GIS-based Non-point Sources Pollution Simulation in Cameron Highlands, Malaysia

Cameron Highlands is a mountainous area subjected to torrential tropical showers. It extracts 5.8 million liters of water per day for drinking supply from its rivers at several intake points. The water quality of rivers in Cameron Highlands, however, has deteriorated significantly due to land cleari...

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Main Authors: Malakahmad, Dr, Amirhossein, Dr, Eisakhani, Mahdieh, A, Pauzi, O, Karim, Kutty, S.R.M., Isa, M.H.
Format: Citation Index Journal
Language:English
Published: WASET 2009
Subjects:
Online Access:http://scholars.utp.edu.my/id/eprint/1326/
http://scholars.utp.edu.my/id/eprint/1326/1/GIS-based_Non-point_Sources_Pollution_Simulation_in_Cameron_Highlands%2C_Malaysia.pdf
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author Malakahmad, Dr, Amirhossein, Dr
Eisakhani, Mahdieh
A, Pauzi
O, Karim
Kutty, S.R.M.
Isa, M.H.
author_facet Malakahmad, Dr, Amirhossein, Dr
Eisakhani, Mahdieh
A, Pauzi
O, Karim
Kutty, S.R.M.
Isa, M.H.
author_sort Malakahmad, Dr, Amirhossein, Dr
building UTP Institutional Repository
collection Online Access
description Cameron Highlands is a mountainous area subjected to torrential tropical showers. It extracts 5.8 million liters of water per day for drinking supply from its rivers at several intake points. The water quality of rivers in Cameron Highlands, however, has deteriorated significantly due to land clearing for agriculture, excessive usage of pesticides and fertilizers as well as construction activities in rapidly developing urban areas. On the other hand, these pollution sources known as non-point pollution sources are diverse and hard to identify and therefore they are difficult to estimate. Hence, Geographical Information Systems (GIS) was used to provide an extensive approach to evaluate landuse and other mapping characteristics to explain the spatial distribution of non-point sources of contamination in Cameron Highlands. The method to assess pollution sources has been developed by using Cameron Highlands Master Plan (2006-2010) for integrating GIS, databases, as well as pollution loads in the area of study. The results show highest annual runoff is created by forest, 3.56 × 10^8 m^3/yr followed by urban development, 1.46 × 10^8 m^3/yr. Furthermore, urban development causes highest BOD load (1.31 × 10^6 kgBOD/yr) while agricultural activities and forest contribute the highest annual loads for phosphorus (6.91 × 10^4 kgP/yr) and nitrogen (2.50 × 10^5 kgN/yr), respectively. Therefore, best management practices (BMPs) are suggested to be applied to reduce pollution level in the area.
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spelling oai:scholars.utp.edu.my:13262017-01-19T08:25:49Z http://scholars.utp.edu.my/id/eprint/1326/ GIS-based Non-point Sources Pollution Simulation in Cameron Highlands, Malaysia Malakahmad, Dr, Amirhossein, Dr Eisakhani, Mahdieh A, Pauzi O, Karim Kutty, S.R.M. Isa, M.H. TD Environmental technology. Sanitary engineering Cameron Highlands is a mountainous area subjected to torrential tropical showers. It extracts 5.8 million liters of water per day for drinking supply from its rivers at several intake points. The water quality of rivers in Cameron Highlands, however, has deteriorated significantly due to land clearing for agriculture, excessive usage of pesticides and fertilizers as well as construction activities in rapidly developing urban areas. On the other hand, these pollution sources known as non-point pollution sources are diverse and hard to identify and therefore they are difficult to estimate. Hence, Geographical Information Systems (GIS) was used to provide an extensive approach to evaluate landuse and other mapping characteristics to explain the spatial distribution of non-point sources of contamination in Cameron Highlands. The method to assess pollution sources has been developed by using Cameron Highlands Master Plan (2006-2010) for integrating GIS, databases, as well as pollution loads in the area of study. The results show highest annual runoff is created by forest, 3.56 × 10^8 m^3/yr followed by urban development, 1.46 × 10^8 m^3/yr. Furthermore, urban development causes highest BOD load (1.31 × 10^6 kgBOD/yr) while agricultural activities and forest contribute the highest annual loads for phosphorus (6.91 × 10^4 kgP/yr) and nitrogen (2.50 × 10^5 kgN/yr), respectively. Therefore, best management practices (BMPs) are suggested to be applied to reduce pollution level in the area. WASET 2009 Citation Index Journal NonPeerReviewed application/pdf en http://scholars.utp.edu.my/id/eprint/1326/1/GIS-based_Non-point_Sources_Pollution_Simulation_in_Cameron_Highlands%2C_Malaysia.pdf Malakahmad, Dr, Amirhossein, Dr and Eisakhani, Mahdieh and A, Pauzi and O, Karim and Kutty, S.R.M. and Isa, M.H. (2009) GIS-based Non-point Sources Pollution Simulation in Cameron Highlands, Malaysia. [Citation Index Journal]
spellingShingle TD Environmental technology. Sanitary engineering
Malakahmad, Dr, Amirhossein, Dr
Eisakhani, Mahdieh
A, Pauzi
O, Karim
Kutty, S.R.M.
Isa, M.H.
GIS-based Non-point Sources Pollution Simulation in Cameron Highlands, Malaysia
title GIS-based Non-point Sources Pollution Simulation in Cameron Highlands, Malaysia
title_full GIS-based Non-point Sources Pollution Simulation in Cameron Highlands, Malaysia
title_fullStr GIS-based Non-point Sources Pollution Simulation in Cameron Highlands, Malaysia
title_full_unstemmed GIS-based Non-point Sources Pollution Simulation in Cameron Highlands, Malaysia
title_short GIS-based Non-point Sources Pollution Simulation in Cameron Highlands, Malaysia
title_sort gis-based non-point sources pollution simulation in cameron highlands, malaysia
topic TD Environmental technology. Sanitary engineering
url http://scholars.utp.edu.my/id/eprint/1326/
http://scholars.utp.edu.my/id/eprint/1326/1/GIS-based_Non-point_Sources_Pollution_Simulation_in_Cameron_Highlands%2C_Malaysia.pdf