By Pogaku Ravindra
This e-book presents an intensive evaluation of the newest study in environmentally benign built-in bioprocess expertise. The innovative bioprocess applied sciences highlighted within the booklet contain bioenergy from lignocellulose fabrics, biomass gasification, ethanol, butanol, biodiesel from agro waste, enzymatic bioprocess expertise, nutrition fermentation with starter cultures, and highbrow estate rights for bioprocesses.
This booklet additional addresses area of interest applied sciences in bioprocesses that broadens readers’ knowing of downstream processing for bio items and membrane expertise for bioprocesses. the newest advancements in biomass and bioenergy know-how are reviewed exhaustively, together with IPR rights, nanotechnology for bioenergy items, biomass gasification, and biomass combustion.
This is a perfect e-book for scientists, engineers, scholars, in addition to participants of and policy-makers.
This ebook also:
Addresses state of the art applied sciences in bioprocesses
Broadens readers’ figuring out of metabolic engineering, downstream processing for bioproducts, and membrane know-how for bioprocesses
experiences exhaustively the most recent advancements in biomass and bioenergy know-how, together with nanotechnology for bioenergy items, biomass gasification, biomass combustion, and extra
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Extra resources for Advances in Bioprocess Technology
2 Variation in the extent of the fragmentation of a coal against compressive strength (Dacombe et al. 1999) internal temperature gradient. Wigley et al. (1997) conﬁrmed that a decrease in char particle size may lead to more complete combustion. Decombe et al. (1999) suggested the relationship of fragmentation extent with compressive strength as shown in Fig. 2. However, compressive strength of the coal particle is inversely proportional to the particle size. The ash transport behavior is affected to a large extent by the size of the particle after combustion.
Other Fuel Characteristics The ignition temperature of the fuel particle has an indirect relation with ash formation as it is an important parameter for deﬁning the early start of the combustion process. A number of investigations (Gupta 2005) have been devoted to this issue and it was found that the ignition temperature decreases with an increase in particle size, oxygen partial pressure and volatile matter content. And larger particle size and higher volatile content can lead to various ash related problems.
Bhagvanth Rao, M. (2004). Effect of biochemical reactions on enhancement rate of bioleaching. Chemical Engineering Science, 59 (22–23), 5069–5073. , & Ravindra, P. (2006). Optimization of bacterial oxidation process parameters for selective leaching of nickel by Acidohiobacillus ferrooxidans. International Journal of Chemical Reactor Engineering, 4, A1. com/ijcre/vol4/A1. , & Ravindra, P. (2008). Role of galvanic interaction in selective leaching of nickel from copper ﬂotation concentrate. Advances in Natural and Applied Sciences, 2(2), 68–72.