Study of remediation of heavy metals contaminated sediments with hydrothermal technology and sediment washing facilitated by chelating agents

This report examines the efficiencies of heavy metals removal of marine sediments by sediment washing and the impact of hydrothermal treatment on heavy metals removal in dredged marine sediments. The targeted heavy metals were Zn, Cu, Pb, Cd, Cr, Ni and As. In this study, short contact periods o...

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Main Author: Wong, Angeline Shou Yee.
Other Authors: Wang Jing-Yuan
Format: Final Year Project
Language:English
Published: 2013
Subjects:
Online Access:http://hdl.handle.net/10356/53855
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-538552023-03-03T17:20:41Z Study of remediation of heavy metals contaminated sediments with hydrothermal technology and sediment washing facilitated by chelating agents Wong, Angeline Shou Yee. Wang Jing-Yuan School of Civil and Environmental Engineering Residues and Resource Reclamation Centre DRNTU::Engineering This report examines the efficiencies of heavy metals removal of marine sediments by sediment washing and the impact of hydrothermal treatment on heavy metals removal in dredged marine sediments. The targeted heavy metals were Zn, Cu, Pb, Cd, Cr, Ni and As. In this study, short contact periods of 2, 4 and 8 hours, and low EDTA concentrations of 0.005 M, 0.01 M and 0.02 M were used in sediment washing and in hydrothermal treatment. Under low EDTA concentrations and short contact times for sediment washing, the maximum removal of Pb, Ni and Zn were 48%, 30% and 26% respectively. For Cd, its removal was highest (11%) when no EDTA was used for washing. For Cu, Cr, Ni and As, their removals were negligible. Hydrothermal treatment under varying conditions with short contact time and low EDTA concentrations were then carried out to find out the effects of hydrothermal treatment on heavy metals. Hydrothermal treatment has a greater impact on removal of Pb and Zn and Ni, has a moderately low impact on Cu and has the least impact on As, Cr and Cd. Depending on the hydrothermal treatment method, removal of heavy metals by EDTA may be higher or lower in comparison to sediment washing alone. Bachelor of Engineering 2013-06-07T08:45:14Z 2013-06-07T08:45:14Z 2013 2013 Final Year Project (FYP) http://hdl.handle.net/10356/53855 en Nanyang Technological University 57 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering
spellingShingle DRNTU::Engineering
Wong, Angeline Shou Yee.
Study of remediation of heavy metals contaminated sediments with hydrothermal technology and sediment washing facilitated by chelating agents
description This report examines the efficiencies of heavy metals removal of marine sediments by sediment washing and the impact of hydrothermal treatment on heavy metals removal in dredged marine sediments. The targeted heavy metals were Zn, Cu, Pb, Cd, Cr, Ni and As. In this study, short contact periods of 2, 4 and 8 hours, and low EDTA concentrations of 0.005 M, 0.01 M and 0.02 M were used in sediment washing and in hydrothermal treatment. Under low EDTA concentrations and short contact times for sediment washing, the maximum removal of Pb, Ni and Zn were 48%, 30% and 26% respectively. For Cd, its removal was highest (11%) when no EDTA was used for washing. For Cu, Cr, Ni and As, their removals were negligible. Hydrothermal treatment under varying conditions with short contact time and low EDTA concentrations were then carried out to find out the effects of hydrothermal treatment on heavy metals. Hydrothermal treatment has a greater impact on removal of Pb and Zn and Ni, has a moderately low impact on Cu and has the least impact on As, Cr and Cd. Depending on the hydrothermal treatment method, removal of heavy metals by EDTA may be higher or lower in comparison to sediment washing alone.
author2 Wang Jing-Yuan
author_facet Wang Jing-Yuan
Wong, Angeline Shou Yee.
format Final Year Project
author Wong, Angeline Shou Yee.
author_sort Wong, Angeline Shou Yee.
title Study of remediation of heavy metals contaminated sediments with hydrothermal technology and sediment washing facilitated by chelating agents
title_short Study of remediation of heavy metals contaminated sediments with hydrothermal technology and sediment washing facilitated by chelating agents
title_full Study of remediation of heavy metals contaminated sediments with hydrothermal technology and sediment washing facilitated by chelating agents
title_fullStr Study of remediation of heavy metals contaminated sediments with hydrothermal technology and sediment washing facilitated by chelating agents
title_full_unstemmed Study of remediation of heavy metals contaminated sediments with hydrothermal technology and sediment washing facilitated by chelating agents
title_sort study of remediation of heavy metals contaminated sediments with hydrothermal technology and sediment washing facilitated by chelating agents
publishDate 2013
url http://hdl.handle.net/10356/53855
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