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Cellulose I and II nanocrystals produced by sulfuric acid hydrolysis of Tetra pak cellulose I

机译:通过Tetra pak纤维素的硫酸水解产生的纤维素I和II纳米晶I

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摘要

Polymorphism is an important factor associated with the cellulose nanomaterial properties. In this study, cellulose fibers (CFs) were efficiently isolated from waste Tetra pak packages, and cellulose I and II nanocrystals were produced by treatment of CFs with 64% sulfuric acid and controlling the reaction time from 15 to 30 min. Cellulose I (CI) was partially converted to cellulose II (CII) within 15 min and the resulting cellulose nanocrystal product (i.e. CNC15) contained 93.2% CII. Further extending the hydrolysis time decreased the CII content of CNC20 to 25.5% and CNC30 was completely CI without CII. CNC15 (285.1 +/- 120.7 nm long, 50.6 +/- 16.5 nm wide, 0.64 at% sulfur) was much thicker, slightly longer, less thermal stable and contained more sulfate groups than CNC30 (207.2 +/- 77.8 nm long, 23.2 +/- 7.8 nm wide, 0.34 at% sulfur). CNCs with controllable allomorph may have potentially diverse applications.
机译:多态性是与纤维素纳米材料特性相关的重要因素。 在该研究中,通过废Tetra pak封装有效地分离纤维素纤维(CFS),通过用64%硫酸处理CF和将反应时间从15-30分钟控制并控制反应时间来产生纤维素纤维(CFS)。 在15分钟内部分将纤维素I(CI)部分转化为纤维素II(CII),并将得到的纤维素纳米晶产物(即CNC15)含有93.2%CII。 进一步延伸水解时间降低了CNC20至25.5%的CII含量,CNC30完全CI而无需CII。 CNC15(285.1 +/- 120.7 nm长,50.6 +/- 16.5nm宽,0.64,%硫)较厚,略长,热稳定,含有比CNC30更多的硫酸盐组(207.2 +/- 77.8 nm长,23.2 +/- 7.8 nm宽,0.34%硫)。 具有可控Allomorph的CNC可能具有潜在的不同应用。

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