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41.
初论塔里木盆地砂岩储层中SiO2的溶蚀类型及其机理   总被引:8,自引:2,他引:8       下载免费PDF全文
根据显微镜观察,塔里木盆地砂岩储层中SiO2溶蚀分为石英颗粒边缘溶蚀、次生加大边溶蚀和交代溶蚀。通过对石英颗粒和加大边溶蚀特征及其与粘土矿物组合、与碳酸盐胶结、与古油藏破坏以及现今油田水中Si离子含量等关系的综合研究,这些SiO2溶蚀可能存在两种机理:碱性环境下的SiO2溶蚀和有机酸(烃类微生物降解产生的有机酸以及有机质成熟产生的有机酸)引起的SiO2溶蚀。第一种溶蚀类型较普遍,但程度微弱;第二种溶蚀类型主要发生在古油藏破坏和有机质成熟过程中,这种溶蚀较强烈但很局限。SiO2的溶蚀作用可以为油气提供一定量的储集空间,这对于深埋的时代较老的志留-泥盆系储层具有重要意义。在古油藏中尽管烃类已经充注储层孔隙,但只要孔隙中存在有机酸或碱性孔隙水,SiO2的溶蚀和石英次生加大的胶结等作用仍可进行。  相似文献   
42.
新疆东准噶尔地区的萨惹什克锡矿呈脉状产于萨北花岗岩体中。对于这种脉状矿床,成岩和成矿近时性的时间制约是证明矿床与围岩有成因关系的首要证据。萨北岩体由含碱性铁铁矿物的碱性花岗岩组成,全岩地球化学结果显示,碱性花岗岩具高碱、低 Ca,明显富集稀土元素、高场强元素(Zr,Hf,Nb,Ta,Y)和大离子亲石元素(Rb,Th,U),而强烈亏损Sr,Ba,Eu,属于典型的碱性 A 型花岗岩。锡矿脉由占绝对优势的锡石和石英组成,受北东和近东西向的断裂破碎带控制。原有研究证实,形成该锡矿床的成矿流体属于具高温、低盐度和低密度的岩浆水。据此并结合锡矿体的围岩性质,前人认为锡矿床与碱性花岗岩有成因联系。但是,由于分析技术和样品选择上的制约,萨北岩体成岩和萨惹什克锡矿成矿的确切时代一直没有得到合理的解决。本文报道了我们最近获得的碱性花岗岩锆石 LA-ICP-MS U—Pb 和锡矿石辉钼矿 Re-Os 同位素年龄(分别为306±3Ma 和307±11Ma)。上述结果表明,萨北碱性花岗岩和萨惹什克锡矿石属于同期地质事件的产物,从而为两者具有密切成因联系提供了重要的年代学制约。此外,根据碱性花岗岩的ε_(Nd)(t)(≈ 5.0)低于研究区亏损地幔4.5个ε单位,我们认为形成萨北岩体的花岗岩浆不是直接来源于亏损地幔玄武质岩浆结晶分异作用的产物,而更可能是起源于本区年轻洋壳和陆源沉积物的部分熔融。  相似文献   
43.
沉水植物黑藻对上覆水中各形态磷浓度的影响   总被引:16,自引:2,他引:16  
室内模拟研究了沉水植物黑藻对上覆水中不同形态磷浓度的影响及其季节性变化,并从沉水植物生长、间隙水和碱性磷酸酶活性(APA)三方面进行了讨论,进一步揭示磷在浅水湖泊水-沉积物界面的交换机理。结果表明,在本研究条件下,上覆水中各形态磷以溶解性总磷(DTP)为主,其他形态磷浓度变异较大,黑藻降低了上覆水中总磷(TP)、溶解性活性磷(SRP)和DTP浓度,也降低了DTP和SRP占总磷的比例,从而使颗粒态总磷(PP)和溶解性有机磷(DOP)占总磷比例升高。黑藻主要通过吸收上覆水中的磷和抑止沉积物、上覆水中APA使上覆水中各形态磷浓度保持较低水平,其中对SRP和DTP浓度的影响更明显。上覆水中各形态磷浓度呈现明显的季节性变化。在7~8月,TP、SRP和DTP浓度呈下降趋势,并在8月达到最低值;9~10月间有所升高,但仍然维持在较低水平,不同采样时间存在波动。  相似文献   
44.
