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首页> 外文期刊>Applied and Environmental Microbiology >Ethanol Production by Saccharomyces cerevisiae Immobilized in Hollow-Fiber Membrane Bioreactors
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Ethanol Production by Saccharomyces cerevisiae Immobilized in Hollow-Fiber Membrane Bioreactors

机译:固定在空心纤维膜生物反应器中的酿酒酵母生产乙醇

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Saccharomyces cerevisiae ATCC 4126 was grown within the macroporous matrix of asymmetric-walled polysulfone hollow-fiber membranes and on the exterior surfaces of isotropic-walled polypropylene hollow-fiber membranes. Nutrients were supplied and products were removed by single-pass perfusion of the fiber lumens. Growth of yeast cells within the macrovoids of the asymmetric-walled membranes attained densities of greater than 1010 cells per ml and in some regions accounted for nearly 100% of the available macrovoid volume, forming a tissue-like mass. A radial distribution of cell packing existed across the fiber wall, indicating an inadequate glucose supply to cells located beyond 100 μm from the lumen surface. By comparison, yeast cell growth on the exterior surfaces of the isotropic-walled membranes resulted in an average density of 3.5 × 109 viable cells per ml. Ethanol production by reactors containing isotropic polypropylene fibers reached a maximum value of 26 g/liter-h based on the total reactor volume. Reactor performance depended on the fiber packing density and on the glucose medium flow rate and was limited by low nutrient and product transport rates. The inhibition of ethanol production and the reduction in fermentation efficiency arose primarily from the accumulation of CO2 gas within the sealed reactor shell space.
机译:在不对称壁的聚砜中空纤维膜的大孔基质中和各向同性壁的聚丙烯中空纤维膜的外表面上生长酿酒酵母ATCC 4126。提供营养物,并通过单次灌注纤维腔来去除产品。酵母细胞在不对称壁膜大孔内的生长密度达到每毫升大于1010个细胞,在某些区域约占可用大孔体积的100%,形成组织样块。整个纤维壁上都存在细胞堆积的径向分布,这表明距腔腔表面100μm处的细胞葡萄糖供应不足。相比之下,各向同性壁膜外表面上酵母细胞的生长导致每毫升平均密度为3.5×109个活细胞。基于反应器总体积,包含各向同性聚丙烯纤维的反应器生产的乙醇的最大值达到26 g /升-h。反应器的性能取决于纤维的堆积密度和葡萄糖介质的流速,并受低营养物和产物运输速度的限制。乙醇生产的抑制和发酵效率的降低主要是由于密封的反应器壳空间内CO2气体的积累。

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