Yeasts in sustainable bioethanol production: A review
Дрожжи в устойчивом производстве биоэтанола: обзор
2017-03-06
SCID: 54.1/uuek5eps
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Saccharomyces cerevisiaelignocellulosic biomasssustainable bioethanol productionyeast cell immobilizationyeast fermentation
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Abstract (AI)
Bioethanol has been identified as the mostly used biofuel worldwide since it significantly contributes to the reduction of crude oil consumption and environmental pollution. It can be produced from various types of feedstocks such as sucrose, starch, lignocellulosic and algal biomass through fermentation process by microorganisms. Compared to other types of microoganisms, yeasts especially Saccharomyces cerevisiae is the common microbes employed in ethanol production due to its high ethanol productivity, high ethanol tolerance and ability of fermenting wide range of sugars. However, there are some challenges in yeast fermentation which inhibit ethanol production such as high temperature, high ethanol concentration and the ability to ferment pentose sugars. Various types of yeast strains have been used in fermentation for ethanol production including hybrid, recombinant and wild-type yeasts. Yeasts can directly ferment simple sugars into ethanol while other type of feedstocks must be converted to fermentable sugars before it can be fermented to ethanol. The common processes involves in ethanol production are pretreatment, hydrolysis and fermentation. Production of bioethanol during fermentation depends on several factors such as temperature, sugar concentration, pH, fermentation time, agitation rate, and inoculum size. The efficiency and productivity of ethanol can be enhanced by immobilizing the yeast cells. This review highlights the different types of yeast strains, fermentation process, factors affecting bioethanol production and immobilization of yeasts for better bioethanol production.
Key Findings
1
Bioethanol can be produced from sucrose, starch, lignocellulosic, and algal biomass through microbial fermentation.
2
Ethanol production depends on temperature, sugar concentration, pH, fermentation time, agitation, and inoculum size; yeast immobilization can improve efficiency and productivity.
3
High temperature, elevated ethanol concentration, and poor pentose fermentation limit yeast-based ethanol production.
4
Hybrid, recombinant, and wild-type yeasts are employed, while non-simple-sugar feedstocks require pretreatment and hydrolysis before fermentation.
5
Saccharomyces cerevisiae is widely used because of its high ethanol productivity, ethanol tolerance, and ability to ferment diverse sugars.
Research Object
Yeasts used for sustainable bioethanol production
Research Subject
Yeast strains, fermentation processes, operating factors, and cell immobilization affecting bioethanol productivity and efficiency
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2017-03-06
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