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Fuel Properties of Bio-Pellets Produced from Selected Materials under Various Compacting Pressure

机译:各种压实压力下选定材料生产的生物粒料的燃料特性

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The purpose of this study is to investigate the fuel properties of biomass pellets prepared from six different biomasses: bamboo sawdust, eucalyptus sawdust, corn cob, rubber tree branches, palm fibre and lippia grass. These materials were milled into small particles less than 5 mm before binderless pelletization using the labscale hydraulic press under forces of 56-166 MPa for 20 seconds into the pellets. Thermal degradation of each biomass was analyzed by TGA. The increase in compaction pressure makes the L/D ratio of pellets decrease and the pellet density increase, and rather maintained the constant value after 139 MPa was applied. Moreover, higher applied pressure also gave the pellets with higher tensile strength and less water impermeability.
机译:本研究的目的是探讨由六种不同生物量制备的生物质颗粒的燃料特性:竹锯末,桉树锯齿,玉米棒,橡胶树枝,棕榈纤维和椴草。在使用Labscale液压机的粘合剂中,将这些材料研磨成小于5mm的小颗粒,在颗粒中使用LabScale液压机20秒20秒。通过TGA分析每种生物质的热降解。压实压力的增加使得粒料的L / D比降低并且颗粒密度增加,并且在施加139MPa后保持恒定值。此外,较高的施加压力也使粒料具有更高的拉伸强度和更少的不透露性。

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