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Titlebook: Biohydrogen Production from Organic Wastes; Jianlong Wang,Yanan Yin Book 2017 Springer Nature Singapore Pte Ltd. 2017 Biological processes

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发表于 2025-3-21 16:14:39 | 显示全部楼层 |阅读模式
期刊全称Biohydrogen Production from Organic Wastes
影响因子2023Jianlong Wang,Yanan Yin
视频video
发行地址Offers insight into the fermentative hydrogen production from wastes.Provides a comprehensive review of fundamentals and various applications of fermentative hydrogen production to help readers unders
学科分类Green Energy and Technology
图书封面Titlebook: Biohydrogen Production from Organic Wastes;  Jianlong Wang,Yanan Yin Book 2017 Springer Nature Singapore Pte Ltd. 2017 Biological processes
影响因子This book comprehensively introduces fundamentals and applications of fermentative hydrogen production from organic wastes, consisting of eight chapters, covering the microbiology, biochemistry and enzymology of hydrogen production, the enrichment of hydrogen-producing microorganisms, the pretreatment of various organic wastes for hydrogen production, the influence of different physicochemical factors on hydrogen production, the kinetic models and simulation of biological process of fermentative hydrogen production, the optimization of biological hydrogen production process and the fermentative hydrogen production from sewage sludge. The book summarizes the most recent advances that have been made in this field and discusses bottlenecks of further development. This book gives a holistic picture of this technology and details the knowledge through illustrative diagrams, flow charts, and comprehensive tables. It is intended for undergraduate and graduate students who are interested in bioenergy and wastes management, researchers exploring microbial fermentation process, and engineers working on system optimization or other bioenergy applications.
Pindex Book 2017
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Enrichment of Hydrogen-Producing Microorganisms,tes, and so on. A variety of pretreatment methods have been used for enriching hydrogen-producing bacteria from the mixed cultures, that is to say, eliminating the hydrogen consumers while preserving the hydrogen producers. In this chapter, different pretreatment methods for enriching hydrogen produ
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Kinetic Models for Hydrogen Production,tion, inhibitor concentration, temperatures, pH, and dilution rates on the process of fermentative hydrogen production, and to establish the relationship among the substrate degradation rate, the hydrogen-producing bacteria growth rate and the product formation rate. In this chapter, the modified Go
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Optimization of Hydrogen Production Process,es, including one-factor-at-a-time design, full factorial design, Taguchi design, Plackett–Burman design, Central Composite Design, and Box–Behnken design. Each design method was briefly introduced, followed by the introduction of its analysis. In addition, the advantages and disadvantages of each d
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