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Total 18 articles [ 키워드: Thermal Decomposition ] |
No. |
Article |
1 |
Korean Journal of Chemical Engineering, 40 (1), pp.155-161 (2023) Kinetic and thermodynamic evaluation of pyrolysis of jeans waste via coats-redfern method Tariq R, Inayat A, Shahbaz M, et al. |
2 |
Korean Journal of Chemical Engineering, 39 (10), pp.2615-2622 (2022) Decomposition characteristics of SF6 in an electrical tube furnace and a pilot system by combustion Lee JW, Kim MY, Byun YH |
3 |
Korean Journal of Chemical Engineering, 33 (11), pp.3267-3272 (2016) Thermal decomposition kinetics and characterization of poly(butylene 2,5-furandicarboxylate)/Cloisite 30B composites Cho BS, Kim MJ, Jung SK, et al. |
4 |
Korean Journal of Chemical Engineering, 33 (2), pp.683-687 (2016) Synthesis of rare earth oxide nanoplates with single unit cell thickness using a thermal decomposition method Jung E, Yu T, Kim WS |
5 |
Korean Journal of Chemical Engineering, 32 (12), pp.2369-2374 (2015) Synthesis and thermodynamic properties of a novel pyridinium-based asymmetrical gemini ionic liquid Yang X, Wang J, Zou W, et al. |
6 |
Korean Journal of Chemical Engineering, 32 (6), pp.1164-1169 (2015) Kinetics of thermal decomposition of ε-hexanitrohexaazaisowurtzitane by TG-DSC-MS-FTIR Zhu YL, Shan MX, Xiao ZX, et al. |
7 |
Korean Journal of Chemical Engineering, 30 (3), pp.613-619 (2013) A mathematical description of thermal decomposition and spontaneous ignition of wood slab under a truncated-cone heater Liu Q, Shen D, Xiao R, et al. |
8 |
Korean Journal of Chemical Engineering, 29 (12), pp.1745-1751 (2012) Comparison for thermal decomposition and product distribution of chloroform under each argon and hydrogen reaction atmosphere Won YS |
9 |
Korean Journal of Chemical Engineering, 29 (11), pp.1508-1515 (2012) Surface recession mechanism of carbon fiber reinforced plastic layer by thermal decomposition Lee JH, Kim KS, Kim H |
10 |
Korean Journal of Chemical Engineering, 28 (10), pp.2002-2008 (2011) Thermal decomposition kinetics of sodium perborate tetrahydrate to sodium metaborate by using model-fitting and model-free methods Demir H |
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