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由玉米秸秆和柳枝稷制成的压块和颗粒中的天然粘合剂和固体桥型结合机制。

Natural binders and solid bridge type binding mechanisms in briquettes and pellets made from corn stover and switchgrass.

机构信息

Department of Bioproducts and Biosystems Engineering, University of Minnesota, MN 55108, USA.

出版信息

Bioresour Technol. 2010 Feb;101(3):1082-90. doi: 10.1016/j.biortech.2009.08.064. Epub 2009 Sep 30.

Abstract

Corn stover and switchgrass are two important feedstocks considered for producing renewable fuels and energy in the US. Densification of these biomass feedstocks into briquettes/pellets would help reduce the problems and costs of bulk transportation, handling, and storage of biomass feedstocks. In this study, the role of the natural binders in corn stover and switchgrass to make durable particle-particle bonding in briquettes/pellets was investigated by micro-structural analyses. Scanning Electron Microscopy (SEM) images of briquettes made by using a uniaxial piston-cylinder densification apparatus in the laboratory, briquettes made by using a pilot-scale roll-press briquetting machine, and pellets made by using a pilot-scale conventional ring-die pelleting machine were analysed. The SEM images showed that the bonding between particles was created mainly through solid bridges. The solid bridges between particles were made by natural binders in the biomass expressed during the densification process. UV auto-fluorescence images of briquettes and pellets further confirmed that the solid bridges were made mainly by natural binders such as lignin and protein. It was found that activating (softening) the natural binders using moisture and temperature in the range of glass transition is important to make durable particle-particle bonding.

摘要

玉米秸秆和柳枝稷是美国生产可再生燃料和能源的两种重要原料。将这些生物质原料致密化为压块/颗粒有助于减少生物质原料在运输、装卸和储存过程中的问题和成本。本研究通过微观结构分析,考察了玉米秸秆和柳枝稷中天然粘结剂在压块/颗粒中形成持久的颗粒间粘结的作用。分析了使用实验室单轴活塞-圆筒致密化装置、中试规模辊压制粒机和中试规模常规环模制粒机制备的压块的扫描电子显微镜(SEM)图像。SEM 图像表明,颗粒间的粘结主要是通过固体桥形成的。在致密化过程中,生物质中的天然粘结剂形成了颗粒间的固体桥。压块和颗粒的紫外自动荧光图像进一步证实,固体桥主要是由木质素和蛋白质等天然粘结剂形成的。结果表明,通过水分和温度在玻璃化转变范围内激活(软化)天然粘结剂对于形成持久的颗粒间粘结非常重要。

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