JR, Goto A Powder Technology, 219, 37, 2012 |
10 |
Effect of Static Mixer Internals on Hydrodynamics and Axial Gas Mixing Characteristics in a Circulating Fluidized Bed Kim GH, Woo SH, Kim SD, Kim J, Kim SJ, Park DS Journal of Chemical Engineering of Japan, 43(3), 269, 2010 |