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Titlebook: BioH2 & BioCH4 Through Anaerobic Digestion; From Research to Ful Bernardo Ruggeri,Tonia Tommasi,Sara Sanfilippo Book 2015 Springer-Verlag L

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期刊全稱BioH2 & BioCH4 Through Anaerobic Digestion
期刊簡(jiǎn)稱From Research to Ful
影響因子2023Bernardo Ruggeri,Tonia Tommasi,Sara Sanfilippo
視頻videohttp://file.papertrans.cn/187/186412/186412.mp4
發(fā)行地址Presents a new Anaerobic Digestion (AD) approach for producing hydrogen and methane in two subsequent stages and the transformation of traditional AD for producing biogases (methane and carbon dioxide
學(xué)科分類Green Energy and Technology
圖書(shū)封面Titlebook: BioH2 & BioCH4 Through Anaerobic Digestion; From Research to Ful Bernardo Ruggeri,Tonia Tommasi,Sara Sanfilippo Book 2015 Springer-Verlag L
影響因子This book presents a Two-Stage Anaerobic Digestion (TSAD) technique for producing hydrogen and methane, following a step-by-step approach in order to guide readers through the experimental verification of the related hypothesis. In the first stage of AD, the reaction conditions are optimized to obtain the maximum amount of hydrogen, while in the second the liquid residue from the first phase is used as a substrate to produce fuel-methane. AD has traditionally been used to reduce the organic content of waste; this results in a biogas that is primarily constituted of CH4 and CO2. Over the last few decades, the conversion of organic matter into hydrogen by means of AD and selecting Hydrogen Producing Bacteria (HPB) has matured into a viable and sustainable technology among the pallet of H2 generation technologies. The combined bio-production of hydrogen and methane from Organic Waste Materials (OWM) is considered to be an ideal way of utilizing waste, and can increase energy efficiency (the substrate Heat Value converted into H2 and CH4 fuel) to roughly 80%, since the energy efficiency of H2-production alone (15%) is not energetically competitive. The two gas streams can be used eithe
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Energy Sustainability Evaluation of Anaerobic Digestion,n applied to AD. The suggested procedure can help in local planning, in allocation financial resources for the exploitation of new energy processes as well as in selecting the most sustainable choice of several research programs from an energetic point of view.
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https://doi.org/10.1007/978-981-99-2035-8Knowledge of the kinetics of H. production is a necessary step towards a thorough understanding of the mechanisms involved in the complex system of microorganisms’ metabolic pathways in the substrate, including H.-producing bacteria, electron shuttles and hydrogenase enzymes.
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