1 |
Simplified process model for CFB combustion of different biomass as part of an assistance system for emission reduction Bernhardt D, Beckmann M Fuel, 250, 168, 2019 |
2 |
Investigating wall-to-bed heat transfer in view of a continuous temperature swing adsorption process Hofer G, Schony G, Fuchs J, Proll T Fuel Processing Technology, 169, 157, 2018 |
3 |
Application of response surface methodology to determine effects of operational conditions on in-bed combustion fraction in vortexing fluidized-bed combustor using different fuels Cao SS, Duan F, Zhang LH, Chyang CS, Yang CY Energy, 139, 862, 2017 |
4 |
Experimental and modeling study of oxy-fuel combustion of coal particles for heat and power generation Gao W, Farahini MR, Rezaei M, Hosamani SM, Jamil MK, Imran M Energy Sources Part A-recovery Utilization and Environmental Effects, 39(11), 1086, 2017 |
5 |
A modified three-phase multistage fluid bed model by considering axial dispersion in bubble side Mazloom G Particulate Science and Technology, 34(6), 648, 2016 |
6 |
A critical validation study on CPFD model in simulating gas-solid bubbling fluidized beds Liang YS, Zhang YM, Li TW, Lu CX Powder Technology, 263, 121, 2014 |
7 |
A general kinetic law for heavy metal vaporization during municipal solid waste incineration Falcoz Q, Gauthier D, Abanades S, Patisson F, Flamant G Process Safety and Environmental Protection, 88(2), 125, 2010 |
8 |
연소기체로부터 CO2 회수를 위한 건식 유동층 흡수-재생 공정의 고체순환 모사 최정후, 박지용, 이창근, 조성호, 손재익, 류청걸, 김상돈 Korean Chemical Engineering Research, 43(2), 286, 2005 |
9 |
유동층 CO2 회수공정을 위한 흡수제의 흡수 및 재생특성 이창근, 홍선욱, 조성호, 손재익, 최정후 Korean Chemical Engineering Research, 43(2), 294, 2005 |
10 |
고온고압건식 유동층 탈황공정의 고체흐름특성 해석 최정후, 이창근, 손재익, 김상돈 HWAHAK KONGHAK, 38(5), 698, 2000 |