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Torrefaction of densified mesocarp fibre and palm kernel shell

机译:致密化中果皮纤维和棕榈仁壳的烘焙

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Mesocarp fibre and palm kernel shell (PKS) are widely used as fuels for boilers at palm oil mills to generate electricity. In the present study, the PKS and mesocarp fibre were densified under a controlled condition in prior to torrefaction process. Then, the briquettes were torrefied with various temperatures of 250-300 degrees C, residence time of 40 min and nitrogen flow rate of 1 l/min. In general, the torrefied mesocarp fibre briquettes were successfully produced regardless of torrefaction temperature, whereas the production of torrefied PKS briquettes was only feasible for torrefaction temperature of 250 degrees C, but the outer surface still remained brittle. The results show that an increase in torrefaction temperature causes a decrease in relaxed density and compressive strength of the torrefied mesocarp fibre briquettes. In terms of combustion properties, an increase in torrefaction temperature causes an increase in gross calorific value, fixed carbon content and ash content while volatile matter decreases. Besides, energy density of the torrefied mesocarp fibre briquettes does not change significantly with respect to the torrefaction temperature. Finally, the gross calorific value and moisture content were found to fulfill the requirements for commercialization as stated by international standards. (C) 2018 Elsevier Ltd. All rights reserved.
机译:中棕榈纤维和棕榈仁壳(PKS)被广泛用作棕榈油厂的锅炉燃料以发电。在本研究中,在烘烤过程之前,在受控条件下将PKS和中果皮纤维致密化。然后,将团块在250-300℃的各种温度,40分钟的停留时间和1l / min的氮气流速下进行焙烧。通常,无论焙烧温度如何,都能成功生产出焙干的中果皮纤维团块,而焙干的PKS团块仅在250摄氏度的焙烧温度下才可行,但其外表面仍保持脆性。结果表明,烘焙温度的升高导致烘焙后的中果皮纤维团块的松弛密度和抗压强度降低。就燃烧特性而言,焙烧温度的升高导致总热值,固定碳含量和灰分含量的增加,而挥发性物质减少。此外,焙干的中果皮纤维团块的能量密度相对于焙烧温度没有显着变化。最后,发现总热值和水分含量符合国际标准所述的商业化要求。 (C)2018 Elsevier Ltd.保留所有权利。

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