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Filters: Keyword is levulinic acid and Author is Bokade, Vijay V.  [Clear All Filters]
Journal Article
K. Y. Nandiwale, Sonar, S. K., Niphadkar, P. S., Joshi, P. N., Deshpande, S. S., Patil, V. S., and Bokade, V. V., Catalytic upgrading of renewable levulinic acid to ethyl levulinate biodiesel using dodecatungstophosphoric acid supported on desilicated H-ZSM-5 as catalyst, Applied Catalysis A-General, vol. 460, pp. 90-98, 2013.
K. Y. Nandiwale and Bokade, V. V., Environmentally benign catalytic process for esterification of renewable levulinic acid to various alkyl levulinates biodiesel, Environmental Progress & Sustainable Energy, vol. 34, no. 3, pp. 795-801, 2015.
S. Dharne and Bokade, V. V., Esterification of levulinic acid to n-butyl levulinate over heteropolyacid supported on acid-treated clay, Journal of Natural Gas Chemistry, vol. 20, no. 1, pp. 18-24, 2011.
K. Y. Nandiwale, Niphadkar, P. S., Deshpande, S. S., and Bokade, V. V., Esterification of renewable levulinic acid to ethyl levulinate biodiesel catalyzed by highly active and reusable desilicated H-ZSM-5, Journal of Chemical Technology and Biotechnology, vol. 89, no. 10, pp. 1507-1515, 2014.
K. Y. Nandiwale and Bokade, V. V., Esterification of renewable levulinic acid to n-butyl levulinate over modified H-ZSM-5, Chemical Engineering & Technology, vol. 38, no. 2, pp. 246-252, 2015.
S. K. Bisen, Niphadkar, P. S., Nandanwar, S. U., Simakova, I., and Bokade, V. V., Milder operating parameters for one-step conversion of fructose to levulinic acid over sulfonated H-beta zeolite in aqueous media, Environmental Progress & Sustainable Energy, vol. 40, no. 1, p. e13530, 2021.
S. K. Bisen, Niphadkar, P. S., Nandanwar, S. U., Simakova, I., and Bokade, V. V., Milder operating parameters for one-step conversion of fructose to levulinic acid over sulfonated H-β zeolite in aqueous media, Environmental Progress & Sustainable Energy, vol. 40, no. 1, p. e13530, 2021.
K. Y. Nandiwale, Yadava, S. K., and Bokade, V. V., Production of octyl levulinate biolubricant over modified H-ZSM-5: Optimization by response surface methodology, Journal of Energy Chemistry, vol. 23, no. 4, pp. 535-541, 2014.