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      KCI등재 SCOPUS

      Response Surface-Optimized Isolation of Essential Fatty Acids via Castor Oil Dehydration

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      https://www.riss.kr/link?id=A108471881

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      다국어 초록 (Multilingual Abstract)

      The reaction conditions optimization, including the temperature of the reaction, amount of catalyst required, and reaction time for the linoleic acids (LAs) and conjugated linoleic acids (CLAs) production by catalytic dehydration of cas- tor oil via saponification was investigated by response surface methodology (RSM). It was confirmed that all three parame- ters (temperature, time, and amount of catalyst) were influential factors in isolating LAs and CLAs. When the temperature was increased, the iodine value increased, and the reaction time and catalyst amount increased. The optimal reaction conditions were: 240 ℃, 2.2 h reaction time, and 7 wt% catalyst amount. The maximum iodine value reached 156.25 with 91.69% con- version to the essential fatty acids
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      The reaction conditions optimization, including the temperature of the reaction, amount of catalyst required, and reaction time for the linoleic acids (LAs) and conjugated linoleic acids (CLAs) production by catalytic dehydration of cas- tor oil via s...

      The reaction conditions optimization, including the temperature of the reaction, amount of catalyst required, and reaction time for the linoleic acids (LAs) and conjugated linoleic acids (CLAs) production by catalytic dehydration of cas- tor oil via saponification was investigated by response surface methodology (RSM). It was confirmed that all three parame- ters (temperature, time, and amount of catalyst) were influential factors in isolating LAs and CLAs. When the temperature was increased, the iodine value increased, and the reaction time and catalyst amount increased. The optimal reaction conditions were: 240 ℃, 2.2 h reaction time, and 7 wt% catalyst amount. The maximum iodine value reached 156.25 with 91.69% con- version to the essential fatty acids

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      참고문헌 (Reference)

      1 Chauke, N. P., 102 : 199-, 2019

      2 Nezihe, A., 50 : 398-, 2011

      3 Nitbani, F. O., 71 : 781-, 2022

      4 Christy, A., 10 : 146-, 2016

      5 Mutlu, H., 112 : 10-, 2010

      6 Ogunniyi, D. S., 97 : 1086-, 2006

      7 Yang, L., 119 : 23-, 2002

      8 Ding, J. F, 41 : 2186-, 2018

      9 Mamudu, A. O., 10 : 353-, 2019

      10 Orozco, L. M., 161 : 106467-, 2021

      1 Chauke, N. P., 102 : 199-, 2019

      2 Nezihe, A., 50 : 398-, 2011

      3 Nitbani, F. O., 71 : 781-, 2022

      4 Christy, A., 10 : 146-, 2016

      5 Mutlu, H., 112 : 10-, 2010

      6 Ogunniyi, D. S., 97 : 1086-, 2006

      7 Yang, L., 119 : 23-, 2002

      8 Ding, J. F, 41 : 2186-, 2018

      9 Mamudu, A. O., 10 : 353-, 2019

      10 Orozco, L. M., 161 : 106467-, 2021

      11 Guner, F. S., 74 : 409-, 1997

      12 Yan, C. X., 643 : 772-, 2017

      13 Ding, J., 125 : 1007-, 2018

      14 Jafari, M., 20 : 1997-, 2013

      15 Vishwanadham, B., 72 : 1033-, 1995

      16 Naik, S. N., "Potential and Perspective of Castor Biorefinery" Elsevier B.V. 2018

      17 Prasad, R. B. N., "Chemical Derivatization of Castor Oil and Their Industrial Utilization" Elsevier Inc 2017

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