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1.
Mg/Ca比对微生物成因的碳酸盐矿物种类和形态的影响   总被引:2,自引:0,他引:2  
研究Mg/Ca比对生物成因的碳酸盐矿物种类和形态的影响是研究各种含镁方解石形成机理的关键。本文在Mg/Ca摩尔比分别为1、2、4、6和8的条件下进行了为期55d的硫酸盐还原细菌诱导碳酸盐矿物形成的实验,利用X射线衍射仪和扫描电子显微镜研究了Mg/Ca比对碳酸盐矿物种类和形态的影响。实验结果表明:①Mg/Ca比与矿物的种类之间存在密切的关系。在Mg/Ca摩尔比较低(1和2)时仅形成高镁方解石,在Mg/Ca摩尔比为4时,形成的矿物组合为含镁方解石+高镁方解石,在Mg/Ca摩尔比为6和8时,矿物组合为高镁方解石+单水碳钙石+钙白云石;②Mg/Ca比影响矿物的生长速率。Mg/Ca比越高,晶体生长速率越快;③Mg/Ca比明显影响矿物的形态。随着Mg/Ca比的增大,矿物的形态有如下发展规律:哑铃形→花菜状→光球状→刺球状。这些研究结果将有助于探讨制约含镁碳酸盐矿物种类和形态的机制。  相似文献   

2.
为了探讨细菌作用下碳酸盐矿物的形成机理,本文对分离自土壤的一株柠檬酸杆菌GW-M菌株进行了为期165d的培养 实验。利用X-射线衍射技术对沉淀物的矿物成分进行了测定,利用扫描电子显微镜对沉淀物的形态进行了系统的观察。结果 表明,GW-M菌株诱导形成的碳酸盐矿物(方解石和单水碳钙石)具有多种形态共存并以球状为主的特点,而无菌对照实验产 物中的矿物形态则比较单一。在GW-M菌株的作用下,通过以下三条途径均可能形成球状矿物:(1)单个哑铃→两端生长→ 球;(2)两个交叉的哑铃→两个哑铃的两端各自生长→球;(3)三个交叉的哑铃→三个哑铃的两端各自生长→球。  相似文献   

3.
梭菌对含镁方解石形态的控制及其可能机理   总被引:1,自引:0,他引:1  
在 Mg/Ca 摩尔比为 4∶1 的 Lagoa Vermelha 培养基中对一株分离自青海湖底沉积物的梭菌 SN-1(Clostridium sp.)进行了为期 55 d 的碳酸盐矿物培养实验,同时还完成了一组无菌对照实验。利用扫描电子显微镜对沉淀物进行了系统的观察,用 X- 射线衍射仪对沉淀物的矿物成分进行了测定。结果表明:(1)SN-1 可以促进特殊形态含镁方解石的形成,而无菌对照实验产物中仅见不规则状的碳酸盐矿物;(2)特殊形态的含镁方解石可能是在细菌表面成核和生长的结果,它们的演化趋势是(杆状)→哑铃形→花菜状→球形。作者认为这是因为梭菌两端的带负电基团比菌体中间丰富,易聚集更多的 Ca2+和 Mg2+,Ca2+和 Mg2+离子作为“阳离子桥”吸引 CO32-,其结果是两端的晶体生长相对较快、中间生长相对较慢,进而形成哑铃形含镁方解石;“哑铃”继续生长,其两端会长成两个“花菜”或半球;若两个半球相接并闭合则发展为球状矿物。  相似文献   

4.
周根陶  郑永飞 《地质科学》2000,35(3):325-335
通过缓慢分解Ca2+-Mg2+-HCO3--Cl--H2O溶液和以菱锶矿(或碳钡矿、白铅矿)为晶种的附晶生长法,在0-90℃温度范围内定向合成了碳酸钙同质多象变体.矿物合成实验结果表明,随着温度升高,有利于亚稳态文石和不稳定六方方解石的生成;随着溶液中Mg2+离子浓度增大和Ca(HCO3)3溶液浓度减小,均有利于亚稳态文石的形成.以XRD和SEM技术为实验手段,详细研究了碳酸钙同质多象转变过程.结果显示:在流体参与的情况下,文石→方解石和六方方解石→方解石的同质多象转变速率很快,并且其转变的矿物学机理为溶解/再沉淀.  相似文献   

