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91.
热液体系氢、氧同位素分馏机制及其地质意义   总被引:9,自引:0,他引:9  
陈振胜  张理刚 《地质学报》1992,66(2):158-169
探讨了热液体系氢、氧同位素地球化学行为及其与水/岩交换同位素分馏的内在关系。有效W/R值是除温度条件外,另一控制蚀变岩石和热液水氢、氧同位素组成变化的因素。此外还根据数个矿区成矿热液水和蚀变岩石氢、氧同位素组成及变化特征对水/岩交换和W/R值的应用及地质意义展开讨论。最后提出热液体系中大气降水和岩浆热液水氢、氧同位素组成演化模式简图。  相似文献   
92.
累托石的阳离子交换性能及其应用研究   总被引:1,自引:0,他引:1  
陈济美 《矿物岩石》1992,12(1):96-101
累托石是二八面体云母层与蒙脱石层1:1规则间层矿物。本文阐明累托石矿物结晶构造与阳离子交换性能的关系。阳离子交换性能在累托石定量与定性、改型、合成交联累托石和有机累托石等方面的应用。并介绍氧化钛交联累托石和在机累托石的有关特性。  相似文献   
93.
潘建强  孔佑华 《矿物学报》1993,13(4):293-302
通过对我国64个二八面体含铝蒙皂石矿物化学及晶体化学数据的统计分析,研究了它们的矿物化学及晶体化学的基本特征,并得出八面体组分是影响蒙皂石矿物学及物理化学性质的主要因素,在此基础上,利用AlAl-AlFe-AlMg三角图划分了我国二八面体含铝蒙皂石的晶体化学类型,并对原分类图进行了模式化处理,使AlAl-AlFe-AlMg图更具实际意义,蒙皂石的阳离子交换容量与晶体化学模型有对应性,并受八面体三价  相似文献   
94.
卢荫庥  安荣战 《岩矿测试》1993,12(4):251-254
研究表明,在H3PO4介质中,丁基罗丹明B可从乙酸异戊酯有机相中的[T1Br4]^--结晶紫缔合物中置换结晶紫而形成新的离子缔合三元荧光络合物。详细考察了该络合物形成的最佳条件、荧光特征及萃取溶剂等,制定了地球化学样品中痕量T1的荧光光度测定新方法,其检出限0.005μg/ml.T1量在0-0.5μg/ml范围与荧光强度呈正比。测定了含T1量0.61-1.9μg/g的8个一级地球化学标样,结果相符  相似文献   
95.
本文采用过氧化钠(Na_2O_2)熔样,743阳离子交换树脂快速分离,0.4mol/L柠檬酸25ml洗脱稀土,无需浓缩,即可用lCPS-PGS2单道扫描直读光谱仪直接测定15个微量稀土元素。在选择的最佳测量条件下,本法测定下限为0.005~g/ml(Eu)-0.50μg/ml(Ce),标准加入回收在88%—110%之间,样品分析精度为3.3%—17%,样品分析结果与参考值相符。本法适用于一般地质样品中微量稀土元素的例行分析。  相似文献   
96.
本文研制了适用于地质样品中15个稀土元素分析的快速方法。样品经碱熔沉淀分离和743阳离子交换树脂分离富集将稀土元素制备成溶液用等离子体光谱法(ICP-AES)进行测量。方法检出限为0.002-0.3μg/g,当稀土元素含量为0.5-80,μg/g时,方法相对标准偏差为15%-2%。本方法经过多年的样品分析考验以及不断的改进和完善,证明方法简便快速,分析数据稳定可靠,能很好地满足地质样品中15个稀土分量测定的要求。  相似文献   
97.
The balloon-borne Aircore campaign was conducted in Inner Mongolia,China,on June 13 and 14 2018,which detected carbon dioxide(CO_2) and carbon monoxide(CO) profiles from surface to 24 km,showing strong positive and negative correlations between 8 km and 10 km on 13 and 14 June,respectively.Backward trajectories,meteorological analyses,and CO_2 horizontal distributions were combined to interpret this phenomenon.The results indicated that the source region experienced a stratospheric intrusion and exhibited a large horizontal CO_2 gradient;namely,lower CO concentrations corresponded to higher CO_2 concentrations and vice versa.The laminar structure with multiple origins resulted in the highly negative correlation between CO_2 and CO in the upper troposphere on 14 June.The contribution of stratospheric air mass to the upper troposphere and that of tropospheric air mass to the lower stratosphere were 26.7% and24.3%,respectively,based on a mass balance approach.Another interesting phenomenon is that CO_2 and CO concentrations increased substantially at approximately 8 km on 13 June.An analysis based on the backward trajectory implied that the air mass possibly came from anthropogenic sources.The slope of CO_2/CO representing the anthropogenic sources was 87.3 ppm ppm~(-1).In addition,the CO_2 profile showed that there was a large CO_2 gradient of 4 ppm km-1 within the boundary layer on 13 June,and this gradient disappeared on 14 June.  相似文献   
98.
