微流控
微通道
多相流
多孔介质
材料科学
段塞流
入口
传质
多孔性
纳米技术
流量(数学)
流体力学
两相流
体积流量
化学工程
化学
色谱法
机械
复合材料
地质学
工程类
物理
地貌学
作者
Hangkai Wei,Xin Sha,Li Chen,Zi Wang,Chuangde Zhang,Peng He,Wen‐Quan Tao
出处
期刊:Small
[Wiley]
日期:2024-03-13
标识
DOI:10.1002/smll.202401393
摘要
Abstract Multiphase reactive flow in porous media is an important research topic in many natural and industrial processes. In the present work, photolithography is adopted to fabricate multicomponent mineral porous media in a microchannel, microfluidics experiments are conducted to capture the multiphase reactive flow, methyl violet 2B is employed to visualize the real‐time concentration field of the acid solution and a sophisticated image processing method is developed to obtain the quantitative results of the distribution of different phases. With the advanced methods, experiments are conducted with different acid concentration and inlet velocity in different porous structures with different phenomena captured. Under a low acid concentration, the reaction will be single phase. In the gaseous cases with higher acid concentration, preferential flow paths with faster flow and reaction are formed by the multiphase hydrodynamic instabilities. In the experiments with different inlet velocities, it is observed that a higher inlet velocity will lead to a faster reaction but less gas bubbles generated. In contrast, more gas bubbles would be generated and block the flow and reaction under a lower inlet velocity. Finally, in heterogeneous structures, fractures or cavities would significantly redirect the flow and promote the formation of preferential flow path nearby.
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