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利用工业废料通过固态发酵实现槐糖脂可持续生产中的碳氮优化

Carbon and nitrogen optimization in solid-state fermentation for sustainable sophorolipid production using industrial waste.

作者信息

Eras-Muñoz Estefanía, Gea Teresa, Font Xavier

机构信息

Department of Chemical, Biological and Environmental Engineering, Escola d'Enginyeria, Composting Research Group (GICOM), Universitat Autònoma de Barcelona, Barcelona, Spain.

出版信息

Front Bioeng Biotechnol. 2024 Jan 4;11:1252733. doi: 10.3389/fbioe.2023.1252733. eCollection 2023.

Abstract

The use of alternative feedstocks such as industrial or food waste is being explored for the sustainable production of sophorolipids (SLs). Microbial biosurfactants are mainly produced via submerged fermentation (SmF); however, solid-state fermentation (SSF) seems to be a promising alternative for using solid waste or byproducts that could not be exploited by SmF. Applying the advantages that SSF offers and with the aim of revalorizing industrial organic waste, the impact of carbon and nitrogen sources on the relationship between yeast growth and SL production was analyzed. The laboratory-scale system used winterization oil cake as the solid waste for a hydrophobic carbon source. Pure hydrophilic carbon (glucose) and nitrogen (urea) sources were used in a Box-Behnken statistical design of experiments at different ratios by applying the response surface methodology. Optimal conditions to maximize the production and productivity of diacetylated lactonic C18:1 were a glucose:nitrogen ratio of 181.7:1.43 (w w based on the initial dry matter) at a fermentation time of 100 h, reaching 0.54 total gram of diacetylated lactonic C18:1 with a yield of 0.047 g per gram of initial dry mass. Moreover, time course fermentation under optimized conditions increased the SL crude extract and diacetylated lactonic C8:1 production by 22% and 30%, respectively, when compared to reference conditions. After optimization, industrial wastes were used to substitute pure substrates. Different industrial sludges, OFMSW hydrolysate, and sweet candy industry wastewater provided nitrogen, hydrophilic carbon, and micronutrients, respectively, allowing their use as alternative feedstocks. Sweet candy industry wastewater and cosmetic sludge are potential hydrophilic carbon and nitrogen sources, respectively, for sophorolipid production, achieving yields of approximately 70% when compared to the control group.

摘要

人们正在探索使用工业或食物垃圾等替代原料来可持续生产槐糖脂(SLs)。微生物生物表面活性剂主要通过深层发酵(SmF)生产;然而,固态发酵(SSF)似乎是利用SmF无法利用的固体废物或副产品的一种有前景的替代方法。利用SSF的优势并旨在使工业有机废物增值,分析了碳源和氮源对酵母生长与SL生产之间关系的影响。实验室规模的系统使用冬化油饼作为疏水性碳源的固体废物。通过应用响应面方法,在不同比例下使用纯亲水性碳(葡萄糖)和氮(尿素)源进行Box-Behnken统计实验设计。使二乙酰化内酯C18:1的产量和生产率最大化的最佳条件是葡萄糖与氮的比例为181.7:1.43(基于初始干物质的重量比),发酵时间为100小时,二乙酰化内酯C18:1的总产量达到0.54克,每克初始干物质的产量为0.047克。此外,与参考条件相比,优化条件下的时间进程发酵使SL粗提物和二乙酰化内酯C8:1的产量分别提高了22%和30%。优化后,使用工业废物替代纯底物。不同的工业污泥、有机生活垃圾水解产物和糖果工业废水分别提供了氮、亲水性碳和微量营养素,使其可作为替代原料使用。糖果工业废水和化妆品污泥分别是生产槐糖脂的潜在亲水性碳源和氮源,与对照组相比,产量约为70%。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99e4/10797751/cbc3f2ab45c3/FBIOE_fbioe-2023-1252733_wc_abs.jpg

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