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1.
南沟矿泉水自沁水盆地三叠系二马营组砂页岩中溢出,自流量4L/s,水中含锂0.423mg/L,锶0.450mg/L。1992年2月经山西省矿产储量委员会鉴定属锂—锶重碳酸—钙型优质饮用天然矿泉水。泉区自然环境好,无工业污染,是优良的矿泉水生产基地。  相似文献   

2.
东亢矿泉水处于临汾断陷盆地边缘山前地带。矿泉水赋存于石炭系、奥陶系及侵入岩体的裂隙中。单井涌水量达71.4m ̄3/h,水位埋深51.09m。矿泉水中锌、锶、偏硅酸分别为0.289mg/L,1.28mg/L,33.28mg/L,属锌锶偏硅酸-重碳酸·硫酸-钠型优质矿泉水,具有良好的开发前景。  相似文献   

3.
稷山仁和矿泉水赋存于第四系中更新统中细砂层中,含水层厚17m,富水性很强,单位涌水量可达40.29m ̄3/h·m,水位埋深142m。该矿泉水含锶达2.278mg/L偏硅酸39.0mg/L,锂的含量也高达0.15mg/L以上。矿化度超过1000mg/L,水温达37~38℃。经山西省矿产储量委员会审定为含锶、偏硅酸的重碳酸硫酸钠型饮用及医用矿泉水。  相似文献   

4.
饮用天然矿泉水水源地位于太行山前的唐河、大沙河冲洪积扇交叠部位。“矿水床”深度为60 ̄136m,上更新统下部为石英、长石质粗砂及花岗岩、片麻岩、石英岩质的砾石、卵石。长石类矿物均有风化现象,经过与地下水化学成分的交替、溶滤作用,在地下水中某些有益组分得以富集,Sr含量0.27 ̄0.476mg/L,H2SiO326.47 ̄31.41mg/L,Na9.3 ̄16.6mg/L,矿化度321 ̄475mg/L  相似文献   

5.
通过4个月实地和近3年的追踪观测,查明拒马矿泉水产于涞源县浮图峪铜矿区的闪长玢岩与夕卡岩接触带中。H2SiO3含量25 ̄39mg/L;Sr含量0.40 ̄0.39mg/L,还含有CO2,I,Br,Li,Zn,Mo,Se,Cu等多种对人体有益的微量元素,是极为定贵的矿泉水资源。  相似文献   

6.
通过4个月实地和近3年的追踪观测,查明拒马矿泉水产于涞源县浮图峪铜矿区的闪长玢岩与夕卡岩接触带中。H_2SiO_3含量25~39mg/L;Sr含量0.40~0.39mg/L,还含有CO_2,I,Br,Li,Zn,Mo,Se,Cu等多种对人体有益的微量元素,是极为宝贵的矿泉水资源。  相似文献   

7.
饮用天然矿泉水水源地位于太行山前的唐河、大沙河冲洪积扇交叠部位。“矿水床”深度为60~136m,上更新统下部为石英、长石质粗砂及花岗岩、片麻岩、石英岩质的砾石、卵石。长石类矿物均有风化现象,经过与地下水化学成分的交替、溶滤作用,在地下水中某些有益组分得以富集,Sr含量0.27~0.476mg/L,H_2SiO_326.47~31.41mg/L,Na9.3~16.6mg/L,矿化度321~475mg/L,属低钠、低矿化度、锶-偏硅酸重碳酸钙型饮用天然矿泉水。其中,尚含Li,Zn,Br等对人体健康有益的微量元素。同位素氚的测试结果:19.21±5.35TU及5.07±3.22TU。抽水试验结果为S=5m时,Q=36~197m ̄3/h。  相似文献   

8.
秦皇岛市韩庄锶-偏硅酸天然矿泉水   总被引:1,自引:0,他引:1  
韩庄矿泉水井位于混合花岗岩二级台地上。矿泉水是降水经由混合花岗岩的风化裂隙和构造裂隙深循环而成。涌水量81.79m ̄3/d。水中含锶1.16mg/L偏硅酸49.4mg/L。矿化度293.2mg/L,水化学类型为硫酸重碳酸氯化物-钙·钠型水。矿泉水井位于风景优美的秦皇岛市郊,无工业污染,并有广阔的销售前景,是有潜力的矿泉水生产基地。  相似文献   

9.
迁安县吉王庄矿泉水含偏硅酸36.73 ̄40.2mg/L,并含有锂、锶、锌、碘、硒等多种有益于人体健康的微量元素。以低钠(8.6mg/L),低矿化度(149mg/L)和天然磁化为主要特征。由此命名为低钠、低矿化度、重碳酸钙型饮用天然磁化偏硅酸矿泉水。矿泉水赋存于太古界迁西群变质岩类裂隙含水层中。由断裂沟通风化网状裂隙潜水层与深部构造脉状裂隙承压含水带,补给源远流长,水量季节变化甚小,水温12℃,稳定  相似文献   

