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In-situ microbial degumming technology with Bacillus sp HG-28 for industrial production of ramie fibers

机译:芽孢杆菌HG-28原位微生物脱胶技术在gu麻纤维工业生产中的应用

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Industrial production of ramie fibers by chemical degumming results in problems such as environmental pollution and inferior fiber quality, which are unsustainable and hinder the development of relevant industries. For these reasons, an in-situ microbial degumming process with direct application of Bacillus sp. HG-28 was developed and presented here to solve these problems. This strain was selected for its high degumming ability and low cellulose damage. In the degumming process, the gum in ramie bast fibers induced the strain to secrete high activities of pectinase and xylanase, both of which were proven to be essential for degumming. After 16 h of degumming, gum content reduction was measured to be 76.92% while cellulose loss could not be evidently detected. This is more efficient than other reported microbial degumming methods that do not use microorganisms directly. According to the results of in-situ microbial degumming in industrial scale, the residual gum content of degummed ramie fibers decreased to 1.81%, the bundle breaking tenacity reached 5.09 cN/dtex and, additionally, the consumption of chemicals, water and energy were significantly reduced, proving superior to chemical process. This study provides a sustainable alternative for the conventional chemical degumming industry. (C) 2014 Elsevier B.V. All rights reserved.
机译:通过化学脱胶的麻纤维的工业生产导致诸如环境污染和纤维质量差的问题,这是不可持续的,并且阻碍了相关产业的发展。由于这些原因,需要直接应用芽孢杆菌属的原位微生物脱胶工艺。 HG-28是为解决这些问题而开发并提出的。选择该菌株是因为其具有高脱胶能力和低纤维素破坏性。在脱胶过程中,麻韧皮纤维中的树胶促使菌株分泌果胶酶和木聚糖酶的高活性,这两种酶均被证明对脱胶至关重要。脱胶16小时后,测得的胶基糖含量降低为76.92%,而无法明显检测到纤维素损失。这比其他不直接使用微生物的微生物脱胶方法更为有效。根据工业规模原位微生物脱胶的结果,脱胶麻纤维的残留胶含量降低至1.81%,束断裂强度达到5.09 cN / dtex,此外,化学药品,水和能源的消耗显着减少,证明优于化学过程。该研究为常规化学脱胶工业提供了可持续的替代方法。 (C)2014 Elsevier B.V.保留所有权利。

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