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首页> 外文期刊>AIChE Journal >Solar Gasification of Carbonaceous Waste Feedstocks in a Packed-Bed Reactor—Dynamic Modeling and Experimental Validation
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Solar Gasification of Carbonaceous Waste Feedstocks in a Packed-Bed Reactor—Dynamic Modeling and Experimental Validation

机译:填充床反应器中含碳废物原料的太阳能气化—动力学模型和实验验证

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摘要

Published online February 28, 2011 in Wiley Online Library (wileyonlinelibrary.com). Thermochemical gasification of carbonaceous waste feedstocks (specifically: scrap tire powder, industrial sludge, and sewage sludge) for high-quality syngas production is numerically modeled and experimentally validated using concentrated solar process heat. The solar reactor consists of two cavities separated by a radiant emitter, with the upper one serving as the solar radiative absorber and the lower one containing the reacting packed bed. The reactor is modeled by considering combined heat transfer coupled to the reaction kinetics, driven by the applied solar flux at the reactor s aperture. Model validation is accomplished in terms of converted mass, reactor temperatures, efficiency, and solar upgrade based on experiments with an 8-kW reactor subjected to solar fluxes up to 2560 suns and packed bed temperatures up to 1490 K. The transient operation of a 200-kW pilot-scale reactor for gasifying industrial sludge is simulated for a solar day, yielding a maximum solar-to-fuel energy conversion efficiency of 89%.
机译:在线发布于2011年2月28日在Wiley在线图书馆(wileyonlinelibrary.com)中。对碳质废料(特别是:废轮胎粉,工业污泥和污水污泥)进行热化学气化以生产高质量的合成气,并通过太阳能集中供热进行了数值模拟和实验验证。太阳能反应器由两个由辐射发射器隔开的腔体组成,上面的一个用作太阳辐射吸收器,下面的一个包含反应填充床。通过考虑与反应动力学耦合的联合传热来模拟反应堆,该反应是由反应堆孔径处施加的太阳通量驱动的。模型验证是基于转换后的质量,反应堆温度,效率和太阳能升级而完成的,该实验基于一个8 kW反应堆的实验,该反应堆承受的太阳通量高达2560太阳,填充床温度高达1490K。200的瞬时运行在一个太阳日模拟了用于气化工业污泥的千瓦级中试反应堆,产生的最大太阳到燃料能量转换效率为89%。

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