10.
何炼  马欣 《辽宁地质》1996,(1):75-78
在PH为4.2的醋酸-醋酸钠缓冲溶液中,用EDTA掩蔽干扰素。根据试剂Ⅲ分子结构中所含有官能团能与硼酸产生反应的机理,拟定了天然矿泉水中微量硼的分析方法。最低检出限为0.004mg/L,回收率为91-104%。  相似文献   

11.
盂县方山饮用矿泉水于1993年5月经山西省饮用天然矿泉水技术评审组审查鉴定符合《饮用天然矿泉水》国家标准。达标组分为Sr(1.10mg/L)。可定名为低钠锶矿泉水。矿泉水出露于方山北侧,山间谷地的二叠系山西组砂岩中,谷地之南为方山森林公园。开发前景良好。  相似文献   

12.
贵州省饮用天然矿泉水资源非常丰富,且水质优良,本文对贵州省岩溶地区饮用天然矿泉水进行了系统的水样采集、水质化验等工作。检测结果显示,贵州省岩溶区饮用天然矿泉水pH值7. 0~8. 1,为中性水;溶解性总固体(TDS)含量介于160. 64~925. 10 mg/L之间,平均含量为369. 70 mg/L,属淡水;总硬度(以CaCO_3计) 136. 8~740. 6 mg/L,平均硬度为293. 0 mg/L,属微硬-硬水;有益元素锶含量介于0. 11~6. 91 mg/L之间,平均含量为1. 28 mg/L,总体上,贵州省饮用天然矿泉水属中性微硬-硬富锶型淡水。Piper三线图显示其水化学类型以HCO~(3-)-Ca~(2+)(Mg~(2+))为主。基于前人研究成果,并结合多种地球化学图解分析,旨在剖析贵州省饮用天然矿泉水水化学特征,探讨其宏量组分来源。贵州省饮用天然矿泉水Gibbs图解显示,其水化学组分主要来源于岩石风化淋滤作用,部分受大气降雨影响较明显; Mg/Na-Ca/Na图解投点均落于碳酸盐岩和硅酸盐岩之间,且明显偏向于碳酸盐岩,指示其主要受控于碳酸盐岩的溶滤作用;HCO~(3-)-(Mg~(2+)/Ca~(2+))图解投点主要集中在方解石和白云石过渡区域,显示其主要来源于方解石的溶解,白云石溶解亦有一定贡献。通过宏量组分来源相关分析,对贵州省岩溶地区饮用天然矿泉水成因规律的认识有一定指导意义。  相似文献   

13.
赣南属于典型的山区,也是严重缺水区,一般在山区沟谷两侧有优质矿泉水涌出地表。宁都县位于赣南北部,具有赣南典型的地貌特征、构造特征。现以宁都县为例,探讨矿泉水的分布与出露模式。通过区域地质调查、水文地质条件分析及水质分析,发现:矿泉水类型主要为偏硅酸矿泉水,含量30.72~48.56 mg/L,水化学类型为HCO_3-CaNa型水,水温普遍低于25℃,溶解性总固体小于153.53 mg/L,属于低矿化冷矿泉;断裂构造为矿泉水形成提供水动力条件,也为矿泉水的运移、贮存提供良好空间;地形地貌以侵蚀构造山地丘陵为主,高差大、切割深的径流条件促进了地下水中偏硅酸的富集;花岗岩中的高含量SiO_2为矿泉水提供了物质基础,且风化程度高、裂隙发育,水岩作用进行充分。  相似文献   

14.
The mountain rocks in the Dushan Complex are Sr-rich granite with a much higher Sr level than those in other crustal lithospheres in eastern China. That presents a high potential for developing Sr-rich mineral water. In this study, 6 groups of rock samples, together with 30 groups of water samples, were collected. Combining with the existing data, the Sr contents in three different types of underground water were obtained, which are the Quaternary pore water, the meshed bedrock fissure water in weathered zones and the tectonic bedrock fissure water. On the basis of preliminary understanding for the distribution characteristics of Sr-rich mineral water in the Dushan Mountain region, the causes for the Sr-rich mineral water were investigated. Our results showed that the Sr content of the rocks in the studied area ranges from 988 to 1 950 μg/g. In the horizontal direction, those in both the pore water and the meshed bedrock fissure water in weathered zones show high values in the west but low ones in the east, and high ones in the south but low ones in the north. Furthermore, both types of water meet the standard for Sr-rich mineral water in the western areas. In the vertical direction, the Sr content shows the lowest value in pore water(the average value is 0.707 mg/L), middle value in the meshed bedrock fissure water in weathered zones(the average value is 1.415 mg/L) and the highest value in the tectonic bedrock fissure water(the average value is 8.331 mg/L). It was thought that the widely-developed Sr-rich granite in this region provides physical sources for the formation of Sr-rich mineral water. The continuous dissolution of Sr during underground water runoff is the internal mechanism. In addition, the hydraulic interrelations may exist between the three vertical aquifers, leading a continuous accumulation of the Sr level during infiltration.  相似文献   

