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EN
Groundwater is a very important natural resource to support the activities of the residents of Pakis District, Malang Regency. On the other hand, increased activity puts pressure on groundwater quality. Agricultural intensification, urbanisation, and industrialisation can be sources of pollutants. Hydrological factors, topography, lithology, and surrounding rainfall are triggers for contamination of groundwater. The main objective of this research is to determine the characteristics, quality of groundwater, and its susceptibility to pollution. To complete this research, geoelectric measurements were carried out at 43 points spread throughout the study area and sampling of 18 shallow wells in agricultural, residential, and industrial areas for chemical analysis. All data obtained were analysed to create a map of the spatial distribution of groundwater vulnerability. The results show that the groundwater in the study location is in the transition zone and flows through the volcanic rock layers. The level of groundwater pollution is in the uncontaminated status to heavily polluted with pollutants in the form of heavy metal manganese and Escherichia coli bacteria. The spatial distribution of groundwater intrinsic vulnerability shows low, moderate, and high levels of vulnerability, respectively 32.99%, 60.87%, and 6.14% of the research area. Groundwater specific vulnerability associated with land use factors shows that 26.25% are negligible, 42.46% are low, and 31.29% are moderate. From this it can be concluded that the study area has been polluted both geogenically and anthropogenically, therefore, special actions must be taken to restore the quality of groundwater.
EN
Air conditions in post-mining areas are threatened by thermal activity of old spoil tips of coal mines. Reclamation operations cause only time-limited suppression of the oxidation process of carbon particles in the spoil heap. There are different reasons for that process. One of them is the incorrectly recognized geometry of the combustion spots in the spoil tip mass and the ways in which they are powered by oxygen from the atmosphere. The 1D inversion of vertical resistivity sounding data (VES) allows visualizing the down-going thermal effects and concluding about transport of atmospheric air (oxygen) and combustion gases in the whole mass. The resistivity distribution within waste can effectively support interpretation of geochemical and geothermic observations made on the spoil tip. The article describes the results of resistivity measurements made on an old spoil tip with waste from coal production in a heavy urbanized area of Chorzów City. Currently, the area of the former spoil heap is used for recreation and sports purposes (a park).
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