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Abstracting/Indexing
e-ISSN: 1735-2630
p-ISSN: 1735-1472
(In Press)
Volume 7 (2010)
Volume 6 (2009)
Volume 5 (2008)
Volume 4 (2007)
Volume 3 (2006)
Volume 2 (2005)
Volume 1 (2004)
Geochemical distribution of trace metal pollutants in water and sediments of downstream of an urban river
Article 3: Volume 7, Number 1, Pages 17-28 (12), Winter 2010 XML PDF (2131 K)
Authors
K. M. Mohiuddin; H. M. Zakir; K. Otomo; S. Sharmin; N. Shikazono
Abstract
A study was conducted to investigate the trace metal pollution of water and sediments of downstream of Tsurumi River, Yokohama, Japan. Twenty samples of water and sediments were collected from the river starting from Tokyo bay side up to the junction point of the Yagami River. Results show that the mean concentrations of chromium, cupper and nickel in water greatly exceed (>100 times) the surface water standard. The concentration of molybdenum and lead was also higher than standard values while iron and manganese was lower than that of surface water standard. The mean concentration of zinc, cupper, cadmium, lead, chromium, vanadium, bromine and iodine was 381.1, 133.0, 1.0, 40.8, 102.9, 162.0, 71.5 and 10.6 µg/g sediments, respectively and was greatly exceed the average worldwide shale concentrations and average Japanese river sediment values. owever, mean concentration of arsenic, nickel and strontium was 11.0, 36.6 and 164.6 µg/g sediments, respectively which was lower than the average shale value. Other analyzed trace metals, including barium, zirconium, rubidium, yttrium, tin, antimony, cesium, lanthanum, cerium, praseodymium and neodymium were detected in river sediments; the concentration of which was close to the Japan’s river sediment average values. Pollution load index values of the sites of the studied area ranged from 1.24 to 7.65 which testify that the river sediments are polluted. The PLI value of the area was, however, high (6.53) as the concentration of trace metals like zinc, cupper, cadmium, lead and chromium were very high and were the major pollutants.
Keywords
Enrichment factors; Environmental pollution; Heavy metal; Pollution load index; Tsurumi river; Water quality and River-bed sediments
Main Subjects
Trace metals; Water and sediments
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References
1. Abdel-Ghani, N. T.; Elchaghaby, G. A., (2007). Influence of operating conditions on the removal of Cu, Zn, Cd and Pb ions from wastewater by adsorption. Int. J. Environ. Sci. Tech. 4 (4), 451-456 (6 Pages) Abstract | Full Text (124 K)
2. Abdel-Ghani, N. T.; Hefny, M.; El-Chaghaby, G. A. F., (2007). Removal of lead from aqueous solution using low cost abundantly available adsorbents. Int. J. Environ. Sci. Tech. 4 (1), 67-74 (8 Pages) Abstract | Full Text (205 K)
3. Agbozu, I. E.; Ekweozor, I. K. E.; Opuene, K., (2007). Survey of heavy metals in the catfish synodontis clarias. Int. J. Environ. Sci. Tech. 4 (1), 93-98 (6 Pages) Abstract | Full Text (96 K)
4. Akcay, H.; Oguz, A.; Karapire, C., (2003). Study of heavy metal pollution and speciation in Buyak Menderes and Gediz river sediments. Water Res. 37 (4), 813-822 (10 Pages), DOI: 10.1016/S0043-1354(02)00392-5. Abstract | Full Text (524 K)
5. APHA, (1998). Standard methods for the examination of water and wastewater. 20th. Ed., published jointly by American Public Health Association, American Water Works Association, Water Pollution Control Federation, Washington D.C. Abstract
6. Atgin, R. S.; El-Agha, O.; Zararsiz, A.; Kocatas, A.; Parlak, H.;Tuncel, G., (2000). Investigation of the sediment pollution in Izmir Bay: trace elements. Spectrochim. Acta B. 55 (7), 1151-1164 (14 Pages), DOI: 10.1016/S0584-8547(00)00231-7. Abstract | Full Text (456 K)
7. Cenci, R. M.; Martin, J. M., (2004). Concentration and fate of trace metals in Mekong River Delta. Sci. Total Environ. 332 (1-3), 167-182 (16 Pages), DOI: 10.1016/j.scitotenv.2004.01.018. Abstract | Full Text (338 K)
8. Das, J. D.; Nolting, R. F., (1993). Distribution of trace metals in sediments and pore waters in the N.W. Mediterranean Sea. NIOZ, EROS-200 Project, 10.
