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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Biomechanical and biochemical pulping of sugarcane bagasse with Ceriporiopsis subvermispora fungal and xylanase pretreatments.
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Biomechanical and biochemical pulping of sugarcane bagasse with Ceriporiopsis subvermispora fungal and xylanase pretreatments.

机译:甘蔗渣的真菌,木聚糖酶预处理对甘蔗渣进行生物力学和生化制浆。

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摘要

Sugarcane bagasse was pretreated with both the white-rot fungus, Ceriporiopsis subvermispora, and xylanase enzyme for 2 weeks before soda chemithermomechanical (CTMP) and soda chemical (CP) cooking. For fungi-CTMP (BCTMP) and enzyme-fungi-CTMP (EBCTMP), the bagasse, after bio-pretreatment, was cooked with 5% sodium hydroxide, at 130 degrees C for 20 min. For the chemical pulping (CP), after fungi pretreatment (BCP) or after xylanase and fungal pretreatment (EBCP), the bagasse was cooked with 14.5% sodium hydroxide. With the BCTMP, the Klason lignin was reduced, all of the pulp strength properties were increased, and a 28% savings in refining energy consumption was obtained, but the brightness was reduced 5 points compared to the control. With the EBCTMP, the brightness losses were overcome but with a mild reduction in the pulp strength properties compared to the BCTMP. The energy savings were 5% greater than from BCTMP and 33% over the control. The BCP treatment increases somewhat the pulp strength properties, reduces the energy consumption 23%, and reduces the brightness by 9 points compared to the control; however, the kappa no. was 5.5 points higher than the control. EBCP treatment reduces brightness losses and increases the pulp yield 2% compared to the control, but with some reduction in the strength properties compared to BCP.
机译:在对苏打水化学机械(CTMP)和苏打化学(CP)进行蒸煮之前,将甘蔗渣用白腐真菌,Ceriporiopsis subvermispora和木聚糖酶进行预处理2周。对于真菌-CTMP(BCTMP)和酶-真菌-CTMP(EBCTMP),生物预处理后的甘蔗渣用5%的氢氧化钠在130摄氏度下烹饪20分钟。对于化学制浆(CP),在真菌预处理(BCP)或木聚糖酶和真菌预处理(EBCP)之后,将蔗渣用14.5%的氢氧化钠蒸煮。使用BCTMP可以减少Klason木质素,提高所有的纸浆强度性能,并且可以节省28%的精炼能耗,但与对照组相比,亮度降低了5点。与EBCTMP相比,使用EBCTMP可以克服亮度损失,但纸浆强度特性会有所降低。与BCTMP相比,节能量高出5%,比对照节省了33%。与对照相比,BCP处理可提高纸浆强度性能,降低能耗23%,并将亮度降低9点;但是,卡伯号比对照组高5.5点。与对照相比,EBCP处理可降低亮度损失并提高纸浆产率2%,但与BCP相比,强度性能有所降低。

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