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Optimization of lipase production by solid-state fermentation of olive pomace: from flask to laboratory-scale packed-bed bioreactor

机译:通过橄榄果渣的固态发酵优化脂肪酶的生产:从烧瓶到实验室规模的填充床生物反应器

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摘要

Lipases are versatile catalysts with many applications and can be produced by solid-state fermentation (SSF) using agro-industrial wastes. The aim of this work was to maximize the production of Aspergillus ibericus lipase under SSF of olive pomace (OP) and wheat bran (WB), evaluating the effect on lipase production of C/N ratio, lipids, phenols, content of sugars of substrates and nitrogen source addition. Moreover, the implementation of the SSF process in a packed-bed bioreactor and the improvement of lipase extraction conditions were assessed. Low C/N ratios and high content of lipids led to maximum lipase production. Optimum SSF conditions were achieved with a C/N mass ratio of 25.2 and 10.2% (w/w) lipids in substrate, by the mixture of OP:WB (1:1) and supplemented with 1.33% (w/w) (NH4)2SO4. Studies in a packed-bed bioreactor showed that the lower aeration rates tested prevented substrate dehydration, improving lipase production. In this work, the important role of Triton X-100 on lipase extraction from the fermented solid substrate has been shown. A final lipase activity of 223 ± 5 U g1 (dry basis) was obtained after 7 days of fermentation.
机译:脂肪酶是用途广泛的多功能催化剂,可以通过使用农业工业废料进行固态发酵(SSF)来生产。这项工作的目的是在橄榄渣(OP)和麦麸(WB)的SSF下最大程度地提高曲霉脂肪酶的产量,评估C / N比,脂质,酚和底物糖含量对脂肪酶生产的影响。和氮源添加。此外,评估了在填充床生物反应器中SSF工艺的实施以及脂肪酶提取条件的改善。低C / N比和高脂质含量导致最大的脂肪酶生产。通过OP:WB(1:1)的混合物并补充1.33%(w / w)(NH4),以25.2的C / N质量比和10.2%(w / w)的脂质达到最佳SSF条件。 )2SO4。在填充床生物反应器中的研究表明,较低的曝气速率可防止底物脱水,从而提高脂肪酶的产量。在这项工作中,已经表明了Triton X-100在从发酵固体底物中提取脂肪酶的重要作用。发酵7天后的最终脂肪酶活性为223±5 U g1(干基)。

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