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选取广西桂南地区地下热水系统为研究对象,利用氢氧同位素及锶同位素研究手段,对研究区内地下热水中氟的空间分布规律及其控制因素进行研究。结果表明:研究区内地下热水中氟含量变化范围为0.01~17.93mg/L,其中43%地下水样品中氟含量超过饮用水氟骨症临界值1.5mg/L,高氟地下热水的主要水化学类型为Na-HCO3型,水体中氟含量与温度呈明显正相关性;地下热水氢氧同位素特征显示,研究区地下热水的主要来源为大气降水,同时受一定程度蒸发浓缩及水-岩作用影响,地下热水锶同位素特征显示,研究区地下热水水化学组成明显受长石、云母等铝硅酸盐风化及碳酸盐岩溶解影响;对地下热水水化学开展的因子分析结果显示,研究区地下热水系统中影响氟迁移释放的主要因素为萤石的溶解与沉淀过程。 相似文献
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Sean R. Brennan Diego P. Fernandez Jennifer M. Burns Stephanie Aswad Daniel E. Schindler Thure E. Cerling 《Conservation biology》2019,33(6):1415-1425
Human activities threaten the biodiversity of aquatic mammals across the globe. Conservation of these species hinges on the ability to delineate movements and foraging behaviors of animals, but gaining such insights is hampered by difficulties in tracing individuals over their lives. We determined isotope ratios in teeth (87Sr/86Sr, 13C/12C, and 18O/16O) to examine lifelong movement and resource-use patterns of a unique freshwater population of a wide-ranging pinniped species (harbor seal [Phoca vitulina]) that resides in Iliamna Lake, Alaska (U.S.A.). This population's potentially unique migratory behavior and use of different trophic resources are unknown. The isotope ratios we measured in teeth showed that seals were born in the lake, remained lifelong residents, and relied principally on resources produced from in the lake, even when seasonally abundant and nutrient-dense spawning anadromous fish (i.e., sockeye salmon [Oncorhynchus nerka]) were available in the lake. Our results illustrate how serial isotope records in teeth, particularly 87Sr/86Sr ratios, can be used to quantify how coastal mammal populations exploit both freshwater and marine ecosystems. Understanding lifelong patterns of habitat and resource use is essential information when designing effective conservation plans for threatened coastal mammals. We present the Iliamna Lake harbor seals as a unique case study into how isotope records within teeth can help reveal the cryptic ecology of such a population residing in an intact ecosystem. The results also provide critical baseline information for the Kvichak River system, which is facing an uncertain future due to proposed large-scale industrial development and a rapidly changing climate. 相似文献
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古堆泉为山西省著名岩溶大泉之一,是唯一的中低温温泉,具有悠久的开发观赏历史,凝聚着丰厚的人文积淀.以古堆泉域岩溶地下水为研究对象,通过系统地样品采集与同位素分析,综合运用水化学(Durov图、离子比例、Gibbs图和氢氧同位素)同位素方法分析地下水水化学特征和地下水系统径流特征.古堆泉域岩溶地下水的87 Sr/86 Sr值在0.709~0.717之间,Mg/(Mg+Ca)值在0.27~0.74之间.通过分析Sr同位素组成和Mg/(Mg+Ca)、1/Sr变化特征,得出古堆泉域岩溶地下水为深部热水与浅部冷水的混合水,中条山南梁泉岩溶水子系统呈现碳酸盐岩地层径流特征,佛岭山-高显海头泉岩溶水子系统和侯马盆地深循环子系统呈现碳酸盐岩地层与火成岩地层径流特征,塔儿山-九原山古堆泉岩溶水子系统呈现碳酸盐岩地层与古老硅铝质岩地层径流特征.通过2014年样品与2021年相同位置取样点的氢氧同位素比对分析,得出古堆泉口水样变化原因是其受三泉水库补给随时间的积累的结果,三泉水库的变化原因是受引黄水的影响.研究区岩溶地下水水化学类型可分为SO4-Na、SO4-Ca、HCO3-Na、HCO3-Mg、HCO3-Ca和Cl-Na型.岩溶地下水水化学类型从HCO3-Ca·Mg→HCO3·SO4-Ca·Mg→SO4·HCO3-Na·Ca→SO4·Cl-Na·Ca呈现明显的水化学成分分带. 相似文献
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酸雨是目前人类所面临的主要环境问题之一,中国已成为继欧洲和北美之后的世界第三大酸雨区。大气降水化学组成、物质来源及其贡献是酸沉降研究的重要内容,可以为酸雨成因、发展趋势和制定相应政策提供依据。大气降水同位素组成是解析和确定降水物质来源及其贡献的重要手段。大气中的二氧化硫和氮氧化合物是导致雨水酸化的两个主要组分,另外我国大气降水中还含有大量碱性离子可以中和雨水中的酸性物质。本文对硫、氮、锶同位素在大气降水中物质示踪方面的应用进行了总结,并提出了一些值得重视的研究方向。 相似文献
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Adsorption onto solid phases plays an important role in the transport of radionuclides and contaminants in the environment. Radionuclides in radioactive waste have been considered to be hazardous pollutants, and their migration with groundwater is strongly affected by sorption on the geologic media. Therefore, the knowledge of radionuclide sorption is of great importance in the management of radioactive wastes. A series of batch sorption experiments were conducted separately to investigate sorption and transport behaviour of cobalt, strontium and caesium on and through marble. Batch-mode kinetic and equilibrium studies have been carried out at different temperatures. Sorption experimental data were analysed by kinetic and isotherm models. Based on the results obtained, it can be concluded that the marble is an economic and efficient retaining material for environmental hazardous migration and/or leakage of some radionuclides. Therefore, this study could be used as a starting point to establish and consider that rock as a reactive barrier around the disposal facilities at the nuclear activity centres. 相似文献
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