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Characterisation of HFBII biosurfactant production and foam fractionation with and without antifoaming agents

机译:含和不含消泡剂的HFBII生物表面活性剂生产和泡沫分离的表征

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摘要

The effects of foaming on the production of the hydrophobin protein HFBII by fermentation have been investigated at two different scales. The foaming behaviour was characterised in standard terms of the product enrichment and recovery achieved. Additional specific attention was given to the rate at which foam, product and biomass overflowed from the fermentation system in order to assess the utility of foam fractionation for HFBII recovery. HFBII was expressed as an extracellular product during fed-batch fermentations with a genetically modified strain of Saccharomyces cerevisiae, which were carried out with and without the antifoam Struktol J647. In the presence of antifoam, HFBII production is shown to be largely unaffected by process scale, with similar yields of HFBII on dry matter obtained. More variation in HFBII yield was observed between fermentations without antifoam. In fermentations without antifoam, a maximum HFBII enrichment in the foam phase of 94.7 was measured with an overall enrichment, averaged over all overflowed material throughout the whole fermentation, of 54.6 at a recovery of 98.1%, leaving a residual HFBII concentration of 5.3 mg L~(-1) in the fermenter. It is also shown that uncontrolled foaming resulted in reduced concentration of biomass in the fermenter vessel, affecting total production. This study illustrates the potential of foam fractionation for efficient recovery of HFBII through simultaneous high enrichment and recovery which are greater than those reported for similar systems.
机译:已经在两个不同的规模上研究了发泡对发酵产生疏水蛋白HFBII的影响。发泡行为以产品富集和回收率的标准术语表征。为了评估泡沫分级分离对HFBII回收的效用,还特别注意了泡沫,产物和生物质从发酵系统中溢出的速率。用转基因酿酒酵母菌株在补料分批发酵过程中,将HFBII表示为细胞外产物,可在有和没有消泡剂Struktol J647的情况下进行。在存在消泡剂的情况下,HFBII的生产在很大程度上不受工艺规模的影响,所获得的干物质的HFBII收率相近。在不使用消泡剂的发酵之间,观察到的HFBII产量存在更多差异。在不使用消泡剂的发酵中,泡沫相中的最大HFBII富集度为94.7,而整个发酵过程中所有溢流物料的平均富集度平均值为54.6,回收率为98.1%,残留的HFBII浓度为5.3 mg L发酵罐中的〜(-1)。还显示出不受控制的发泡导致发酵罐中生物质的浓度降低,从而影响了总产量。这项研究说明了泡沫分馏通过同时进行的高富集和回收来有效回收HFBII的潜力,该潜力要大于类似系统的报道。

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