9. Dassenakis, M.; Scoullos, M.; Foufa, E.; Krasakopoulou, E.;Pavlidou, A.; Kloukiniotou, M., (1998). Effects of multiple source pollution on a small Mediterranean River. Appl. Geochem. 13 (2), 197-211 (15 Pages), DOI: 10.1016/S0883-2927(97)00065-6. Abstract | Full Text (1031 K)
10. Environment Canada, (2002). Canadian sediment quality guidelines for the protection of aquatic life: Summary table. Abstract
11. Forstner, U., (1981). Metal pollution assessment from sediment analysis. Forstner, U. and Wittmann, G. T. W. (Eds.) Metal pollution in the aquatic environment. Springer, Berlin Heidelberg, New York, 486.
12. Gamo, T., (2007). Environmental geochemistry. Baihu-kan, Japan, 118-119.
13. Harikumar, P. S.; Nasir, U. P.; Mujeebu Rahman, M. P., (2009). Distribution of heavy metals in the core sediments of a tropical wetland system. Int. J. Environ. Sci. Tech. 6 (2), 225-232 (8 Pages) Abstract | Full Text (147 K)
14. Hobbelen, P. H. F.; Koolhaas, J. E.; van Gestel, C. A. M., (2004). Risk assessment of heavy metal pollution for detritivores in floodplain soils in the Biesbosch, the Netherlands, taking bioavailability into account. Environ. Pollut. 129 (3), 409-419 (11 Pages), DOI: 10.1016/j.envpol.2003.11.010. Abstract | Full Text (309 K)
15. Horowitz, A. J., (1991). A primer on sediment-trace element chemistry. 2nd. Ed., Lewis Publishers, Chelsea (Michigan), 136.
16. Huheey, J. E., (1983). Inorganic chemistry: Principles of structure and reactivity. Harper and Row Publishers, New York, 912.
17. Islam, M. R.; Lahermo, W. P.; Salminen, R.; Rojstaczer, S.;Peuraniemi, V., (2000). Lake and reservoir water quality affected by metals leaching from tropical soils, Bangladesh. Environ. Geol. 39 (10), 1083-1089 (7 Pages), DOI: 10.1007/s002549900074. Abstract | Full Text (217 K)
18. Jaquet, J. M.; Davaud, E.; Rapin, F.; Vernet, J. P., (1982). Basic concepts and associated statistical methodology in geochemical study of lake sediments. Hydrobiologia. 91 (1), 139-146 (8 Pages), DOI: 10.1007/BF00940103. Abstract | Full Text (473 K)
19. Jones, D. S.; Sutter, I. I.; G. W.; Hull, R. N., (1997). Toxicological benchmarks for screening contaminants of potential concern for effects on sediment-associated biota: 1997 Revision. ES/ ER/TM-95/R4. Oak Ridge National Laboratory, prepared for the US Department of Energy. . Full Text
20. Karbassi, A. R.; Monavari, S. M.; Bidhendi, G. R. N.; Nouri, J.;Nematpour, K., (2008). Metal pollution assessment of sediment and water in the Shur River. Environ. Monit. Assess. 147 (1-3), 107-116 (10 Pages), DOI: 10.1007/s10661-007-0102-8. Abstract | Full Text (206 K)
21. Khan, A. H.; Nolting, R. F.; Vander Gaast, S. J.; Van Raaphorst,W., (1992). Trace element geochemistry at the sediment water interface in the North Sea and the Western Wadden Sea. Netherlands Institute for Sea Research. NIOZ Report 1992-10. BARC Report 1992-1, BEON Report 18.
