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Segregation direction reversal of gas-fluidized biomass/inert mixtures – Experiments based on Particle Segregation Model predictions

机译:气体流化生物质/惰性混合物的分离方向逆转 - 基于粒子分离模型预测的实验

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摘要

The tendency for a gas-fluidized binary mixture to segregate or mix as a function of the size and density of the two solids, despite the extensive research efforts motivated by its strong influence on reactor performances, is still not fundamentally and thoroughly understood. Recently, the Particle Segregation Model (PSM) (Di Maio et al., 2013) has been proposed as a theoretical tool to predict the segregation direction of gently fluidized mixtures. An important and previously overlooked result, also predicted by PSM, is the presence of peculiar conditions in which the flotsam and jetsam components, for a given solid pair, may invert their role upon changing bed composition. In the present work, the segregation behavior of biomass/inert mixtures is investigated with the specific aim to check for the occurrence of this peculiar segregation direction reversal. Crushed olive pits are used as model biomass (1.54 mm diameter) in combination with glass beads (0.25 mm diameter) and two sand cuts (0.34 and 0.16 mm diameter). The segregation tendency of an initially mixed biomass/inert bed, deduced by the measured steady-state composition profiles, turns out to confirm the presence of segregation direction reversal as a result of a change of the relative solid volume fractions. Although the critical “equilibrium” composition is quantitatively captured only for the first pair, the occurrence of the phenomenon appears remarkably in agreement with the PSM predictions in all the three cases.
机译:尽管由于其对反应器性能的强烈影响而进行了广泛的研究努力,但气体流化的二元混合物根据两种固体的尺寸和密度进行分离或混合的趋势仍然没有得到根本和彻底的理解。最近,已经提出了颗粒分离模型(PSM)(Di Maio等人,2013)作为一种理论工具来预测轻度流化混合物的分离方向。同样由PSM预测的一个重要且先前被忽视的结果是存在特殊条件,对于给定的固体对,其漂浮物和Jetsam组分在改变床层组成时可能会改变其作用。在目前的工作中,研究了生物质/惰性混合物的偏析行为,其特定目的是检查这种特殊的偏析方向反转的发生。压碎的橄榄核用作模型生物量(直径1.54毫米),与玻璃珠(直径0.25毫米)和两个切砂(直径0.34和0.16毫米)结合使用。通过测量的稳态组成图推断出最初混合的生物质/惰性床的偏析趋势,可以证实由于相对固体体积分数的变化而导致偏析方向反转。尽管仅针对第一对定量地捕获了关键的“平衡”组成,但在所有这三种情况下,现象的发生都与PSM的预测非常一致。

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