Every reference with a DOI in the deposited reference list resolved to a known
work in Crossref or DataCite at the dated check, and none carried a retraction,
withdrawal, or removal notice.
The 18 checked references that resolve
resolves10.1016/S0375-6742(02)00251-0Environmental mobility of antimony around mesothermal stibnite deposits, New South Wales, Australia and southern New Zealand
resolves10.1021/es970452kRock−Water Interactions Controlling Zinc, Cadmium, and Lead Concentrations in Surface Waters and Sediments, U.S. Tri-State Mining District. 2. Geochemical Interpretation
resolves10.1023/B:GEJO.0000007250.92458.deEvaluation of water quality pollution indices for heavy metal contamination monitoring. A study case from Akpabuyo-Odukpani area, Lower Cross River Basin (southeastern Nigeria)
resolves10.1007/s10661-010-1479-3A study on chemical properties of groundwater and soil in ophiolitic rocks in Firuzabad, east of Shahrood, Iran: with emphasis to heavy metal contamination
resolves10.1007/BF01164607Magnetite-apatite deposits (Kiruna-type) along the Sanandaj-Sirjan zone and in the Bafq area, Iran, associated with ultramafic and calcalkaline rocks and carbonatites
resolves10.1007/s002540100380Evaluation of the heavy metal pollution index for surface and spring water near a limestone mining area of the lower Himalayas
resolves10.1007/s12665-012-1639-6Evaluation of water quality pollution indices for heavy metal contamination monitoring: a case study from Curtin Lake, Miri City, East Malaysia
resolves10.1007/s002540050432Atmospheric oxidation of the pyritic waste rock in Maardu, Estonia. 1 field study and modelling
resolves10.1016/S0883-2927(98)00028-6Experimental study of acidity-consuming processes in mining waste rock: some influences of mineralogy and particle size
resolves10.1016/j.scitotenv.2003.10.011Heavy metals in drinking waters from Mount Amiata (Tuscany, Italy). Possible risks from arsenic for public health in the Province of Siena
resolves10.1016/j.gexplo.2004.06.011Contributions of discharges from a historic antimony mine to metalloid content of river waters, Marlborough, New Zealand
resolves10.1016/S0883-2927(00)00010-XNature and practical implications of heterogeneities in the geochemistry of zinc-rich, alkaline mine waters in an underground F–Pb mine in the UK
resolves10.1023/A:1011964912221Mining Impacts on Trace Metal Content of Water, Soil, and Stream Sediments in the Hei River Basin, China
The 16 references without a DOI — listed, not checked
no DOI — not checkedAl-Ami MY, Al-Nakib SM, Ritha NM, Nouri AM, Al-Assina A (1987) Water quality index applied to the classification and zoning of Al-Jaysh canal, Bagdad, Iraq. J Environ Sci Health A 22:305–319
no DOI — not checkedCraw D, Wilson N, Ashley PM (2004) Geochemical controls on the environmental mobility of Sb and As at mesothermal antimony and gold deposits. Trans Inst Min Metal B 113:3–10
no DOI — not checkedDeutsch WJ (1997) Groundwater geochemistry: fundamentals and applications to contamination. Lewis Publishers, Boca Raton
no DOI — not checkedHorton RK (1965) An index system for rating water quality. J Water Pollut Control Fed 37:300–306
no DOI — not checkedJahanshahi R, Zare M, Schneider M (2014) A metal sorption/desorption study to assess the potential efficiency of a tailings dam at the Golgohar Iron Ore Mine, Iran. Mine Water Environ. doi: 10.1007/s10230-014-0260-1
no DOI — not checkedKleinmann RLP, Crerar DA, Pacelli RR (1980) Biogeochemistry of acid mine drainage and a method to control acid formation. Min Eng 33:300–305
no DOI — not checkedLottermoser B (2007) Mine wastes characterization, treatment, environmental impacts. Springer, Berlin Heidelberg, New York
no DOI — not checkedMoxham RL (1990) Geology and characteristics of the Gol-e-Gohar iron deposit. Report of the ADM Company, Gol-eGohar iron project, p 27
no DOI — not checkedPlumlee GS (1999) The environmental geology of mineral deposits. In: Plumlee GS, Logsdon MS (eds) The environmental geochemistry of mineral deposits. Part a: processes, techniques and health issues. Society of economic geologists, Littleton (reviews in economic geology, 6a, pp 71–116)
no DOI — not checkedPlumlee GS, Logsdon MJ (1999) An earth-system science toolkit for environmentally friendly mineral resource development. In: Plumlee GS, Logsdon MS (eds) The environmental geochemistry of mineral deposits. Part a: processes, techniques and health issues. Society of economic geologists, Littleton (reviews in economic geology, 6a, pp 1–27)
no DOI — not checkedReddy SJ (1995) Encyclopaedia of environmental pollution and control, vol 1. Environmental Media, Karlia
no DOI — not checkedScharer J, Pettit C, Kirkaldy J, Bolduc L, Halbert B, Chambers D (2000) Leaching of metals from sulphide mine wastes at neutral pH. In: Proceedings from the 5th international conference on acid rock drainage, vol 1. Society for mining, metallurgy, and exploration, Littleton, pp 191–201
no DOI — not checkedSchmiermund Rl (2000) Non-acidic, sulfate-poor, copper-enriched drainage from a precambrian stratabound chalcopyrite/pyrite deposit, carbon county, Wyoming. In: Proceedings from the 5th international conference on acid rock drainage, vol 2. Society for mining, metallurgy, and exploration, Littleton, pp 1059–1070
no DOI — not checkedSwartjes FA (1999) Risk-based assessment of soil and groundwater quality in the Netherlands: standards and remediation urgency. Risk Analysis 19(6):1235–1249
no DOI — not checkedValeh N (1977) Gol-e-Gohar iron ore project: an outline study of the Gol-e-Gohar iron ore area. National Iranian Steel Industries. Excursion of the 2nd Geol. Symposium of Iran, p 5
no DOI — not checkedWorld Health Organisation (WHO) (2011) Guidelines for drinking water quality (4th edn.). ISBN 9241546387
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