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Moving bed granular filtration of fast pyrolysis char: granular flow rate study

机译:快速热解炭的移动床颗粒过滤:颗粒流速研究

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摘要

Moving bed granular filter (MBGF) shows a good promise for hot gas clean up of biomass fast pyrolysis to filter fine char particles. This research project examines the effect of granular flow rate on the performance of a MBGF at cold flow conditions.In understanding the effect of granular flow rate on the MBGF performance, the filter\u27s collection efficiency and char accumulation in the filter\u27s are assessed at experiments of different granular residence times (tg). A process particle counter (PPC) is used to measure the filter\u27s exiting particle concentration, knowing the inlet concentration values the collection efficiency can be calculated. Moreover, pressure drop measurement was used as a tool to assess char accumulation in the filter. For this purpose, pressure was measured in several locations within the filter\u27s bed in order to evaluate dust accumulation level for each bed section. A correlation of pressure drop and accumulation of char dust has been developed and used to understand how char accumulates over time for the different bed regions.Experiments indicate that the MBGF needs to be operated below a critical granular residence time (tg*), below which the filtration efficiency exceeds 99%. Operating above than tg* would cause the filter to \u22clog\u22 and face decrease in efficiency. The filter is found to accumulate most of the dust at the interfacial region where dust-laden gas first meets the granular media. It was also found that the interfacial region is more efficient than the other bed regions.Decreasing the granular residence time in the filter can be used to minimize the amount of accumulated char dust in the filter, which is advantageous for avoiding secondary reactions during fast pyrolysis\u27 hot gas filtration.
机译:移动床颗粒过滤器(MBGF)显示出热气净化生物质快速热解以过滤细炭颗粒的良好前景。该研究项目研究了冷气流条件下颗粒流速对MBGF性能的影响。在了解颗粒流速对MBGF性能的影响后,评估了滤池的收集效率和滤池中的焦炭积累在不同的颗粒停留时间(tg)的实验中。使用过程粒子计数器(PPC)测量过滤器的出口粒子浓度,知道入口浓度值即可计算出收集效率。此外,压降测量被用作评估过滤器中焦炭积累的工具。为此,在滤床内的多个位置测量压力,以评估每个床段的粉尘积累水平。已经开发出压降与炭尘积累的相关性,并用于了解不同床层区域的炭如何随时间积累。实验表明,MBGF需要在临界颗粒停留时间(tg *)以下运行。过滤效率超过99%。在高于tg *的条件下运行会导致滤波器出现故障,从而降低效率。发现过滤器会在界面区域积聚大部分灰尘,在该区域中,含尘气体首先会遇到粒状介质。还发现界面区域比其他床层区域更有效。减少颗粒在过滤器中的停留时间可最大程度地减少过滤器中积炭的堆积,这有利于避免快速热解过程中的二次反应。 \ u27热气过滤。

著录项

  • 作者

    El-hedok, Ibrahim Adnan;

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  • 年度 2009
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  • 原文格式 PDF
  • 正文语种 en
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