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[结冷胶固定化及其在玉米秸秆连续发酵生产D-乳酸中的应用]

[Immobilization of with gellan gum and its application in continuous fermentation of D-lactic acid from corn straw].

作者信息

Guo Yongxin, Wang Gang, Li Kexin, Han Jiaqi, Chen Huan, Zhang Sitong, Li Yanli, Chen Guang

机构信息

College of life sciences, Jilin Agricultural University, Changchun 130118, Jilin, China.

Key Laboratory of Straw Comprehensive Utilization and Black Land Protection of the Ministry of Education, Changchun 130118, Jilin, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2023 Mar 25;39(3):1083-1095. doi: 10.13345/j.cjb.220542.

Abstract

Biorefinery of chemicals from straw is an effective approach to alleviate the environmental pollution caused by straw burning. In this paper, we prepared gellan gum immobilized T15 gel beads (LA-GAGR-T15 gel beads), characterized their properties, and established a continuous cell recycle fermentation process for D-lactate (D-LA) production using the LA-GAGR-T15 gel beads. The fracture stress of LA-GAGR-T15 gel beads was (91.68±0.11) kPa, which was 125.12% higher than that of the calcium alginate immobilized T15 gel beads (calcium alginate-T15 gel beads). This indicated that the strength of LA-GAGR-T15 gel beads was stronger, and the strain was less likely to leak out. The average D-LA production was (72.90±2.79) g/L after fermentation for ten recycles (720 h) using LA-GAGR-T15 gel beads as the starting strain and glucose as the substrate, which was 33.85% higher than that of calcium alginate-T15 gel beads and 37.70% higher than that of free T15. Subsequently, glucose was replaced by enzymatically hydrolyzed corn straw and fermented for ten recycles (240 h) using LA-GAGR-T15 gel beads. The yield of D-LA reached (1.74±0.79) g/(L·h), which was much higher than that of using free bacteria. The wear rate of gel beads was less than 5% after ten recycles, which indicated that LA-GAGR is a good carrier for cell immobilization and can be widely used in industrial fermentation. This study provides basic data for the industrial production of D-LA using cell-recycled fermentation, and provides a new way for the biorefinery of D-LA from corn straw.

摘要

利用秸秆生产化学品的生物炼制是减轻秸秆焚烧造成的环境污染的有效途径。本文制备了结冷胶固定化T15凝胶珠(LA-GAGR-T15凝胶珠),对其性能进行了表征,并建立了使用LA-GAGR-T15凝胶珠连续细胞循环发酵生产D-乳酸(D-LA)的工艺。LA-GAGR-T15凝胶珠的断裂应力为(91.68±0.11) kPa,比海藻酸钙固定化T15凝胶珠(海藻酸钙-T15凝胶珠)高125.12%。这表明LA-GAGR-T15凝胶珠的强度更强,菌株泄漏的可能性更小。以LA-GAGR-T15凝胶珠为起始菌株,葡萄糖为底物,经过十次循环(720 h)发酵后,D-LA的平均产量为(72.90±2.79) g/L,比海藻酸钙-T15凝胶珠高33.85%,比游离T15高37.70%。随后,用酶解玉米秸秆代替葡萄糖,使用LA-GAGR-T15凝胶珠进行十次循环(240 h)发酵。D-LA的产量达到(1.74±0.79) g/(L·h),远高于使用游离细菌的产量。经过十次循环后,凝胶珠的磨损率小于5%,这表明LA-GAGR是一种良好的细胞固定化载体,可广泛应用于工业发酵。本研究为利用细胞循环发酵工业化生产D-LA提供了基础数据,为从玉米秸秆生物炼制D-LA提供了新途径。

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