5.
微生物促进碳酸盐矿化机理的研究对于全球碳循环和土壤的形成与演化等科学问题具有重要的意义。为了探究细菌胞外碳酸酐酶(CA)在碳酸盐矿化过程中所起的作用,本文采用硫酸铵析出蛋白质和Tris-H2SO4缓冲液溶解蛋白质的方法提取MF-2菌株分泌的胞外CA,将其添加于一水乙酸钙—胰蛋白胨(不含碳酸根)体系中并进行了120 h的化学实验。同时设置一组不含CA的对照实验。实验结束后用离心法将固相和液相分离。利用X-射线衍射仪(XRD)和扫描电子显微镜(SEM/EDS)对沉淀物的矿物成分、元素组成和形态进行了研究,利用电感耦合等离子体发射光谱仪(ICP-OES)测定了溶液中的Ca2+浓度。实验结果表明:(1)在节杆菌属MF-2菌株胞外CA作用下形成了肉眼可见的沉淀物,其重量随着反应时间的延长而逐渐增大,而溶液中钙离子浓度随着反应时间的延长而逐渐降低。用双氧水(30%)处理的结果显示,碳酸盐矿物是沉淀物的主要组分。对照实验形成的沉淀物明显少于CA实验,而且其主要由有机物质组成。这充分地说明,MF-2菌株胞外CA可以显著地促进碳酸盐矿物沉淀。(2)在有胞外CA参与的实验早期(第48 h之前),未形成任何结晶态物质;在实验的中后期,形成的矿物以方解石为主,含少量或不含球霰石。这明显不同于MF-2菌株的培养实验。在后一种情况下仅形成球霰石一种矿物。(3)胞外CA作用下形成的矿物形态包括菱面体形、球形和半球形,其中菱面体形矿物占主导地位。这也有别于MF-2菌株的培养实验(以球状和碗状为主)。对多张SEM照片进行的统计结果显示,菱面体形矿物所占比例有随着反应时间的延长而逐渐降低的趋势(即球形和半球形所占比例逐渐升高),从第48 h的接近100%降低至第120 h的84%。(4)MF-2菌株胞外CA促进碳酸钙沉淀的主要机制是其加速CO2的水化反应,参与反应的CO2可能主要源于空气。   相似文献   

6.
戴永定  刘铁兵 《地质科学》1995,30(4):414-422
生物矿物的形成阶段可分非晶质、过渡、成熟和石化4个阶段。生物矿物在门类由低到高,时代由新到老的分布上存在着一种演化趋向,硫化物→硫酸盐→铁锰氧化物→非晶硅→钙白云石→碳磷灰石→镁方解石→文石→方解石这种演化趋向也重演于个体发育阶段,反映在示序接触关系中。古代原始镁方解石可以根据现实主义原则、铁方解石交代作用、微量元素和同位素成分加以识别。  相似文献   

7.
在4℃的低温条件下,通过模拟纳木错湖水中主要离子种类,控制反应体系中的Mg/Ca摩尔比,探究纳木错单水方解石(MHC)的无机成因,并利用X-射线衍射(XRD)、傅里叶变换红外光谱(FTIR)和电感耦合等离子体发射光谱(ICP-OES)对实验沉淀产物进行了分析。结果表明,单水方解石是通过无定形碳酸钙(ACC)转化而来的,且单水方解石的形成和稳定受溶液中的Mg2+调控。当反应溶液中Mg/Ca 2时,生成方解石和镁方解石;当反应溶液中Mg/Ca 2时,单水方解石生成,并且在溶液中的存在时间随着Mg/Ca摩尔比的增加而增加。Mg/Ca=2时,单水方解石在溶液中仅存在48 h,随后转化为文石和少量镁方解石。单水方解石形成过程中Mg2+的作用主要是抑制方解石成核和生长,使单水方解石能够在溶液中形成并稳定存在。此结果为纳木错单水方解石无机成因提供一定的研究基础。  相似文献   

8.
刚果(布)布谷马西钾盐矿床盐类矿物特征与成因研究   总被引:1,自引:0,他引:1  
刚果(布)布谷马西钾盐矿床位于非洲大陆西部边缘,是白垩纪时期沉积的大型钾盐矿床。文章运用X射线衍射、薄片鉴定、扫描电镜和岩石地球化学等方法,识别出布谷马西钾盐矿的主要盐类矿物有硬石膏、石盐、光卤石、钾石盐、水氯镁石和溢晶石。盐类矿物的沉积顺序为:硬石膏→石盐→光卤石→钾石盐→水氯镁石或溢晶石。该矿区的成盐物质主要来源于海水,盐类沉积物中贫碳酸盐和硫酸盐矿物,可能与白垩纪"方解石海"的海水成分密切相关。矿区中的钾石盐主要是由光卤石淋滤形成。  相似文献   

