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Optimizing the Gas Absorption/Chemical reaction Method for Measuring Air–water Interfacial Area in Porous Media

机译:多孔介质中气-水界面面积的气体吸收/化学反应方法优化

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摘要

The gas-absorption/chemical-reaction (GACR) method developed in Chemical Engineering to measure gas-fluid interface in reactor systems is adapted for natural porous geologic media. Several series of column experiments were conducted using model glass beads and a natural sand to determine optimal operational conditions for measuring air-water interfacial area with the adapted method. The impacts of operational variables were investigated, including liquid and gas volumetric flow rates, solution concentration, and temperature. The results show that the magnitude of the measured air-water interfacial area is dependent upon all of these variables to greater or lesser degrees. Larger fluid flow rates promote distribution and mixing of the fluids, enhancing absorption and reaction. Increasing the concentration of NaOH in solution reduced the relative utilization of NaOH, promoting pseudo first-order reaction conditions. The results elucidate the optimal operational conditions for application of the method to geomedia systems.
机译:化学工程中开发的用于测量反应器系统中气液界面的气体吸收/化学反应(GACR)方法适用于天然多孔地质介质。使用模型玻璃珠和天然砂进行了数个系列的柱实验,以确定采用改进方法测量空气-水界面面积的最佳操作条件。研究了操作变量的影响,包括液体和气体的体积流速,溶液浓度和温度。结果表明,所测量的气-水界面面积的大小或多或少地取决于所有这些变量。较大的流体流速促进流体的分配和混合,从而增强吸收和反应。增加溶液中的NaOH浓度会降低NaOH的相对利用率,从而促进拟一级反应条件。结果阐明了将该方法应用于Geomedia系统的最佳操作条件。

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