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Effect of Macropore Structure on Desorption Diffusion Performance of N-Pentane on 5A Zeolite

机译:大孔结构对5A沸石对正戊烷解吸扩散性能的影响

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Desorption rate curves of n-pentane on 5A zeolites at 418 K and 10-0.03 kPa were determined, and the effects of different macropore structure on desorption performance were analyzed. Results show that macropore distribution of 5A-1 concentrates in 0.25-1.25 μm, while that of 5A-2 ranges from mesopore category to 0.3 μm, but 5A-3 contains both pores of 0.01-0.1 μm and 0.2-2 μm inside, reflecting a broadest distribution; 5A-3, 5A-1 and 5A-2 reach desorption equilibrium after 1100 s, 1400 s and 2000 s respectively at 0.03 kPa, indicating that abundant macropores make n-pentane fastest desorbed from 5A-3, but this advantage gradually disappears with the increasing pressure; the effective desorption diffusion coefficients of n-pentane on 5A-1, 5A-2 and 5A-3 are 4.2×10~(-15)-2.2×10~(-14) m~2/s, 2.0×10~(-15)-2.3×10~(-14) m~2/s, 7.4×10~(-15)-2.4×10~(-14) m~2/s respectively, suggesting that plenty macropores make the diffusivity less affected by the changes of pressure, which can guarantee a fast diffusion rate of n-pentane even at low pressure.
机译:确定了418K和10-0.03kPa的5A戊酸盐上的正戊烷的解吸速率曲线,分析了不同大孔结构对解吸性能的影响。结果表明,5a-1浓缩物的大孔分布在0.25-1.25μm,而5a-2的范围为0.3μm,但5a-3含有0.​​01-0.1μm和0.2-2μm的孔,反射最广泛的分布;在0.03kPa的1100秒,1400秒和2000秒后,5a-3,5a-1和5a-2达到解吸平衡,表明丰富的宏孔使N-戊烷最快从5A-3中解吸,但是这种优势逐渐消失增加压力;在5A-1,5A-2和5A-3上的N-戊烷的有效解吸扩散系数为4.2×10〜(-15)-2.2×10〜(-14)m〜2 / s,2.0×10〜( -15)-2.3×10〜(-14)m〜2 / s,7.4×10〜(-15)-2.4×10〜(-14)m〜2 / s,暗示巨大的宏粒使扩散率较少受压力变化的影响,即使在低压下也能保证N-戊烷的快速扩散速率。

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