流体控制着地球系统中质量和能量的传输。流体岩石反应过程在岩石圈中是十分普遍的现象。在流体流动体系中 ,流体在岩石裂隙中通过平流、扩散、水动力弥散和动力学弥散等方式进行输运并与岩石发生同位素交换反应。文章首先对封闭体系、“封闭”体系、开放体系以及缓冲体系中的同位素交换模型进行了简单讨论 ,然后在讨论氧同位素动力学交换机制的基础上 ,建立了平衡交换模型和动力学交换模型。结合流体流动的归一化速率、弥散系数和流体岩石的反应速率等变量 ,对流体岩石交换反应的流体运动方程中的Peclet数和Damk¨ohler数进行了讨论 ,并详细解释了它们在流体岩石交换反应过程中的物理意义和地质用途。  相似文献   
99.
The study by the eddy covariance technique in the alpine shrub meadow of the Qing-hai-Tibet Plateau in 2003 and 2004 showed that the net ecosystem carbon dioxide exchange (NEE) exhibited noticeable diurnal and annual variations, with more distinct daily changes during the warmer seasons. The CO2 emission of the shrub ecosystem culminated in April and September while the CO2 absorption capacity reached a maximum in July and August. The absorbed carbon dioxide during the two consecutive years was 231.4 and 274.8 g CO2·m-2 respectively, yielding an average of 253.1 gCO2·m-2 per year: that accounts for a large proportion of absorbed CO2 in the region. Obviously, the diurnal carbon flux was negatively related to temperature, radiation and other atmospheric factors. Still, minute discrepancies in kurtosis and duration of carbon emission/absorption were detected between 2003 and 2004. It was found that the CO2 flux in the daytime was similarly affected by photosynthetic photon flux density in both years. Temperature appears to be the most important determinant of CO2 flux: specifically, the high temperature during the plant growing season inhibits the carbon absorption capacity. One potential explanation is that soil respiration is enhanced under such condition. Analysis of biomass revealed that the annual net carbon fixed capacity of aboveground and belowground biomass was 544.0 in 2003 and 559.4 g Cm"2 in 2004, which coincided with the NEE absorption capacity (63.1 g C·m-2 in 2003 and 74.9 g C·m-2 in 2004) in the corresponding plant growing season.  相似文献   
100.
Many studies on global climate have forecast major changes in the amounts and spatial patterns of precipitation that may significantly affect temperate grasslands in arid and semi-arid regions. As a part of ChinaFLUX, eddy covariance flux measurements were made at a semi-arid Leymus chinensis steppe in Inner Mongolia, China during 2003-2004 to quantify the response of carbon exchange to environmental changes. Results showed that gross ecosystem production (FGEP) and ecosystem respiration (Reco) of the steppe were significantly depressed by water stress due to lack of precipitation during the growing season. Temperature was the dominant factor affecting FGEP and Reco in 2003, whereas soil moisture imposed a significant influence on both Reco and FGEP in 2004. Under wet conditions, Reco showed an exponentially increasing trend with temperature (Q10 = 2.0), but an apparent reduction in the value of Reco and its temperature sensitivity were observed during the periods of water stress (Q10=1.6). Both heat and water stress can cause decrease in FGEP. The sea-sonality of ecosystem carbon exchange was strongly correlated with the variation of precipitation. With less precipitation in 2003, the steppe sequestrated carbon in June and July, and went into a senescence in early August due to water stress. As compared to 2003, the severe drought during the spring of 2004 delayed the growth of the steppe until late June, and the steppe became a CO2 sink from early July until mid-September, with ample precipitation in August. The semi-arid steppe released a total of 9.7 g C·m-2 from May 16 to the end of September 2003, whereas the net carbon budget during the same period in 2004 was close to zero. Long-term measurements over various grasslands are needed to quantify carbon balance in temperate grasslands.  相似文献   
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