1 |
Sulfur Capacity of Sodium Phosphate Buffer Solution Yuan ZG, Duan SS, Shen JS, Liu YZ Journal of Chemical Engineering of Japan, 52(2), 204, 2019 |
2 |
Sulfidation Behavior of Fe-Zn Sorbents Supported on Lignite Char during Coke Oven Gas Desulfurization Yu J, Song C, Dou J, Yin F, Wang D Energy Sources Part A-recovery Utilization and Environmental Effects, 37(21), 2360, 2015 |
3 |
Ultrasonic-assisted preparation of highly reactive Fe-Zn sorbents supported on activated-char for desulfurization of COG Dou JX, Yu JL, Tahmasebi A, Yin FK, Gupta S, Li XC, Lucas J, Na C, Wall T Fuel Processing Technology, 135, 187, 2015 |
4 |
Desulfurization of coke oven gas using char-supported Fe-Zn-Mo catalysts: Mechanisms and thermodynamics Dou J, Li X, Tahmasebi A, Xu J, Yu J Korean Journal of Chemical Engineering, 32(11), 2227, 2015 |
5 |
Sulfidation and sulfur capacity of fine ZnO powder derived from thermal oxidation of mechanosynthesized ZnS powder Perraud I, Ayral RM, Cammarano C, Rouessac F, Hulea V, Ayral A Chemical Engineering Journal, 241, 360, 2014 |
6 |
Comparison of desulfurization characteristics of lignite char-supported Fe and Fe-Mo sorbents for hot gas cleaning Yin FK, Yu JL, Gupta S, Wang SY, Wang DM, Dou JX Fuel Processing Technology, 117, 17, 2014 |
7 |
Formation of (FexMn2-x)O-3 solid solution and high sulfur capacity properties of Mn-based/M41 sorbents for hot coal gas desulfurization Zhang Y, Liu BS, Zhang FM, Zhang ZF Journal of Hazardous Materials, 248, 81, 2013 |
8 |
Estimation of desulfurization abilities of metallurgical dust at different atmospheres Zhao RF, Ye SF, Xie YS, Chen YF Energy Sources, 26(2), 135, 2004 |
9 |
A study on regeneration of Mn-Fe-Zn-O supported upon gamma-Al2O3 sorbents for hot gas desulfurization Zhang JC, Wang YH, Ma RY, Wu DY Fuel Processing Technology, 84(1-3), 217, 2003 |
10 |
Desulfurization ability of metallurgical dusts from blast furnace ironmaking process Ye SF, Xie YS, Guo ZC, Yang XM, Chen YF Journal of Chemical Engineering of Japan, 34(9), 1103, 2001 |