玉米秸秆超微粉碎与醇解液化研究
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国家自然科学基金资助项目(31271611、31201123)


Ultrafine Grinding and Alcolhol Liquefaction for Corn Stover
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    摘要:

    研究了超微粉碎技术对玉米秸秆结构组成、物化性质和醇解液化的影响。结果表明:随着玉米秸秆粒径的减小,4种粉体的堆积密度由0.11g/mL逐渐增大到0.41g/mL,比表面积增大了1.05m2/g,休止角和滑角也都不同程度增大。采用激光法和扫描电镜分析可知,与普通粉碎相比超微粉碎能显著减小颗粒粒径,使得超微粉的平均粒径达到15.54μm,由于团聚现象,离散度增大,X射线衍射结果显示超微粉碎破坏了玉米秸秆的晶体结构,结晶度显著减小,由44.72%减小到13.68%,表明超微粉碎能有效改善玉米秸秆的粉体性质。用微波和油浴两种加热方式对玉米秸秆进行液化,微波条件下,仅5min超微粉液化率已经达到90.37%,而油浴需要近1h才能达到90%以上,说明微波是一种有效的加热方式;常规油浴条件下,120min超微粉液化率达到95.30%,而小于0.25mm的普通粉液化率仅为84.83%,表明超微粉碎可通过增大比表面积和降低结晶度来提高醇解液化率。

    Abstract:

    The aim of this study was to investigate the effect of micronization on the physicochemical properties of corn stover. With the decrease of powders in four different particle sizes, the bulk density changed from 0.11g/mL to 0.41g/mL, the surface area increased to 1.05m2/g, and the angle of repose and slide of corn straw powder increased to varied degrees. Changes of the microstructure and physicochemical characteristics of different powders were assessed by using scanning electron microscopy and X-ray diffractometry. Compared to general powders, with the agglomerates in ultrafine grinding powder and increased size distributions, the ultrafine grinding reduced the particle size and crystallinity of the wheat straw significantly, that means the ultrafine powder diameter was reduced to 15.54μm, and the crystallinity was reduced from 44.72% to 13.68%. Both of the microwave-assisted and general oil bath heating were carried out in alcolhol liquefaction. With the microwave heating, the liquefied yield of ultrafine powder was 90.37% within 5min, however it needed around 1h with oil bath heating, which indicated the effectivity of microwaves. With the general oil bath heating, the liquefied yield of ultrafine powder was 95.30% with in 120min, which was higher than that of common powder (<025mm). The results showed that ultrafine grinding technology could increase the liquefaction extent and rate. In addition, ultrafine grinding could impove liquefied yield by reducing the particle size and crystallinity of the corn stover.

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刘 欢,顾邢伟,王 雪,韩鲁佳,肖卫华.玉米秸秆超微粉碎与醇解液化研究[J].农业机械学报,2015,46(11):214-220. Liu Huan, Gu Xingwei, Wang Xue, Han Lujia, Xiao Weihua. Ultrafine Grinding and Alcolhol Liquefaction for Corn Stover[J]. Transactions of the Chinese Society for Agricultural Machinery,2015,46(11):214-220

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  • 收稿日期:2015-04-20
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  • 在线发布日期: 2015-11-10
  • 出版日期: 2015-11-10