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A facile ionic liquid approach to prepare cellulose fiber with good mechanical properties directly from corn stalks

机译:一种容易离子液体方法,用于将纤维素纤维直接从玉米秸秆直接制备纤维素纤维

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It is very difficult to directly spin the lignocellulose without pretreatment. Ionic liquids (ILs) are promising solvent to dissolve lignocellulose to prepare cellulose fiber. However, the degree of cellulose polymerization(DP)is reduced when lignocellulose is dissolved in ILs, and?the?lignin removal rate is low. The elongation at break and tensile strength of the fibers obtained by spinning the lignocellulose dissolved in ILs are poor. In this paper, preparing cellulose fiber directly from lignocellulose based on dissolving corn stalk via [Csub4/submim]Cl-L-arginine binary system is achieved. It shows that the removal rate of lignin can reach 92.35% and the purity of cellulose can reach 85.32% after corn stalk was dissolved at 150?°C for 11.5?h when the mass fraction of arginine is 2.5%. The elongation at break of fiber reached 10.12% and the tensile strength reached 420?MPa. It is mainly due to the fact that L-arginine not only inhibits the degradation of cellulose but also promotes the delignination. Without any pulping or pretreatment, preparing cellulose fibers via direct dissolution and extrusion may provide a simple and effective way to prepare many novel cellulose materials.
机译:直接旋转木质纤维素而不预处理是非常困难的。离子液体(ILS)是有前途的溶剂,以溶解木质纤维素以制备纤维素纤维。然而,当木质纤维素溶解在ILS中时,纤维素聚合程度(DP)减小,并且α木质素去除率低。通过纺丝在ILS中溶解的木质纤维素获得的纤维的断裂和拉伸强度的伸长率差。本文基于溶解玉米茎通过[C 4 MIM]达到溶解玉米茎,将纤维素纤维直接制备纤维素纤维。结果表明,当精氨酸的质量分数为2.5%时,木质素的去除率可以达到92.35%,纤维素溶解在玉米秸秆中达到11.5μl的纯度。纤维断裂的伸长率达到10.12%,拉伸强度达到420℃。这主要是由于L-精氨酸不仅抑制纤维素的降解,而且促进了脱野。没有任何制浆或预处理,通过直接溶解和​​挤出制备纤维素纤维可以提供一种简单且有效的方法来制备许多新型纤维素材料。

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