Research on mechanism of groundwater pollution from mine water in abandoned mines |
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Authors: | Lai-gui Wang Xi-lin Li Ling Liu Liang Han |
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Affiliation: | [1]College of Mechanics and Engineering, Liaoning Technical University, Fuxin 123000, China [2]College of Civil and Architectural Engineering, Liaoning Technical University, Fuxin 123000, China [3]Hydrographical Bureau of Fuxin, Fuxin 123000, China |
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Abstract: | In order to understand the mechanism and regularity of the groundwater contamination from mine water of abandoned mines, experiments were conducted on an abandoned coal mine in Fuxin, a representative city with lots of mine water in northeast China. The groundwater pollution from different contaminants of coal-mining voids (total hardness, SO42−, Cl− and total Fe) and pollution factors transportation situation in the coal rock were simulated by soil column experiment under the conditions of mine water leaching and main water leaching (similar to rainwater leaching), and the water-rock interaction mechanism was discussed during mine water infiltration through saturated coal rock by application of principle of mass conservation, based on physical properties of coal rock, as well as monitored chemical composition. The results show that, compared with the clear water leaching process, trends of change in pollutant concentrations presented different characteristics in the mine water leaching process. Groundwater is contaminated by the water rock interactions such as migration & accumulation, adsorption & transformation, dissolution & desorption and ion exchange during the mine water permeation. The experiments also suggest that at first dissolution rate of some kinds of dissoluble salts is high, but it decreases with leaching time, even to zero during both the mine water leaching and main water leaching. Supported by the National Natural Science Foundation of China(50434020, 50374042), Science & Technology Found of Liaoning Province (20022155); Specialized Research Fund for the Doctoral Program of Higher Education (20040147003) |
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Keywords: | groundwater pollution mine water abandoned mines soil column experiment water-rock interaction pollution mechanism |
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