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Titlebook: Biosynthetic Technology and Environmental Challenges; Sunita J. Varjani,Binod Parameswaran,Sunil K. Khar Book 2018 Springer Nature Singapo

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發(fā)表于 2025-3-21 18:44:57 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
期刊全稱Biosynthetic Technology and Environmental Challenges
影響因子2023Sunita J. Varjani,Binod Parameswaran,Sunil K. Khar
視頻videohttp://file.papertrans.cn/189/188627/188627.mp4
發(fā)行地址Includes information on bio-based products and applications.Discusses environmental challenges.Provides insights for policymakers and investors interested in the biosynthetics market
學(xué)科分類Energy, Environment, and Sustainability
圖書封面Titlebook: Biosynthetic Technology and Environmental Challenges;  Sunita J. Varjani,Binod Parameswaran,Sunil K. Khar Book 2018 Springer Nature Singapo
影響因子.This book provides a comprehensive review of biosynthetic approaches to the production of industrially important chemicals and the environmental challenges involved. Its 19 chapters discuss different aspects of biosynthetic technology from the perspective of leading experts in the field. It covers various biorefinery approaches, including the use of microbes, metabolically engineered plants, biomass-based and green technology methods. Further, it examines important research in the areas of organic and hazardous waste composting, management and recovery of nutraceuticals from agro-industrial waste, biosynthesis and technological advancements of biosurfactants and waste water bioremediation. This book contributes to the scientific literature on biosynthetic technologies and the related environmental challenges for researchers and academics working in this area around the globe..
Pindex Book 2018
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https://doi.org/10.1007/978-981-10-7434-9Agro-industrial Waste; Bioremediation; Hazardous Waste; Microalgae; Nutraceuticals; Biosynthetic Products
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978-981-13-5633-9Springer Nature Singapore Pte Ltd. 2018
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Biosynthetic Technology and Environmental Challenges978-981-10-7434-9Series ISSN 2522-8366 Series E-ISSN 2522-8374
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Demonstration Tasks for Assessmentosic biomass is one of the most abundant renewable resources available on earth. Huge amount of lignocellulosic biomass is generated from agricultural and food industries as a waste material, commonly known as agro-industrial waste. It has low value for industries and a big problem as environmental
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Jodi L. Davenport,Edys S. Quellmalzthe coordination of several protein complexes in development, differentiation, phenotype, metabolism, exposure to different challenging environmental conditions, and many other cellular pathways. Further extensions of these studies in plant biology will be very helpful in dealing and maintaining a b
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Stephan Schwan,Frank Papenmeiery method used to utilize the wastes is by using pyrolysis method. This chapter discusses some current applications of biomass pyrolysis. Moreover, kinetic transformation properties of biomass, biomass pyrolysis reaction kinetics, and parameter estimation have also been discussed as the purpose of ki
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