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Sorption behaviour of torrefied wood and charcoal determined by dynamic vapour sorption

机译:动态蒸气吸附法测定焙烧木材和木炭的吸附行为

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摘要

The most important variable of biomass-based fuels is moisture, because it affects the entire logistic chain by creating problems related to transport, handling, storage, and combustion. Recently, there has been a growing interest in thermal pre-treatment of biomass-based fuels by torrefaction. Torrefaction is intended to overcome the moisture-related problems by significantly reducing hygroscopicity and thus the logistics of solid biofuels could be improved. In order to gain a deeper insight on the changes induced by torrefaction, the sorption properties of Finnish birch and spruce wood were investigated. The sorption isotherms, hysteresis, accessibility, and surface area were investigated with dynamic vapour sorption. Also the particle size distributions and the clustering behaviour of water molecules were examined. As a result of the thermal pre-treatment, accessibility, adsorption of water vapour, and hysteresis were reduced. Particle size distribution was shifted towards smaller particles and the surface area measured with the BET method was reduced. Hysteresis was also reduced, which may be linked to the overall reduction in material’s hygroscopicity, as well as changes in porosity. The particle size affects sorption by increasing the surface area, but has a dual effect on accessibility, as it also blocks access to pores through agglomeration. In practice, the most important result is the increased hydrophobicity, but also the increased porosity and reduced particle size are to be considered as they can affect the handling and storage properties of torrefied and charred material negatively.
机译:基于生物质的燃料最重要的变量是水分,因为水分会通过产生与运输,处理,储存和燃烧有关的问题来影响整个物流链。近来,人们对通过烘焙进行基于生物质的燃料的热预处理的兴趣日益增长。烘焙旨在通过显着降低吸湿性来克服与水分有关的问题,因此可以改善固体生物燃料的物流。为了更深入地了解烘焙引起的变化,研究了芬兰桦木和云杉木材的吸附性能。用动态蒸气吸附法研究了吸附等温线,滞后,可及性和表面积。还检查了水分子的粒度分布和聚集行为。热处理的结果是减少了可及性,水蒸气的吸附和滞后现象。粒度分布向较小的颗粒移动,并且用BET方法测得的表面积减少了。磁滞也降低了,这可能与材料的吸湿性总体降低以及孔隙率的变化有关。粒径通过增加表面积来影响吸附,但对可及性具有双重影响,因为它还会阻止通过团聚进入孔隙。在实践中,最重要的结果是疏水性的增加,但是孔隙率的增加和粒度的减小也被认为是可能的,因为它们会对焙烧和烧焦的材料产生不利的影响。

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  • 来源
    《Journal of Materials Science》 |2015年第23期|7673-7680|共8页
  • 作者单位

    Department of Forest Sciences University of Helsinki">(1);

    Department of Forest Products Technology School of Chemical Technology Aalto University">(2);

    Norwegian Forest and Landscape Institute">(3);

    Department of Architecture and Civil Engineering University of Bath">(4);

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