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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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The Route of Lignin Biodegradation for Its Valorization,ependence on fossil resources and highly improve the competitiveness of biorefining industry. The biological valorization of lignin includes the biological depolymerization and bioconversion of lignin. With the development of bioprospecting and systems biology technology, more and more lignin-degrad
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Novel and Efficient Lignin Fractionation Processes for Tailing Lignin-Based Materials,ps for value-added applications. The yield of production of lignin and the reactivity of prepared lignin are very important to guarantee the feasibility of lignin-based material utilization. Various fractionation techniques have been developed to obtain high yield and relative high-purity lignin and
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Novel and Efficient Lignin Fractionation Processes for Tailing Lignin-Based Materials, carbohydrates (hemicelluloses and celluloses) and to reduce the condensed and degraded nature of conventional biorefinery lignin. In this chapter, novel and efficient lignin fractionation for tailing lignin-based material preparation are summarized and discussed.
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Book 2021ew products from waste lignin. The book will be a valuable resource for researchers and professionals working in process engineering, product engineering, material science, and systems and synthetic biology in the fields of biorefining, biofuel, biomaterials, environmental waste utilization, and biotechnology..
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Chris R. de Freitas,Martin Perryhydrolytic enzymes. This chapter focuses on the common types of oxidative pretreatments, their applications in biomass conversion, and the physiochemical changes in biomass structure during the pretreatment.
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