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1.
利用因子分析确定岩溶地下河系统水质的影响因素   总被引:10,自引:0,他引:10       下载免费PDF全文
根据云南南洞地下河系统2008年旱季的水化学分析结果,利用因子分析方法探讨地下水水质的影响因素及程度,结果表明:流域地下水成分变动范围较大,具有明显的空间变异性;地下水水质受人类活动、水岩作用过程和土壤等自然因素的共同影响,三个因素能够解释地下水水质形成的79%,其中人类活动是主要影响因素;地下水中的Cl-、NO3-、SO42-、Na+、K+主要受人类活动特别是农业和生活废水等因素的控制,Ca2+主要是水-岩作用的产物,但也受人类活动的影响,pH值、电导率受水岩作用过程和人类活动的影响,Mg2+、HCO3-受土壤CO2含量和水-岩作用过程的共同影响。  相似文献   

2.
为揭示保定平原地下水水化学特征及演化规律,本文以保定平原为研究对象,对216组地下水样水化学特征进行了分析。综合运用Piper三线图、Gibbs图、相关离子分析等方法,研究了保定平原区深浅层地下水化学组成及水化学类型空间分布特征,识别了水化学形成机制与控制作用,在此基础上分析了水化学演化的成因。结果表明:沿地下水径流方向,浅层地下水与深层地下水主要离子含量呈现明显的递变规律,TDS、Na+、Mg2+、Cl-、SO2-4、HCO-3含量逐渐升高,K+、Ca2+逐渐降低,地下水优势阳离子Ca2+主导地位逐渐被Na+代替,优势阴离子HCO-3主导地位逐渐向Cl-过渡。地下水化学特征主要受水岩作用、阳离子交替吸附作用以及人类活动共同影响,水岩作用以碳酸盐岩和铝硅酸盐岩共同溶滤作用为主;浅层地下水受人类活动影响较大,影响离子主要为NO-3,集中分布于补给区,除了与农业活动相关外,主要与山前平原岩性颗粒粗,具有较强的渗透性有关。  相似文献   

3.
白华  杨会峰  孟瑞芳  徐步云  闫晓雪 《地质论评》2023,69(3):2023030016-2023030016
为揭示保定平原地下水水化学特征及演化规律,本文以保定平原为研究对象,对216组地下水样水化学特征进行了分析。综合运用Piper三线图、Gibbs图、相关离子分析等方法,研究了保定平原区深浅层地下水化学组成及水化学类型空间分布特征,识别了水化学形成机制与控制作用,在此基础上分析了水化学演化的成因。结果表明:沿地下水径流方向,浅层地下水与深层地下水主要离子含量呈现明显的递变规律,TDS、Na+、Mg2+、Cl-、SO2-4、HCO-3含量逐渐升高,K+、Ca2+逐渐降低,地下水优势阳离子Ca2+主导地位逐渐被Na+代替,优势阴离子HCO-3主导地位逐渐向Cl-过渡。地下水化学特征主要受水岩作用、阳离子交替吸附作用以及人类活动共同影响,水岩作用以碳酸盐岩和铝硅酸盐岩共同溶滤作用为主;浅层地下水受人类活动影响较大,影响离子主要为NO-3,集中分布于补给区,除了与农业活动相关外,主要与山前平原岩性颗粒粗,具有较强的渗透性有关。  相似文献   

4.
济南泉域岩溶水水化学特征及其成因   总被引:2,自引:0,他引:2       下载免费PDF全文
济南泉域水质逐年变差,查明其污染来源和影响因素,对岩溶水资源开发利用及生态环境保护具有十分重要的意义,而对包含补给径流区的全区岩溶水系统分析尚未见报道.综合运用水化学(Piper三线图、离子比例系数、相关分析)和多元统计(因子分析、聚类分析)方法分析地下水水化学特征,探讨了不同区域水质影响因素及影响强度.因子分析反映了灰岩水岩作用、工业和生活污染、白云岩水岩作用、农牧业和生活污染对水化学组分的影响,贡献率依次为33.1%、28.4%、12.0%和11.8%.分析结果表明:研究区岩溶水水质受水岩作用和人类活动的双重影响;南部补给区、西郊及其以西排泄区水质优良,主要受碳酸盐岩溶解的影响;直接补给径流区部分岩溶水受农牧业和农村生活污染的影响,NO3-含量较高;东郊排泄区、城区及近郊开采区受工业及城镇生活污染的影响,水质较差,少数地段SO42-、NO3-、TDS和总硬度超标.   相似文献   

