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利用乙醇和乳酸提高细菌纤维素的产量。

Enhancement of bacterial cellulose production by ethanol and lactic acid by using .

机构信息

Department of Microbiology, Kurukshetra University, Kurukshetra, Haryana, India.

Department of Chemistry, Kurukshetra University, Kurukshetra, Haryana, India.

出版信息

Prep Biochem Biotechnol. 2024 May;54(5):700-708. doi: 10.1080/10826068.2023.2276188. Epub 2023 Nov 8.

Abstract

The current study intended to analyze the impact of ethanol and lactic acid on the bacterial cellulose yield as well as physicochemical and mechanical properties, by using . The optimization of ethanol and lactic acid concentration has been done by using one-way ANOVA. Both the supplements significantly enhance the yield of bacterial cellulose (BC) as compared to the standard Hestrin-Schramm medium (control). Optimization leads to significant increase in BC yield as compared to the control, i.e., the addition, of optimized concentration of lactic acid (0.6%) increases the yield from (0.78 ± 0.026) g to (4.89 ± 0.020) g dry weight, and optimized concentration of ethanol (1%) increases the yield from (0.73 ± 0.057) g to (3.7 ± 0.01) g dry weight. Various physicochemical and mechanical properties of BC films produced in different media (i.e., HS, HS + Ethanol, and HS + Lactic acid), such as the crystallinity, structure, tensile strength, strain at break, Young's modulus, and water holding capacity, were also examined, by employing various techniques such as SEM, FTIR, XRD, etc. BC produced in medium supplemented with the optimum concentration of both the additives were found to possesses higher porosity. Though, slight decline in crystallinity was observed. But the tensile strength and strain at break, were upgraded 1.5-2.5 times, 2-2.5 times, respectively. This article attempted to present a method for enhancing BC yields and characteristics that may lead to more widespread and cost-effective use of this biopolymer.

摘要

本研究旨在通过 来分析乙醇和乳酸对细菌纤维素产量以及物理化学和机械性能的影响。通过单因素方差分析对乙醇和乳酸浓度进行了优化。与标准的 Hestrin-Schramm 培养基(对照)相比,这两种添加剂都显著提高了细菌纤维素(BC)的产量。与对照相比,优化后显著提高了 BC 的产量,即优化浓度的乳酸(0.6%)的添加量从(0.78±0.026)g 增加到(4.89±0.020)g 干重,优化浓度的乙醇(1%)从(0.73±0.057)g 增加到(3.7±0.01)g 干重。通过使用各种技术,如 SEM、FTIR、XRD 等,还研究了在不同培养基(即 HS、HS+乙醇和 HS+乳酸)中生产的 BC 薄膜的各种物理化学和机械性能,如结晶度、结构、拉伸强度、断裂伸长率、杨氏模量和持水能力。结果发现,在添加最佳浓度的两种添加剂的培养基中生产的 BC 具有更高的孔隙率。尽管结晶度略有下降,但拉伸强度和断裂伸长率分别提高了 1.5-2.5 倍和 2-2.5 倍。本文试图提出一种提高 BC 产量和特性的方法,这可能会导致这种生物聚合物的更广泛和更具成本效益的应用。

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