References
- M.A. Hoaghia, O. Cadar, G.G. Hognogi, E. Levei, C. Moisa,
C. Roman, Quality and human health risk assessment of metals
and nitrogen compounds in drinking water from an urban area
near a former non-ferrous ore smelter, Anal. Lett., 52 (2019)
1268–1281.
- N. Darrall, The effect of air pollutants on physiological
processes in plants, Plant Cell Environ., 12 (1989) 1–30.
- G. Pandey, S. Madhuri, Heavy metals causing toxicity in
animals and fishes, Res. J. Anim. Vet. Fishery Sci., 2 (2014) 17–23.
- M. Abdel-Hamid, Y. El-Amier, E. Abdel-Aal, G. El-Far, Water
quality assessment of El-Salam canal (Egypt) based on physicochemical
characteristics in addition to hydrophytes and their
epiphytic algae, Int. J. Ecol. Dev. Res., 3 (2017) 028–043.
- N. Al-Ansari, N. Adamo, V. Sissakian, S. Knutsson, J. Laue,
Water resources of the Tigris River catchment, J. Earth Sci.
Geotech. Eng., 8 (2018) 21–42.
- M. Miclean, O. Cadar, L. Levei, L. Senila, A. Ozunu, Metal
contents and potential health risk assessment of crops grown
in a former mining district (Romania), J. Environ. Sci. Health.,
Part B, 53 (2018) 595–601.
- C.R. Fonseca, V. Hidalgo, C. Díaz-Delgado, A.Y. Vilchis-Francés,
I. Gallego, Design of optimal tank size for rainwater harvesting
systems through use of a web application and geo-referenced
rainfall patterns, J. Cleaner Prod., 145 (2017) 323–335.
- N. Li, C. Zhou, X. Sun, J. Jing, X. Tian, L. Wang, Effects of ridge
tillage and mulching on water availability, grain yield, and
water use efficiency in rain-fed winter wheat under different
rainfall and nitrogen conditions, Soil Tillage Res., 179 (2018)
86–95.
- MWA, Malaysian Water Association, Indah Water Konsortium
Sdn Bhd, Kuala Lumpur, Malaysia, 2008.
- A.F. Azzlan, C.B. Cheong, K.L. Lau, Sustainable water management
for water supply efficiency: a case study at Syarikat Air
Melaka Berhad, J. Technol. Manage. Bus., 3 (2016) 01–21.
- Z. Shi, P. Pan, Y. Feng, Z. Kan, Z. Li, F. Wei, Environmental
water chemistry and possible correlation with Kaschin-Beck
Disease (KBD) in northwestern Sichuan, China, Environ. Int.,
99 (2017) 282–292.
- G. Balamurugan, Tin mining and sediment supply in Peninsular
Malaysia with special reference to the Kelang River basin,
Environmentalist, 11 (1991) 281–291.
- H. Zakir, M. Islam, M. Arafat, S. Sharmin, Hydrogeochemistry
and quality assessment of waters of an open coal mine area
in a developing country: a case study from Barapukuria,
Bangladesh, Int. J. Earth Sci., 1 (2013) 20–44.
- M.A. Acheampong, J. Adiyiah, E.D. Ansa, Physico-chemical
characteristics of a gold mining tailings dam wastewater, Indian
J. Environ. Health, A2 (2013) 469–475.
- N. Atanacković, V. Dragišić, J. Stojković, P. Papić, V. Živanović,
Hydrochemical characteristics of mine waters from abandoned
mining sites in Serbia and their impact on surface water quality,
Environ. Sci. Pollut. Res. Int., 20 (2013) 7615–7626.
- I.B. Koki, K.H Low, J. Hafizan, A. Azman, Assessment of water
quality of man-made lakes in Klang Valley (Malaysia): the
impact of mining, Desal. Water Treat., 74 (2017) 125–136.
- I.B. Koki, K.H. Low, H. Juahir, M.A. Zali, A. Azid, S.M. Zain,
Consumption of water from ex-mining ponds in Klang Valley
and Melaka, Malaysia: a health risk study, Chemosphere,
195 (2018) 641–652.
- R. Tiwary, Environmental impact of coal mining on water
regime and its management, Water Air Soil Pollut., 132 (2001)
185–199.
