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Ultrasonic pelleting of torrefied lignocellulosic biomass for bioenergy production

机译:超声波破碎的木质纤维素生物质用于生物能源生产

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Torrefaction has been explored to increase the heating value and hydrophobicity of biomass. Pellets made from torrefied biomass can be used as a high-quality feedstock in gasification and as a substitute for coal in power plants. One existing challenge is that pelleting torrefied biomass is more difficult under the same operating conditions as used for pelleting untreated biomass. To address this challenge, this study employed ultrasonic vibration as an assistance to densify torrefied wheat straw biomass into pellets. Biomass with different severities of torrefaction was produced. Pellet properties and pelleting energy consumption were investigated. It was found torrefied wheat straw biomass could be densified into pellets of good quality with the assistance of ultrasonic vibration; whereas, with the same pelleting pressure but without ultrasonic vibration, good pellets could barely be made. It was also observed that the densities of torrefied biomass pellets were lower than the untreated biomass pellets. However, pellets made from biomass torrefied at a higher temperature had a higher durability. It was also found the energy density and heating value were enhanced as the severity of torrefaction increased. In addition, the energy consumption for pelleting torrefied biomass was higher than untreated biomass under the same pelleting condition. (C) 2018 Elsevier Ltd. All rights reserved.
机译:已经探索了焙干以增加生物质的热值和疏水性。由烘焙过的生物质制成的颗粒可以用作气化中的优质原料,也可以用作发电厂中煤炭的替代品。一个现存的挑战是在与将未经处理的生物质制粒所使用的相同操作条件下,将焙烤的生物质制粒更加困难。为了应对这一挑战,本研究采用超声振动作为辅助,将经过烘焙的麦秸生物质致密化为颗粒状。产生了具有不同严重度的生物质。研究了颗粒性质和制粒能耗。发现通过超声振动可以将焙干的麦秸生物质致密化为高质量的颗粒。反之,在相同的造粒压力下,没有超声波振动,几乎不能制得好的粒料。还观察到,焙干的生物质颗粒的密度低于未处理的生物质颗粒。但是,由在较高温度下焙烧的生物质制成的颗粒具有较高的耐久性。还发现随着烘焙的严重性增加,能量密度和热值增加。另外,在相同的造粒条件下,将焙烤的生物质进行制粒的能耗高于未处理的生物质。 (C)2018 Elsevier Ltd.保留所有权利。

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