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Improvement of ethanol production using green alga Chlorococcum minutum

机译:采用绿藻氯气氯化物乙醇生产的改进

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摘要

Incessant depletion of fossil fuels urges the governments and non-governmental organizations to invest more on renewable energy sectors including generation of biofuels such as bioethanol. Production of ethanol from algal feedstock has been an interesting area of research in recent times. In the present investigation, feedstock of a green alga Chlorococcum minutum was selected for ethanol production and compared with feedstock of model alga Chlamydomonas reinhardtii. Both the species were grown under in vitro conditions using universal tris-acetate-phosphate (TAP) medium with various concentrations and combinations of vitamins such as thiamin, biotin and cobalamin (B1, B7 and B12) to enhance the biomass in turn reducing sugars in both the algal cultures. Later, these algal feedstocks were used for the production of ethanol under fermentation conditions using yeast. Reducing sugars were more in both the algal cultures grown in Cr3 or Cm3 media (TAP with 0.8?g/L of B1, 0.004?g/L of B7 & 0.004?g/L of B12) and also in Cr2 or Cm2 media (TAP with 0.4?g/L of B1, 0.002?g/L of B7 & 0.002?g/L of B12). In extent, the enhancement of ethanol production was noticed in C. reinhardtii (33.57?g/L) and C. minutum (46.97?g/L) from the feedstocks grown in Cr3 or Cm3 media when compared with feedstocks grown in other vitamin combinations or without vitamin assistance. Specifically, feedstock of C. minutum generated more output at 48?h when compared with model alga. The present work may be useful for the production of ethanol at a commercial level.
机译:化石燃料的不断耗尽促使政府和非政府组织在可再生能源部门投资更多,包括生物燃料等生物素素等生物素。近近代藻类原料的乙醇生产是一个有趣的研究领域。在本发明的研究中,选择绿藻氯连接小胶木的原料,用于乙醇生产,并与模型藻类骨髓瘤Reinhardtii的原料相比。使用具有各种浓度的通用三乙酸盐 - 磷酸盐(Tap)培养基的体外条件和维生素,如硫胺素,生物素和钴酰胺(B1,B7和B12)的组合,以增强生物质,以增强生物质,以增强生物质的体外条件下生长。藻类培养。后,这些藻类原料用于使用酵母的发酵条件下生产乙醇。在CR3或CM3培养基中生长的藻类培养物中还有还原糖更加减少(用0.8·G / L的B1,0.004μlB1,0.004×g / L的B12的B7和0.004·G / L)和CR2或CM2培养基(用0.4μlb1,0.1002Ω·g / l的B1,0.4×g / l的点击拍摄B12的0.4克/升。在与其他维生素组合生长的原料相比,在C. Reinhardtii(33.57μl)和C. minutum(46.97μl)和C. minutum(46.97μl)和C. minutum(46.97μl)中的乙醇产生的增强或没有维生素援助。具体而言,与模型藻类相比,C.小胶质的原料在48℃时产生更多输出。本作本作可用于在商业水平下生产乙醇。

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