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Immobilised yeast grape must deacidification in a recycle fixed bed reactor

机译:固定化酵母葡萄必须在循环固定床反应器中脱酸

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摘要

Maloalcoholic fermentation (MAF) of grape must by Schizosaccharomyces pombe immobilised in calcium-alginate double-layer beads (ProMalic~?) was studied in Erlenmeyer flasks and in a total recycle fixed-bed reactor operating in batch mode. The reaction is pseudo-first order with respect to L-malic acid and under similar conditions deacidification is faster in the recycle reactor. This was attributed to mass transfer limitations which were confirmed in the recycle reactor by studying the influence of yeast load on the rate of MAF. Mass transfer limitations are also responsible for the lower activation energy of fermentation with the immobilised yeast (67 ± 9 kJ mol~(-1)) in comparison with the free cells (126 ± 19 kJ mol~(-1)). Alcoholic fermentation and MAF were performed simultaneously, both in the recycle reactor and in the industrial trials, confirming the efficacy of immobilised S. pombe to reduce grape must acidity without interfering with the main fermentation. Altogether, the present results are useful for the scale-up of a recycle reactor to process large volumes of grape must.
机译:在锥形瓶中以及在分批模式下运行的总循环固定床反应器中,研究了固定在海藻酸钙双层珠(ProMalic?)中的裂殖酵母(Schizosaccharomyces pombe)对葡萄必须进行的酒精发酵(MAF)。对于L-苹果酸,该反应是伪一级反应,并且在类似条件下,在再循环反应器中脱酸更快。这归因于传质限制,该限制在循环反应器中通过研究酵母负荷对MAF速率的影响得到了证实。与游离细胞(126±19 kJ mol〜(-1))相比,传质限制还导致固定化酵母的发酵活化能较低(67±9 kJ mol〜(-1))。酒精发酵和MAF在循环反应器和工业试验中同时进行,证实了固定化的粟酒裂殖酵母在不干扰主要发酵的情况下降低葡萄汁酸度的功效。总之,目前的结果对于扩大循环反应器的规模以处理大量葡萄汁很有用。

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