9.
西藏纳木错沉积物中单水方解石的发现及成因分析   总被引:1,自引:0,他引:1  
单水方解石(CaCO3·H2O)是一种少见的含水碳酸盐矿物,具有重要的环境意义,由于不稳定而很少出现.X射线研究发现,纳木错湖底0~258 cm沉积物中存在单水方解石.单水方解石属三方晶系,六方晶胞,a=0.6080 nm,c=0.7536 nm,z=3.单水方解石的形成经过化学沉积过程,Ca2 先与HCO3-相结合,然后再与OH-结合而成Ca- CO3·H2O,反应进行的条件是生成自由能△G<0.根据相关公式计算,蚋木错表层湖水全年都可以形成单水方解石,纳木错湖水pH=9.4,较高的Mg/Ca摩尔比值(10.03~15.03),成水(矿化度为1.7 g/L)、细菌、绿藻、蓝藻、硅藻和介形类等生物的介入成为通过化学沉积形成单水方解石的直接原因,而碱性环境和低温则是该矿物保存的必要条件.单水方解石出现的时间约为AMS 14C 2.06 cal.ka BP,说明此时纳木错湖水盐度增加,湖水开始咸化.  相似文献   

10.
碳酸盐矿物是黄土的重要组成部分,是古环境重建的重要指标之一.通过对地处西风区的新疆伊犁盆地昭苏黄土剖面的全岩样品和分粒级样品的X射线衍射测试,分析了其碳酸盐矿物组成,利用麦夸特算法计算了碳酸盐矿物的含量.综合碳酸盐矿物的含量、粒径分布及风化特征等因素,对其古环境意义进行了辨识,从而建立了该剖面末次冰期以来碳酸盐矿物记录的古气候环境变化序列.结果表明:昭苏剖面中原生碳酸盐矿物(方解石和白云石)含量占主导地位,次生方解石对样品中总方解石含量的贡献较少;白云石含量可能与亚轨道尺度冷暖交替导致的西风环流强度变化有关;方解石含量的变化可能指示了西风区降水量的变化;碳酸盐矿物含量揭示了昭苏地区在末次冰期时气候冷湿,在全新世时气候暖干.  相似文献   

11.
为了探究培养方式(振荡和静置) 对细菌诱导形成的碳酸盐矿物种类和形态的影响,本文在B4培养基中分别对蜡状 芽孢杆菌(GW-1菌株)、赖氨酸芽孢杆菌(GW-2菌株) 和微杆菌(GW-3菌株) 三种细菌进行了为期40天的振荡培养实验 及相应的无菌对照实验,重点利用X-射线衍射仪和扫描电子显微镜分别对矿物成分和形态进行了测定和观察,并将观测结 果与静置条件下的结果进行了对比。结果表明:(1) 三种细菌均具有促进碳酸盐矿物沉淀的功能,但能力有所不同,从大 到小的顺序为GW-2>GW-1>GW-3;(2) 在振荡和静置两种培养方式下,GW-1和GW-2菌株诱导形成的矿物均为方解石, 而GW-3菌株诱导形成的矿物均为球霰石。这说明细菌种类是影响矿物相的重要因素,培养方式对矿物相无明显的影响; (3) 对于GW-1和GW-2菌株,其在振荡培养条件下诱导形成的矿物形态呈现多样化,而在静置培养条件下形成的矿物形态 则比较单一。对于GW-3菌株,其诱导形成的矿物均为球形,与培养方式无关。  相似文献   

