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Influence of the Supramolecular Structure and Physicochemical Properties of Cellulose on Its Dissolution in a Lithium Chloride/N,N-Dimethylacetamide Solvent System

机译:纤维素的超分子结构和理化性质对其在氯化锂/ N,N-二甲基乙酰胺溶剂体系中溶解的影响

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The present work deals with the effects of structural variables of celluloses on their dissolution in the solvent system LiCl/N,N-dimethylacetamide,LiCl/DMAc.Celluloses from fast growing sources (sisal and linters),as well as microcrystalline cellulose (avicel PH-101) were studied.The following structural variables were investigated: index of crystallinity,I_C;crystallite size;polymer porosity;and degree of polymerization determined by viscosity,DPv.Mercerization of fibrous celluloses was found to decrease DPv,I_C,the specific surface area,and the ratio pore volume/radius.The relevance of the structural properties of cellulose to its dissolution is discussed.Rate constants and activation parameters of cellulose decrystallization,prior to its solubilization,have been determined under nonisothermal conditions.The kinetic parameters calculated showed that dissolution is accompanied with small,negative enthalpy and a large,negative entropy of activation.
机译:目前的工作涉及纤维素的结构变量对其在溶剂体系LiCl / N,N-二甲基乙酰胺,LiCl / DMAc中的溶解的影响。来自快速增长来源(剑麻和短绒)的纤维素以及微晶纤维素(avicel PH -101)。研究了以下结构变量:结晶度指数I_C;微晶尺寸;聚合物孔隙率;以及由粘度DPv确定的聚合度。发现纤维状纤维素的丝光降低了DPv,I_C,比表面积讨论了纤维素的结构性质与其溶解度的关系。在非等温条件下,测定了纤维素在溶解之前的结晶速率和活化参数,计算出的动力学参数表明溶解伴随着小的负焓和大的负熵激活。

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