22. Kwon, Y. T.; Lee, C. W.; Ahn, B. Y., (2001). Sedimentation pattern and sediments bioavailability in a wastewater discharging area by sequential metal analysis. Microchem. J. 68 (2-3), 135-141 (7 Pages), DOI: 10.1016/S0026-265X(00)00140-5. Abstract | Full Text (287 K)
23. Legret, M.; Pagotto, C., (1999). Evaluation of pollutant loadings in the runoff waters from a major rural highway. Sci. Total Environ. 235 (1-3), 143-150 (8 Pages), DOI: 10.1016/S0048-9697(99)00207-7. Abstract | Full Text (116 K)
24. Marin, A.; Lopez-Gonzalvez, A.; Barbas, C., (2001). Development and validation of extraction methods for determination of zinc and arsenic speciation in soils using focused ultrasound: Application to heavy metal study in mud and soils. Anal. Chim. Acta. 44 (2), 305-318 (14 Pages), DOI: 10.1016/S0003-2670(01)01169-2. Abstract | Full Text (239 K)
25. Miller, C. V.; Foster, G. D.; Majedi, B. F., (2003). Baseflow and stormflow metal fluxes from two small agricultural catchments in the coastal plain of Chesapeake Bay Basin, United States. Appl. Geochem. 18 (4), 483-501 (19 Pages), DOI: 10.1016/S0883-2927(02)00103-8. Abstract | Full Text (524 K)
26. Millero, F. J., (1974). The physical chemistry of seawater. Ann. Rev. Earth Planet. Sci. 2, 101-150 (50 Pages), DOI: 10.1146/annurev.ea.02.050174.000533. Abstract | Full Text
27. MOE, Ministry of Environment, Japan. (2004b). Environmental quality standards for soil pollution. Godochosha No. 5, 1-2-2 Kasumigaseki, Chiyoda-ku, Tokyo 100-8975, Japan. Abstract
28. MOE,Ministry of Environment,Japan. (2004a). Environmental quality standards for water pollution. Godochosha No. 5, 1- 2-2 Kasumigaseki, Chiyoda-ku, Tokyo 100-8975, Japan. . Full Text
29. Mukai, H.; Tanaka, A.; Fujii, T.; Nakao, M., (1994). Lead isotope ratios of airborne particulate matter as tracers of long-range transport of air pollutants around Japan. J. Geophys. Res., 99 (2), 3717-3726 (10 Pages) Abstract
30. Muller, G., (1969). Index of geoaccumulation in sediments of the Rhine River. Geo. J. 2 (3), 108-118 (11 Pages)
31. Muller, G., (1981). Die Schwermetallbelstung der sedimente des Neckars und seiner Nebenflusse: eine estandsaufnahme. Chem. Zeitung,105. , 157-164 (8 Pages)
32. Nicolau, R.; Galera-Cunha, A.; Lucas, Y., (2006). Transfer of nutrients and labile metals from the continent to the sea by a small Mediterranean river. Chemosphere. 63 (3), 469-476 (8 Pages), DOI: 10.1016/j.chemosphere.2005.08.025. Abstract | Full Text (194 K)
33. Nito, S.; Kanno, Y.; Muto, A.; Uesugi, A.; Nakahama, T.; Inouye,Y., (2003). Biological evaluation of the pollution of the Tsurumi River with 7-Ethoxycoumario O-Deethylase activity induced by river sediment extracts in HepG2 cells. J. Health Sci. 49 (1), 8-12 (5 Pages), DOI: 10.1248/jhs.49.8. Abstract | Full Text (449 K)
34. OMOE,Ontario Ministry of Environment, (1993). Guidelines for the protection and management of aquatic sediment quality in Ontario. Ontario Ministry of the Environment,Canada, 3. Abstract
35. Omori, M.; Hatayama, Y.; Horiguchi, M., (Eds.), (1986). Geology of Japan, Kanto Districts. 1st. Ed. Kyoritsu Publishing Co., Tokyo, Japan, 350.