5.
赵庆令  李清彩  卜华  万淼 《水文》2015,35(2):70-76
通过对2013年9月在双村岩溶水区域采集测试的18组岩溶水化学资料进行分析,探讨了该区地下水的水化学特征,并利用R型因子分析法对影响该区岩溶水化学组分的3个主要因素进行了研究,分析结果表明:弱碱性地球化学背景下地下水对包气带的离子类质同象替代作用影响着岩溶水中Mg2+、K+、F-,人为污染因素控制着Cl-、Na+、NO3-、SO42-,岩溶水中的HCO3-、Ca2+、p H值受岩溶碳汇因素所影响。以上3种因子可以解释双村岩溶区岩溶水水化学特征87.103%的成因。  相似文献   

6.
南宁市区地下水水化学特征及形成机制   总被引:4,自引:4,他引:0  
苗迎  孔祥胜  宋朝静 《中国岩溶》2015,34(3):228-233
为了深入研究南宁市区地下水水化学特征、水质情况及地下水质量演变的主要水化学过程,文章采集南宁市区22组孔隙水和7组岩溶水,检测pH值、阴阳离子、溶解性总固体(TDS)和总硬度等化学指标,探讨地下水水化学特征和形成机制。结果表明:研究区孔隙水和岩溶水pH平均值均小于7,两种水TDS和总硬度基本一致,主要的阴离子(HCO3-、Cl-、SO42-)中含量最高的是HCO3-,平均分别为68.08 mg/L和106.68 mg/L;对于阳离子(Ca2+、Mg2+、K+、Na+),研究区孔隙水和岩溶水均表现为Ca2+≥Na+>Mg2+>K+,其中Ca2+的平均含量分别为24.04 mg/L和31.34 mg/L;地下水化学成分主要通过风化-溶滤作用与混合作用形成,地下水水化学类型为HCO3--Ca2+型水;地质环境背景是地下水pH值普遍偏低的主要原因,人类活动对地下水的影响越来越重要,pH值和水化学类型改变均与经济发展、人口增加、工矿企业增加等人类活动密切相关。   相似文献   

7.
为研究山东省邹城市东部缺水山区地下水水化学特征、水质状况和水化学过程,采集研究区各类型地下水样品32件,检测K+、Na+、Ca2+、Mg2+、Cl-、SO42-、HCO3-、NO3-、F-、TH和TDS等化学指标,综合利用图解法、相关性分析和主成分分析等方法探讨其地下水的水化学特征和形成机制。结果表明:(1)研究区裂隙水、孔隙水与岩溶水具有相似的水化学特征,裂隙水和孔隙水的水化学类型以HCO3-Ca型为主,而岩溶水水化学类型为HCO3-Ca·Mg型;(2)孔隙水、裂隙水和岩溶水水化学形成机制主要以水-岩相互作用为主,其次还受到人类活动的影响。孔隙水受水-岩相互作用和人类活动影响的比例分别为77.7%和10.5%,而裂隙水受影响的比例分别为63.9%和11.3%。  相似文献   

