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Fluidization and drying of biomass particles in a vibrating fluidized bed with pulsed gas flow

机译:脉冲气流振动流化床中生物质颗粒的流化和干燥

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Fluidization of biomass particles in the absence of inert bed materials has been tested in a pulsed fluidized bed with vibration, with the pulsation frequency ranging from 033 to 6.67 Hz. Intermittent fluidization at 033 Hz and apparently 'normal' fluidization at 6.67 Hz with regular bubble patterns were observed. Pulsation has proven to be effective in overcoming the bridging of irregular biomass particles induced by strong inter-particle forces. The vibration is only effective when the pulsation is inadequate, either at too low a frequency or too low in amplitude. Drying of biomass has been carried out to quantify the effectiveness of gas pulsation for fluidized bed dryers and torrefiers in terms of gas-solid contact efficiency and heat and mass transfer rates. The effects of gas flow rate, bed temperature, pulsation frequency and vibration intensity on drying performance have been systematically investigated. While higher temperature and gas flow rate are favored in drying, there exists an optimal range of pulsation frequency between 0.75 Hz and 1.5 Hz where gas-solid contact is enhanced in both the constant rate drying and falling rate drying periods. (C) 2015 Elsevier B.V. All rights reserved.
机译:在没有惰性床材料的情况下,生物质颗粒的流化已经在振动的脉冲流化床中进行了测试,脉动频率范围为033至6.67Hz。在033Hz时间断流化,并且显然是在6.67Hz的6.67 Hz中流化,具有规则的泡沫图案。已证明脉动有效地克服通过强颗粒颗粒诱导的不规则生物质颗粒的桥接。当脉动不充分时,振动才有效,频率太低或幅度过低。已经进行了生物质的干燥,以量化流化床干燥器和托雷菲斯在气体固体接触效率和热量和传质速率方面的有效性。系统地研究了气体流速,床温,脉动频率和振动强度对干燥性能的影响。虽然在干燥中有利于更高的温度和气体流速,但在0.75Hz和1.5Hz之间存在最佳的脉动频率范围,其中恒定速率干燥和下降速率干燥时段增强了气固触点。 (c)2015 Elsevier B.v.保留所有权利。

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