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回转窑热解废塑料过程中固体颗粒的运动与传热模拟 被引量:6
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作者 姬国钊 张瑜涛 +5 位作者 包津维 姜铁男 何琳林 王欣 高原 李爱民 《科学通报》 EI CAS CSCD 北大核心 2020年第26期2895-2902,共8页
废塑料在回转窑反应器中经热解工艺可以转化成热解气、热解油和热解炭.回转窑中热载体的加载量对颗粒的运动和传热有着非常重要的影响,进而可以影响热解气、热解油和热解炭的三相产物分布.本研究采用石英砂作为热解废塑料的热载体,热载... 废塑料在回转窑反应器中经热解工艺可以转化成热解气、热解油和热解炭.回转窑中热载体的加载量对颗粒的运动和传热有着非常重要的影响,进而可以影响热解气、热解油和热解炭的三相产物分布.本研究采用石英砂作为热解废塑料的热载体,热载体的加载量从5%增加到15%.随着热载体的增加,热解油和热解炭产量增加,而热解气的产量减少.通过离散元方法对颗粒运动和换热过程分析发现,加载更多的热载体提高了回转窑内颗粒的平动速度和转动速度,增强了颗粒间的相互碰撞,从而加快了石英砂热载体向废塑料颗粒的传热效率.热载体的增加有助于挥发分的释放,并缩短了挥发分的停留时间,这导致了产油量的增加和产气量的减少.另外,增加热载体使用量可以使床层保持更高的温度,强化挥发分在床层内的碳化反应,增加焦炭产量. 展开更多
关键词 废塑料热解 回转窑反应器 离散元分析 颗粒运动与传热
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Computational fluid dynamics applied to high temperature hydrogen separation membranes 被引量:1
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作者 guozhao ji Guoxiong WANG +2 位作者 Kamel HOOMAN Suresh BHATIA Joao C. DINIZ da COSTA 《Frontiers of Chemical Science and Engineering》 SCIE EI CAS CSCD 2012年第1期3-12,共10页
This work reviews the development of computational fluid dynamics (CFD) modeling for hydrogen separation, with a focus on high temperature membranes to address industrial requirements in terms of membrane systems as... This work reviews the development of computational fluid dynamics (CFD) modeling for hydrogen separation, with a focus on high temperature membranes to address industrial requirements in terms of membrane systems as contactors, or in membrane reactor arrange- ments. CFD modeling of membrane,.s attracts interesting challenges as the membrane provides a discontinuity of flow, and therefore cannot be solved by the Navier-Stokes equations. To address this problem, tile concept of source has been introduced to understand gas flows on both sides or domains (feed and permeate) of the membrane. This is an important solution, as the gas flow and concentrations in the permeate domain are intrinsically affected by the gas flow and concentrations in the feed domain and vice-versa. In turn, the source term will depend on the membrane used, as different membrane materials comply with different transport mechanisms, in addition to varying gas selectiv- ity and fluxes. This work also addresses concentration polarization, a common effect in membrane systems, though its significance is dependent upon the performance of the membrane coupled with the operating conditions. Finally, CFD modeling is shifting from simplified single gas simulation to industrial gas mixtures, when the mathematical treatment becomes more complex. 展开更多
关键词 MEMBRANE gas separat:ion computationalfluid dynamics concentration polarization HYDROGEN
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