首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Biomass fast pyrolysis in an innovative gas-solid vortex reactor: Experimental proof of concept
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Biomass fast pyrolysis in an innovative gas-solid vortex reactor: Experimental proof of concept

机译:一种创新的气体固体涡流反应器中的生物量快速热解:实验证明概念

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Biomass fast pyrolysis has been considered one of the best alternatives for the thermal conversion of biomass into bio-oil. This work introduces a new reactor technology for biomass fast pyrolysis, the Gas-Solid Vortex Reactor (GSVR), to obtain high bio-oil yields. The GSVR was designed to decrease the residence time of the pyrolysis vapors; thus, the secondary cracking reactions are reduced, to enhance the segregation of the char and the unreacted biomass and to improve the heat transfer rate. Biomass fast pyrolysis experiments have been carried out for the first time in a Gas-Solid Vortex Reactor (GSVR) at 773 K, using softwood (pine) and hardwood (poplar) as feedstock. Char yields as low as 10 wt. % in the GSVR were comparable to those reported for the same feedstocks processed in conventional fluidized bed reactors. The yields of non-condensable gases in the range of 15-17 wt. % were significantly lower than those reported for other commonly used biomass fast pyrolysis reactors. Two-dimensional gas chromatography (GC x GC) revealed noticeable differences at the molecular level between the bio-oils from the GSVR and bio-oils from other reactors. The aromatics in the pine bio-oil consist almost entirely (85 wt. %) of guaiacols. For poplar bio-oils no predominant group of aromatics was found, but phenolics, syringols, and catechols were the most pronounced. The experimental results highlight the advantages of the GSVR for biomass pyrolysis, reaching stable operation in around 60 s, removing the formed char selectively during operation, and enabling fast entrainment of pyrolysis vapors. Results indicate a great potential for increasing yield and selectivity towards guaiacols in softwood (e.g., pine) bio-oil. Likewise, decreasing pyrolysis temperature could increase the yield of guaiacols and syringols in hardwood (e.g., poplar) bio-oil.
机译:生物质快速热解被认为是生物质热转化成生物油的最佳替代方案之一。这项工作介绍了一种新的反应堆技术,用于生物质快速热解,气体固体涡流反应器(GSVR),以获得高生物油产率。设计GSVR以降低热解蒸汽的停留时间;因此,减少二次裂化反应,以增强炭和未反应的生物质的偏析并提高传热速率。生物质快速热解实验已经在773K的气体固体涡流反应器(GSVR)中首次进行,使用软木(松)和硬木(杨树)作为原料。炭收益率低至10重量%。 GSVR中的%与报告的常规流化床反应器中的相同原料的含量相当。在15-17重量%的范围内的不可冷凝气体的产率。 %明显低于其他常用的生物质快速热解反应器的%。二维气相色谱(GC X GC)揭示了来自其他反应器的GSVR和生物油之间的生物油之间的分子水平显着差异。松树生物油中的芳烃几乎包括(85重量%)的Guaiacol。对于杨树生物油,没有发现富含芳烃的主要组,但酚类,霉菌和儿茶酚是最明显的。实验结果突出了GSVR用于生物质热解的优点,在60秒内达到稳定的操作,在操作期间选择性地除去形成的焦炭,并能够快速夹带热解蒸汽。结果表明,对软木(例如,松树)生物油中的Guaiacols增加产量和选择性的巨大潜力。同样地,降低热解温可增加硬木(例如,杨树)生物油中的愈菌和霉菌的产率。

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