现状:纺织业中的细菌和酵母共生培养(scoby

Azila Adnan, Anis Siti Noor Zulaikha Sudin
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引用次数: 0

摘要

康普茶在发酵过程中会产生 SCOBY,即细菌和酵母共生培养物,这是细菌和酵母相互作用的结果。为了充分发掘纤维素作为一种可行的原材料在许多工业应用中的潜力,目前正在对 Kombucha SCOBY 进行大量研究。根据研究,在整个 SCOBY 发酵过程中发现最多的细菌是酵母菌和木醋杆菌。在气液界面上,这些微生物有助于在细胞外产生纤维素纤维,从而形成生物膜。本文更具体地概述了制造 SCOBY 的有利条件,以及可能影响产品的各个方面,并对其在纺织和时尚领域的应用进行了评估。目前正在探索这种生物膜的优势,包括在多个行业,特别是纺织和时尚行业的应用。微生物联合体的茶叶发酵过程能够证明以前研究过的特定生物活性的增加。然而,SCOBY 在纺织品中的应用还存在一些局限性,需要加以强调。因此,本综述重点关注 SCOBY 的特性、挑战和潜力,以使其在纺织业中的应用变得可行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
THE STATE OF PLAY: SYMBIOTIC CULTURE OF BACTERIA AND YEASTS (SCOBY) IN TEXTILE INDUSTRY
The fermentation of Kombucha tea produces SCOBY, or Symbiotic Culture of Bacteria and Yeast, as a result of the interaction between bacteria and yeast. In order to fully explore the potential of employing this cellulose as a viable raw material in many applications of industry, numerous studies on the Kombucha SCOBY are now being done. According to studies, Zygosaccharomyces and Acetobacter xylinum are the most frequent bacteria found throughout the SCOBY fermentation process. At the air-liquid interface, these microorganisms help produce cellulose fibrils extracellularly, resulting in a biofilm. An overview of the favourable conditions for SCOBY manufacture is provided in more specific, as well as the aspects that may influence the product, and its suitability for textile and fashion sector applications is appraised. The advantages of this biofilm are being explored, including in several industries especially in textile and fashion industry. The microbial consortium's tea fermentation process was able to demonstrate an increase in specific biological activities that had previously been researched. However, there are some limitations in the applications of SCOBY in the textile that need to be highlighted. Thus, this review focuses on the SCOBY properties, challenges and potential available to make it feasible in textile industries.
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