Antimony Mobilisation and Attenuation During Ore Processing at Orogenic Gold Mines, Southern New Zealand

Author:

Weightman E.,Craw D.ORCID,Snow T.,Kerr G.

Funder

University of Otago

Publisher

Springer Science and Business Media LLC

Subject

Geotechnical Engineering and Engineering Geology,Water Science and Technology

Reference43 articles.

1. APHA (2005) Standard methods for the examination of water and wastewater, 21st edn. American Public Health Association, Washington, DC

2. Ashley P, Craw D, Graham B, Chappell D (2003) Environmental mobility of antimony around mesothermal stibnite deposits, New South Wales, Australia and southern New Zealand. J Geochem Explor 77:1–14

3. Bowell R (1994) Sorption of arsenic by iron oxides and oxyhydroxides in soils. Appl Geochem 9:279–286

4. Bowell RJ, Craw D (2014) Chapter 11. The management of arsenic in the mining industry. In: Bowell RJ, Alpers C, Jamieson H, Nordstrom DK, Majzlan J (eds) arsenic, vol 79. Mineralogical Society of America Reviews in Mineralogy, pp 507–532

5. Breuer PL, Hewitt DM (2019) INCO cyanide destruction insights from plant reviews and laboratory evaluations. Trans Inst Min Metall 129:104–113

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1. Geological controls on locally elevated arsenic in the Glenorchy area, Otago, New Zealand;New Zealand Journal of Geology and Geophysics;2023-02-06

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