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801.
Resuspension of bottom sediments accounted for 69–92% of mean deposition rates (11·6–69·3 gm?2 day?1) measured at 5 sites in the Peel-Harvey Estuarine System, Western Australia. Deposition rates at all but one of the sites were found to be correlated (P<0·05) with a function of wind combining a fetch factor with the number of hours of winds greater than 5 ms?1 weighted by the third power of wind velocity. The exception was the only site with a cover of benthic algae (Cladophora) during the study. Wind-related resuspension greatly affects the forms and amounts of productivity in this system.  相似文献   
802.
1 INTRODUCTION Land-sourced silicon are continuously input into the sea by rivers. After being assimilated by thousands of living organisms in the sea, silicon sinks with the marine living organisms to the sea bottom, showing a complete silicon transfer process. The study of this dynamic process need clarifying the characteristics of silicon in the sea, which plays an important role in phytoplankton growth, zoo-plankton graze and marine ecosystem. 2 SILICON BEING INDISPENSABLE N…  相似文献   
803.
804.
Incorporation of 14C-bicarbonate into the major intracellular end-products of photosynthesis (protein, polysaccharide, lipid) and two classes of exoproducts (oligomers and polymers) was measured in Belgian coastal waters at different stages of the spring phytoplankton bloom, entirely dominated by the alga Phaeocystis poucheti. It was shown that intracellular protein synthesis contributed 20–42% of the total intracellular 14C fixed and was positively correlated with the inorganic nitrogen content of the surrounding medium. The decrease of protein synthesis following nitrogen depletion is balanced by an increase of intracellular polysaccharide synthesis, which varies from 22 to 42% of the intracellular 14C fixed, and by an increase in extracellular release of high molecular weight material (18–60% of total 14C fixed) which forms a mucous envelope where cells are embedded. Lipid synthesis is not correlated with the ambient inorganic nitrogen content and represents a rather constant proportion (about 20%) of the intracellular 14C fixed.  相似文献   
805.
The present study highlights the hydrogeological and hydrogeochemical characteristics of the CO2-rich thermal–mineral waters in Kayseri, Turkey. These waters of Dokuzpınar cold spring (DPS) (12–13°C), Yeşilhisar mineral spring (YMS) (13–16°C), Acısu mineral spring (ACMS) (20–22.5°C), Tekgöz thermal spring (TGS) (40–41°C), and Bayramhacı thermal-mineral spring (BTMS) (45–46.5°C) have different physical and chemical compositions. The waters are located within the Erciyes basin in the Central Anatolian Crystalline complex consisting of three main rock units. Metamorphic/crystalline rocks occur as the basement, sedimentary rocks of Upper Cretaceous-Quaternary age form the cover, and volcanosedimentary rocks Miocene-Quaternary in age represent the extrusive products of magmatism acting in that period. All these units are covered unconformably by terrace and alluvial deposits, and travertine occurrences have variable permeability. Dokuzpinar cold spring, YMS and ACMS localized mainly along the faults within the region have higher Na+ and Cl contents whereas TGS and BTMS have higher amounts of Ca2+ and HCO 3 . The high concentrations of Ca2+ and HCO 3 are mainly related to the high CO2 contents resulting from interactions with carbonate rocks. Whereas the high Na+ content is derived from the alkaline rocks, such as syenite, tuff and basalts, the Clis generally connected to the dissolution of the evaporitic sequences. These waters are of meteoric-type. BTMS deviates from meteoric water line. The content is related to the increases in the δ18O compositions due to mineral–water interaction (re-equilibrium) process. CO2-dominated YMS and ACMS with low temperatures have higher mineralizations. Yeşilhisar mineral spring, ACMS, TGS and BTMS are oversaturated in terms of calcite, aragonite, dolomite, goethite and hematite, and undersaturated with respect to gypsum, halite and anhydrite. Yeşilhisar mineral spring, ACMS and BTMS are also characterized by recent travertine precipitation. Dokuzpınar cold spring is undersaturated in terms of the above minerals. The higher ratios of Ca/Mg and Cl/HCO3, and lower ratios of SO4/Cl in BTMS than TGS suggest that TGS has shallow circulation compared to BTMS, and/or has much more heat-loss enroute the surface. The sequence of hydrogeochemical and isotopic compositions of the waters is in an order of DPS>YMS>ACMS>TGS>BTMS and this suggests a transition period from a shallow circulation to a deep circulation path.  相似文献   
806.
Different types of free water have been analysed for their deuterium and chemical composition in order to evaluate their source, mixing phenomena, and the underground dynamics. All types of ground water (mineral, geothermal and wellhead water) display δD values (− 82.6‰ to − 72.6‰) similar to surface waters from the studied area (− 77.1‰ to − 73.6‰). The global salt content varies from 1102 to 8707 mg/l for the groundwater, and from 46 to 392 mg/l for the surface water. From the co-variation between the δD values and the chemical composition of the waters, as well as from the seasonal variation of these two parameters, it is evident that the free water from Tuşnad Băi are meteoric in origin. The mineralization of the mineral water took place by means of an intense underground circulation, probably in the fault system developed within the Neogene magmatites.  相似文献   
807.
