Groundwater quality analysis thesis
The main objective of this thesis is to improve the understanding on links between climate variability and weather-related impacts of both floods and droughts. This relationship is investigated from global to regional scales, and at different lead times, with the purpose of achieving an impact-based forecast that can guide the implementation of early actions effectively before a potential drought or flood materializes. This thesis highlights some key challenges and topics that require further investigation in future research. For instance, it suggests that in order to improve the understanding of the impacts of climate variability, research is required regarding the dynamics of climate variability. It also proposes that for improving the understanding on the impacts of climate variability, better data and an investigation on the relationships between human and natural systems is needed.
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Peer Reviewed Journals, Open access Journals: International Journal of Advanced Research (IJAR)
Water samples were collected from different formations of Gadilam river basin and analyzed to assess the major ion chemistry and suitability of water for domestic and drinking purposes. The geochemical study of the aquatic systems of the Gadilam river basin show that the groundwater is near-acidic to alkaline and mostly oxidizing in nature. Higher concentration of Sodium and Chloride indicates leaching of secondary salts and anthropogenic impact by industry and salt water intrusion. Spatial distribution of EC indicates anthropogenic impact in the downstream side of the basin. Interpretation of data shows that some trace metals such as Al, Ni and Pb exceed the acceptable limit of world standard. Geophysical study was carried out to identify the weathered zone in the hard rock and contaminated zone by anthropogenic impact in the downstream of river Gadilam.
Environmental impact of hydraulic fracturing
Views: Mayilswami 2 and D. Tamilmani 3. Good groundwater quality is essential for crop yield, soil productivity and environmental protection. Suitability of groundwater for irrigation purposes is determined by its geochemistry.
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