Microalgal biomass pretreatment for bioethanol production: a review
Предварительная обработка микроводорослевой биомассы для производства биоэтанола: обзор
2018-03-01
SCID: 54.1/cz9u46ut
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bioethanol productioncarbohydrate quantificationcell disruptionfermentable sugarsmicroalgal biomass pretreatment
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Abstract (AI)
Biofuels derived from microalgae biomass have received a great deal of attention owing to their high potentials as sustainable alternatives to fossil fuels. Microalgae have a high capacity of CO2 fixation and depending on their growth conditions, they can accumulate different quantities of lipids, proteins, and carbohydrates. Microalgal biomass can, therefore, represent a rich source of fermentable sugars for third generation bioethanol production. The utilization of microalgal carbohydrates for bioethanol production follows three main stages: i) pretreatment, ii) saccharification, and iii) fermentation. One of the most important stages is the pretreatment, which is carried out to increase the accessibility to intracellular sugars, and thus plays an important role in improving the overall efficiency of the bioethanol production process. Diverse types of pretreatments are currently used including chemical, thermal, mechanical, biological, and their combinations, which can promote cell disruption, facilitate extraction, and result in the modification the structure of carbohydrates as well as the production of fermentable sugars. In this review, the different pretreatments used on microalgae biomass for bioethanol production are presented and discussed. Moreover, the methods used for starch and total carbohydrates quantification in microalgae biomass are also briefly presented and compared.
Key Findings
1
Bioethanol production from microalgal carbohydrates comprises pretreatment, saccharification, and fermentation, with pretreatment critically affecting overall process efficiency.
2
Chemical, thermal, mechanical, biological, and combined pretreatments can disrupt microalgal cells, improve intracellular sugar accessibility, and modify carbohydrate structures.
3
Microalgal biomass is a promising source of fermentable sugars for third-generation bioethanol because its lipid, protein, and carbohydrate content varies with growth conditions.
4
Pretreatment can facilitate sugar extraction and promote the production of fermentable sugars needed for subsequent bioethanol fermentation.
5
The review compares pretreatment approaches and summarizes methods for quantifying starch and total carbohydrates in microalgal biomass.
Research Object
microalgal biomass for bioethanol production
Research Subject
pretreatment methods and their effects on cell disruption, intracellular sugar accessibility, carbohydrate structure, fermentable sugar production, and bioethanol-process efficiency
Publication Details
Publication Date
2018-03-01
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