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首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Preparation and characterization of the spherical nanosized cellulose by the enzymatic hydrolysis of pulp fibers
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Preparation and characterization of the spherical nanosized cellulose by the enzymatic hydrolysis of pulp fibers

机译:用纸浆纤维酶水解的球形纳米纤维素的制备与表征

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In this work, the pulp fibers were enzymolyzed to prepare the nanosized cellulose (NC). The as-prepared samples were characterized by optical microscopy, electron microscopy, and Raman spectra. The experimental results indicated that enzymatic hydrolysis of pulp fibers could produce the spherical NC with a mean particle size of about 30 nm, which had the excellent monodispersity and uniformity. When the concentration of complex enzymes was 20 u/mL (cellulase: xylanase = 9: 1), the yield of NC was 13.6%. The single cellulase was used, even if the enzyme concentration reached up to 200 u/mL, only a mixture of strip and granular flocculation were obtained. The positive synergistic effect between xylanase and cellulase could be due to the enzymolysis of hemicellulose located on the cellulose microfibers to be favorable of cutting and splitting of the microfibers by the endoglucanase in cellulase.
机译:在这项工作中,浆料纤维酶化以制备纳米纤维素(NC)。 通过光学显微镜,电子显微镜和拉曼光谱表征AS制备的样品。 实验结果表明,纸浆纤维的酶水解可以产生具有约30nm的平均粒径的球形Nc,其具有优异的单反叠性和均匀性。 当复合酶的浓度为20u / ml(纤维素酶:木聚糖酶= 9:1)时,Nc的产率为13.6%。 使用单纤维素酶,即使酶浓度达到高达200毫/ mL,也仅获得了条带和粒状絮凝的混合物。 木聚糖酶和纤维素酶之间的阳性协同效应可能是由于位于纤维素微纤维上的半纤维素的酶解有利于通过纤维素酶中的内切葡聚糖酶切割和分裂微纤维。

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