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Memoir 1:Applied Geochemistry:Groundwater Quality Evaluation and Control
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作者 Subhajyoti Das Dipankar Saha(Eds.) +1 位作者 Aditya Sarkar Shashank Shekhar 《Episodes》 2013年第4期I0002-I0002,306,共2页
Indian Society of Applied Geochemists,Hyderabad,357p The main objective of this series of memoirs published by the Indian Society of Applied Geochemists(ISAG),Hyderabad,is to focus on the significance of quality of th... Indian Society of Applied Geochemists,Hyderabad,357p The main objective of this series of memoirs published by the Indian Society of Applied Geochemists(ISAG),Hyderabad,is to focus on the significance of quality of the groundwater resources in the country.The extent of over-exploitation of groundwater resources in various parts of the country has led to drastic changes in water quality. 展开更多
关键词 control water quality quality evaluation EXPLOITATION Indian Society Applied geochemists water quality changes HYDERABAD groundwater quality
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使用GWB软件优化铁锰氧化物的合成方法 被引量:1
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作者 邢宇 刘宏芳 钱天伟 《山西师范大学学报(自然科学版)》 2016年第1期57-61,共5页
铁锰氧化物天然存在于湿地植物根部,可有效阻止土壤中重金属在植物内部的富集,可作为多种重金属的吸附剂.使用地球化学软件The Geochemist’s Workbench对铁锰氧化物合成过程进行模拟的结果表明,采用氧化还原共沉淀法合成铁锰氧化物过程... 铁锰氧化物天然存在于湿地植物根部,可有效阻止土壤中重金属在植物内部的富集,可作为多种重金属的吸附剂.使用地球化学软件The Geochemist’s Workbench对铁锰氧化物合成过程进行模拟的结果表明,采用氧化还原共沉淀法合成铁锰氧化物过程中,在硫酸亚铁溶液中投加高锰酸钾溶液,p H的波动区间为5.63~2.33,且铁的氧化物先于锰的氧化物生成;而在高锰酸钾溶液中投加硫酸亚铁溶液,混合体系p H的波动区间为10.31~2.34,且铁和锰的氧化物沉淀同时生成.模拟结果进一步表明,合成原料的投加顺序与铁锰氧化物颗粒的合成效果是紧密相关的. 展开更多
关键词 铁锰氧化物 The Geochemist’s WORKBENCH 模拟
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Groundwater monitoring of an open-pit limestone quarry:Water-rock interaction and mixing estimation within the rock layers by geochemical and statistical analyses 被引量:12
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作者 Khy Eam Eang Toshifumi Igarashi +3 位作者 Megumi Kondo Tsurugi Nakatani Carlito Baltazar Tabelin Ryota Fujinaga 《International Journal of Mining Science and Technology》 SCIE EI CSCD 2018年第6期849-857,共9页
Water-rock interaction and groundwater mixing are important phenomena in understanding hydrogeological systems and the stability of rock slopes especially those consisting largely of moderately watersoluble minerals l... Water-rock interaction and groundwater mixing are important phenomena in understanding hydrogeological systems and the stability of rock slopes especially those consisting largely of moderately watersoluble minerals like calcite. In this study, the hydrogeological and geochemical evolutions of groundwater in a limestone quarry composed of three strata: limestone layer(covering), interbedded layer under the covering layer, and slaty greenstone layer(basement) were investigated. Water-rock interaction in the open-pit limestone quarry was evaluated using PHREEQC, while hierarchical cluster analysis(HCA)and principal component analysis(PCA) were used to classify and identify water sources responsible for possible groundwater mixing within rock layers. In addition, Geochemist's Workbench was applied to estimate the mixing fractions to clarify sensitive zones that may affect rock slope stability. The results showed that the changes in Ca2+and HCO3àconcentrations of several groundwater samples along the interbedded layer could be attributed to mixing groundwater from the limestone layer and that from slaty greenstone layer. Based on the HCA and PCA results, groundwaters were classified into several types depending on their origin:(1) groundwater from the limestone layer(LO),(2) mixed groundwater flowing along the interbedded layer(e.g., groundwater samples L-7, L-11, S-3 and S-4), and(3) groundwater originating from the slaty greenstone layer(SO). The mixing fractions of 41% LO: 59% SO, 64% LO: 36% SO, 43%LO: 57% SOand 25% LO: 75% SOon the normal days corresponded to groundwaters L-7, L-11, S-3 and S-4,respectively, while the mixing fractions of groundwaters L-7 and L-11(61% LO: 39% SOand 93% LO: 7% SO,respectively) on rainy days became the majority of groundwater originating from the limestone layer.These indicate that groundwater along the interbedded layer significantly affected the stability of rock slopes by enlarging multi-breaking zones in the layer through calcite dissolution and inducing high water pressure, tension cracks and potential sliding plane along this layer particularly during intense rainfall episodes. 展开更多
关键词 Water-rock interaction GROUNDWATER MIXING Interbedded layer Geochemist’s WORKBENCH ROCK SLOPE stability
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KEYWORDS INDEX
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《Abstracts of Chinese Geological Literature》 2009年第4期169-185,共17页
关键词 RESERVOIR TECTONIC GEOLOGIC GEOCHEMICAL geochemist
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