第三纪富金斑岩型铜矿床主要发育于板块汇聚边缘与俯冲作用相关的火山-岩浆弧以及陆缘弧中,而大多数较古老的富金斑岩型铜矿床则主要发育于向大陆边缘增生的岛弧环境中.含矿斑岩的岩性变化范围从低钾钙碱性闪长岩、石英闪长岩和英云闪长岩到高钾钙碱性石英二长岩到碱性的二长岩及正长岩,通常侵位于地壳浅部l~2km处,与同期的火山岩密切共生,并常见热液爆破角砾岩.其围岩蚀变从早到晚依次可分为Ca-Na硅酸盐蚀变、K硅酸盐蚀变、中级泥质蚀变、绢云母化、高级泥质蚀变,而浅部的高级泥质蚀变可以与早期K硅酸盐蚀变同期形成.Cu、Au矿化主要发育在K硅酸盐蚀变带中,矿化与A型脉密切相关,贫钼而富铂族元素.控制富金斑岩型铜矿床形成的几个关键过程包括:(1)源区有大量的Cu、Au等成矿元素;(2)能使Cu、Au等成矿物质有效进入岩浆熔体的机制;(3)合成矿元素的岩浆熔体在从地幔上升到地壳高侵位而形成斑岩体的过程中没有Cu、Au等成矿物质损失;(4)在岩浆上升演化过程中,岩浆挥发份能有效的逸出,并且逸出的时间越早,对成矿越有利;(5)Cu、Au等成矿元素能有效进入岩浆挥发份;(6)在成矿斑岩体上部发育有利的相对封闭机制,阻止岩浆挥发份的逃逸;(7)含Cu、Au成矿流体的有效沉淀机制;(8)具有一个地壳上部的岩浆房,能够不断提供成矿物质和驱动热液循环的热能.要形成大型矿床一般需要多期岩浆脉动侵位与多期矿化热液蚀变事件的叠加.现多倾向认为交代的地幔楔可能是其主要物质来源.而有利于富金斑岩型铜矿床形成的岩浆有钾质钙碱性岩浆、埃达克质岩浆、碱性弧岩浆.俯冲板片脱水形成的流体或者熔融产生熔体提供了上覆地幔楔熔融的高氧逸度条件,这种高氧逸度特征是地幔源区Cu、Au成矿元素能否进入岩浆熔体的重要条件之一.最近研究表明流体的冷却可能是Cu、Au沉淀成矿最主要的因素.本文扼要介绍了富金斑岩型铜矿的矿床地质特征、矿床成因等方面的研究进展,分析了存在的主要问题并对其发展趋势作了展望.  相似文献   
45.
Although hydrocarbon-bearing fluids have been known from the alkaline igneous rocks of the Khibiny intrusion for many years, their origin remains enigmatic. A recently proposed model of post-magmatic hydrocarbon (HC) generation through Fischer-Tropsch (FT) type reactions suggests the hydration of Fe-bearing phases and release of H2 which reacts with magmatically derived CO2 to form CH4 and higher HCs. However, new petrographic, microthermometric, laser Raman, bulk gas and isotope data are presented and discussed in the context of previously published work in order to reassess models of HC generation. The gas phase is dominated by CH4 with only minor proportions of higher hydrocarbons. No remnants of the proposed primary CO2-rich fluid are found in the complex. The majority of the fluid inclusions are of secondary nature and trapped in healed microfractures. This indicates a high fluid flux after magma crystallisation. Entrapment conditions for fluid inclusions are 450–550 °C at 2.8–4.5 kbar. These temperatures are too high for hydrocarbon gas generation through the FT reaction. Chemical analyses of rims of Fe-rich phases suggest that they are not the result of alteration but instead represent changes in magma composition during crystallisation. Furthermore, there is no clear relationship between the presence of Fe-rich minerals and the abundance of fluid inclusion planes (FIPs) as reported elsewhere. δ13C values for methane range from − 22.4‰ to − 5.4‰, confirming a largely abiogenic origin for the gas. The presence of primary CH4-dominated fluid inclusions and melt inclusions, which contain a methane-rich gas phase, indicates a magmatic origin of the HCs. An increase in methane content, together with a decrease in δ13C isotope values towards the intrusion margin suggests that magmatically derived abiogenic hydrocarbons may have mixed with biogenic hydrocarbons derived from the surrounding country rocks.  相似文献   
46.
