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Structural modifications of cellulose samples after dissolution into various solvent systems

机译:溶解后纤维素样品的结构修饰溶解成各种溶剂体系

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摘要

This work deals with the modifications resulting from the dissolution of four commercial cellulosic samples, with different crystallinity rates and degrees of polymerization (DPs), in four solvent systems, known and used to dissolve cellulose. The dissolution conditions were optimized for the 16 various systems and followed by turbidity measurements. After regeneration, the samples were analyzed by thermal gravimetric analysis (TGA), scanning electron microscopy (SEM), and X-ray diffractometry (XRD) to study their modification. Viscosimetry measurements were used to evaluate the potential decrease of the DP after dissolution. The observed structural modifications established that, for low DP, all the solvent systems were efficient in dissolving the cellulose without altering the DP, except BMIM [Cl], which provoked a decrease of up to 40 % and a decrease of around 20 % of the degradation temperature (onset temperature, T (o)). For high molecular weight (MW) celluloses, DMSO/TBAF was the only system to allow a complete dissolution without any molar mass loss and degradation temperature modification.
机译:该工作涉及由四种商业纤维素样品的溶解,其中四种商业纤维素样品溶解,具有不同的结晶度速率和聚合度(DPS),其中四种溶剂体系,已知并用于溶解纤维素。针对16种各种系统进行了优化溶解条件,然后进行浊度测量。再生后,通过热重量分析(TGA),扫描电子显微镜(SEM)和X射线衍射法(XRD)分析样品以研究其改性。使用粘度测量测量来评估溶解后DP的电位降低。所观察到的结构修改确定,对于低DP,所有溶剂系统都有效地溶解纤维素而不改变DP,除了BMIM [CL],这引起了高达40%的降低,减少了约20%的减少降解温度(起始温度,T(O))。对于高分子量(MW)纤维素,DMSO / TBAF是允许完全溶解而没有任何摩尔质量损失和降解温度改性的唯一系统。

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