Original isotopic and chemical data are reported on the groundwater and gases from the unique occurrence of mineral water in the coastal zone of southern Primorye. Results of the δ18O and δ2H analysis of the underground and surface water of the area integrated with their δ13C composition made it possible to solve the problem of the genesis and evolution of groundwater and gases in the coastal part of the Sea of Japan. It was established that meteoric waters penetrate into the Mesozoic terrigenous rocks and changed their chemical composition under the influence of transformation of organic matter from the host rocks. CO2 released owing to reactions provides multiple enrichment of the water in HCO3 and stimulates Na influx via dissolution of aluminosilicates.  相似文献   
808.
This work reports new hydrochemical data on the two types of cold high p CO2 groundwaters from the Mukhen deposit (Khabarovsk district). The first type is classed with HCO3-Ca-Mg waters with a relatively low TDS (up to 1.7 g/l) and high concentrations of Fe2+, Mn2+, Ba2+, and SiO2. The second type is of HCO3-Na composition with high TDS (up to 14 g/l) and elevated Li+, B, Sr2+, Br?, and I?. New oxygen (δ18O) and hydrogen (δD) isotopic data on the waters and carbon (δ13C) isotopic data on the gas phase, together with a detailed geological and hydrogeological analysis of the study area, allowed us to decipher the origin of both the mineral waters. Based on the tritium content (3H) in the ground and surface waters of the area, the duration of the mineral water circulation was estimated. It was established that the both types of groundwaters were formed during interaction of meteoric water with bedrock under active influence of CO2, however HCO3-Na groundwaters have longer residence time than HCO3-Ca-Mg groundwaters.  相似文献   
809.
鄂尔多斯沙区天然水体水化学组成及其成因   总被引:2,自引:0,他引:2  
任孝宗  杨小平 《地理学报》2021,76(9):2224-2239
天然水体水化学组成及其成因分析既有助于重塑和预测区域水文地质环境及水文地球化学发展历史,也是水资源评价的基础。本文基于鄂尔多斯沙区天然水体水化学数据和前人在该地区的研究成果,利用多种水化学分析方法,对该地区天然水体的水化学组成及其成因进行分析。结果表明:鄂尔多斯沙区毛乌素沙地和库布齐沙漠虽然具有不同的沙漠景观,但其相同类型的天然水体具有相似的水化学性质和成因,该现象的出现可能和两者具有相似的蒸发量有关。鄂尔多斯沙区受蒸发影响较小的深层地下水水化学类型以Ca2+-HCO3-型为主,其水化学组成主要受控于岩石风化;湖水蒸发较强烈,水化学类型为Na+-Cl-型,其水化学组成主要受控于蒸发—结晶过程的影响;浅层地下水和河水的水化学类型及其成因均处于两者之间,具有过渡特征。离子比例关系显示,蒸发岩风化、碳酸盐岩风化和硅酸盐岩风化在不同程度上影响着深层地下水、浅层地下水和河水的水化学组成。鄂尔多斯沙区地下水和河水虽然能满足灌溉水要求,但由于蒸发强烈,长期使用可能会引起盐碱化。本研究结果可为区域水资源可持续开发利用提供科学依据。  相似文献   
810.
A statistical evaluation of the results of geochemical analyses of geothermal waters during interlaboratory comparison programmes of the International Association of Geochemistry and Cosmochemistry (IAGC) and International Atomic Energy Agency (IAEA) was performed to estimate the uncertainty of measurement of pH, electrical conductivity, Na+, K+, Ca2+, Mg2+, Li+, Cl?, HCO3?, SO42?, SiO2 and B. The uncertainty of measurement was found to increase exponentially with decrease in value (concentration) for all the parameters except for pH, electrical conductivity and SiO2 and was of the same order of magnitude as the concentrations for values of less than 1 μ ml?1. There was an overall uncertainty of ± 2.5% in the measurement of pH and ± 30% in SiO2. For all the other chemical species the uncertainty data were modelled by exponential curves. The sample IAEA14 was prepared by dissolving commercial reagents (i.e., represents a solution of known composition). Thus, the calculated values are considered to be the conventional true values for each chemical parameter. The difference between the measured mean of the data submitted by participating laboratories and the conventional true value for each parameter (i.e., bias of submitted measurements) for the species Na+, K+, Ca2+, Mg2+, Cl? and SO42? was ‐3.5, ‐1.1, ‐13.3, ‐53.6, ‐12.6 and ‐86.6%, respectively. The observed bias was of the same order of magnitude as statistical fluctuations (1s) for Na+ and K+, but significantly higher for Ca2+, Mg2+, Cl? and SO42?. Two methods, uncertainty interval and GUM (“guide to the expression of uncertainty of measurement”) were used to propagate uncertainty in the pH calculation of geothermal reservoir fluid. The application of the methods is illustrated by considering the IAEA10 and IAEA11 samples analysed in the interlaboratory comparisons as separated geothermal waters at atmospheric pressure.  相似文献   
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