Heavy Metal Diffusion through Soft Clay under High Hydraulic Gradients
This study was focused on the determination of contaminant transport parameters of heavy metal Zinc moving through saturated soft Bangkok undisturbed clay under high hydraulic gradients. These parameters were compared with contaminant transport determined under concentration gradient alone (pure dif...
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Mehran University of Engineering and Technology
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doaj-c8776521ad374e09ba1dacf3b1e05b212020-11-25T01:12:19ZengMehran University of Engineering and TechnologyMehran University Research Journal of Engineering and Technology0254-78212413-72192013-04-01322307318Heavy Metal Diffusion through Soft Clay under High Hydraulic GradientsZaheer Ahmed Almani0Agha Faisal Habib Pathan1Ashfaque Ahmed Pathan2Department of Civil Engineering, Mehran University of Engineering & Technology, Jamshoro, PakistanDepartment of Civil Engineering, Mehran University of Engineering & Technology, Jamshoro, PakistanDepartment of Civil Engineering, Mehran University of Engineering & Technology, Jamshoro, PakistanThis study was focused on the determination of contaminant transport parameters of heavy metal Zinc moving through saturated soft Bangkok undisturbed clay under high hydraulic gradients. These parameters were compared with contaminant transport determined under concentration gradient alone (pure diffusion). In total fifteen column tests were conducted and a mathematical model was applied to determine the coefficients. Two different source concentrations conditions, constant and decreasing, were applied. Testing periods were ranged from 15-60 days while hydraulic gradients were ranged from 0-500. The curves between relative concentration and time and pore volume were developed for the constant source condition whereas curves between source reservoirs concentrations and time were developed for decreasing source condition. The effective diffusion and distribution coefficients, De and Kd, were determined by curve fitting using the computer code POLLUTE v 6.3. The results showed that diffusion coefficient increases and distribution coefficient decreases as hydraulic gradient increases from 0 to high value of 500 due to contribution of dispersion and additional molecular diffusion at high advective velocity. Thus, testing at high gradients ensures the safe performance of earthen barriers under worse conditions.http://publications.muet.edu.pk/research_papers/pdf/pdf771.pdfDiffusionHigh Hydraulic GradientColumn TestRetardationZinc CationSoft Undis- Turbed Clay Liner |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Zaheer Ahmed Almani Agha Faisal Habib Pathan Ashfaque Ahmed Pathan |
spellingShingle |
Zaheer Ahmed Almani Agha Faisal Habib Pathan Ashfaque Ahmed Pathan Heavy Metal Diffusion through Soft Clay under High Hydraulic Gradients Mehran University Research Journal of Engineering and Technology Diffusion High Hydraulic Gradient Column Test Retardation Zinc Cation Soft Undis- Turbed Clay Liner |
author_facet |
Zaheer Ahmed Almani Agha Faisal Habib Pathan Ashfaque Ahmed Pathan |
author_sort |
Zaheer Ahmed Almani |
title |
Heavy Metal Diffusion through Soft Clay under High Hydraulic Gradients |
title_short |
Heavy Metal Diffusion through Soft Clay under High Hydraulic Gradients |
title_full |
Heavy Metal Diffusion through Soft Clay under High Hydraulic Gradients |
title_fullStr |
Heavy Metal Diffusion through Soft Clay under High Hydraulic Gradients |
title_full_unstemmed |
Heavy Metal Diffusion through Soft Clay under High Hydraulic Gradients |
title_sort |
heavy metal diffusion through soft clay under high hydraulic gradients |
publisher |
Mehran University of Engineering and Technology |
series |
Mehran University Research Journal of Engineering and Technology |
issn |
0254-7821 2413-7219 |
publishDate |
2013-04-01 |
description |
This study was focused on the determination of contaminant transport parameters of heavy metal Zinc moving through saturated soft Bangkok undisturbed clay under high hydraulic gradients. These parameters were compared with contaminant transport determined under concentration gradient alone (pure diffusion). In total fifteen column tests were conducted and a mathematical model was applied to determine the coefficients. Two different source concentrations conditions, constant and decreasing, were applied. Testing periods were ranged from 15-60 days while hydraulic gradients were ranged from 0-500. The curves between relative concentration and time and pore volume were developed for the constant source condition whereas curves between source reservoirs concentrations and time were developed for decreasing source condition. The effective diffusion and distribution coefficients, De and Kd, were determined by curve fitting using the computer code POLLUTE v 6.3. The results showed that diffusion coefficient increases and distribution coefficient decreases as hydraulic gradient increases from 0 to high value of 500 due to contribution of dispersion and additional molecular diffusion at high advective velocity. Thus, testing at high gradients ensures the safe performance of earthen barriers under worse conditions. |
topic |
Diffusion High Hydraulic Gradient Column Test Retardation Zinc Cation Soft Undis- Turbed Clay Liner |
url |
http://publications.muet.edu.pk/research_papers/pdf/pdf771.pdf |
work_keys_str_mv |
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