THE IMPACT OF SEAGRASS ON THE DISPERSION OF MICROPLASTIC CONCENTRATION (BISPHENOL-A) IN THE MARINE ECOSYSTEM

Environmental pollution by various pollutants is increasingly occurring in the environment, including marine ecosystems. One of the most dangerous pollutants in this ecosystem is the presence of bisphenol-A in plastic waste, which not only threatens human health but also damages the food chain. V...

Full description

Saved in:
Bibliographic Details
Main Author: Angelika, Stefani
Format: Final Project
Language:Indonesia
Online Access:https://digilib.itb.ac.id/gdl/view/72964
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Institut Teknologi Bandung
Language: Indonesia
id id-itb.:72964
spelling id-itb.:729642023-06-12T09:56:31ZTHE IMPACT OF SEAGRASS ON THE DISPERSION OF MICROPLASTIC CONCENTRATION (BISPHENOL-A) IN THE MARINE ECOSYSTEM Angelika, Stefani Indonesia Final Project Seagrass, Bisphenol-A, Ordinary Differential Equations, Partial Differential Equations, and Environmental Damage INSTITUT TEKNOLOGI BANDUNG https://digilib.itb.ac.id/gdl/view/72964 Environmental pollution by various pollutants is increasingly occurring in the environment, including marine ecosystems. One of the most dangerous pollutants in this ecosystem is the presence of bisphenol-A in plastic waste, which not only threatens human health but also damages the food chain. Various alternatives have been attempted to filter this compound, but a natural adsorbent is still needed that has the ability to directly absorb BPA without having to go through a long chemical process because the activity of this natural adsorbent will always be continuous. Seagrass is one of the marine plants that has the ability to maintain ecosystem balance with its high productivity rate. This plant has greater ability to absorb pollutants in its environment, thus improving water quality. The purpose of this study is to test the role of seagrass in the spread of bisphenol-A in the sea and the ability of this plant to adsorb and reduce the level of pollutants in seawater. This study is a simple experiment conducted on a polluted sea model planted with seagrass in a coastal area. The results of the study were then mathematically modeled with Ordinary Differential Equations and Partial Differential Equations in the form of diffusion equations solved numerically with FTCS. This study is supported by literature that states the presence of seagrass in the model plays a role in reducing the concentration of BPA in seawater. Seagrass showed an adsorption rate of 51.6% and therefore has the potential to be used as a natural adsorbent for BPA. text
institution Institut Teknologi Bandung
building Institut Teknologi Bandung Library
continent Asia
country Indonesia
Indonesia
content_provider Institut Teknologi Bandung
collection Digital ITB
language Indonesia
description Environmental pollution by various pollutants is increasingly occurring in the environment, including marine ecosystems. One of the most dangerous pollutants in this ecosystem is the presence of bisphenol-A in plastic waste, which not only threatens human health but also damages the food chain. Various alternatives have been attempted to filter this compound, but a natural adsorbent is still needed that has the ability to directly absorb BPA without having to go through a long chemical process because the activity of this natural adsorbent will always be continuous. Seagrass is one of the marine plants that has the ability to maintain ecosystem balance with its high productivity rate. This plant has greater ability to absorb pollutants in its environment, thus improving water quality. The purpose of this study is to test the role of seagrass in the spread of bisphenol-A in the sea and the ability of this plant to adsorb and reduce the level of pollutants in seawater. This study is a simple experiment conducted on a polluted sea model planted with seagrass in a coastal area. The results of the study were then mathematically modeled with Ordinary Differential Equations and Partial Differential Equations in the form of diffusion equations solved numerically with FTCS. This study is supported by literature that states the presence of seagrass in the model plays a role in reducing the concentration of BPA in seawater. Seagrass showed an adsorption rate of 51.6% and therefore has the potential to be used as a natural adsorbent for BPA.
format Final Project
author Angelika, Stefani
spellingShingle Angelika, Stefani
THE IMPACT OF SEAGRASS ON THE DISPERSION OF MICROPLASTIC CONCENTRATION (BISPHENOL-A) IN THE MARINE ECOSYSTEM
author_facet Angelika, Stefani
author_sort Angelika, Stefani
title THE IMPACT OF SEAGRASS ON THE DISPERSION OF MICROPLASTIC CONCENTRATION (BISPHENOL-A) IN THE MARINE ECOSYSTEM
title_short THE IMPACT OF SEAGRASS ON THE DISPERSION OF MICROPLASTIC CONCENTRATION (BISPHENOL-A) IN THE MARINE ECOSYSTEM
title_full THE IMPACT OF SEAGRASS ON THE DISPERSION OF MICROPLASTIC CONCENTRATION (BISPHENOL-A) IN THE MARINE ECOSYSTEM
title_fullStr THE IMPACT OF SEAGRASS ON THE DISPERSION OF MICROPLASTIC CONCENTRATION (BISPHENOL-A) IN THE MARINE ECOSYSTEM
title_full_unstemmed THE IMPACT OF SEAGRASS ON THE DISPERSION OF MICROPLASTIC CONCENTRATION (BISPHENOL-A) IN THE MARINE ECOSYSTEM
title_sort impact of seagrass on the dispersion of microplastic concentration (bisphenol-a) in the marine ecosystem
url https://digilib.itb.ac.id/gdl/view/72964
_version_ 1822006977859944448