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Search for optimum conditions of Paulownia autohydrolysis process and influence in pulping process

机译:寻找泡桐自动水解过程的最佳条件和制浆过程中的影响

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摘要

In this study, we evaluated the potential of a species trihybrid Paulownia fortunei, tormentosa, and elongata as an industrial crop in terms of its contents in holocellulose, lignin, xylo-oligomers, monomers, and other glucan and its use for making cellulose pulp. Well-optimized biomass autohydrolysis processes yield valuable liquid and solid phases that can be used to produce liquid fuels and cellulosic pulp. The process was modeled to optimize the extraction of xylo-oligomers and xylose in the liquid phase while preserving the integrity of cellulose fibers. The optimum processing conditions (viz. temperatures of 180–195°C and operating times of 0–15 min) provided an acceptable solid phase yield (70%), while maintaining a high xylose and xylo-oligomer contents in the liquid phase. Soda—anthraquinone pulping of solid fraction provide 60.6% pulp yield at Kappa number 33 and a viscosity of 787 cm3/g. The autohydrolyzed chips required 16.6% less alkali than the regular chips to achieve Kappa number 33.
机译:在这项研究中,我们根据其在全纤维素,木质素,木糖低聚物,单体和其他葡聚糖中的含量及其在制备纤维素纸浆中的用途,评估了三杂种泡桐,tormentosa和elongata作为工业作物的潜力。最佳化的生物质自动水解工艺可产生有价值的液相和固相,可用于生产液体燃料和纤维素纸浆。对工艺进行了建模,以优化液相中木糖低聚物和木糖的提取,同时保留纤维素纤维的完整性。最佳加工条件(即180-195°C的温度和0-15分钟的操作时间)可提供可接受的固相收率(70%),同时在液相中保持较高的木糖和木糖低聚物含量。苏打-蒽醌制浆的固体馏分在Kappa值为33时提供60.6%的纸浆产率,粘度为787 cm3 / g。自动水解木片比常规木片所需的碱量少16.6%,以达到Kappa值33。

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