Dahai Gao, Ph.D.

Affiliations: 
2011 Chemical Engineering Michigan State University, East Lansing, MI 
Area:
Chemical Engineering, Energy
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"Dahai Gao"

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Bruce E. Dale grad student 2011 Michigan State
 (Enzymatic conversion of pretreated biomass into fermentable sugars for biorefinery operation.)
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Publications

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Chundawat SPS, Uppugundla N, Gao D, et al. (2017) Shotgun Approach to Increasing Enzymatic Saccharification Yields of Ammonia Fiber Expansion Pretreated Cellulosic Biomass Frontiers in Energy Research. 5
Gao D, Haarmeyer C, Balan V, et al. (2014) Lignin triggers irreversible cellulase loss during pretreated lignocellulosic biomass saccharification. Biotechnology For Biofuels. 7: 175
Gao D, Chundawat SP, Sethi A, et al. (2013) Increased enzyme binding to substrate is not necessary for more efficient cellulose hydrolysis. Proceedings of the National Academy of Sciences of the United States of America. 110: 10922-7
Chundawat SP, Lipton MS, Purvine SO, et al. (2011) Proteomics-based compositional analysis of complex cellulase-hemicellulase mixtures. Journal of Proteome Research. 10: 4365-72
Chundawat SP, Bellesia G, Uppugundla N, et al. (2011) Restructuring the crystalline cellulose hydrogen bond network enhances its depolymerization rate. Journal of the American Chemical Society. 133: 11163-74
Gao D, Chundawat SP, Uppugundla N, et al. (2011) Binding characteristics of Trichoderma reesei cellulases on untreated, ammonia fiber expansion (AFEX), and dilute-acid pretreated lignocellulosic biomass. Biotechnology and Bioengineering. 108: 1788-800
Gao D, Uppugundla N, Chundawat SP, et al. (2011) Hemicellulases and auxiliary enzymes for improved conversion of lignocellulosic biomass to monosaccharides. Biotechnology For Biofuels. 4: 5
Gao D, Chundawat SP, Krishnan C, et al. (2010) Mixture optimization of six core glycosyl hydrolases for maximizing saccharification of ammonia fiber expansion (AFEX) pretreated corn stover. Bioresource Technology. 101: 2770-81
Gao D, Chundawat SPS, Liu T, et al. (2010) Strategy for Identification of Novel Fungal and Bacterial Glycosyl Hydrolase Hybrid Mixtures that can Efficiently Saccharify Pretreated Lignocellulosic Biomass Bioenergy Research. 3: 67-81
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