Issue
Total 14 articles [ 키워드: Condensation ]
No. Article
1 Korean Journal of Chemical Engineering, 39 (2), pp.306-315 (2022)
Study on mass transfer and heat transfer in transition zone of short-path distillation separation equipment based on N-dodecanol and N-hexadecanol
Duan Z, Zhang H, Liu B, et al.
2 Korean Journal of Chemical Engineering, 32 (3), pp.552-562 (2015)
Thermal curing and degradation kinetics of terpolymer resins derived from vanillin oxime, formaldehyde and p-chloro-/p-methylacetophenone
Chauhan NPS
3 Korean Journal of Chemical Engineering, 31 (10), pp.1845-1858 (2014)
Predictions of wet natural gases condensation rates via multi-component and multi-phase simulation of supersonic separators
Shooshtari SHR, Shahsavand A
4 Korean Journal of Chemical Engineering, 31 (8), pp.1377-1383 (2014)
Tetrabutylphosphonium amino acid ionic liquids as efficient catalysts for solvent-free Knoevenagel condensation reactions
Ouyang F, Zhou Y, Li ZM, et al.
5 Korean Journal of Chemical Engineering, 30 (7), pp.1375-1379 (2013)
The effect of noncondensable gas on heat transfer in the preheater of the sewage sludge drying system
Park YC, Kim JG, Jin GT, et al.
6 Korean Journal of Chemical Engineering, 27 (3), pp.748-751 (2010)
Parylene-C thin films deposited on polymer substrates using a modified chemical vapor condensation method
Kim HT, Koo T, Park C
7 Korean Journal of Chemical Engineering, 25 (3), pp.437-442 (2008)
High efficiency ester condensation using hydrophobic zeolite membranes
Inoue T, Nemoto Y, Nagase T, et al.
8 Korean Journal of Chemical Engineering, 23 (5), pp.726-730 (2006)
A study on the effects of reaction conditions on the characteristics of resol resins for foams by statistical analysis
Nam YW, Park TU, Kim DK
9 Korean Journal of Chemical Engineering, 21 (1), pp.206-211 (2004)
Kinetics of Gas Adsorption on Strongly Heterogeneous Solid Surfaces: A Statistical Rate Theory Approach
Panczyk T, Rudzinski W
10 Korean Journal of Chemical Engineering, 19 (4), pp.722-727 (2002)
Characterization of Parylene Deposition Process for the Passivation of Organic Light Emitting Diodes
Lee T, Lee J, Park C
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