- O.C. Modoi, C. Roba, Z. Török, A. Ozunu, Environmental risks
due to heavy metal pollution of water resulted from mining
wastes in NW Romania, Environ. Eng. Manage. J., 13 (2014)
2325–2336.
- M.N. Saviour, Environmental impact of soil and sand mining:
a review, Int. J. Environ. Sci. Technol., 1 (2012) 125–134.
- N. Woo, M. Choi, Arsenic and metal contamination of water
resources from mining wastes in Korea, Environ. Geol.,
40 (2001) 305–311.
- A.C. Berger, C.M. Bethke, J.L. Krumhansl, A process model of
natural attenuation in drainage from a historic mining district,
Appl. Geochem., 15 (2000) 655–666.
- J. Shamshuddin, N. Mokhtar, S. Paramananthan, Morphology,
mineralogy and chemistry of an ex-mining land in Ipoh, Perak,
Pertanika, 9 (1986) 89–97.
- S. Shirazi, H. Imran, S. Akib, Z. Yusop, Z. Harun, Groundwater
vulnerability assessment in the Melaka State of Malaysia using
DRASTIC and GIS techniques, Environ. Earth Sci., 70 (2015)
2293–2304.
- S.M. Shirazi, M. Adham, N.H. Zardari, Z. Ismail, H.M. Imran,
M.A. Mangrio, Groundwater quality and hydrogeological
characteristics of Malacca state in Malaysia, J. Water Land Dev.,
24 (2015) 11–19.
- M.O. Schwartz, A. Askury, Geologic, geochemical, and fluid
inclusion studies of the tin granites from the Bujang Melaka
pluton, Kinta Valley, Malaysia, Econ. Geol., 84 (1989) 751–779.
- P.P. Courtenay, The plantation in Malaysian economic
development, J. Southeast Asian Stud., 12 (1981) 329–348.
- K.H. Leong, L.B. Tan, A.M. Mustafa, Contamination levels
of selected organochlorine and organophosphate pesticides
in the Selangor River, Malaysia between 2002 and 2003,
Chemosphere, 66 (2007) 1153–1159.
- R.M. Osman, L.C. Siong, Geospatial Analysis of the Ex-Mining
Land of Melaka, In: Paper presented at the National Geoscience
Conference Kuching, Malaysia, 2012.
- Z. Sharip, A.T. Zaki, M.A Shapai, S. Suratman, A.J. Shaaban,
Lakes of Malaysia: water quality, eutrophication and management,
Lakes Reservoirs Res. Manage., 19 (2014) 130–141.
- D. MacDougall, W.B. Crummett, Guidelines for data acquisition
and data quality evaluation in environmental chemistry,
Anal. Chem., 52 (1980) 2242–2249.
- S. Sadeghi, M.K. Harchegani, H. Younesi, Suspended sediment
concentration and particle size distribution, and their relationship
with heavy metal content, J. Earth Syst. Sci., 121 (2012)
63–71.
- G. Bakan, H.B. Özkoç, S. Tülek, T.H. Cüce, Integrated
environmental quality assessment of the Kızılırmak River and
its coastal environment, Turk. J. Fish. Aquat. Sci., 10 (2010)
453–462.
- G. Tamasi, R. Cini, Heavy metals in drinking waters from
Mount Amiata (Tuscany, Italy). Possible risks from arsenic
for public health in the Province of Siena, Sci. Total Environ.,
327 (2004) 41–51.
- DOE, Department of Environment Malaysia: Environmental
Quality Act Report, Ministry of Science, Technology and the
Environment, Putrajaya, Malaysia, 2012.
- S. Li, Q. Zhang, Spatial characterization of dissolved trace
elements and heavy metals in the upper Han River (China)
using multivariate statistical techniques, J. Hazard. Mater.,
176 (2010) 579–588.
- USEPA, Risk Assessment Guidance for SUPERFUND, Human
Health Evaluation Manual (Part A), Office of Emergency
and Remedial Response, EPA/540/1–89/002, Washington, DC,
1989.
- H. Juahir, S.M. Zain, M.K. Yusoff, T.T. Hanidza, A.M. Armi,
M.E. Toriman, M. Mokhtar, Spatial water quality assessment
of Langat River Basin (Malaysia) using environmetric techniques,
Environ. Monit. Assess., 173 (2011) 625–641.
