Assessment of heavy metals contamination in Mamut river sediments using sediment quality guidelines and geochemical indices

Author:

Mohammad Ali Bibi Noorarlijannah,Lin Chin Yik,Cleophas Fera,Abdullah Mohd Harun,Musta Baba

Publisher

Springer Science and Business Media LLC

Subject

Management, Monitoring, Policy and Law,Pollution,General Environmental Science,General Medicine

Reference33 articles.

1. Akiyama, Y. (1987). Ore-genesis and conceptual model of ore target criteria of the Mamut porphyry copper deposit, Sabah, Malaysia. Mining Geology, 37(2), 145–158.

2. Ali, M. F., Heng, L. Y., Ratnam, W., Nais, J., & Ripin, R. (2004). Metal distribution and contamination of the Mamut river, Malaysia caused by copper mine discharge. Bulletin of Environmental Contamination and Toxicology, 73, 535–542.

3. Awofulu, O. R., Mbolekwa, Z., Mtshemla, V., & Fatoki, O. S. (2005). Levels of trace metals in water and sediment from Tyume river and its effects in an irrigated farmland. Water SA, 31(1), 87–94.

4. Azizli, K. M., Tan, C. Y., & Birrel, J. (1995). Technical note: Design of the Lohan tailings dam, Mamut Copper Mining Sdn. Bhd., Malaysia. Minerals Engineering, 8(6), 705–712.

5. Basketter, D. A., Angelini, G., Ingber, A., Kern, P. S., & Menné, T. (2003). Nickel, chromium and cobalt in consumer products: Revisiting safe levels in the new millennium. Contact Dermatitis, 49(1), 1–7.

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