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Geochemical anomalies in two sulfide-bearing waste disposal areas: Fe,Cu, Zn,Cd, Pb,and As in contaminated waters and snow,Kemerovo and Chelyabinsk regions,Russia
Authors:NV Yurkevich  OP Saeva  YG Karin
Institution:1. Laboratory of Geo-Electrochemistry, Trofimuk Institute of Petroleum Geology and Geophysics, Siberian Branch of Russian Academy of Science, Novosibirsk, RussiaYurkevichNV@ipgg.sbras.ru;3. Laboratory of Geo-Electrochemistry, Trofimuk Institute of Petroleum Geology and Geophysics, Siberian Branch of Russian Academy of Science, Novosibirsk, Russia;4. Laboratory of Electromagnetism, Trofimuk Institute of Petroleum Geology and Geophysics, Siberian Branch of Russian Academy of Science, Novosibirsk, Russia
Abstract:Sulfide-bearing mill wastes are sources of high concentrations of acid, soluble metals, Sb, and As. Contents of Cu, Zn, Fe, Pb, Cd, As, and Sb in wastes of the Belovo Zn-processing and the Karabash mineral-processing plants (Russia) exceed the average content in the upper continental crust and background soils. High-dissolved metal and As concentrations are found in acid drainages, which form as a result of interaction between sulfide wastes and water. Monitoring research using geochemical and geophysical methods was performed to evaluate the contamination of the surrounding area (water and bottom sediments in the contaminated rivers and snow cover). Zones of geochemical anomalies were identified where the concentrations of Fe, Cu, Zn, Cd, Pb, and As are 2–3 orders of magnitude higher than in drinking water standards (for rivers) and background levels (for snow). The use of geophysical methods allowed us to prove penetration of drainage solutions into the groundwaters. The total environmental damage caused by the pollution of water and land resources in the Belovo Zn-processing plant waste disposal area amounted to $156 million at the time of 2011, and could reach $480 million by 2030, if steps are not taken in recycling and remediation of disturbed areas.
Keywords:mine waste  acid mine drainages  metals  geophysical investigation
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