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在气升式生物反应器中处理葡萄渣和马铃薯废料以联产细菌纤维素和葡萄糖酸

Processing of Grape Bagasse and Potato Wastes for the Co-Production of Bacterial Cellulose and Gluconic Acid in an Airlift Bioreactor.

作者信息

Vázquez Manuel, Puertas Gema, Cazón Patricia

机构信息

Department of Analytical Chemistry, Faculty of Veterinary, Campus Terra, University of Santiago de Compostela, 27002 Lugo, Spain.

出版信息

Polymers (Basel). 2023 Sep 29;15(19):3944. doi: 10.3390/polym15193944.

Abstract

The feasibility of using Garnacha Tintorera bagasse and potato wastes as substrate for the co-production of bacterial cellulose (BC) and gluconic acid by fermentation was studied. Firstly, the sulfuric acid hydrolysis of bagasse was evaluated depending on the sulfuric acid concentration (2-4%), temperature (105-125 °C), and time (60-180 min). The bagasse hydrolysates showed a low monosaccharide concentration profile: glucose 3.24-5.40 g/L; cellobiose 0.00-0.48 g/L; arabinose 0.66-1.64 g/L and xylose 3.24-5.40 g/L. However, the hydrolysis treatment enhanced the total phenolic content of the bagasse extract (from 4.39 up to 12.72 mg GAE/g dried bagasse). The monosaccharide profile of the culture medium was improved by the addition of potato residues. From a medium containing bagasse-potato powder (50:50 /) and optimal hydrolysate conditions (125 °C for 60 min and 2% HSO), the composition of glucose increased up to 30.14 g/L. After 8 days of fermentation in an airlift bioreactor by , 4 g dried BC/L and 26.41 g gluconic acid/L were obtained with a BC productivity of 0.021 g/L·h, an efficiency of 0.37 g/g and yield of 0.47 g/g. The productivity of gluconic acid was 0.14 g/L·h with an efficiency of 0.93 g/g and yield of 0.72 g/g. This research demonstrates the promising potential of utilizing waste materials, specifically Garnacha Tintorera bagasse and potato residues, as sustainable substrates for the co-production of valuable bioproducts, such as bacterial cellulose and gluconic acid.

摘要

研究了使用佳丽酿(Garnacha Tintorera)甘蔗渣和马铃薯废料作为底物通过发酵联产细菌纤维素(BC)和葡萄糖酸的可行性。首先,根据硫酸浓度(2-4%)、温度(105-125℃)和时间(60-180分钟)对甘蔗渣的硫酸水解进行了评估。甘蔗渣水解产物的单糖浓度较低:葡萄糖3.24-5.40克/升;纤维二糖0.00-0.48克/升;阿拉伯糖0.66-1.64克/升;木糖3.24-5.40克/升。然而,水解处理提高了甘蔗渣提取物的总酚含量(从4.39毫克没食子酸当量/克干甘蔗渣提高到12.72毫克没食子酸当量/克干甘蔗渣)。通过添加马铃薯残渣改善了培养基的单糖组成。在含有甘蔗渣-马铃薯粉(50:50)和最佳水解条件(125℃、60分钟和2%硫酸)的培养基中,葡萄糖含量增加到30.14克/升。在气升式生物反应器中发酵8天后,得到4克干BC/升和26.41克葡萄糖酸/升,BC的生产率为0.021克/升·小时,效率为0.37克/克,产率为0.47克/克。葡萄糖酸的生产率为0.14克/升·小时,效率为0.93克/克,产率为0.72克/克。这项研究表明,利用废料,特别是佳丽酿甘蔗渣和马铃薯残渣作为可持续底物联产有价值的生物产品,如细菌纤维素和葡萄糖酸,具有广阔的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7960/10575449/b04ee7ca95f6/polymers-15-03944-g001.jpg

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