Study of Heavy Metal Distribution and Hydrodynamic Simulation in Green Mussel Culture Net, Cilincing Water - Jakarta Bay
This study aimed to investigate the heavy metals distribution in the surrounding area of green mussel culture net, Cilincing water, Jakarta Bay, and its distribution behavior. The water sampling was carried out during the ebb tide. The heavy metal concentration was then measured by using atomic abso...
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doaj-3c9423f0694c4cf79845c8248fcd4e602020-11-24T22:02:03ZengUniversitas IndonesiaMakara Journal of Science2339-19952356-08512017-06-01212899610.7454/mss.v21i2.4406Study of Heavy Metal Distribution and Hydrodynamic Simulation in Green Mussel Culture Net, Cilincing Water - Jakarta BayAlan Frendy Koropitan0Muhammad Reza Cordova1Department of Marine Science and Technology, Faculty of Fisheries and Marine Science, Institut Pertanian Bogor, Dramaga-Bogor 16680, IndonesiaResearch Centre for Oceanography (RCO), Indonesian Institute of Sciences, Jakarta 14430, IndonesiaThis study aimed to investigate the heavy metals distribution in the surrounding area of green mussel culture net, Cilincing water, Jakarta Bay, and its distribution behavior. The water sampling was carried out during the ebb tide. The heavy metal concentration was then measured by using atomic absorption spectroscopy (AAS). In order to understand the water circulation behavior related to heavy metal distribution in the study area, the Princeton Ocean Model was applied, and the model design was developed based on a scenario of an open canal in the eastern and western sides, while the center canal was placed with net cages in the water column resembling the green mussel culture net. The observed heavy metal distribution showed an intensified concentration in the green mussel culture location. The observed water current also showed a reduced velocity in the location. The modeling approach could explain the water circulation behavior in response to the presence of net units in the water column. In this case, the density of net units for green mussel culture potentially produced shear stress in the water column, which affected the flow pattern and the distribution of heavy metals. Therefore, the existence of green mussel culture nets has a potential to become a trap for pollutant distribution in the water. http://journal.ui.ac.id/index.php/science/article/view/4406/3924Jakarta Baygreen mussel culturepollutant trapheavy metalPrinceton Ocean Model |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Alan Frendy Koropitan Muhammad Reza Cordova |
spellingShingle |
Alan Frendy Koropitan Muhammad Reza Cordova Study of Heavy Metal Distribution and Hydrodynamic Simulation in Green Mussel Culture Net, Cilincing Water - Jakarta Bay Makara Journal of Science Jakarta Bay green mussel culture pollutant trap heavy metal Princeton Ocean Model |
author_facet |
Alan Frendy Koropitan Muhammad Reza Cordova |
author_sort |
Alan Frendy Koropitan |
title |
Study of Heavy Metal Distribution and Hydrodynamic Simulation in Green Mussel Culture Net, Cilincing Water - Jakarta Bay |
title_short |
Study of Heavy Metal Distribution and Hydrodynamic Simulation in Green Mussel Culture Net, Cilincing Water - Jakarta Bay |
title_full |
Study of Heavy Metal Distribution and Hydrodynamic Simulation in Green Mussel Culture Net, Cilincing Water - Jakarta Bay |
title_fullStr |
Study of Heavy Metal Distribution and Hydrodynamic Simulation in Green Mussel Culture Net, Cilincing Water - Jakarta Bay |
title_full_unstemmed |
Study of Heavy Metal Distribution and Hydrodynamic Simulation in Green Mussel Culture Net, Cilincing Water - Jakarta Bay |
title_sort |
study of heavy metal distribution and hydrodynamic simulation in green mussel culture net, cilincing water - jakarta bay |
publisher |
Universitas Indonesia |
series |
Makara Journal of Science |
issn |
2339-1995 2356-0851 |
publishDate |
2017-06-01 |
description |
This study aimed to investigate the heavy metals distribution in the surrounding area of green mussel culture net, Cilincing water, Jakarta Bay, and its distribution behavior. The water sampling was carried out during the ebb tide. The heavy metal concentration was then measured by using atomic absorption spectroscopy (AAS). In order to understand the water circulation behavior related to heavy metal distribution in the study area, the Princeton Ocean Model was applied, and the model design was developed based on a scenario of an open canal in the eastern and western sides, while the center canal was placed with net cages in the water column resembling the green mussel culture net. The
observed heavy metal distribution showed an intensified concentration in the green mussel culture location. The observed water current also showed a reduced velocity in the location. The modeling approach could explain the water circulation behavior in response to the presence of net units in the water column. In this case, the density of net units for green mussel culture potentially produced shear stress in the water column, which affected the flow pattern and the distribution of heavy metals. Therefore, the existence of green mussel culture nets has a potential to become a trap for pollutant distribution in the water.
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topic |
Jakarta Bay green mussel culture pollutant trap heavy metal Princeton Ocean Model |
url |
http://journal.ui.ac.id/index.php/science/article/view/4406/3924 |
work_keys_str_mv |
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