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Mass transfer characteristics of H2S absorption from gaseous mixture into methyldiethanolamine solution in a T-junction microchannel

机译:T型结微通道中从气体混合物吸收到甲基二乙醇胺溶液中的H2S的传质特性

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摘要

In this work, the mass transfer characteristics of absorption of H2S (1200ppmv) into 40wt% methyldiethanolamine (MDEA) solution have been investigated experimentally in a horizontal cross-flow T-junction microchannel with a diameter of 1.00 mm. The interfacial area was determined by the absorption of CO2 into NaOH solution. It was found that the high removal efficiency of H2S (up to 99.5%) was achieved in the microchannel. Mass transfer resistance existed mainly on the gas side in this absorption process. It was shown that the gas side volumetric mass transfer coefficient and interfacial area were as high as 31,746 mol/(m~3 s atm) and 11,100 m~2/m~3, respectively. In addition, a comparison of mass transfer performance among different gas-liquid contactors was performed. It was revealed that the T-junction microchannel in this study could provide at least one or two orders of magnitude higher gas side volumetric mass transfer coefficient than others. However, the intensification of mass transfer process was mainly ascribed to the enhancement of interfacial area rather than the gas side mass transfer coefficient. Empirical correlations based on the experimental data were developed to predict gas side mass transfer coefficient and interfacial area.
机译:在这项工作中,已经在直径为1.00 mm的水平错流T型结微通道中,通过实验研究了H2S(1200ppmv)吸收到40wt%甲基二乙醇胺(MDEA)溶液中的传质特性。通过将CO 2吸收到NaOH溶液中来确定界面面积。发现在微通道中实现了高的H2S去除效率(高达99.5%)。在该吸收过程中,传质阻力主要存在于气体侧。结果表明,气体侧体积传质系数和界面面积分别高达31,746 mol /(m〜3 s atm)和11,100 m〜2 / m〜3。另外,比较了不同气液接触器之间的传质性能。揭示了该研究中的T形结微通道可以提供比其他高至少一两个数量级的气体侧体积传质系数。但是,传质过程的加强主要是由于界面面积的增加,而不是气体侧传质系数的增加。建立了基于实验数据的经验相关性,以预测气体侧传质系数和界面面积。

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