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- W2913277566 endingPage "122" @default.
- W2913277566 startingPage "79" @default.
- W2913277566 abstract "Hydrogen is considered as the fuel of the future by virtue of the fact that it is carbon-neutral renewable energy source having the highest energy content per unit mass of any known fuel. Hydrogen can be produced sustainably by dark, anaerobic bacterial growth on carbohydrate-rich substrates. The present chapter discusses microbiology, biochemistry, molecular biology, and the various other aspects related to dark fermentative hydrogen production. Pure isolates known to produce hydrogen from carbohydrates include species of Enterobacter, Clostridium, etc. However, mixed cultures are easily obtainable from natural sources and are able to proliferate on nonsterile feedstock for the degradation of complex organic substrate. Compared to pure substrates, complex substrates especially different kinds of waste may offer a sustainable and economical alternative for hydrogen production. However, for maximization of hydrogen production, the different physicochemical process parameters need to be determined. In this regard, the various parameters affecting the dark hydrogen production process include pH, temperature, hydraulic retention time, hydrogen partial pressure, etc., have been discussed in details. In addition, the chapter discusses the different types of reactor configurations and their suitability to carry out studies on dark fermentative hydrogen production. Scale-up studies of dark fermentative hydrogen production also discussed in this chapter. Overall, the chapter presents a holistic understanding of the dark hydrogen production process and highlights the recent new findings and achievements in the field." @default.
- W2913277566 created "2019-02-21" @default.
- W2913277566 creator A5039052059 @default.
- W2913277566 creator A5049530069 @default.
- W2913277566 creator A5081788626 @default.
- W2913277566 date "2019-01-01" @default.
- W2913277566 modified "2023-10-18" @default.
- W2913277566 title "Dark-Fermentative Biohydrogen Production" @default.
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