Hydrodynamic cavitation as an efficient pretreatment method for lignocellulosic biomass: A parametric study

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Gabriela Faria de Almeida ◽  
Muhammad Ajaz Ahmed ◽  
Felipe A.F. Antunes ◽  
Silvio Silvério da Silva ◽  
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Matthew J. Realff ◽  
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Shuai Liu ◽  
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Yang Tao ◽  
Grzegorz Boczkaj ◽  
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2019 ◽  
Vol 11 (7) ◽  
pp. 3381-3396 ◽  
Author(s):  
Xu Yang ◽  
Zhiping Zhang ◽  
Lili Song ◽  
Guanglu Wang ◽  
Jingnan Zhang

Cellulose ◽  
2021 ◽  
Vol 28 (7) ◽  
pp. 4039-4051
Author(s):  
Jirui Yang ◽  
Xiaoqi Wang ◽  
Feng Shen ◽  
Xinhua Qi

BioResources ◽  
2017 ◽  
Vol 12 (4) ◽  
pp. 7834-7840 ◽  
Author(s):  
Jungwoo Yang ◽  
Ji Eun Kim ◽  
Jae Kyun Kim ◽  
Sung ho Lee ◽  
Ju-Hyun Yu ◽  
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The performance of cellulase in the enzymatic saccharification of lignocellulose depends on the characteristics of lignocellulosic biomass feedstocks and the pretreatment method used. Efficient hydrolysis of specifically pretreated lignocellulose necessitates the knowledge of the characteristics of the optimal commercial cellulases. In this study, commercial cellulase preparations (Accellerase™ 1000, Accellerase® 1500, and Spezyme® CP from DuPont and Cellic® CTec2 from Novozymes) were evaluated for their hydrolysis efficiency of hydrothermally pretreated empty fruit bunches (EFBs). The highest glucose yields of 91.3% and 84.7% were achieved for 30 FPU of Cellic® CTec2/g glucan with and without Cellic® HTec2, respectively. Of the four cellulases tested, Cellic® CTec2, which showed the highest cellobiohydrolase, xylanase, and β-glucosidase activities, showed the highest glucose yield in the enzymatic hydrolysis of hydrothermally pretreated EFBs. The results of this study are valuable for those who plan to enzymatically hydrolyze hydrothermally pretreated EFBs.


Fuel ◽  
2020 ◽  
Vol 271 ◽  
pp. 117534 ◽  
Author(s):  
Ankit Mathanker ◽  
Deepak Pudasainee ◽  
Amit Kumar ◽  
Rajender Gupta

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