Modeling solute reactivity in a phreatic solution conduit penetrating a karst aquifer

被引:3
|
作者
Field, Malcolm S. [1 ]
Schiesser, William E. [2 ]
机构
[1] US EPA, Natl Ctr Environm Assessment 8623R, 1200 Penn Ave NW, Washington, DC 20460 USA
[2] Lehigh Univ, Dept Chem & Biomol Engn, Bethlehem, PA 18015 USA
关键词
Phreatic solution conduit; Karst aquifer; Transport; Reactivity; Deposition; RHODAMINE-WT; CONTAMINANT TRANSPORT; BOUNDARY-CONDITIONS; DISSOLUTION; SORPTION; MATRIX; PRECIPITATION; ATTENUATION; EVALUATE; FLUID;
D O I
10.1016/j.jconhyd.2018.09.002
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
A two-dimensional model for solute migration, transformation, and deposition in a phreatic solution conduit penetrating a karst aquifer is presented in which the solute is anthropogenic to the natural system. Transformation of a reacting solute in a solution conduit has generally been accepted as likely occurring but actual physical measurements and mathematical analyses of the suspected process have been generally minimally investigated, primarily because of the logistical difficulties and complexities associated with solute transport through solution conduits. The model demonstrates how a reacting solute might decay or be transformed to a product solute some of which then migrates via radial dispersion to the conduit wall where it may become adsorbed. Model effects vary for laminar flow and turbulent flow in the axial direction. Dispersion in the radial direction also exhibits marked differences for both laminar flow and turbulent flow. Reaction zones may enhance subsequent reactions due to some overlap resulting from the longitudinal dispersion caused by flow in the axial direction. Simulations showed that varying the reaction rate coefficient strongly affects solute reactions, but that varying deposition coefficients had only minimal impacts. The model was applied to a well-known tracer test that used the tracer dye, Rhodamine WT, which readily converts to deaminoalkylated Rhodamine WT after release, to illustrate how the model may be u ! sed to suggest one possible cause, in addition to other possible causes, for less than 100 tracer-mass recovery. In terms of pollutants in a karst aquifer the model also suggests one possible mechanism for pollutant transformation in a solution conduit.
引用
收藏
页码:52 / 70
页数:19
相关论文
共 50 条
  • [11] Applying a modified conduit flow process to understand conduit-matrix exchange of a karst aquifer
    Zhao, Liang-jie
    Yang, Yang
    Cao, Jian-wen
    Wang, Zhe
    Luan, Song
    Xia, Ri-yuan
    CHINA GEOLOGY, 2022, 5 (01) : 26 - 33
  • [12] Flow and solute transport monitoring in the karst aquifer in SW Slovenia
    Trcek, B.
    ENVIRONMENTAL GEOLOGY, 2008, 55 (02): : 269 - 276
  • [13] Simulation of solute transport behaviors in saturated karst aquifer system
    Chu, Xuewei
    Ding, Hanghang
    Zhang, Xuemei
    SCIENTIFIC REPORTS, 2021, 11 (01)
  • [14] Modeling complex flow in a karst aquifer
    Quinn, JJ
    Tomasko, D
    Kuiper, JA
    SEDIMENTARY GEOLOGY, 2006, 184 (3-4) : 343 - 351
  • [15] Simulation of solute transport behaviors in saturated karst aquifer system
    Xuewei Chu
    Hanghang Ding
    Xuemei Zhang
    Scientific Reports, 11
  • [16] Effects of flow rate variation on solute transport in a karst conduit with a pool
    Zhao, Xiaoer
    Chang, Yong
    Wu, Jichun
    Xue, Xiaofeng
    ENVIRONMENTAL EARTH SCIENCES, 2019, 78 (07)
  • [17] Specific yield of phreatic variation zone in karst aquifer with the method of water level analysis
    Gong Xiao-ping
    Jiang Guang-hui
    Chen Chang-jie
    Guo Xiao-jiao
    Zhang Hua-sheng
    JOURNAL OF GROUNDWATER SCIENCE AND ENGINEERING, 2015, 3 (02): : 192 - 201
  • [18] Effects of flow rate variation on solute transport in a karst conduit with a pool
    Xiaoer Zhao
    Yong Chang
    Jichun Wu
    Xiaofeng Xue
    Environmental Earth Sciences, 2019, 78
  • [19] Hydraulic Conductivity Behaviors of Karst Aquifer With Conduit-Fissure Geomaterials
    Li, Xian
    Ke, Tingting
    Wang, Yanqiao
    Zhou, Tingguo
    Li, Delong
    Tong, Fang
    Wen, Jinmei
    FRONTIERS IN EARTH SCIENCE, 2020, 8
  • [20] Fractal modeling and estimation of karst conduit porosity
    Pardo-Igúzquiza, E.
    Durán, J.J.
    Robledo-Ardila, P.A.
    Paredes, C.
    Environmental Earth Sciences, 2015, 1 : 271 - 276