- N.S.U. Idris, K.H. Low, I.B. Koki, A.F. Kamaruddin, K.M. Salleh,
S.M. Zain, Hemibagrus sp. as a potential bioindicator of hazardous
metal pollution in Selangor River, Environ. Monit. Assess.,
189 (2017) 220–234.
- A. Mustapha, A.Z. Aris, H. Juahir, M.F. Ramli, N.U. Kura, River
water quality assessment using environmentric techniques:
case study of Jakara River Basin, Environ. Sci. Pollut. Res. Int.,
20 (2013) 5630–5644.
- E. Bulska, E. Krata, M. Kałabun, M. Wojciechowski, On the
use of certified reference materials for assuring the quality
of results for the determination of mercury in environmental
samples, Environ. Sci. Pollut. Res. Int., 24 (2017) 7889–7897.
- J. Taylor, Quality Assurance of Chemical Measurements,
Routledge, New York, NY, 2018.
- MOH, National Standard for Drinking Water Quality, Ministry
of Health Malaysia, Document D1, 2004.
- A. Ghani, M. Azirun, R. Ramli, R. Hashim, Geochemical contrast
between Beroga (Kuala Kelawang pluton) and Semenyih
(Kuala Lumpur pluton) granites in Kuala Kelawang area,
Negeri Sembilan, Bull. Geol. Soc. Malaysia, 54 (2008) 71–47.
- D.L. Breitburg, T. Loher, C.A. Pacey, A. Gerstein, Varying
effects of low dissolved oxygen on trophic interactions in an
estuarine food web, Ecol. Monogr., 67 (1997) 489–507.
- D. Seitaj, F. Sulu‐Gambari, L.D. Burdorf, A. Romero‐Ramirez,
O. Maire, S.Y. Malkin, C.P. Slomp, F.J. Meysman, Sedimentary
oxygen dynamics in a seasonally hypoxic basin, Limnol.
Oceanogr., 62 (2017) 452–473.
- F.Y. Alshaebi, W.Z. Yaacob, A.R. Samsudin, E. Alsabahi,
Risk assessment at abandoned tin mine in Sungai Lembing,
Pahang, Malaysia, Electron. J. Geotech. Eng., 14 (2009) 1–9.
- M.A. Ashraf, M.J. Maah, I. Yusoff, Analysis of physio-chemical
parameters and distribution of heavy metals in soil and
water of ex-mining area of Bestari Jaya, Peninsular Malaysia,
Asian J. Chem., 23 (2011) 3493–3499.
- M.A. Ashraf, M.J. Maah, I. Yusoff, Study of water quality and
heavy metals in soil and water of ex-mining area Bestari Jaya,
peninsular Malaysia, Int. J. Basic Appl. Sci., 10 (2010) 7–27.
- K.U. Orji, N. Sapari, K.W. Yusof, R. Asadpour, E. Olisa, Water
quality assessment of ex-mining lakes in Perak, Malaysia
as alternative source of water supply, Appl. Mech. Mater.,
567 (2014) 177–182.
- J.B. Scrivenor, The geology of Malacca, with a geological
map and special reference to laterite, J. Malayan Branch R.
Asiatic Soc., 5 (1927) 278–287.
- W.K. Fletcher, P. Dousset, Y. Bin Ismail, Behaviour of Tin and
Associated Elements in a Mountain Stream, Bujang Melaka,
Perak, Malaysia, Southeast Asia Tin Research and Development
(SEATRAD) Centre, Malaysia, 1984.
- S. Paikaray, Arsenic geochemistry of acid mine drainage,
Mine Water Environ., 34 (2015) 181–196.
- M. Palmer, J. Galloway, H. Jamieson, R. Patterson, H. Falck,
S. Kokelj, NWT Open File 2015–06, The Concentration of
Arsenic in Lake Waters of the Yellowknife Area, Northwest
Territories, Canada, 2016.
- WHO, Guidelines for Drinking-Water Quality, 3rd ed., Vol. 1,
Recommendations, World Health Organisation, Geneva, 2008.
- WHO, Guidelines for Drinking-Water Quality, World Health
Organization, Geneva, 2011.
