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超声在同时进行预处理和半纤维素化学转化过程中对桦木锯末的影响。

The effect of ultrasound on birch sawdust during simultaneous pretreatment and hemicellulose's chemical conversion.

作者信息

Kälkäjä Salla, Hu Tao, Baup Stéphane, Lévêque Jean-Marc, Lappalainen Katja

机构信息

Sustainable Chemistry Research Unit, University of Oulu, P.O. Box 4300, FIN-90014 Oulu, Finland.

Université Grenoble Alpes, CNRS, Grenoble INP, LRP, 38000 Grenoble, France.

出版信息

Ultrason Sonochem. 2025 May;116:107318. doi: 10.1016/j.ultsonch.2025.107318. Epub 2025 Mar 19.

Abstract

The effect of low-frequency ultrasound on the treatment of birch sawdust with hot water and diluted acid was studied for the first time under high pressure and temperature. When treated with diluted formic acid solution, the production of furfural dramatically increased, emphasizing the straightforward hydrolysis of hemicellulose. The highest furfural yield (43-44 %) was achieved with 5 % formic acid. The most significant decrease in crystallinity index (from 56 % to 50 %) compared to treatment without ultrasound was observed with 2.5 % formic acid, using a 70:30 pulse mode with 70 % amplitude of the nominal power deliverable by the generator and an additional pressure of 3 bar. In diluted acid experiments, the remaining solid fraction, which presumably contained mainly cellulose and lignin, exhibited a completely different shape compared to the starting material, resulting in a kind of "wooden paste" with reduced particle size. The impact of additional pressure appeared to be significant, and this is further discussed in relation to the determination of the acoustic power under such rigorous experimental conditions. Based on the results obtained, ultrasound combined with hot water / diluted acid treatment shows potential for the efficient utilization of birch sawdust for platform chemicals.

摘要

首次在高压和高温条件下研究了低频超声对用热水和稀酸处理桦木屑的影响。用稀甲酸溶液处理时,糠醛产量显著增加,突出了半纤维素的直接水解。用5%的甲酸可实现最高糠醛产率(43 - 44%)。在使用发生器可输送的标称功率70%幅度的70:30脉冲模式和3巴附加压力的条件下,用2.5%的甲酸处理时,与未使用超声处理相比,结晶度指数下降最为显著(从56%降至50%)。在稀酸实验中,剩余的固体部分大概主要包含纤维素和木质素,与起始材料相比呈现出完全不同的形状,形成了一种粒径减小的“木糊”。附加压力的影响似乎很大,并且在如此严格的实验条件下结合声功率的测定对此进行了进一步讨论。基于所获得的结果,超声与热水/稀酸处理相结合显示出高效利用桦木屑生产平台化学品的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e8a/11981785/b9a7e0d8f81e/ga1.jpg

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