12.
We studied recent sedimentation in small saline and brackish lakes located in the Ol’khon region (western Baikal area) with arid and semiarid climate. The lakes belong to the Tazheran system; it is a series of compactly located closed shallow lakes, with a limited catchment area and different mineralization, under the same landscape, climatic, geologic, and geochemical conditions. Two complementary approaches are applied in the research: (1) a detailed study of individual lake and (2) a comparison of the entire series of lakes, which can be considered a natural model for studying the relationship between endogenic mineral formation and the geochemistry of lake waters. The lake waters and bottom sediments were studied by a set of modern methods of geochemistry, mineralogy, and crystal chemistry. The mineral component of the bottom sediments was analyzed by powder X-ray diffraction (XRD), IR spectroscopy, and electron microscopy. The lakes are characterized by predominant carbonate sedimentation; authigenic pyrite, smectite, chlorite, and illite are detected in assemblage with carbonate minerals in the bottom sediments. Carbonate phases have been identified, and their proportions have been determined in the samples by decomposition of the complex XRD profiles of carbonate minerals into peaks using the Pearson VII function. Mathematical modeling of the XRD profiles of carbonates has revealed that predominantly Mg-calcites with variable Mg content and excess-Ca dolomite accumulate in lake bottom sediments influenced by biogenic processes. Aragonite, monohydrocalcite, and rhodochrosite form in some lakes along with carbonates of the calcite-dolomite series. We show a dependence of the composition of the assemblages of the newly formed endogenic carbonate minerals and their crystallochemical characteristics on the chemical composition of lake waters.  相似文献   

13.
Modeling the bulk sediment XRD patterns allows insight into the environmental and depositional histories of two neighboring rift lake basins within the Baikal watershed. Parallel 14C-dated LGM-Holocene records in Lakes Baikal and Hovsgol are used to discuss the mineralogical signatures of regional climate change. In both basins, it is possible to distinguish ‘glacial’ and ‘interglacial’ mineral associations. Clay minerals comprise in excess of 50% of layered silicates in bulk sediment.The abundance of smectite (expandable) layers in mixed-layer illite–smectites and the total illite abundance are the main paleoclimatic indices in the clay mineral assemblage. Both indices exhibit coherent responses to the Bølling–Allerød and the Younger Dryas. The smectite layer index is not equivalent to the abundance of illite–smectite, because illite–smectite tends to transform into illite. Repeated wetting–drying cycles in soils and high abundance of expandable layers in illite–smectites (>42%) favor the process of illitization. This relationship is clearly shown in both Baikal and Hovsgol records for the first time. The opposite late Holocene trends in illite abundance in Lake Baikal and Lake Hovsgol records suggest that a sensitive optimal regime may exist for illite formation in the Baikal watershed with regard to warmth and effective moisture.The Lake Hovsgol sediments of the last glacial contain carbonates, suggesting a positive trend in the lake's water budget. A progressive change towards lower Mg content in carbonates indicates lowering mineralization of lake waters. This trend is consistent with the lithologic evidence for lake-level rise in the Hovsgol basin.The pattern of mineralogical changes during the past 20 ka is used to interpret bulk sediment and carbonate mineralogy of the long 81-m Lake Hovsgol drill core (HDP-04) with a basal age of 1 Ma. The interglacial-type silicate mineral associations are confined to several thin intervals; most of the sediment record is calcareous. Carbonates are represented by six main mineral phases: calcite, low-Mg calcite, intermediate/high-Mg calcite, dolomite, excess-Ca dolomite and metastable monohydrocalcite. These mineral phases tend to form stratigraphic successions indicative of progressive changes in lake water chemistry. Five sediment layers with abundant Mg-calcites in the HDP-04 section suggest deposition in a low standing lake with high mineralization (salinity) and high Mg/Ca ratios of lake waters. Lake Hovsgol sediments contain the oldest known monohydrocalcite, found tens of meters below lake bottom in sediments as old as 800 ka. This unusual find is likely due to the conditions favorable to preservation of this metastable carbonate.  相似文献   

14.
The Basin Lakes are two adjacent maar lakes located in the centre of the Western Volcanic Plains District of Victoria, Australia. Both lakes are saline and alkaline; West Basin Lake is meromictic whereas East Basin is a warm monomictic lake. The carbonate mineral suite of the modern offshore bottom sediments of these Basins consists mainly of dolomite and calcite, with smaller amounts of hydromagnesite and magnesite in West Basin and monohydrocalcite in East Basin. The dolomite, hydromagnesite, magnesite, and monohydrocalcite are endogenic in origin, being derived by primary inorganic precipitation within the water columns of the lakes or at the sediment-water interface. The calcite is biologically precipitated as ostracod valves. In addition to the carbonates in the modern offshore (deep-water) sediments, the lakes also contain a girdle of nearshore carbonate hardgrounds. Both beachrock and microbialites (algal boundstones) are present. These modern lithified carbonate units exhibit a wide range of depositional and diagenetic fabrics, morphologies and compositions. In West Basin, the hardgrounds are composed mainly of dolomite, hydromagnesite, and magnesite, whereas dolomite and monohydrocalcite dominate the East Basin sediments. Aragonite, high-Mg calcite, kutnahorite, siderite, and protohydromagnesite also occur in these lithified carbonate units. Stratigraphic variations in the carbonate mineralogy of the Holocene sediment record in the lakes were used to help decipher the palaeochemistry and palaeohydrology of the Basins. These changes, in conjunction with fluctuations in organic remains and fossil content, indicate a pattern of lake level histories similar to that deciphered from other maar lakes in western Victoria.  相似文献   

