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Optimization of bio-chemical degumming of Ramie fiber for improved strength & luster

机译:苎麻纤维生物化学脱胶的优化,提高强度和光泽

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Textile industries are currently not showing much interest in Ramie fibers due to the difficulties associated with their post-harvest downstream processing. The degumming chemicals are often detrimental to the environment upon discharged. Chemical degumming alone results in fibril-released coarse and brittle fibers. This problem has been addressed by combining partial chemical treatment with microbial degumming of the fibers for 72?h at 37?°C using a novel microbial formulation with Bacillus thuringiensis MCC2138 and Bacillus subtilis ABDR01. The extracellular microbial enzyme-based degumming without the release of fibrils produced a durable, soft, and lustrous fiber with higher tensile strength while utilizing fewer chemicals, thereby leading to lower discharge toxicity. The improved texture and strength compared to complete chemical treatment are attributed to even degumming of the fiber ensuring proper spinnability. Through this approach, Ramie is expected to gain visibility in the global textile market, thereby leading to Ramie cultivators' economic benefits.
机译:由于与其后下游处理相关的困难,纺织工业目前对苎麻纤维的兴趣没有显着。脱胶化学品在出院时往往有害环境。单独使用化学脱胶导致原纤维释放的粗糙和脆性纤维。通过用芽孢杆菌硫脲MCC2138和枯草芽孢杆菌ABDR01将部分化学处理与纤维的微生物脱胶,将部分化学处理与纤维微生物脱胶的部分化学处理结合在37Ω·H中,以72℃结合72℃。基于细胞外微生物酶的脱胶,而不释放原纤维,产生耐用,柔软,有光泽的纤维,其较高的抗拉强度,同时利用较少的化学品,从而导致较低的放电毒性。与完全化学处理相比的改善质地和强度归因于纤维的脱胶,确保适当的可纺性。通过这种方法,预计苎麻将获得全球纺织市场的知名度,从而导致苎麻培育者的经济效益。

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