2017 Annual Meeting
(313c) Intensification of Enzymatic Hydrolysis of Cellulose to Glucose By High Frequency Ultrasound: Optimization of Process Parameters and Effects on Enzyme Stability
Author
REFERENCES:
Adewuyi, Y.G. Intensification of Enzymatic Hydrolysis of Cellulose Using High-Frequency Ultrasound. In: Intensification of Bio-Based Processes, A. Gorak and A. Stankiewicz (editors), Royal Society of Chemistry (RSC), 2017. In press.
Adewuyi, Y.G.; Deshmane, V.G. Intensification of Enzymatic Hydrolysis of Cellulose Using High Frequency Ultrasound. An Investigation of the Effects of Process Parameters on Glucose Yield. Energy & Fuels. 2015, 20, 4998 â 5006.
Deshmane, V.G.; Adewuyi, Y.G. Mesoporous Nanocrystalline Sulfated Zirconia Synthesis and Its Application for FFA Esterification in Oils. Appl. Catal. A: General. 2013, 462-463, 196-206.
Deshmane, V.G.; Adewuyi, Y.G. Synthesis and Kinetics of Biodiesel Formation via Calcium Methoxide Base-Catalyzed Transesterification Reaction in the Absence and Presence of Ultrasound. Fuel, 2013, 107, 474-482.
Mahamuni, N.N.; Adewuyi, Y.G. Application of Taguchi Method to Investigate the Effects of Process Parameters on the Transesterfication of Soybean Oil Using High Frequency Ultrasound. Energy & Fuels, 2010, 24, 2120-2126.
Mahamuni, N.N.; Adewuyi, Y.G. Optimization of the Synthesis of Biodiesel via Ultrasound-Enhanced Base-Catalyzed Transesterification of Soybean Oil Using a Multifrequency Ultrasonic Reactor. Energy & Fuels. 2009, 23, 2757-2766.