1 |
Absorption of Carbon Dioxide at High Temperature with Molten Alkali Carbonate Using Bubble Column Reactor Kanai Y, Terasaka K, Fujioka S, Fukunaga K Journal of Chemical Engineering of Japan, 52(1), 31, 2019 |
2 |
Structural Transformation of High-sulfur Petroleum Cokes with Additives after Heat Treatment Chen ZJ, Ma WH, Wei KX Journal of Chemical Engineering of Japan, 51(10), 848, 2018 |
3 |
Experimental investigation of explosion mitigating properties of aqueous potassium carbonate solutions Roosendans D, van Wingerden K, Holme MN, Hoorelbeke P Journal of Loss Prevention in The Process Industries, 46, 209, 2017 |
4 |
Fast ionic conduction in tetravalent metal pyrophosphate-alkali carbonate composites: New potential electrolytes for intermediate-temperature fuel cells Singh B, Bhardwaj A, Gautam SK, Kumar D, Parkash O, Kim IH, Song SJ Journal of Power Sources, 345, 176, 2017 |
5 |
Formulation of CO2 Sorption/Release Behaviors Using Alkali Carbonate-on-Activated Carbon Yanagihara T, Shigemoto N Journal of Chemical Engineering of Japan, 49(10), 909, 2016 |
6 |
Effects of a sodium carbonate (Na2CO3) additive on the conversion of phenethyl phenyl ether (PPE) in high-temperature water Eom HJ, Lee DW, Hong YK, Chung SH, Seo MG, Lee KY Applied Catalysis A: General, 472, 152, 2014 |
7 |
Influence of alkali carbonates on benzyl phenyl ether cleavage pathways in superheated water Roberts V, Fendt S, Lemonidou AA, Li XB, Lercher JA Applied Catalysis B: Environmental, 95(1-2), 71, 2010 |
8 |
Characteristics of alkali-resistant Ni/MgAl(2)O(4) catalyst for direct internal reforming molten carbonate fuel cell Park DS, Li Z, Devianto H, Lee HI International Journal of Hydrogen Energy, 35(11), 5673, 2010 |
9 |
Development of porosity in carbons from yeast grains by activation with alkali metal carbonates Urabe Y, Ishikura T, Kaneko K Journal of Colloid and Interface Science, 319(1), 381, 2008 |
10 |
Bench-scale CO2 recovery from moist flue gases by various alkali carbonates supported on activated carbon Shigemoto N, Yanagihara T, Sugiyama S, Hayashi H Journal of Chemical Engineering of Japan, 38(9), 711, 2005 |