IF 10.8 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL
Xueyi Zhang, Zhi Dou, Mayumi Hamada, Pietro de Anna, Joaquin Jimenez-Martinez
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引用次数: 0

摘要

了解多孔介质中多相流与反应传输之间的相互作用对于许多环境和工业应用都至关重要。当孔隙中存在非润湿不溶相时,它可以保持不动,我们称之为非饱和流动,也可以移动,从而形成多相流。以往在非饱和流动条件下进行的研究表明,在给定流速下,混合驱动反应的产物会随着润湿相饱和度的降低而增加。反之,在给定的贝克莱特数条件下,则会出现相反的效果(即流速根据润湿相饱和度的变化而变化)。然而,由于实验和数值方面的挑战,人们对多相流动力学对混合驱动反应的影响知之甚少。为了评估多相流条件对产物形成的影响,我们使用了一个优化的化学发光反应和一个实验装置,该装置允许将反应物与静止的两相流分开注入。在我们的实验中,静止两相流条件下反应产物质量的增加速度快于费克扩散时间。全局动力学在经历了单调的下降之前,最初是上升的,而非润湿相的位移会引起明显的波动。在给定的润湿相流速下,产物的形成取决于非润湿不溶相的流速。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enhanced Reaction Kinetics in Stationary Two-Phase Flow through Porous Media

Enhanced Reaction Kinetics in Stationary Two-Phase Flow through Porous Media
Understanding the interaction between multiphase flow and reactive transport in porous media is critical for many environmental and industrial applications. When a nonwetting immiscible phase is present within the pore space, it can remain immobile, which we call unsaturated flow, or move, resulting in multiphase flow. Previous studies under unsaturated flow conditions have shown that, for a given flow rate, the product of a mixing-driven reaction increases as wetting phase saturation decreases. Conversely, the opposite effect is observed for a given Péclet number (i.e., the flow rate is adapted depending on the wetting phase saturation). However, the impact of multiphase flow dynamics on mixing-driven reactions is poorly understood due to experimental and numerical challenges. To assess the impact of multiphase flow conditions on product formation, we use an optimized chemiluminescence reaction and an experimental setup that allows the separate injection of reactants along with a stationary two-phase flow. In our experiments, the mass of the reaction product under stationary two-phase flow conditions increases faster than Fickian beyond the diffusive time. The global kinetics initially increase before experiencing a monotonic decrease with significant fluctuations caused by the displacement of the nonwetting phase. For a given flow rate of the wetting phase, product formation depends on the flow rate of the nonwetting immiscible phase.
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来源期刊
环境科学与技术
环境科学与技术 环境科学-工程:环境
CiteScore
17.50
自引率
9.60%
发文量
12359
审稿时长
2.8 months
期刊介绍: Environmental Science & Technology (ES&T) is a co-sponsored academic and technical magazine by the Hubei Provincial Environmental Protection Bureau and the Hubei Provincial Academy of Environmental Sciences. Environmental Science & Technology (ES&T) holds the status of Chinese core journals, scientific papers source journals of China, Chinese Science Citation Database source journals, and Chinese Academic Journal Comprehensive Evaluation Database source journals. This publication focuses on the academic field of environmental protection, featuring articles related to environmental protection and technical advancements.
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