首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhancing the bioproduction of value-added aroma compounds via solid-state fermentation of sugarcane bagasse and sugar beet molasses: Operational strategies and scaling-up of the process
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Enhancing the bioproduction of value-added aroma compounds via solid-state fermentation of sugarcane bagasse and sugar beet molasses: Operational strategies and scaling-up of the process

机译:通过固态发酵通过固态发酵的甘蔗棒和糖甜菜糖蜜增强增强芳香化合物的生物制造:操作策略和过程的扩大

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摘要

Bioproduction of generally recognized as safe (GRAS) products starting with low-cost raw materials has become significant in the biorefinery concept. Thus, the solid-state fermentation (SSF) of agro-industrial residues using GRAS strains appears as alternative to obtain aroma compounds. Here, the SSF of the mixture sugarcane bagasse/sugar beet molasses was used for producing a mixture of value-added fruit-like compounds. The study aimed to enhance the production and ester selectivity evaluating three operational strategies at three scales (0.5, 4.5 and 22 L) using non-sterilized residues. While the average total volatile production was 120 mg(Vol) per gram of dry substrate (g(ITS)(-1)), fed-batch operation promoted the highest increases in the ester content up to 57 mg(Est) g(ITS)(-1), an 88 and 59% more than in the static-batch and intermittent mixing modes respectively. Alternative operational strategies have compensated the scale-up adverse effects in the bioproduction, moving towards a sustainable large-scale application in a circular economy scheme.
机译:在生物遗弃概念中,普遍认为是安全(GRAS)产品的普遍认为是安全(GRAS)产品的显着性。因此,使用GRAS菌株的农业产业残留物的固态发酵(SSF)似乎是获得芳香化合物的替代物。这里,使用混合物甘蔗甘蔗/糖束糖蜜的SSF用于制备增值果实化合物的混合物。该研究旨在增强使用非灭菌残留的三个鳞片(0.5,4.5和22L)评估三种操作策略的生产和酯选择性。虽然平均总挥发性产量为每克干基质(G(ITS)( - 1)),氟化批次操作促进酯含量高达57毫克(EST)G的最高增加(其)( - 1),比静态间歇和间歇混合模式大超过88和59%。替代业务策略已经补偿了生物生产中的扩大额外不利影响,朝着循环经济方案迈向可持续的大规模应用。

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