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Pelletization of wood and alternative residual biomass blends for producing industrial quality pellets

机译:木材和其他残留生物质混合物的造粒,用于生产工业级颗粒

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Pellets for industrial use were produced from blends of pine sawdust (PIN) and alternative residual biomasses in a pilot-scale pelletizer. The effect of the pelletization temperature (T = 50-80 degrees C) and biomass moisture content (MC = 14-20%) on pine sawdust pellet quality was studied by using response surface methodology (RSM). Pelletization performance was evaluated on the basis of the durability, bulk density, moisture content, lower heating value (LHV), energy density, diameter, length and density of the pellets. From the RSM analysis, a maximum durability value of 99.4% was obtained at T = 80 degrees C and MC = 16.6%. Under these conditions, all the parameters showed values within the required range of industrial pellet qualities, i.e., a bulk density of 616 kg/m(3), a pellet moisture content of 7.6%, a lower heating value (as received) of 18 MJ/kg, a diameter of 6.2 mm and a length of 23.4 mm. Blends of pine sawdust with eleven unconventional biomass samples were then pelletized under the optimum conditions to obtain pellets for industrial use according to the categories of quality defined by ISO 17225-2. Blends of pine sawdust with almond shells (AS) and olive stones (OS) contents of up to 30 wt%, as well as with pine cone leafs (PCL) contents of up to 15 wt%, produced I1 pellets. Blends of pine sawdust with coffee dregs (CD), coffee husks (CH) and grape pomace (GP) proportions of up to 10 wt%, as well as with hazelnut shells (HS), miscanthus (MIS), pine kernel shells (PKS) and switchgrass (SG) contents of up to 15 wt%, and also with a PCL content of between 15 and 30 wt%, generated I3 class pellets. Classification was not possible for cocoa shells (CS) mixed with pine sawdust due to the low bulk density of the pellets. Energy consumption resulting from the pelletization of the blends was evaluated with values ranging from 0.09 to 0.33 kWh/kg, while the pelletization of pine sawdust required 0.18 kWh/kg. The addition of alternative biomass feedstocks to pine sawdust may therefore serve to reduce energy consumption in industrial pelletization.
机译:工业用药丸是由中型制粒机中的松木屑(PIN)和其他残留生物质的混合物制成的。利用响应面法(RSM)研究了制粒温度(T = 50-80℃)和生物质水分含量(MC = 14-20%)对松木屑颗粒品质的影响。基于耐久性,堆积密度,水分含量,较低的热值(LHV),能量密度,直径,长度和粒料的密度来评价造粒性能。通过RSM分析,在T = 80摄氏度和MC = 16.6%的情况下,获得的最大耐久性值为99.4%。在这些条件下,所有参数均显示出工业颗粒品质所需范围内的值,即堆密度为616 kg / m(3),颗粒含水量为7.6%,较低的发热量(收到时)为18 MJ / kg,直径为6.2 mm,长度为23.4 mm。然后根据ISO 17225-2定义的质量类别,在最佳条件下将松木屑与11个非常规生物质样品的混合物进行制粒,以获得用于工业用途的颗粒。松木屑与杏仁壳(AS)和橄榄石(OS)含量不超过30 wt%,以及松果叶(PCL)含量不超过15 wt%的混合物产生了I1颗粒。松木屑与咖啡渣(CD),咖啡果壳(CH)和葡萄果渣(GP)的比例最高为10 wt%,还与榛子壳(HS),猕猴桃(MIS),松仁壳(PKS) )和柳枝((SG)含量高达15 wt%,并且PCL含量也介于15和30 wt%之间,生成了I3级颗粒。由于可可豆壳(CS)与松木屑混合,由于颗粒的堆积密度低,因此无法分类。评估了共混物造粒所产生的能耗,取值范围为0.09至0.33 kWh / kg,而松木屑的造粒则需要0.18 kWh / kg。因此,向松木屑中添加替代生物质原料可能有助于减少工业制粒过程中的能耗。

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