8.
山东省东汶河沂南地区地下水水化学特征及形成机理   总被引:3,自引:0,他引:3  
地下水作为人类重要的水源之一,已经受到了人类活动的明显影响而造成污染,深入研究地下水化学特征及形成机制,对于地下水资源的合理利用具有重要意义.东汶河沂南地区分布着多种类型的含水层,并且农业、养殖业发达,是进行人类活动影响下的地下水水化学形成研究的理想地区.本文综合利用Piper三线图、离子比值法及数理统计(相关性分析、因子分析、聚类分析)等方法,对东汶河沂南地区地下水水化学特征及形成机理进行研究.研究结果表明,本区地下水水化学类型总体以HCO3-Ca、HCO3-Ca·Mg型为主,TDS含量在243~1473 mg/L之间.地下水中HCO-3、SO2-4、Ca2+和Mg2+等离子主要来自于碳酸盐类矿物及硫酸盐类矿物的溶解,而Na+、K+、Cl-、NO-3则主要来自于岩盐溶解和人类活动污染.水岩作用对地下水水化学的影响超过了62.024%;受人类活动影响明显的水样占到了总水样数的13.6%,对地下水水化学的贡献率则达到了20.318%.河谷平原地区受到农业及养殖业等人类活动的污染明显.  相似文献   

9.
通过对典型岩溶丘陵区地下水进行水化学特征及地球化学敏感性的研究表明,该地下水系统水化学特征阳离子以Ca2+、Mg2+为主,阴离子以HCO3-、NO3-、SO42-为主,受水岩作用及人类活动共同影响;Mg2+/Ca2+受岩性控制,流经白云岩地层最高,灰岩夹白云岩次之,灰岩最低;研究区岩溶地下水表现出较高的地球化学敏感性。阳离子以Ca2+最为敏感,其次为Mg2+,阴离子以HCO3-最为敏感,其次为NO3-,元素的地球化学敏感性大小依次为:HCO3->Ca2+>Mg2+>NO3->SO42->Cl->Na+>K+;以敏感性最强的敏感因子HCO3-对研究区岩溶地下水进行敏感性等级划分。研究区低敏感性的水点仅占7.27%,中敏感性的水点占25.45%,高敏感性的水点占67.28%。通过地球化学敏感性划分统计结果显示,对该地区地下水的保护显得十分重要且迫切。   相似文献   

10.
苏春利  张雅  马燕华  刘文波 《地球科学》2019,44(9):2829-2838
岩溶地下水的水化学特征及其水岩作用过程研究对岩溶地下水合理开发利用和污染防治具有重要意义.综合利用水化学分析、主要离子比值、锶含量和87Sr/86Sr比值分析和反向水文地球化学模拟,深入分析了贵阳市地下水和地表水不同季节的水化学特征变化和水文地球化学演化过程.水化学特征分析表明,贵阳市地下水以HCO3·SO4-Ca型和HCO3-Ca·Mg型为主,水化学组成在季节和空间分布上存在一定的规律性变化,地表水与地下水的直接混合对地下水化学组成有一定的影响.锶同位素比值和水文地球化学反向模拟表明,地下水水化学组分主要受岩石风化作用的控制,以方解石和白云石为主的碳酸盐的溶解-沉淀作用以及硫酸盐和岩盐的溶解是控制研究区地下水水化学特征的重要过程,并受上覆孔隙含水层硅酸盐矿物水解的影响.   相似文献   

11.
There are 59 springs at the Gevas–Gurp?nar–Güzelsu basins, 38 of these springs emerge from the fractured karst aquifers (recrystallized limestone and travertine) and 21 emerge from the Yuksekova ophiolites, K?rkgeçit formation and alluvium. The groundwater samples collected from 38 out of the total of 59 springs, two streams, one lake and 12 wells were analyzed physico-chemically in the year 2002. EC and TDS values of groundwater increased from the marble (high altitude) to the ophiolites and alluvium (toward Lake Van) as a result of carbonate dissolution and connate seawater. Five chemical types of groundwater are identified: Ca–Mg–HCO3, Mg–Ca–HCO3, Mg–Na–HCO3, Na–Ca–HCO3 and Mg–Ca–Na–HCO3. The calculations and hydrochemical interpretations show that the high concentrations of Ca2+, Mg2+ and HCO3 ? as predominant ions in the waters are mainly attributed to carbonate rocks and high pCO2 in soil. Most of the karst springs are oversaturated in calcite, aragonite and dolomite and undersaturated in gypsum, halite and anhydrite. The water–rock interaction processes that singly or in combination influence the chemical composition of each water type include dissolution of carbonate (calcite and dolomite), calcite precipitation, cation exchange and freshening of connate seawater. These processes contribute considerably to the concentration of major ions in the groundwater. Stable isotope contents of the groundwater suggest mainly direct integrative recharge.  相似文献   

