...
首页> 外文期刊>Cellulose >Preparation of tough cellulose II nanofibers with high thermal stability from wood
【24h】

Preparation of tough cellulose II nanofibers with high thermal stability from wood

机译:用木材制备具有高热稳定性的坚韧纤维素II纳米纤维

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Well-dispersed cellulose II nanofibers with high purity of 92 % and uniform width of 15–40 nm were isolated from wood and compared to cellulose I nanofibers. First, ground wood powder was purified by series of chemical treatments. The resulting purified pulp was treated with 17.5 wt% sodium hydroxide (NaOH) solution to mercerize the cellulose. The mercerized pulp was further mechanically nanofibrillated to isolate the nanofibers. X-ray diffraction patterns revealed that the purified pulp had been transformed into the cellulose II crystal structure after treatment with 17.5 wt% NaOH, and the cellulose II polymorph was retained after nanofibrillation. The cellulose II nanofiber sheet exhibited a decrease in Young's modulus (8.6 GPa) and an increase in fracture strain (13.6 %) compared to the values for a cellulose I nanofiber sheet (11.8 GPa and 7.5 %, respectively), which translated into improved toughness. The cellulose II nanofiber sheet also showed a very low thermal expansion coefficient of 15.9 ppm/K in the range of 20–150 ℃. Thermogravimetric analysis indicated that the cellulose II nanofiber sheet had better thermal stability than the cellulose I nanofiber sheet, which was likely due to the stronger hydrogen bonds in cellulose II crystal structure, as well as the higher purity of the cellulose II nanofibers.
机译:从木材中分离出分散良好的纤维素II纳米纤维,其纯度为92%,均匀宽度为15-40 nm,并与纤维素I纳米纤维进行了比较。首先,通过一系列化学处理纯化木粉。将所得的纯化纸浆用17.5重量%的氢氧化钠(NaOH)溶液处理以使纤维素丝化。将丝光化的纸浆进一步机械地纳米原纤化以分离纳米纤维。 X射线衍射图表明,用17.5重量%的NaOH处理后,纯化的纸浆已经转变成纤维素II的晶体结构,并且在纳米原纤化之后保留了纤维素II的多晶型物。与纤维素I纳米纤维片材的数值(分别为11.8 GPa和7.5%)相比,纤维素II纳米纤维片材的杨氏模量降低了(8.6 GPa),断裂应变增加了(13.6%),这转化为韧性的提高。纤维素II纳米纤维片在20–150℃范围内也显示出非常低的15.9 ppm / K热膨胀系数。热重分析表明,纤维素II纳米纤维片比纤维素I纳米纤维片具有更好的热稳定性,这可能是由于纤维素II晶体结构中的氢键更强,以及纤维素II纳米纤维的纯度更高。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号