GSTDTAP  > 资源环境科学
DOI10.1029/2020WR027317
Multispecies reactive transport in a microporous rock: impact of flow heterogeneity and reversibility of reaction
Thomas D. S. Oliveira; Martin J. Blunt; Branko Bijeljic
2020-10-30
发表期刊Water Resources Research
出版年2020
英文摘要

We study the impact of pore space heterogeneity on mixing and reaction in porous media. We simulate the parallel injection of two streams of reactants at different pH in a three‐dimensional microporous consolidated rock whose pore space was resolved by differential micro‐CT imaging. As an exemplar of a heterogeneous medium, we consider the pore structure obtained from a Portland carbonate sample. We use direct numerical simulation to study the coupled impact of flow heterogeneity, characterized by a wide distribution of velocities, and chemical reversibility on multispecies reaction. The flow field is found from the Darcy‐Brinkman equation while the advection‐diffusion equation describes transport, which is coupled to a general multispecies geochemical solver for homogeneous reactions; precipitation and dissolution are ignored.

We observe a highly non‐uniform spatial distribution of concentration and rates of formation and consumption. For advection‐dominated transport, the heterogeneous flow field leads to significant transverse mixing in macropores at early times, followed by a slower mixing driven by diffusion between macro‐ and micropore regions. The effective rates of formation and consumption are species‐dependent and distinct in macro‐ and microporosity: while some species reach an asymptotic rate in well‐mixed regions, others still show a transient non‐monotonic behaviour as a consequence of incomplete mixing. Our findings have important implications for the understanding of time‐ and space‐dependent reaction rate behaviour: the coupled impact of pore space heterogeneity and reversible reactions need to be taken into account as key determinants to describe multispecies reactive transport.

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文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/301856
专题资源环境科学
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Thomas D. S. Oliveira,Martin J. Blunt,Branko Bijeljic. Multispecies reactive transport in a microporous rock: impact of flow heterogeneity and reversibility of reaction[J]. Water Resources Research,2020.
APA Thomas D. S. Oliveira,Martin J. Blunt,&Branko Bijeljic.(2020).Multispecies reactive transport in a microporous rock: impact of flow heterogeneity and reversibility of reaction.Water Resources Research.
MLA Thomas D. S. Oliveira,et al."Multispecies reactive transport in a microporous rock: impact of flow heterogeneity and reversibility of reaction".Water Resources Research (2020).
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