The Sivamalai alkaline complex lies at the southern margin of the Cauvery Shear System that separates the Archaean and Proterozoic domains of the Southern Granulite Terrain in India. U–Pb TIMS dating of zircon from a pegmatitic syenite sample in the complex yields a concordant age of 590.2 ± 1.3 (2σ) Ma which is interpreted to date the intrusion of the alkaline rocks. A lower concordia intercept at 168 ± 210 Ma defined by two grains with high common lead may indicate post-magmatic disturbances due to recrystallisation which is also evident in the CL images of the zircons. EPMA dating of monazite from a post-kinematic pegmatite which intrudes the crystalline basement hosting the alkaline rocks yields an age of 478 ± 29 (2σ) Ma and provides a lower bracket for the main phase of tectonism in this part of the Southern Granulite Terrain. The Pan-African high-grade metamorphism and ductile deformation has thus most likely affected the alkaline rocks. This is supported by the presence of a metamorphic foliation and extensive recrystallisation textures seen in the rocks. The major and trace element concentrations measured on selected samples reveals the presence of both enriched and depleted rock types. The enriched group includes ferrosyenite and nepheline syenite while the depleted group has only nepheline syenites. The trace element depletion of some nepheline syenites is interpreted to be a result of fractional crystallization involving the removal of accessory phases like zircon, titanite, apatite and allanite.  相似文献   
47.
Alkaline phosphatase activity (APA) and the availability of dissolved organic phosphorus (DOP) to marine algae were determined in Xiamen Bay and in algal batch culture systems. Results showed that APA changed with seasons, increasing to the highest value in summer and decreasing to the lowest in autumn and spring in Xiamen Bay. Tests on natural populations of planktonic algae and bacteria community showed that algae were mostly responsible for DOP utilization, while bacteria could not take up DOP compounds. Results from algal batch cultures also supported the above conclusion. Relationships between APA and environmental factors indicated that APA was negatively correlated with phosphorus level such as phosphate and small molecular DOP, and APA played an important role in utilization of DOP by algae. All the results emphasized the ecological significance of DOP in subtropical coastal waters.  相似文献   
48.
