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Meijun Zeng
Meijun Zeng
在 wisc.edu 的电子邮件经过验证
标题
引用次数
引用次数
年份
Nonionic surfactants enhanced enzymatic hydrolysis of cellulose by reducing cellulase deactivation caused by shear force and air-liquid interface
H Lou, M Zeng, Q Hu, C Cai, X Lin, X Qiu, D Yang, Y Pang
Bioresource technology 249, 1-8, 2018
932018
Insights into solid acid catalysts for efficient cellulose hydrolysis to glucose: progress, challenges, and future opportunities
M Zeng, X Pan
Catalysis Reviews 64 (3), 445-490, 2022
592022
Using polyvinylpyrrolidone to enhance the enzymatic hydrolysis of lignocelluloses by reducing the cellulase non-productive adsorption on lignin
C Cai, X Qiu, M Zeng, M Lin, X Lin, H Lou, X Zhan, Y Pang, J Huang, L Xie
Bioresource technology 227, 74-81, 2017
592017
Using recyclable pH-responsive lignin amphoteric surfactant to enhance the enzymatic hydrolysis of lignocelluloses
C Cai, X Zhan, M Zeng, H Lou, Y Pang, J Yang, D Yang, X Qiu
Green Chemistry 19 (22), 5479-5487, 2017
582017
Effect of urea on the enzymatic hydrolysis of lignocellulosic substrate and its mechanism
H Lou, M Lin, M Zeng, C Cai, Y Pang, D Yang, X Qiu
BioEnergy Research 11, 456-465, 2018
252018
Using temperature-responsive zwitterionic surfactant to enhance the enzymatic hydrolysis of lignocelluloses and recover cellulase by cooling
C Cai, Y Pang, X Zhan, M Zeng, H Lou, Y Qian, D Yang, X Qiu
Bioresource Technology 243, 1141-1148, 2017
182017
Gluco‐oligosaccharides as potential prebiotics: Synthesis, purification, structural characterization, and evaluation of prebiotic effect
M Zeng, JP van Pijkeren, X Pan
Comprehensive Reviews in Food Science and Food Safety 22 (4), 2611-2651, 2023
122023
Facile and efficient chemical synthesis of gluco-oligosaccharides (GlcOS) with diverse glycosidic linkages as potential prebiotics to promote the growth of probiotic bacteria
M Zeng, N Li, T Astmann, JH Oh, JP van Pijkeren, X Pan
Food Research International 165, 112436, 2023
122023
A simple and rapid method to determine sulfonation degree of lignosulfonates
Q Li, M Zeng, D Zhu, H Lou, Y Pang, K Qiu, J Huang, X Qiu
BioEnergy Research 12, 260-266, 2019
82019
Novel Galacto-oligosaccharides from Lactose: Chemical Synthesis, Structural Characterization, and in Vitro Assessment of Prebiotic Activity
M Zeng, S Mohapatra, JH Oh, T Astmann, JP van Pijkeren, X Pan
ACS Sustainable Chemistry & Engineering 11 (38), 14031-14045, 2023
52023
Using a linear pH-responsive zwitterionic copolymer to recover cellulases in enzymatic hydrolysate and to enhance the enzymatic hydrolysis of lignocellulose
Y Liang, M Zeng, C Cai, X Zhan, Y Pang, H Lou, X Qiu
Cellulose 26, 6725-6738, 2019
42019
Selective utilization of gluco‐oligosaccharides by lactobacilli: A mechanism study revealing the impact of glycosidic linkages and degree of polymerization on their utilization
M Zeng, JH Oh, JP van Pijkeren, X Pan
Journal of Food Science 89 (1), 523-539, 2024
22024
Synthesis of oligosaccharides as prebiotics from simple sugars and polysaccharides in concentrated acids
X Pan, M Zeng, N Li
US Patent App. 17/832,490, 2022
22022
Purification and fractionation of cellooligosaccharides synthesized from controlled cellulose hydrolysis by sulfuric acid using nanofiltration
M Zeng, X Pan
Separation and Purification Technology 348, 127800, 2024
2024
Top-Down Synthesis of Potential Prebiotic Gluco-and Xylo-Oligosaccharides from Corn Stover Via Simultaneous Hydrolysis and Glycosylation in Concentrated Sulfuric Acid
M Zeng, S Mohapatra, J Oh, JP van Pijkeren, X Pan
2023 AIChE Annual Meeting, 2023
2023
Chemical and Structural Characterization of Lactose-Derived Novel Galacto-Oligosaccharides – an in Vitro and In Vivo Prebiotic Activity Assessment
S Mohapatra, M Zeng, JH Oh, JP van Pijkeren, X Pan
2023 AIChE Annual Meeting, 2023
2023
Chemical Synthesis of Potential Prebiotic Oligosaccharides from Simple Sugars and Lignocellulosic Biomass in Concentrated Acids
M Zeng, N Li, T Astmann, J Oh, JP van Pijkeren, X Pan
2022 AIChE Annual Meeting, 2022
2022
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