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Enhanced ethanol production at commercial scale from molasses using high gravity technology by mutant S. cerevisiae

机译:突变酿酒酵母利用高重力技术提高了糖蜜在商业规模上的乙醇生产能力

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Very high gravity (VHG) technology was employed on industrial scale to produce ethanol from molasses (fermented) as well as by-products formation estimation. The effect of different Brix?° (32, 36 and 40) air-flow rates (0.00, 0.20, 0.40, and 0.60 vvm) was studied on ethanol production. The maximum ethanol production was recorded to be 12.2% (v/v) at 40 Brix?° with 0.2 vvm air-flow rate. At optimum level aeration and 40 Brix?° VHG, the residual sugar level was recorded in the range of 12.5-18.5 g/L, whereas the viable cell count remained constant up to 50 h of fermentation and dry matter production increased with fermentation time. Both water and steam consumption reduced significantly under optimum conditions of Brix?° and aeration rate with compromising the ethanol production. Results revealed VHG with continuous air flow is viable technique to reduce the ethanol production cost form molasses at commercial scale.
机译:在工业规模上采用超高重力(VHG)技术从糖蜜(发酵的)以及副产物形成估算中生产乙醇。研究了不同白利糖度(32、36和40)空气流速(0.00、0.20、0.40和0.60 vvm)对乙醇生产的影响。在40 Brix?°下,最大乙醇产量记录为12.2%(v / v),空气流量为0.2 vvm。在最佳曝气水平和40 Brix?°VHG下,记录的残糖水平为12.5-18.5 g / L,而在发酵50 h时,活细胞计数保持恒定,并且干物质产量随发酵时间的增加而增加。在最佳白利糖度和通气率的条件下,水和蒸汽的消耗都大大减少,同时损害了乙醇的产量。结果表明,具有连续气流的VHG是降低商业规模糖蜜生产乙醇的成本的可行技术。

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