Comparative Analysis of Anaerobic Degumming Effects on Different Bast Fibers from the Angle of Enzyme Activity and Microbial Community Structure

IF 9.7 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL
Yiting Qin, Xuehui Xie, Haonan Mo, Yuling Li, Xiaoguang Chen, Yanxue Ma, Zhuoyu Zhao, Hangmi Zheng, Yao Sun, Dongyang Li, Ziyi Wu, Na Liu, Qingyun Zhang, Xinshan Song
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Abstract

Bast fiber textiles are becoming more and more popular, and degumming is a key process to obtain fiber. However, the more widely used degumming methods currently have a high level of pollution, which has become a primary problem restricting the development of the textile industry. Therefore, this study developed a continuous-flow anaerobic biological degumming system for bast fibers (Ramie and Hemp), with a self-developed spiral symmetry stream anaerobic bioreactor (SSSAB) as the core. The basic indicators of the degumming systems’ operation were analyzed, including pH, COD (Chemical Oxygen Demand), weight loss ratio, fineness, and breaking strength. pH and COD results indicated that the systems are operated continuously and steadily. The breaking strength of Ramie fiber and Hemp fiber were found about 4-6.5 cN/dtex and 2-4 cN/dtex, respectively, which meet subsequent spinning needs. The weight loss ratio of Ramie fiber (maximum value 27.27%) obtained by this anaerobic degumming method was generally higher than that produced by the traditional degumming method. SEM (Scanning Electron Microscopy) found the bast fibers current degumming time was too long and a lot of microorganisms adhered to the surface of the fibers. Enzyme activities testing in different fiber degumming systems found that the Ramie fiber degumming system has a higher cellulase activity than the Hemp fiber degumming system. From the perspective of community structure, it was believed that there were significant differences in microbial flora between Ramie and Hemp degumming systems, but there was no significant difference in archaea between them. This not only explored the adaptability of anaerobic continuous flow biological degumming system varieties but also provided theoretical guidance for enterprises to degum different bast fibers.
从酶活性和微生物群落结构角度比较分析厌氧脱胶对不同巴斯特纤维的影响
巴斯特纤维纺织品越来越受欢迎,而脱胶是获取纤维的关键工序。然而,目前使用较多的脱胶方法污染严重,已成为制约纺织业发展的首要问题。因此,本研究以自主研发的螺旋对称流厌氧生物反应器(SSSAB)为核心,开发了韧皮纤维(苎麻和大麻)连续流厌氧生物脱胶系统。对脱胶系统运行的基本指标进行了分析,包括 pH 值、化学需氧量、失重率、细度和断裂强度。苎麻纤维和大麻纤维的断裂强度分别约为 4-6.5 cN/dtex 和 2-4cN/dtex,满足后续纺纱的需要。厌氧脱胶法得到的苎麻纤维失重率(最大值为 27.27%)普遍高于传统脱胶法。扫描电子显微镜(SEM)发现,韧皮部纤维目前的脱胶时间过长,大量微生物附着在纤维表面。不同纤维脱胶系统的酶活性测试发现,苎麻纤维脱胶系统的纤维素酶活性高于大麻纤维脱胶系统。从群落结构的角度来看,苎麻和大麻脱胶系统的微生物菌群存在显著差异,但两者的古细菌没有显著差异。这不仅探索了厌氧连续流生物脱胶系统品种的适应性,也为企业脱胶不同韧皮纤维提供了理论指导。
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来源期刊
Journal of Cleaner Production
Journal of Cleaner Production 环境科学-工程:环境
CiteScore
20.40
自引率
9.00%
发文量
4720
审稿时长
111 days
期刊介绍: The Journal of Cleaner Production is an international, transdisciplinary journal that addresses and discusses theoretical and practical Cleaner Production, Environmental, and Sustainability issues. It aims to help societies become more sustainable by focusing on the concept of 'Cleaner Production', which aims at preventing waste production and increasing efficiencies in energy, water, resources, and human capital use. The journal serves as a platform for corporations, governments, education institutions, regions, and societies to engage in discussions and research related to Cleaner Production, environmental, and sustainability practices.
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