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首页> 外文期刊>Fuel Processing Technology >Fluidized bed pyrolysis of HDPE: A study of the influence of operating variables and the main fluidynamic parameters on the composition and production of gases
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Fluidized bed pyrolysis of HDPE: A study of the influence of operating variables and the main fluidynamic parameters on the composition and production of gases

机译:HDPE的流化床热解:研究操作变量和主要的流体动力学参数对气体组成和产生的影响

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In the present work, a preliminary study of the pyrolysis process of high density polyethylene (HDPE) in a fluidized bed is investigated in order to determine the influence between the fluidynamic properties of the bed reactor and the amount and composition of the gases produced. As is known, fluidized bed technology is a very interesting option to apply in the pyrolysis field due to i) the lack of moving parts in the hot region that facilitates the maintenance of equipment, ii) the high surface area to volume ratio available in the bed, and iii) the high heat transfer coefficient reached which governs the reaction products. But, heat and mass transfer coefficients are strongly affected by the fluidynamic properties of the bed. During the pyrolysis of HDPE, a fluidynamic characterization of the bed particles that consist of char-coated sand of HDPE has been carried out. Parameters such as the minimum fluidizing velocity (u_(mf)), terminal velocity (u_t), bed height (h_f), bed voidage (ε_f), fraction of the bed occupied by bubbles (δ), bubble diameter (d_b), bubble velocity (u_b), the mass transfer coefficients between the bubble and the cloud (K_(bc)) and between the cloud and the emulsion (K_(ce)) were determined. Subsequently, the influence of major operating variables and the fluidynamic parameters on the composition and the gas yield of the pyrolysis of HDPE were studied.
机译:在当前的工作中,对流化床中高密度聚乙烯(HDPE)的热解过程进行了初步研究,以确定床反应器的流体动力学特性与所产生气体的数量和组成之间的影响。众所周知,流化床技术是在热解领域中应用的非常有趣的选择,这是因为:i)在高温区域缺少可移动部件,这有利于设备的维护; ii)在高温条件下可用的高表面积体积比iii)达到高的传热系数,该系数决定了反应产物。但是,传热和传质系数受床的流体动力学特性的强烈影响。在HDPE的热解过程中,已经对由HDPE的炭包砂组成的床层颗粒进行了流体动力学表征。诸如最小流化速度(u_(mf)),最终速度(u_t),床高(h_f),床空隙度(ε_f),床被气泡占据的比例(δ),气泡直径(d_b),气泡等参数确定速度(u_b),气泡与云之间的传质系数(K_(bc))以及云与乳剂之间的传质系数(K_(ce))。随后,研究了主要操作变量和流体动力学参数对HDPE热解的组成和产气量的影响。

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