Water Supply Treatment Sustainability of Panching Water Supply Treatment Process - Water Footprint Approach

In many parts of the world, freshwater is scarce and overexploited. The purpose of this study is to determine the water footprint of Water Supply Treatment Process (WSTP) at Panching Water Treatment Plant (WTP) as well as to identify the sustainability of the Sg. Kuantan as an intake resource due to...

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Main Authors: Aziz, E.A., Malek, M.A., Moni, S.N., Zulkifli, N.F., Hadi, I.H.
Format: Conference Paper
Language:English
Published: 2018
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spelling my.uniten.dspace-104602018-11-30T03:28:43Z Water Supply Treatment Sustainability of Panching Water Supply Treatment Process - Water Footprint Approach Aziz, E.A. Malek, M.A. Moni, S.N. Zulkifli, N.F. Hadi, I.H. In many parts of the world, freshwater is scarce and overexploited. The purpose of this study is to determine the water footprint of Water Supply Treatment Process (WSTP) at Panching Water Treatment Plant (WTP) as well as to identify the sustainability of the Sg. Kuantan as an intake resource due to the effect of land use development. The total water footprint (WF) will be calculated by using WF accounting manual. The results obtained shows that the water intake resource is still available but it is believed that it will not be able to cope with the increasing WF. The increment of water demand percentage by 1.8% from 2015 to 2016 has increased 11 times higher of the water footprint percentage, 19.9%. This result shows that the water consumption during the water supply treatment process is two times higher than the demand thus it shows the inefficient of the water management. © Published under licence by IOP Publishing Ltd. 2018-11-07T08:11:05Z 2018-11-07T08:11:05Z 2018 Conference Paper 10.1088/1757-899X/318/1/012028 en
institution Universiti Tenaga Nasional
building UNITEN Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tenaga Nasional
content_source UNITEN Institutional Repository
url_provider http://dspace.uniten.edu.my/
language English
description In many parts of the world, freshwater is scarce and overexploited. The purpose of this study is to determine the water footprint of Water Supply Treatment Process (WSTP) at Panching Water Treatment Plant (WTP) as well as to identify the sustainability of the Sg. Kuantan as an intake resource due to the effect of land use development. The total water footprint (WF) will be calculated by using WF accounting manual. The results obtained shows that the water intake resource is still available but it is believed that it will not be able to cope with the increasing WF. The increment of water demand percentage by 1.8% from 2015 to 2016 has increased 11 times higher of the water footprint percentage, 19.9%. This result shows that the water consumption during the water supply treatment process is two times higher than the demand thus it shows the inefficient of the water management. © Published under licence by IOP Publishing Ltd.
format Conference Paper
author Aziz, E.A.
Malek, M.A.
Moni, S.N.
Zulkifli, N.F.
Hadi, I.H.
spellingShingle Aziz, E.A.
Malek, M.A.
Moni, S.N.
Zulkifli, N.F.
Hadi, I.H.
Water Supply Treatment Sustainability of Panching Water Supply Treatment Process - Water Footprint Approach
author_facet Aziz, E.A.
Malek, M.A.
Moni, S.N.
Zulkifli, N.F.
Hadi, I.H.
author_sort Aziz, E.A.
title Water Supply Treatment Sustainability of Panching Water Supply Treatment Process - Water Footprint Approach
title_short Water Supply Treatment Sustainability of Panching Water Supply Treatment Process - Water Footprint Approach
title_full Water Supply Treatment Sustainability of Panching Water Supply Treatment Process - Water Footprint Approach
title_fullStr Water Supply Treatment Sustainability of Panching Water Supply Treatment Process - Water Footprint Approach
title_full_unstemmed Water Supply Treatment Sustainability of Panching Water Supply Treatment Process - Water Footprint Approach
title_sort water supply treatment sustainability of panching water supply treatment process - water footprint approach
publishDate 2018
_version_ 1644494978182807552
score 13.160551