15.
自生碳酸盐矿物是揭示甲烷渗漏过程及其周期性变化的重要指标。为了方便、快速地识别出自生碳酸盐矿物,在探讨了前人建立的端元组分模型(文石、高镁方解石、生物成因方解石和碎屑)在我国南海北部适用性的基础上,利用沉积物全样中Sr/Ca和Mg/Ca值计算了南海北部神狐海域两支沉积物柱状样中自生碳酸盐矿物的质量分数,计算结果表明,在不同沉积深度均有含量不等的自生碳酸盐矿物。这一结果被X射线衍射结果和沉积物中存在晶形完好的自生高镁方解石和文石矿物所验证,表明利用前人建立的端元组分模型计算的结果具有可靠性。自生碳酸盐矿物的出现显示该海域深受甲烷渗漏作用影响。利用地球化学指标(Sr/Ca和Mg/Ca)获得的自生碳酸盐矿物含量垂向变化显示该区域甲烷渗漏具有强弱交替的周期变化。运用端元组分模型来获取沉积物柱状样中自生碳酸盐矿物的高分辨率剖面,从而识别甲烷渗漏信息非常方便,在大范围寻找甲烷渗漏和天然气水合物方面具有较大潜力。  相似文献   

16.
Linxia Basin is a late Cenozoic fault-block basin along the border between the Tibet plateau and the Loess plateau in Northwestern China. Its formation and sediments record may be directly affected by the structural dynamics and the uplift of the Tibet Plateau. For this reason, we studied the mineral characteristics of the Maogou formation of Miocene sediments using X-ray diffraction (XRD) and scanning electron microscopy (SEM). The XRD results showed that quartz, chlorite, illite, calcite, plagioclase, orthoclase, kaolinite, and trace palygorskite are present throughout the sequence of the cross-section in Linxia basin. In contrast, gypsum and ankerite occur occasionally in the upper portion of the Miocene deposits. The content of calcite varied with layers in the profile and was relatively concentrated in mudstone. Chlorite and illite were observed transforming into palygorskite under SEM observation. Based on the mineral characteristics and the change of mineral composition, especially the clay minerals, it could be inferred that an arid environment prevailed in the region with warm and cold intervals during Miocene time.  相似文献   

17.
This study deals with the effect of mechanical treatment, using vibrating mill, on the mineralogy and structure of apatite and associated gangue minerals (dolomite, calcite, quartz, pyrite and gypsum) in Abu-Tartour phosphate ore, Egypt. The evolution of mineralogy, crystallinity and deformation mechanism were evaluated with different techniques (XRD, DTA, TGA and FT-IR). Data obtained using these techniques give a good picture about the mechanochemical behavior of the different components in the ore. X-ray diffraction (XRD) indicated that the mineralogy has been changed quantitatively at short time grinding (30 min). After 45 min of grinding, the sample contained mainly carbonate apatite, quartz and pyrite. On the other hand, dolomite mineral disappeared, while calcite was partially transformed into aragonite. This transformation increased with increasing grinding time. Both Fourier Transform Infrared (FT-IR) and differential thermal analysis (DTA) analyses revealed that remarkable changes in the structural groups have occurred after 45 min of grinding. After 75 min of grinding, the carbonate in the apatite mineral partially decomposed and tricalcium phosphate formed instead. The formation of that simple form (tricalcium phosphate) may be another reason, besides surface area, for increasing the reactivity of phosphate ore by grinding. Scanning electron micrographs (SEM) revealed some idea about the grinding mechanisms of Abu-Tartour phosphate using vibrating mill. They indicate that the different minerals are ground differently. The apatite minerals are ground mostly by abrasion mechanism, while the carbonate minerals are ground mostly by compression. Also, these minerals are ground with different rates, where dolomite is ground faster than calcite, which are referred to the crystal lattice.  相似文献   

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