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Titlebook: Bioreactors for Microbial Biomass and Energy Conversion; Qiang Liao,Jo-shu Chang,Ao Xia Book 2018 Springer Nature Singapore Pte Ltd. 2018

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期刊全称Bioreactors for Microbial Biomass and Energy Conversion
影响因子2023Qiang Liao,Jo-shu Chang,Ao Xia
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发行地址Reviews the recent trends and developments in the area of microbial energy conversion technologies.Introduces principles and guidelines for the design of innovative bioreactors, which enhance the effi
学科分类Green Energy and Technology
图书封面Titlebook: Bioreactors for Microbial Biomass and Energy Conversion;  Qiang Liao,Jo-shu Chang,Ao Xia Book 2018 Springer Nature Singapore Pte Ltd. 2018
影响因子This book discusses recent trends and developments in the microbial conversion process, which serves as an important route for biofuel production, with particular attention to bioreactors. It combines microbial conversion with multiphase flow and mass transfer, providing an alternative perspective for the understanding of microbial biomass and energy production process as well as enhancement strategy. This book is relevant to students and researchers who work in the fields of renewable energy, engineering and biotechnology. Policymakers, economists and industry engineers also benefit from this book, as it can be used as a resource for the implementation of renewable energy technologies.
Pindex Book 2018
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978-981-13-3978-3Springer Nature Singapore Pte Ltd. 2018
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Qiang Liao,Jo-shu Chang,Ao XiaReviews the recent trends and developments in the area of microbial energy conversion technologies.Introduces principles and guidelines for the design of innovative bioreactors, which enhance the effi
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Alexandre Ardichvili,Khalil Diranio secure clean alternative energy sources to ensure sustainable development. Bioenergy derived from biomass can play a major role in the future energy system due to its renewability, and sustainability. The wide distribution of biomass provides rich sources of raw materials, while the significant de
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Global Leadership in Multicultural Teamsfor the conversion of organic biomass to methane. Initially anaerobic digestion (AD) microbial processes are introduced. Subsequently, optimal bioreactor design is examined. The AD process is capable of converting a large variety of feedstocks to carbon dioxide and methane. The performance of microb
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