- K.H. Low, N.S.U. Idris, S.M. Zain, A.F. Kamaruddin,
K.Md. Salleh, Evaluation of elemental distributions in wildcaught
and farmed Pangasius sp. using pattern recognition
techniques, Int. J. Food Prop., 19 (2016) 1489–1503.
- L. Edwin, S.N. Thomas, Wood Preservation for Marine
Application, 2001, pp. 01–08. Available online at: http://hdl.
handle.net/123456789/1321
- A. Sreeja, Chromated Copper Arsenate (CCA) Treatment for
Rubber Wood Preservation and Its Impact on the Aquatic
Biota, Cochin University of Science and Technology, 2008.
- W. Xing, G. Liu, Iron biogeochemistry and its environmental
impacts in freshwater lakes, Fresenius Environ. Bull., 20 (2011)
1339–1345.
- B.S. Caruso, M. Mirtskhulava, M. Wireman, W. Schroeder,
B. Kornilovich, S. Griffin, Effects of manganese mining on
water quality in the Caucasus Mountains, Republic of Georgia,
Mine Water Environ., 31 (2012) 16–28.
- P.D. Howe, H. Malcolm, S. Dobson, Manganese and Its
Compounds: Environmental Aspects, Concise International
Chemical Assessment Document, World Health Organisation,
Geneva, 2004.
- P. Mouchet, From conventional to biological removal of iron
and manganese in France, J. Am. Water Works Assoc., 84 (1992)
158–167.
- S. Kouzbour, N. El Azher, B. Gourich, F. Gros, C. Vial, Y. Stiriba,
Removal of manganese(II) from drinking water by aeration
process using an airlift reactor, J. Water Process Eng., 16 (2017)
233–239.
- T.J. McGhee, E.W. Steel, Water Supply and Sewerage, McGraw-
Hill, New York, NY, 1991.
- S.S. Withanachchi, G. Ghambashidze, I. Kunchulia,
T. Urushadze, A. Ploeger, Water quality in surface water: a
preliminary assessment of heavy metal contamination of the
Mashavera River, Georgia, Int. J. Environ. Res. Public Health,
15 (2018) 621.
- H. Boyacioglu, Development of a water quality index based on
a European classification scheme, Water SA, 33 (2007) 101–106.
- M.A. Caraballo, J.M. Macías Nieto, C. Ayora, Long term
fluctuations of groundwater mine pollution in a sulfide mining
district with dry Mediterranean climate: implications for water
resources management and remediation, Sci. Total Environ.,
539 (2016) 427–435.
- J. Mwamburi, F.N. Oloo, The distribution and concentration
levels of trace metals in water and sediments of Lake Victoria,
Kenya, Afr. J. Trop. Hydrobiol. Fish., 7 (1996) 37–48.
- M.M. Ali, M.L. Ali, M.S. Islam, M.Z. Rahman, Preliminary
assessment of heavy metals in water and sediment of
Karnaphuli River, Bangladesh, Environ. Nanotechnol. Monit.
Manage., 5 (2016) 27–35.
- P.M. Linnik, I.B. Zubenko, Role of bottom sediments in the
secondary pollution of aquatic environments by heavy‐metal
compounds, Lakes Reservoirs Res. Manage., 5 (2000) 11–21.
- Z. Sharip, F. Yusoff, A. Jamin, Seasonal water quality and trophic
status of shallow lentic waters and their association with water
levels, Int. J. Environ. Sci. Technol., 16 (2019) 4851–4862.
- M. Navarro, C. Pérez-Sirvent, M. Martínez-Sánchez, J. Vidal,
P. Tovar, J. Bech, Abandoned mine sites as a source of contamination
by heavy metals: a case study in a semi-arid zone,
J. Geochem. Explor., 96 (2008) 183–193.
- J.S. Ogola, M.V. Mitullah, M.A. Omulo, Impact of gold mining
on the environment and human health: a case study in the
Migori gold belt, Kenya, Environ. Geochem. Health, 24 (2002)
141–157.
- L. Fanfani, P. Zuddas, A. Chessa, Heavy metals speciation
analysis as a tool for studying mine tailings weathering, Plant
Cell Environ., 58 (1997) 241–248.
- P.J. Favas, J. Pratas, M.E. Gomes, V. Cala, Selective chemical
extraction of heavy metals in tailings and soils contaminated
by mining activity: environmental implications, J. Geochem.
Explor., 111 (2011) 160–171.