In-Situ Epoxidation of Castor Oil Using Heterogeneous Acidic Ion-Exchange Resin Catalyst (IR-120) for Bio-Lubricant Application
Author:
Affiliation:
1. Department of Chemical Engineering, Indian Institute of Technology-Guwahati
Publisher
Japanese Society of Tribologists
Subject
Surfaces, Coatings and Films
Link
https://www.jstage.jst.go.jp/article/trol/10/5/10_354/_pdf
Reference10 articles.
1. [1] Campanella, A., Fontanini, C. and Baltanas, M. A., “High Yield Epoxidation of Fatty Acid Methyl Esters with Performic Acid Generated In-Situ,” Chemical Engineering Journal, 144, 3, 2008, 466-475.
2. [2] Borugadda, V. B. and Goud, V. V., “Epoxidation of Castor Oil Fatty Acid Methyl Esters (COFAME) as a Lubricant Base Stock Using Heterogeneous Ion-Exchange Resin (IR-120) as a Catalyst,” Energy Procedia, 54, 2014 (a), 75-84.
3. [3] Borugadda, V. B. and Goud, V. V., “Synthesis of Waste Cooking Oil Epoxide as a Bio-Lubricant Basestock: Characterization and Optimization Study,” Journal of Bioprocess Engineering and Biorefinery, 3, 2014 (b), 57-72.
4. [4] Erhan, S. Z., Sharma, B. K., Liu, Z. and Adhvaryu, A., “Lubricant Base Stock Potential of Chemically Modified Vegetable Oils,” Journal of Agricultural and Food Chemistry, 56, 2008, 8919-8925.
5. [5] Hwang, H, S. and Erhan, S. Z., “Synthetic Lubricant Basestocks from Epoxidized Soybean Oil and Guerbet Alcohols,” Industrial Crops and Products, 23, 2006, 311-317.
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