首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Formation of phenols from the low-temperature fast pyrolysis of Radiata pine (Pinus radiata) Part Ⅲ. Influence of fluidised bed parameters
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Formation of phenols from the low-temperature fast pyrolysis of Radiata pine (Pinus radiata) Part Ⅲ. Influence of fluidised bed parameters

机译:辐射松(Pinus radiata)的低温快速热解形成酚类。流化床参数的影响

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In Parts Ⅰ and Ⅱ, the influence of molecular oxygen and substrate moisture on the formation of monomeric phenols was reported for the low-temperature, bubbling fluidised bed fast pyrolysis of Radiata pine (Pinus radiata). This study reports on the sensitivity of the molecular-oxygen-promoted decomposition process on certain fluid bed parameters. These parameters were bed mass (135 and 200 g) and particle size range (150-210, 210-310 and 310-500 μm). Pyrolysis experimentation was performed on a bench scale fluidised bed reactor, manufactured by RTI Ltd., which was externally heated to 290-295℃. The fluidising gas consisted of air. For all sand particle size ranges, the inclusion of molecular oxygen in the reaction system did not significantly effect yield or composition of the monomeric phenolic product when the bed mass was 135 g. However, when the bed mass was increased to 200 g, the inclusion of molecular oxygen in the reaction system resulted in a significant increase in the yield of the phenolic product for all sand particle size ranges. Moreover, the yield of individual phenols varied substantially with fluid bed particle size when the bed mass was 200 g, reflecting the apparent dependency of the various decomposition processes on the characteristics of the fluidised bed for pyrolysis performed under such conditions. The maximum yield of monomeric phenols was 5.03% and occurred when the bed mass was 200 g and the corresponding particle size range 310-500 μm.
机译:在第一和第二部分中,报道了辐射松的低温鼓泡流化床快速热解过程中分子氧和底物水分对单体酚形成的影响。这项研究报告了分子氧促进的分解过程对某些流化床参数的敏感性。这些参数是床质量(135和200 g)和粒径范围(150-210、210-310和310-500μm)。在RTI Ltd.制造的台式规模的流化床反应器上进行热解实验,将其外部加热至290-295℃。流化气体由空气组成。对于所有沙粒尺寸范围,当床质量为135 g时,反应体系中分子氧的含量均不会显着影响单体酚类产品的收率或组成。但是,当床层质量增加到200 g时,反应体系中包含分子氧会导致所有沙粒尺寸范围的酚醛产品收率大大提高。此外,当床质量为200g时,各个酚的产率随流化床粒度的变化而显着变化,这反映出各种分解过程对在这种条件下进行热解的流化床特性的明显依赖性。单体酚的最大产率为5.03%,当床质量为200 g,相应的粒径范围为310-500μm时发生。

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