12.
Based on the analysis of element correlation, the Gibbs diagram, hydro-geochemical ion ratios, isoline maps of groundwater and soil, and change patterns of strontium content after normalization, the study examines water-rock interaction of shallow groundwater in Dingtao area. The results suggest that strontium in the study area mainly comes from water-rock interactions, and the strata interacting with groundwater are the top of Quaternary and Neogene. The element correlation analysis shows that the formation of strontium-rich groundwater is sufficiently affected by sulfate and carbonate. The Gibbs diagram suggests that the chemical composition of groundwater is mainly influenced by water-rock interactions, accompanied by evaporation crystallization. c(Ca2++Mg2+)/c(HCO3-+SO42-) reflects that the main reactions in the groundwater system is weathering dissolution of carbonate and sulfate, and ion exchange takes place. c(Na+)/c(Cl-) indicates that Na+ in groundwater may have water-rock interactions with rocks it flows through. c(Cl-)/c(Ca2+) indicates that the hydrodynamic condition in the pumping well is poor and the water circulation is slow. The study examines the macro isoline map change patterns, correlation curves of change of strontium content in groundwater and shallow soil, and correlation curves of change of strontium content in groundwater, shallow soil, and deep soil. The results suggest that the strontium content in the study area has the same change pattern in groundwater and in soil, which further indicates that strontium in the study area comes from water-rock interactions.  相似文献   

13.
In the salinity affected lower Atrai floodplain aquifer in the NW Bangladesh, geoelectric resistivity survey and hydrochemical analysis are carried out with an aim to identify fresh and saline groundwater zones; investigate the status of salinity; evaluate hydrochemical processes involved and suggest management approaches for irrigation. Here a two-fold aquifer system, inter-layered by silt, clay and silty-clay aquitard and aquiclude is classified as: upper aquifer — spatially affected by salinity of varying degrees; and lower aquifer — generally characterized by high salinity. The aquifer with resistivity values greater than 69 Ωm is safe for irrigation use. Concentrations of major ions vary as: Ca2+>Na+>Mg2+>K+ and HCO3>Cl>NO3>SO4 2?. Groundwater is dominated by Na-Ca to Ca-Na, HCO3-Cl-SO4, Cl-SO4-HCO3 and Cl-SO4 2? facies where Ca2+, Mg2+, SO4 2?, HCO3 ?, Cl? and NO3 2? ion concentrations are statistically dominant and water is of Ca-Mg, HCO3-SO4-Cl and NO3 types. Geochemically, groundwater is hard and saline to fresh water type. Salinity increases with depth, but spatially towards the southern part. Groundwater quality is a product of water-rock interaction, direct mixing and marine spraying, or fall-out of airborne marine salts, where silicate weathering is the primary source of bivalent cations. Sediment provenance of alkaline earth silicates and higher concentrations of alkalis are derived from sources other than precipitation. In general partially or fully salinity affected upper and lower aquifers in the area except in its eastern part are not suitable for tubewell irrigation. As groundwater demand for irrigation is increasing, the saline water has progressively invaded relatively fresher parts of the aquifer by upconning. So, special salinity control management approaches can be adopted through engineering techniques such as groundwater abstraction optimization, as also through scientific behavioral approaches like groundwater demand management, salt tolerant crops production. In this context, surface water conservation and rain water harvesting for domestic and irrigational uses are recommended in the salinity affected area.  相似文献   

