稀酸辅助微气泡介导的臭氧分解 Eucheuma denticulatum 植物胶体以生产生物基 L-乳酸。

IF 9.7 1区 环境科学与生态学 Q1 AGRICULTURAL ENGINEERING Bioresource Technology Pub Date : 2024-08-01 Epub Date: 2024-07-05 DOI:10.1016/j.biortech.2024.131082
Kevin Tian Xiang Tong, Inn Shi Tan, Henry Chee Yew Foo, Tony Hadibarata, Man Kee Lam, Mee Kee Wong
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引用次数: 0

摘要

生物基 L-乳酸(L-LA)对各行各业都很有吸引力,但现有技术存在生产率有限和能耗高的问题。本研究建立了一种利用 Eucheuma denticulatum 植物胶体(EDP)生产大型藻类 L-LA 的综合工艺。稀酸辅助微气泡介导的臭氧分解(DAMMO)被用于 EDP 的臭氧分解,以优化 D-半乳糖的回收。通过对 DAMMO 处理进行单因素优化,在 80 °C 下使用 0.15 M H2SO4 75 分钟,D-半乳糖回收效率达到最高(59.10%)。使用 3 %(w/v)混合微生物细胞(凝结芽孢杆菌 ATCC 7050 和嗜酸乳杆菌-14)和发酵残渣进行发酵,可获得 97.67 % 的 L-LA 产量。此外,在重复批次发酵中对这种培养方法进行了进一步评估,结果显示平均 L-LA 产量为 93.30%,为基于大型藻类的 L-LA 生产提供了一个可行的概念。
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Dilute acid-assisted microbubbles-mediated ozonolysis of Eucheuma denticulatum phycocolloid for biobased L-lactic acid production.

Biobased L-lactic acid (L-LA) appeals to industries; however, existing technologies are plagued by limited productivity and high energy consumption. This study established an integrated process for producing macroalgae-based L-LA from Eucheuma denticulatum phycocolloid (EDP). Dilute acid-assisted microbubbles-mediated ozonolysis (DAMMO) was selected for the ozonolysis of EDP to optimize D-galactose recovery. Through single-factor optimization of DAMMO treatment, a maximum D-galactose recovery efficiency (59.10 %) was achieved using 0.15 M H2SO4 at 80 °C for 75 min. Fermentation with 3 % (w/v) mixed microbial cells (Bacillus coagulans ATCC 7050 and Lactobacillus acidophilus-14) and fermented residues achieved a 97.67 % L-LA yield. Additionally, this culture approach was further evaluated in repeated-batch fermentation and showed an average L-LA yield of 93.30 %, providing a feasible concept for macroalgae-based L-LA production.

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来源期刊
Bioresource Technology
Bioresource Technology 工程技术-能源与燃料
CiteScore
20.80
自引率
19.30%
发文量
2013
审稿时长
12 days
期刊介绍: Bioresource Technology publishes original articles, review articles, case studies, and short communications covering the fundamentals, applications, and management of bioresource technology. The journal seeks to advance and disseminate knowledge across various areas related to biomass, biological waste treatment, bioenergy, biotransformations, bioresource systems analysis, and associated conversion or production technologies. Topics include: • Biofuels: liquid and gaseous biofuels production, modeling and economics • Bioprocesses and bioproducts: biocatalysis and fermentations • Biomass and feedstocks utilization: bioconversion of agro-industrial residues • Environmental protection: biological waste treatment • Thermochemical conversion of biomass: combustion, pyrolysis, gasification, catalysis.
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