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首页> 外文期刊>Journal of Chemical Engineering of Japan >Tar Capture Effect of Porous Particles for Biomass Fuel under Pyrolysis Conditions
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Tar Capture Effect of Porous Particles for Biomass Fuel under Pyrolysis Conditions

机译:热解条件下多孔颗粒对生物质燃料焦油捕获的影响

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摘要

In the low temperature gasification of wood biomass, fluidized beds may exhibit defluidization problems caused by tar. These problems may be avoided by using porous particles as a bed material to capture the tar. Using wood chips, we studied the tar carture behavior of various porous particles and the influence of fluidization on the tat capture performance under pyrolysis conditions. The results of thermobalnce experiments showed that gamma-alumina, sepiolite and activated clay had high tar capture performance. The tar capture depended on the specific pore surface area and pore volume of the particles, with prticles having higher pore surface and volume showing greater tat capture. Furthermore, micropores in the particles were used for capture of the tar, and this promoted carbonization. The results of a small fluidized bed experiment showed that porous particles were able to capture the tar even under fluidized bed conditions, and that defluidization did not occur at a low weight ratio of the wood chip to the bed material.
机译:在木材生物质的低温气化中,流化床可能会出现焦油引起的脱液问题。通过使用多孔颗粒作为吸附焦油的床层材料可以避免这些问题。使用木片,我们研究了热解条件下各种多孔颗粒的焦油捕捉行为以及流化作用对tat捕获性能的影响。热平衡实验结果表明,γ-氧化铝,海泡石和活性粘土具有较高的焦油捕获性能。焦油的捕集取决于颗粒的比孔表面积和孔体积,具有较高孔表面积和体积的颗粒显示出更高的达达率。此外,颗粒中的微孔被用于捕获焦油,这促进了碳化。小型流化床实验的结果表明,即使在流化床条件下,多孔颗粒也能够捕获焦油,并且在木屑与床料的重量比低的情况下,不会发生脱液。

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