14.
Groundwater regime and mineralization process in moraine sandy loam and peat soils of the active sulphatic karst zone (karst processes develop in the Upper Devonian gypsum–dolomites) in Lithuania and the dependence of chemical compounds concentrations on water level fluctuations are reviewed. According to ion sum, groundwater mineralization in peat soil is 1.1–1.3 times higher than in loam soil. Based on this result, lower levels of groundwater predetermine a more intensive mineralization process. A stronger correlation was determined between groundwater levels and concentrations of chemical compounds (Ca2+, Mg2+, SO4 2− and HCO3 ) enhancing groundwater mineralization. In mineral soil (sandy loam) nitrate (NO3) concentration is highly influenced by changing stages of groundwater level as well as by nearby sinkholes.  相似文献   

15.
The hydrochemical and multivariate statistical techniques such as the principal component analysis (PCA) and the cluster analysis (CA) were used to identify the hydrochemical processes and their relation with groundwater quality and also to get an insight into the hydrochemical Zana aquifer groundwater chemistry evaluation. Twenty-four samples during the wet season and even during the dry season are analyzed. The Piper diagram showed that water facies are magnesium bicarbonate on the sides of the western reliefs and magnesium chloride-sulfated at the north and the center of the plain. The PCA carried out on three factors revealed that on the factorial design F1-F3, nitrates negatively determine factor 3, indicating the presence of an agriculture pollution. On the factorial design F1-F2, HCO3? positively determine the factor 2, indicating the carbonated origin. However, the CA, based on variables, showed that the waters in the region can be classified into three groups according to flow direction while the CA, based on major ion contents, defined three groups, reflecting the same hydrochemical facies. The first group with dry residue varying between 360 and 1700 mg/l and characterized by Mg2+ and Cl?, HCO3?. Samples of this group are mostly located in the north and northeastern part of the region. The second group with highest dry residue (2080 to 3820 mg/l) characterized by Mg2+ and SO4?, Cl? is located near the Northwestern and western outcrops. The third group coincides with the central part, the lowest of the plain, with heightened dry residue (4140 to 13,950 mg/l), characterized by Mg2+ and SO4?. The hydrochemical study made it possible to allot the evaporitic origin to the elements Na+, Mg2+, K+, Cl?, and SO4?, while for element HCO3?, it results from the carbonated formations. These results showed that the presence of nitrates in the studied area is closely linked to the agricultural activity.  相似文献   

16.
17.
As one of the most arid regions in the world, the study area, Zhangye Basin is located in the middle reaches of the Heihe River, northwest China. Besides aridity, rapid social and economic development also stimulates greater demand for water, which is gradually fulfilled by groundwater extraction. In this study, the conventional hydrochemical techniques and statistical analyses were applied to examine the major ions chemistry and hydrochemical processes of groundwater in the Zhangye Basin. The results of chemical analysis indicate that no one pair of cations and anions proportions is more than 50% in the groundwater samples of the study area. High-positive correlations were obtained among the following ions: HCO3 ?–Mg2+, SO4 2?–Mg2+, SO4 2?–Na+ and Cl?–Na+. TDS depends mainly on the concentration of major ions such as HCO3 ?, SO4 2?, Cl?, Mg2+ and Na+. The hydrochemical types in the area can be divided into two major groups: the first group includes Mg2+–Na+–HCO3 ?, Mg2+–Na+–Ca2+–HCO3 ?–SO4 2? and Mg2+–Ca2+–Na+–SO4 2?–HCO3 ? types. The second group comprises Mg2+–Ca2+–SO4 2? type, Mg2+–Ca2+–SO4 2?–Cl? type and Mg2+–Na+–SO4 2?–Cl? type. The ionic ratio plot and saturation index calculation suggests that the silicate weathering, to some extent, and evaporation are dominant factors that determine the major ionic composition in the study area.  相似文献   

18.
The application of combined isotopic and hydrochemical compositions may be useful for evaluating water quality problems in karst aquifers in which it is difficult to distinguish the sources of solutes from the natural background of those due to human activities. Multiple isotopes (δ13C–DIC, δ34S–SO4 2?) and chemical parameters were measured in rainwater, groundwater and sewage in order to elucidate the solute sources and impacts from human activities and natural background in the Laolongdong karst catchment in Chongqing Municipality, SW China. Overall, the dissolution of carbonate rock controls Ca2+, Mg2+ and HCO3 ? content in rainwater and karst groundwater. SO4 2? originated mainly from gypsum dissolution in karst groundwater. Carbonate rocks in the studied site could be dissolved jointly by H2CO3 from the natural CO2–H2O reaction and other acids (organic acids and HNO3) from sewage and soils. Sewage discharge from urban areas and agriculture activities lead to the increase of NO3 ?, PO4 3? and Cl? in karst groundwater. To protect and sustainably utilize the karst aquifer, sewage originating from urban areas must be controlled and treated and the use of fertilizer should be limited.  相似文献   