15.
梁伟志 《福建地质》2014,(2):119-126
漳浦东山地热田属于中低温地热田Π-2类型,热储呈带状分布,受地形、地层岩性、地质构造等因素影响。地下热水贮存于北东向与北西向断裂的复合部位,控制的可开采量338m3/d,推断的可开采量485m3/d,水温78℃,水质类型为HCO3-·SO42-1—Na+型,pH值7.40~7.56,偏硅酸含量112.52~117.3mg/L,F离子含量10.99~12.85mg/L,可命名为氟水、硅水,达到理疗热矿水水质标准。  相似文献   

16.
《Applied Geochemistry》2000,15(4):475-492
Between 1968 and 1983, the North pit at the Getchell Mine, Humboldt County, NV, filled with water to form a lake. In 1983, water quality data were collected with the following results: As concentrations of 0.29 to 0.59 mg/L, pH of 7.1 to 7.9, SO4 concentrations of 1490 to 1640 mg/L, and TDS of 2394 to 2500 mg/L. Using geochemical modeling techniques presented here, pit lake waters have been theoretically allowed to react for 8.5 a, the approximate time that the North pit had been completely full by 1983. Modeling results predict pH of 7.9 to 8.2, SO4 concentrations of 1503 to 1644 mg/L, TDS of 2054 to 2366 mg/L, and As concentrations ranging from 0.57 in the hypolimnion to 96 mg/L in the epilimnion. In the epilimnion, model results do not match observed As concentrations, suggesting that mechanisms, such as precipitation of arsenate salts or adsorption to mineral surfaces, may control As levels in an actual pit lake system. Adsorption to Fe oxyhydroxide surfaces is questioned by the authors because of the low Fe content in the Getchell system, but adsorption to Al(OH)3 (gibbsite) and clay mineral surfaces may be important in controlling natural As concentrations.  相似文献   

17.
利用矿物方解石进行水体除磷实验研究   总被引:4,自引:0,他引:4  
许虹  张静  高一鸣 《地学前缘》2008,15(4):138-141
为探索解决水体富营养化问题的新方法,利用矿物方解石对含磷溶液进行了除磷实验。实验结果表明,方解石晶芽可以促进磷的沉淀,降低溶液磷浓度;其降磷效果与溶液初始磷浓度有关,初始磷浓度为1.2mg/L,除磷率为12.68%,初始磷浓度为3mg/L,除磷率为69.94%,初始磷浓度为5mg/L,除磷率为88.48%;同样,实验温度升高,可使方解石降磷效果明显提高。经透射电子显微镜测试,除磷沉淀物没有明显的晶质体特征。  相似文献   

18.
Investigated herein are water and sediment geochemistry, and metal attenuation processes associated with natural acid rock drainage originating from black shale formations in the Macmillan Pass area, Clear Lake prospect and Engineer Creek by the Dempster Highway in the Yukon Territory, Canada. The most metalliferous water having pH 3.0, 150 mg/L Zn, 39 mg/L Ni, 2.8 mg/L Cu and 9.1 mg/L As was found in a tributary stream of Engineer Creek with no known mineral deposits occurring in the vicinity. For all three study areas, the water and sediment geochemistry is significantly affected by the local lithology and prevailing metal attenuation processes. Despite their anomalous acidity and metal contents, the natural acid streams contribute only a small fraction of the contaminant loadings to the major water courses because of their low flows. Dilution, neutralization, sorption and co-precipitation are identified as the major mechanisms attenuating aqueous transport of potentially deleterious metals. However, microbial mediation in metal attenuation is also evident in low-flow systems. The wide variation of water and sediment geochemistry along a flow path renders the establishment of background metal values difficult. In assessing environmental impacts, it may be more practical to consider metal loadings on a watershed scale than to rely on a comparison with operationally defined background concentrations.  相似文献   

19.
青海玉树热水沟天然矿泉水形成条件及水质分析   总被引:2,自引:0,他引:2  
玉树“4.14”地震期间中国地质调查局对玉树地区进行水工环调查评价工作,发现玉树热水沟泉水具有天然饮用矿泉水的特征,该泉水中锶离子含量为0.62mg/L,已经达到国家饮用天然矿泉水标准,属于富锶型矿泉水,具有较高开发利用价值。本文对其矿泉水形成条件进行了初步的探讨,并对该矿泉水的水质进行了分析,对今后该矿泉水合理开发利用资源具有十分重要意义。  相似文献   

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