Evaluation of Meltwater Quality Using Dissolved Ions Chemistry and Multivariate Statistical Methods: A Case Study of the Manimahesh Glacier, Ravi Basin, Himachal Pradesh, India

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作者
Virendra Bahadur Singh
Pritam Chand
Milap Chand Sharma
Ujjal Deka Baruah
Manoj Kumar
Naveen Kumar
AL. Ramanathan
机构
[1] Jawaharlal Nehru University,School of Environmental Sciences
[2] Jawaharlal Nehru University,Centre for the Study of Regional Development, School of Social Sciences
[3] National Institute of Hydrology,Water Resources Systems Division
[4] Gauhati University,Department of Geography
关键词
Dissolved ions chemistry; Meltwater quality; Hydrogeochemical processes; Suspended sediment concentration; Manimahesh Glacier; North-western Himalaya;
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摘要
The hydrogeochemical study on glacial meltwater gives important information about the quality of meltwater and weathering processes controlling dissolved ions chemistry in the glacierized area. Anionic abundance in the Manimahesh Glacier meltwater shows a trend of HCO3− > SO42− > Cl− = NO3−, whereas cationic abundance in the meltwater shows a trend of Ca2+ > Mg2+ > K+ > Na+. On the basis of high equivalent ratios of (Ca + Mg) versus (Na + K) and (Ca + Mg) versus TZ+ (total cations) and low equivalent ratio of (Na + K) versus TZ+, carbonate-type weathering has been identified as a major hydrogeochemical process regulating solute chemistry of the Manimahesh Glacier meltwater followed by silicate weathering. About 80% of bicarbonate in the meltwater of investigation area was mainly generated from carbonate weathering, whereas 20% of bicarbonate was produced from silicate weathering. The result of statistical methods (correlation, principal component and cluster analysis) shows that meltwater quality of the Manimahesh Glacier is mainly governed by carbonate and silicate-type weathering, oxidation of pyrite, dissolution of sulphate minerals and atmospheric input. The average value of suspended sediment concentration (SSC) in the glacier meltwater was calculated to be 46 mg/l and 63 mg/l during the month of June and July 2014, respectively, showing higher concentration of SSC during the month of July (peak-flow period) followed by June (low-flow period).
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页码:57 / 66
页数:9
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