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Titlebook: Emerging Technologies for Biorefineries, Biofuels, and Value-Added Commodities; Zhi-Hua Liu,Art Ragauskas Book 2021 Springer Nature Switze

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New Era for Robust Speech Recognitiongnin–carbohydrate complex (LCC) result in a series of obstacles that contribute to biomass recalcitrance. In addition, the heterogeneity of lignin and the unclear relationship between lignin structure and its activity significantly restrict the lignin valorization process. Therefore, this chapter pr
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Challenges and Perspectives of Biorefineries,he development of these technologies would further reduce the process cost of biorefineries. After that, the lignin valorization strategies have been discussed to make a sustainable biorefinery. The requirements of innovative modern biorefineries have been proposed to meet the implication of LCB con
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New Developments on Ionic Liquid-Tolerant Microorganisms Leading Toward a More Sustainable Biorefinver the main efforts performed on the screening and development of IL-tolerant microbial strains, as well as in more biocompatible IL pretreatment methods. These early research advancements in this field offer a baseline and a platform for future research with the goal of improving the sustainabilit
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Multiproduct Biorefining from Lignocellulosic Biomass Using Steam Explosion Technology,d its interdependent and synergistic relationships among up- and downstreams were then talked about for the production of multiproducts in biorefinery. Additionally, several pilot- and demonstration-scale operations for the production of multiproducts in biorefinery were described. Finally, several
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Fundamentals of Lignin-Carbohydrate Complexes and Its Effect on Biomass Utilization,lignin-carbohydrate bonds, and direct/indirect analytical techniques to evoke the attention of researchers toward this, when the world is surrounded by energy and environment issues and realization of biorefinery needs to be addressed.
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Systematic Metabolic Engineering of , for Efficient Utilization of Xylose,ay. Meanwhile, we describe the construction of a new xylose metabolism pathway, the Weimberg pathway, in . to metabolize xylose in a different manner, providing an option to synthesize more useful chemicals via the tricarboxylic acid cycle.
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Microbial Lipid Production from Lignocellulosic Biomass Pretreated by Effective Pretreatment,ques have been developed to disrupt the plant cell-wall structure of lignocellulosic biomass, facilitate subsequent enzymatic hydrolysis and microbial lipid fermentation, and successfully employed to improve biomass-to-lipid technology. In this chapter, the progress of pretreatment for enhancing the
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