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Deep eutectic solvent system based on choline chloride-urea as a pre-treatment for nanofibrillation of wood cellulose

机译:基于氯化胆碱-尿素的深共熔溶剂体系作为木材纤维素纳米原纤化的预处理

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摘要

Deep eutectic solvents (DESs) are promising novel chemicals that can function as solvents, reagents, and catalysts in many applications because they are readily available, have low toxicity, are biodegradable, and exhibit negligible vapor pressure. In this study, a DES of choline chloride-urea (molar ratio of 1 : 2) was used as a non-hydrolytic pre-treatment media to promote nanofibrillation of birch cellulose pulp using a microfluidizer. The DES pre-treatment was conducted at 100 degrees C, and then DES was removed by washing with water. Three degrees of mechanical treatment with the microfluidizer for DES pre-treated cellulose pulp were conducted and their effects on the fiber properties were studied. Cellulose fibers were observed to disintegrate into nanofibril bundles with widths ranging from 15 to 200 nm and to individual cellulose nanofibrils with widths of 2-5 nm. Wide-angle X-ray diffraction (WAXD) and degree of polymerization analysis using the limiting viscosity method revealed that both the cellulose crystalline structure and the degree of polymerization of the cellulose remained intact after pre-treatment with DES.
机译:深低共熔溶剂(DES)是有前途的新型化学品,可在许多应用中用作溶剂,试剂和催化剂,因为它们易于获得,毒性低,可生物降解且蒸气压可忽略不计。在这项研究中,使用氯化胆碱-尿素的DES(摩尔比为1:2)作为非水解预处理介质,以使用微流化剂促进桦木纤维素纸浆的纳米原纤化。 DES预处理在100摄氏度下进行,然后用水洗涤除去DES。用微流化剂对DES预处理的纤维素纸浆进行了三级机械处理,研究了它们对纤维性能的影响。观察到纤维素纤维分解成宽度为15至200 nm的纳米原纤维束,并分解为宽度为2-5 nm的单个纤维素纳米原纤维。广角X射线衍射(WAXD)和使用极限粘度法的聚合度分析表明,经DES预处理后,纤维素的晶体结构和纤维素的聚合度均保持不变。

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