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A study on the mixing proportion in groundwater samples by using Piper diagram and Phreeqc model 被引量:21
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作者 Karmegam U. Chidambaram S. +8 位作者 prasanna M.V. sasidhar p. Manikandan S. Johnsonbabu G. Dheivanayaki V. paramaguru p. Manivannan R. Srinivasamoorthy K. Anandhan p 《Chinese Journal Of Geochemistry》 EI CAS 2011年第4期490-495,共6页
Piper (1944) diagram has been the basis for several important interpretations of the hydrogeochemical data. As seen in this diagram, most natural waters contain relatively few dissolved constituents, with cations (met... Piper (1944) diagram has been the basis for several important interpretations of the hydrogeochemical data. As seen in this diagram, most natural waters contain relatively few dissolved constituents, with cations (metals or bases) and anions (acid radicles) in chemical equilibrium with one another. Apart from the facies representation, the composition of the mixed sample can be identified in terms of the composition of the parental solution. To bring out this advantage of the Piper diagram, a study was conducted in the Kalpakkam region of Tamilnadu, South India. By taking the geology and water table into consideration, two sample locations were selected as parent solution and third one as the mixture sample. All three samples were analyzed for calcium (Ca), magnesium (Mg), sodium (Na), potassium (K), chloride (Cl), sulphate (SO4) and phosphate (PO4) by Ion Chromatograph (Metrohm IC 861). HCO3 was determined by volumetric titration. The Piper diagram shows that parent solutions clustered towards Na-Mg-Ca-HCO3-Cl and Na-HCO3 facies, and the mixing sample belongs to Na-Mg-HCO3 facies. Phreeqc interac-tive (Ver 2.8) along with the original composition of the mixture sample was used to correlate the mixing proportion identified by the Piper diagram. 展开更多
关键词 混合比例 水样品 EQC模型 碳酸氢根 离子色谱仪 水文数据 自然水域
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