36. Osmond, D. L.; Line, D. E.; Gale, J. A.; Gannon, R. W.; Knott,C. B.; Bartenhagen, K. A.; Turner, M. H.; Coffey, S. W.;Spooner, J.; Wells, J.; Walker, J. C.; Hargrove, L. L.; Foster,M. A.; Robillard, P. D.; Lehning, D. W., (1995). Water, Soil and Hydro-Environmental Decision Support System. Abstract
37. Sheikh, M. A.; Noah, N. M.; Tsuha, K.; Oomori, T., (2007). Occurrence of tributyltin compounds and characteristics of heavy metals. Int. J. Environ. Sci. Tech. 4 (1), 49-60 (12 Pages) Abstract | Full Text (439 K)
38. Shrestha, R.; Fischer, R.; Sillanpaa, M., (2007). Investigations on different positions of electrodes and their effects on the distribution of Cr at the water sediment interface. Int. J.Environ. Sci. Tech. 4 (4), 413-420 (8 Pages) Abstract | Full Text (179 K)
39. Sorme, L.; Lagerkvist, R., (2002). Sources of trace metals in urban wastewater in Stockholm. Sci. Total Environ. 298 (1-3), 131-145 (15 Pages), DOI: 10.1016/S0048-9697(02)00197-3. Abstract | Full Text (463 K)
40. Stoeppler, M., (1991). Cadmium. Merian E. (Ed.), Metals and their compounds in the environment: Occurrence, analyses and biological relevance.VCH, New York. , 803-851 (49 Pages)
41. Taylor, S. R., (1964). Abundances of chemical elements in the continental crust: A new table. Geochim. Cosmochim. Acta. 28 (8), 1273-1285 (13 Pages), DOI: 10.1016/0016-7037(64)90129-2. Abstract | Full Text (927 K)
42. Tessier, A.; Campbell, P. G. C.; Bisson, M., (1979). Sequential extraction procedure for the speciation of particulate trace metals. Anal. Chem. 51 (7), 844-851 (8 Pages), DOI: 10.1021/ac50043a017. Abstract | Full Text (1032 K)
43. Tomlinson, D. C.; Wilson, J. G.; Harris, C. R.; Jeffrey, D. W., (1980). Problems in the assessment of heavy-metal levels in estuaries and the formation of a pollution. index Helgoland Mar. Res. 33 (1-4), 566-575 (10 Pages), DOI: 10.1007/BF02414780. Abstract | Full Text (537 K)
44. Turekian, K. K.; Wedepohl, K. H. (1961). Distribution of the elements in some major units of the earth’s crust. Geol. Soc.Am. Bull. 72 (2), 175-192 (18 Pages), DOI: 10.1130/0016-7606(1961)72[175:DOTEIS]2.0.CO;2. Abstract | Full Text
45. US EPA., U.S. Environmental Protection Agency. (1989). National Interim Primary Drinking Water Regulations. Code of Federal Regulations, Title 40, Parts 141 and 142
46. US EPA.,U.S. Environmental Protection Agency. (1999). Screening level ecological risk assessment protocol for hazardous waste combustion facilities. Appendix E:Toxicity reference values.EPA530-D99-001C. 3 Abstract
47. Walkley, A.; Black, I. A., (1934). An examination of the Degtjareff method for determining soil organic matter and a proposed modification of the chromic acid titration method. Soil Sci., 37 (1), 29-38 (10 Pages) Abstract
48. Wedepohl, K. H., (1969-1979). Handbook of geochemistry. Springer, Berlin Heidelberg, New York. 1-2
49. Zakir, H. M.; Sharmin, S.; Shikazono, N., (2006). Heavy metal pollution in water and sediments of Turag river at Tongi area of Bangladesh. Int. J. Lake River. 1 (1), 85-96 (12 Pages) Abstract
50. Zvinowanda, C. M.; Okonkwo, J. O.; Shabalala, P. N.; Agyei, N.M., (2009). A novel adsorbent for heavy metal remediation in aqueous environments. Int. J. Environ. Sci. Tech. 6 (3), 425-434 (10 Pages) Abstract | Full Text (327 K)

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