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Effect of Pretreatments on the Enzymatic Hydrolysis of High-Yield Bamboo Chemo-Mechanical Pulp by Changing the Surface Lignin Content

机译:通过改变表面木质素含量预处理对高产竹化学机械浆酶水解的影响

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摘要

Hydrogen peroxide chemo-mechanical pulp (APMP), sulfonated chemo-mechanical pulp (SCMP), and chemical thermomechanical pulp (CTMP) were used as raw materials to explore the effects of hydrogen peroxide (HP), Fenton pretreatment (FP), and ethanol pretreatment (EP) on the enzymatic hydrolysis of high-yield bamboo mechanical pulp (HBMP). The surface lignin distribution and contents of different HBMPs were determined using confocal laser scanning microscopy (CLSM) and X-ray photoelectron spectroscopy (XPS). The correlation between the surface lignin and the enzymatic hydrolysis of HBMP was also investigated. The residue of enzymatic hydrolysis was used to adsorb methylene blue (MB). The results showed that the cracks and fine fibers on the surface of APMP, SCMP, and CTMP increased after FP, when compared to HP and EP. The total removal content of hemicellulose and lignin in SCMP after FP was higher than with HP and EP. Compared to SCMP, the crystallinity increased by 15.4%, and the surface lignin content of Fenton-pretreated SCMP decreased by 11.7%. The enzymatic hydrolysis efficiency of HBMP after FP was higher than with HP and EP. The highest enzymatic hydrolysis of Fenton-pretreated SCMP was 49.5%, which was higher than the enzymatic hydrolysis of Fenton-pretreated APMP and CTMP. The removal rate of MB reached 94.7% after the adsorption of the enzymatic hydrolysis residue of SCMP. This work provides an effective approach for a high value-added utilization of high-yield bamboo pulp.
机译:过氧化氢化学机械纸浆(APMP),磺化化学机械纸浆(SCMP)和化学热机械纸浆(CTMP)用作原料,以探索过氧化氢(HP),芬顿预处理(FP)和乙醇的影响预处理(EP)高产竹机械浆(HBMP)酶水解。使用共聚焦激光扫描显微镜(CLSM)和X射线光电子谱(XPS)测定表面木质素分布和不同HBMP的含量。还研究了表面木质素与HBMP的酶水解之间的相关性。酶水解的残余物用于吸附亚甲基蓝(MB)。结果表明,与HP和EP相比,FP后,APMP,SCMP和CTMP表面上的裂缝和细纤维增加。在FP后SCMP中的半纤维素和木质素的总除去含量高于HP和EP。与SCMP相比,结晶度增加了15.4%,芬顿预处理的SCMP的表面木质素含量下降了11.7%。 FP后HBMP的酶水解效率高于HP和EP。芬顿 - 预处理的SCM的最高酶水解为49.5%,高于芬顿预处理APMP和CTMP的酶水解。 SCMP酶水解残留物吸附后Mb的去除率达到94.7%。这项工作提供了高产竹浆的高附加值利用的有效方法。

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