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Extraction and characterization of holocellulose fibers by microwave-assisted selective liquefaction of bamboo

机译:微波辅助液化竹液对全纤维素纤维的提取与表征

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Microwave-assisted selective liquefaction was proposed and used as a novel method for the isolation of holocellulose fibers. The results showed that the bamboo lignin component and extractives were almost completely removed by using a liquefaction process at 120 degrees C for 9min, and the residual lignin and extractives in the solid residue were as low as 0.65% and 0.49%, respectively. Increasing the reaction temperature or time could decrease the solid yield, but they can also enhance the removal of lignin and extractives from bamboo particles and increase the holocellulose content in the solid residue. The absorbance bands that characterized functional groups of lignin on the Fourier transform infrared spectra of the solid residue weakened or disappeared. The solid residue showed high crystallinity, indicating the removal of noncellulosic material. Small cracks were observed on the SEM images of the residue, which indicated that the fibers from liquefaction may be susceptible to chemical access or enzyme attack. (c) 2016 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2016, 133, 43394.
机译:提出了微波辅助选择性液化技术,并将其作为一种分离全纤维素纤维的新方法。结果表明,在120℃下液化9min,竹木质素成分和提取物几乎被完全去除,固体残留物中木质素和提取物的残留率分别低至0.65%和0.49%。提高反应温度或时间可能会降低固体收率,但它们也可以增强从竹粒中去除木质素和提取物的作用,并增加固体残留物中全纤维素的含量。在固体残留物的傅立叶变换红外光谱上表征木质素官能团的吸收带减弱或消失。固体残余物显示出高结晶度,表明除去了非纤维素材料。在残留物的SEM图像上观察到小裂纹,表明液化的纤维可能易受化学作用或酶攻击的影响。 (c)2016 Wiley Periodicals,Inc. J. Appl。 Polym。科学2016,133,43394。

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