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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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Photoautotrophic Microalgal Cultivation and Conversionthesis and biodiesel production due to their fast growth rate, significant carbon dioxide capture capacity, high lipid content, etc. They are also regarded as the promising feedstocks for the third-generation biofuels. For the cultivation of microalgae, photobioreactors (PBRs) are necessary apparatu
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Heterotrophic Microalgal Cultivationas a feedstock for the production of liquid and gaseous biofuels. Photoautotrophic cultivation of microalgae in open ponds by utilizing sunlight and atmospheric carbon dioxide is commonly known as the most economic means for cost effective cultivation of microalgal biomass production, but is limited
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The Relationship Between Bioreactor Design and Feedstock for Optimal Biogas Productionfor 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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Hydrogen from Photo FermentationNevertheless, an energy-saving and environmentally friendly hydrogen production pathway has not yet been achieved on an industrial scale. Hydrogen may be produced from waste streams during photofermentation using purple non-sulfur bacteria (PNSB). This process has unique advantages, such as high hyd
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Fermentative Alcohol Productiondifferent feedstocks, a detailed analysis of the hydrodynamics inside the units, bubble columns or stirred tank reactors, the gas-liquid mass transfer rates, the implications in the heat transfer for jacketed reactors and the kinetic mechanisms for microbial reactions are presented. In particular, t
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Biofuels from Microbial Lipids. Lipids are valuable energy rich compounds that has the potential to replace conventional fossil fuels through the production of biofuels. Oleaginous microorganisms contain significant amount of microbial lipids consisting of special fatty acids with varied applications as food additives and nutrac
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Electricity from Microbial Fuel Cells containing substrates. MFC performance has increased several orders of magnitude over the last decade and shows the potential for practical application. In this chapter, we review recent developments of MFC technology and provide an overview of the fundamental principles of MFCs, the electrode mate
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Biofuel Production from Bioelectrochemical Systemsising technologies for dealing with water pollution and the energy crisis. In these systems, electrochemically active bacteria attached on electrodes can degrade organic matter in wastewater while producing electricity, gas fuels, and other value-added chemicals. In this chapter, we review the curre
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