PDF

IDENTIFYING AND MANAGING CONTAMINANTS IN DRINKING WATER SYSTEMS: THE LEICHHARDT RIVER CATCHMENT, MOUNT ISA, QUEENSLAND

MP Taylor, KA Hudson-Edwards

2007endrinking watercontaminantsMount Isaenvironmental impactsedimentriver pollutionheavy metalspathogensminingAustralia

Abstract

Language:

This article examines the storage, transfer and cycling of metals within water, soil and sediment systems in and around Mount Isa, Queensland, Australia. The impacts and risks arising from agricultural activities, Mount Isa mine ore extraction, sewage treatment releases, and urban runoff on the downstream Leichhardt River and associated drinking water supplies are considered. The ephemeral Leichhardt River bisects the City and the Mine and drains downstream to Lake Moondarra where the City’s water is captured and stored. During the dry season, the channel is characterised by numerous pools that act as storage zones for sediment and water-soluble metals as well as urban and agriculturally derived pathogens. Our results show that sediment and water quality within the Leichhardt River adjacent to and downstream of the mine frequently exceed Australian government sediment guidelines with average values of Cu-1550; Pb-510 and Zn-470 ppm found adjacent to the footprint of the mine. Dry season analysis of water-soluble Cu, Pb and Zn concentrations within pools showed that Australian government low trigger guidelines are exceeded in 100; 56 and 100 % of cases, respectively. The pathogen content of water stored in remnant pools also exceeded acceptable guidelines with maximum faecal coliform densities of 220 CFU/100mL and Enterococcus values of 900 orgs/100mL. The impacts on biota were also examined by assessing the metal content of the flesh of seven fish (three species) and three crayfish from Lake Moondarra for their Cd-Cu-Hg-Pb-Se-Zn concentration. Flesh metal values were generally low but mean Zn concentrations exceeded the guideline value for each of the species.

Download

Cite This Work

@article{23d7ee57-efa0-47d9-b08e-257542c39d09,
  title={IDENTIFYING AND MANAGING CONTAMINANTS IN DRINKING WATER SYSTEMS: THE LEICHHARDT RIVER CATCHMENT, MOUNT ISA, QUEENSLAND},
  author={MP Taylor and KA Hudson-Edwards},
  year={2007},
  language={en}
}
TY  - JOUR
TI  - IDENTIFYING AND MANAGING CONTAMINANTS IN DRINKING WATER SYSTEMS: THE LEICHHARDT RIVER CATCHMENT, MOUNT ISA, QUEENSLAND
AU  - MP Taylor
AU  - KA Hudson-Edwards
PY  - 2007
LA  - en
ER  -

Similar Items

Current technologies for recovery of metals from industrial wastes: An overview

Santhana Krishnan, Nor Syahidah Zulkapli

Fast industrialization has increased the demand for heavy metals, while high-grade ore natural reserves are diminishing. Therefore, alternative source

2021enPDF

Metallurgical Plant Design and Operating Strategies

The Australasian Institute of Mining and Metallurgy

This conference, held in Perth, Western Australia, focuses on the latest advancements in metallurgical processing plant design and operational strateg

2006enPDF

Mémoire MANKAND TESH JEMIMA FINAL

2025enPDF

Design for Recovery of Precious and Base

2026enPDF

Environmental and Human Health Risks Ass

2026enPDF

The Recovery of Precious and Base Metals

Increasing volumes of waste printed circuit boards from obsolete electronic equipment posed escalating environmental risks and resource losses due to

2026enPDF