19.
The reported study includes analysis of 14 physico-chemical parameters of alluvial groundwater based on data collected from 26 piezometers in the Velika Morava River Basin from 2004 to 2014. Eleven of the parameters were assessed applying hierarchical cluster analysis and principal component analysis to examine the spatial distribution, identify the main processes in groundwater variations and segregate the dominant sampling sites based on the characteristic parameters. A Piper diagram shows that the studied alluvial groundwaters are predominantly of the Ca2+–HCO3? type (67.3%) and to a lesser extent of the mixed Ca2+–Mg2+–HCO3? type (21.6%). Hierarchical clustering results in four clusters depending on the similarities of the hydrochemical parameters. Principal component analysis explains 65.4% of total variance with PC1 (32.5% variance), PC2 (19.8% variance) and PC3 (13.1% variance). A comparative analysis reveals that the main processes responsible for the hydrochemical composition of groundwater in the Velika Morava alluvion are carbonate dissolution-anthropogenic pressure, feldspar weathering and migration caused by river–aquifer interaction. Considerable loading of the alluvial groundwater caused by a complex geologic framework, natural factors and human activities in the river basin contributed to the segregation of six dominant sampling sites. The obtained results can be very useful in the development of an optimal spatial plan for groundwater monitoring, focusing on increasing the density of the national monitoring network and frequency of assessing alluvial groundwater on the dominant sampling sites (from annual to seasonal).  相似文献   

20.
李状  苏晶文  董长春  叶永红  杨洋 《中国地质》2022,49(5):1509-1526
【研究目的】 了解长江中下游平原地区地下水流系统并深入分析其地下水水化学特征及其演化机制。【研究方法】 综合马鞍山市当涂地区的水文地质条件、水动力场等,基于研究区水化学基本特征,运用多元统计分析、水化学图件、离子比值和反向水文地球化学模拟等方法对该地区浅层地下水水化学演化进行分析。【研究结果】 结果表明:(1)研究区地下水主要为低矿化度偏碱性水,地下水组分中阳离子以Ca2+和Mg2+为主,阴离子以HCO3-和SO42-为主。(2)研究区地下水水化学类型主要可分为7类,其中松散岩类孔隙含水岩组和碎屑岩类孔隙裂隙含水岩组的水化学类型主要为HCO3-Ca型、HCO3-Ca·Na型、HCO3·Cl-Ca·Na型以及HCO3-Ca·Mg型;基岩类裂隙含水岩组的化学类型主要为HCO3·SO4-Ca·Mg型和SO4·HCO3-Ca·Mg型。(3)研究区浅层地下水水样超标率为46%,总体水质较差,超标率较高的组分依次为Mn、高锰酸盐指数(CODMn)、硝酸盐(以N计)、Fe、As、氨氮(以N计)等。(4)研究区地下水的化学组分主要受到岩石风化作用的控制;此外,还存在Na-Ca的正向阳离子交替吸附作用。反向水文地球化学模拟结果进一步定量论证了水岩相互作用对本区浅层地下水组分的形成和演化起着主导作用。【结论】 研究区地下水主要为低矿化度偏碱性,主要可分为松散岩类孔隙水、碎屑岩类孔隙裂隙水和基岩类裂隙水。主要离子比例和反向水文地球化学模拟揭示了本区浅层地下水化学组分主要是地下水溶滤方解石、白云石等碳酸盐矿物、石英、长石等硅酸盐矿物,高岭土等黏土矿物以及岩盐、石膏等达到过饱和之后形成的。  相似文献   

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