Issue
Total 10 articles [ 키워드: Sulfonic Acid ]
No. Article
1 Korean Journal of Chemical Engineering, 40 (7), pp.1767-1774 (2023)
Investigation on the adsorption performance of modified coal gangues to p-hydroxybenzenesulfonic acid
Longgui Peng, Rong Wang, Huanquan Cheng, et al.
2 Korean Journal of Chemical Engineering, 38 (5), pp.997-1005 (2021)
Platform chemicals production from lipid-extracted Chlorella vulgaris through an eco-friendly catalyst
Jeong GT, Kim SK
3 Korean Journal of Chemical Engineering, 37 (12), pp.2326-2333 (2020)
The effects of temperature and membrane thickness on the performance of aqueous alkaline redox flow batteries using napthoquinone and ferrocyanide as redox couple
Lee WM, Park GH, Chang DR, et al.
4 Korean Journal of Chemical Engineering, 37 (10), pp.1743-1750 (2020)
Efficient conversion of glucosamine to ethyl levulinate catalyzed by methanesulfonic acid
Jeong GT, Kim SK
5 Korean Journal of Chemical Engineering, 35 (11), pp.2232-2240 (2018)
Valorization of galactose into levulinic acid via acid catalysis
Kim HS, Jeong GT
6 Korean Journal of Chemical Engineering, 35 (6), pp.1290-1296 (2018)
Valorization of chitosan into levulinic acid by hydrothermal catalytic conversion with methanesulfonic acid
Kim HS, Park MR, Kim SK, et al.
7 Korean Journal of Chemical Engineering, 32 (6), pp.1064-1068 (2015)
Synthesis of dimethyl carbonate from methyl carbamate and methanol using MCM-41 functionalized with sulfonic acid groups as catalyst
Qin X, Zhao W, Han B, et al.
8 Korean Journal of Chemical Engineering, 30 (6), pp.1229-1234 (2013)
Esterification of sludge palm oil using trifluoromethanesulfonic acid for preparation of biodiesel fuel
Hayyan A, Hashim MA, Mirghani MES, et al.
9 Korean Journal of Chemical Engineering, 25 (5), pp.1151-1153 (2008)
Electrochemical characterization of phosphonic acid cation exchange membrane prepared by plasma-induced graft polymerization
Choi EY, Moon SH
10 Korean Journal of Chemical Engineering, 22 (4), pp.605-610 (2005)
Preparation of Laminated Composite Membranes by Impregnation of Polypropylene with Styrene in Supercritical CO2 for Direct Methanol Fuel Cells
Sauk J, Byun J, Kang Y, et al.