The sheeted quartz–sulfide veins of the Radzimowice Au–As–Cu deposit in the Kaczawa Mountains are related to Upper Carboniferous post-collisional potassic magmatism of the composite Zelezniak porphyry intrusion. Multiple intrusive activity ranges from early calc-alkaline to sub-alkaline and alkaline rocks and is followed by multiple hydrothermal events. Early crustally derived dacitic magma has low mg# (<63) and very low concentrations of mantle-compatible trace elements, high large-ion lithophile elements (LILE), moderate light rare-earth elements (LREE), and low high-field-strength elements (HFSE). Later phases of more alkaline rocks have higher mg# (60–70), and LILE, LREE, and HFSE characteristics that indicate mafic magma contributions in a felsic magma chamber. The last episode of the magmatic evolution is represented by lamprophyre dikes which pre-date ore mineralization and are spatially related to quartz–sulfide–carbonate veins. The dikes consist of kersantite and spessartite of calc-alkaline affinity with K2O/Na2O ratios of 1.1–1.9, mg# of 77–79, and high abundances of mantle-compatible trace elements such as Cr, Ni, and V. They have high LILE, low LREE, and low HFSE contents suggesting a subduction-related post-collisional arc-setting. The mineralization started with arsenopyrite that was strongly brecciated and overprinted by multiple quartz–carbonate phases associated with base-metal sulfides and Au–Ag–Bi–Te–Pb±S minerals. The sulfur isotope composition of sulfides ranges from –1.1 to 2.8 34S and suggests a magmatic source. At least two generations of gold deposition are recognized: (1) early refractory, and (2) subsequent non-refractory gold mineralization of epithermal style. Co-rich arsenopyrite with refractory gold and pyrite are the most abundant minerals of the early stage of sulfide precipitation. Early arsenopyrite formed at 535–345°C along the arsenopyrite–pyrrhotite–loellingite buffer and late arsenopyrite crystallized below 370°C along the arsenopyrite–pyrite buffer. Non-refractory gold associated with base-metal sulfides and with Bi–Te–Ag–Pb–S mineral assemblages has an average fineness of about 685, and is represented by electrum of two generations, and minor maldonite (Au2Bi). Fluid inclusions from various quartz generations co-genetic with base-metal sulfides and associated with carbonates, tellurides and non-refractory gold indicate fluids with moderate salinity (9–15 wt% NaCl equiv.) and a temperature and pressure drop from 350 to 190°C and 1.2 to 0.8 kbar, respectively. According to the result of the sulfur isotope fractionation geothermometer the temperature of base-metal crystallization was in the range from 322 to 289°C. Preliminary results of oxygen isotope studies of quartz from veins indicate a gradual increase in the proportion of meteoric water in the epithermal stage. The gold to silver ratio in ore samples with >3 ppm Au is about 1:5 (geometric mean). Hydrothermal alteration started with sericitization, pyritization, and kaolinitization in vein selvages followed by alkaline hydrothermal alteration of propylitic character (illitization and chloritization), albitization and carbonatization. The mineralization of the Radzimowice deposit is considered as related to alkaline magmatism and is characterized by the superposition of low-sulfidation epithermal mineralization on higher-temperature and deeper-seated mesothermal/porphyry style.Editorial handling: B. Lehmann  相似文献   
49.
Limnological characteristics of Lake Burdur in Lake District in south‐western Turkey are presented. It is a deep, tectonic (estimated max. depth 100 m), athalassic, highly alkaline, and saline lake. A set of physical and chemical variables was monitored, phyto‐ and zooplankton was sampled from surface layer of the lake during 1997. Physico‐chemical variables indicated that the lake is hyposaline and composed of some hydrochemically different water layers formed by groundwater sources located on the bottom of the lake. The phytoplankton composition of Lake Burdur consisted of Cyanophyta, Chlorophyta, Bacillariophyta, Dinophyta, and Chrysophyta. The abundance and number of species of Chlorophyta and Cyanophyta were higher than the other taxa. The zooplankton composition of the Lake consisted of Rhizopoda, Rotifera, and Crustacea. Number of species of Rotifera was higher than the other taxa. The diversities of the phyto‐ and zooplankton were calculated according to the Shannon‐Weaver diversity index. The diversity of each group was found to be low in the lake.  相似文献   
50.
张招崇  李树才 《岩石学报》2000,16(3):327-336
镜泊湖地区全新世玄武岩分布在镜泊湖西北方向的“火山口森林”地区和蛤蟆塘地区。这两个地区相距只有15km,但其玄武质岩石在岩石学上具有明显的区别,前者为碱性橄榄玄武岩,后者为白榴石碱玄岩,并且具有钛角闪石、金云母和歪长石巨晶,而前者则没有这些巨晶。对它们的地球化学特征研究表明,两个地区的玄武夺石虽然均属于偏钠质的碱性玄武岩,但是白榴石碱玄岩相对于碱性橄榄玄武岩总体上具有高的Al2O3、Na2O、K2  相似文献   
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