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1.
兰州市一次沙尘暴期间PM10的矿物组成特征   总被引:1,自引:1,他引:0  
为研究兰州市2006年3月31日沙尘暴期间及之前大气PM10中的矿物学特征,运用场发射扫描电镜和带能谱的扫描电镜识别和统计了PM10中单个颗粒的微观形貌特征和矿物组成.结果表明,沙尘暴期间PM10的质量浓度是一个突增渐降的过程,沙尘暴到来时,PM10的质量浓度在短时间内增至约1500 μg/m3,然后随着沙尘暴的消退逐渐降低,在较长时间内保持较高的浓度值,期间主要为矿物颗粒;沙尘暴之前,PM10的质量浓度普遍高于国家二级标准(150 μg/m3),最高可达500 μg/m3,主要颗粒类型有燃煤飞灰、烟尘集合体和少量的矿物颗粒.单颗粒矿物分析表明,沙尘暴之前的非沙尘暴期,单个矿物颗粒的数量百分比从大到小依次为方解石、石英、伊利石、绿泥石、伊/蒙混层、钙长石、钠长石、钾长石、高岭石和石膏等,沙尘暴期间,矿物颗粒中伊利石和绿泥石的数量百分比明显增加,而方解石含量明显减少.  相似文献   

2.
可可西里盐湖表层沉积物中粘土矿物的环境信息   总被引:1,自引:0,他引:1  
通过对可可西里盐湖表层沉积物中粘土矿物的研究,以期获得近年来湖区的某些环境信息.研究结果表明:沉积物中的粘土矿物主要为伊利石和绿泥石,非粘土矿物主要为石英、方解石和长石以及少量白云石、文石、闪石和石膏等.样品中<2μm的粘土矿物以伊利石和绿泥石为主,局部样品含少量有序伊/蒙混层.根据样品分布特点和粘土矿物的组合类型,将样品划分为3个区域:1区和3区的矿物组合为伊利石、绿泥石和有序伊/蒙混层;2区为伊利石和绿泥石,无伊像混层矿物.其中1区和3区样品的结晶度(IC)范围为0.41~0.59,均值为0.51;2区样品的结晶度范围为0.25~0.40,均值为0.34,明显低于1区和3区,说明2区样品中的伊利石具有更高的结晶度.样品的伊利石化学指数(CI)均小于0.5,表明该伊利石为富Fe-Mg伊利石,主要是物理风化作用的结果.伊利石和绿泥石作为主要粘土矿物反映了近年来整个湖区的环境以干冷为主,局部区域(1区和3区)出现的少量有序I/S混层矿物则指示在短期内曾经历过短暂的干湿交替环境.此外,在酸性介质条件下,少量伊利石发生弱水解作用导致晶格中的K+淋失,并转化为伊/蒙混层矿物,同时也降低了伊利石的结晶度.  相似文献   

3.
南海NS93-5柱样的矿物学特征及矿物沉积序列   总被引:9,自引:0,他引:9  
颜文  陈忠  王有强  陈木宏 《矿物学报》2000,20(2):143-149
矿物及其组合研究是探讨成岩成矿及环境变化的一个重手段,也是近年来沉积序列划分以及古环境重建和古气候对研究中新的探索点。南海南部NS93-5柱系统的矿物学分析表明,其矿物成分主要由耐碳酸盐矿物、碎屑矿物和粘土矿物三大类组成,从含量上可以分为三组,即主导矿物(方解石)、次要矿物(伊利石和石英)及少量矿物(包括斜长石、绿泥石、高岭石、钾长石、蒙脱石和石膏)。根据柱样中矿物含量及某些特征矿物参量的深度变化  相似文献   

4.
本文提出粘土矿物(特别是含伊/蒙不规则混层粘土矿物)混合物相的X射线定量分析方法——模拟定量法。着重解决在蒙脱石-不规则伊/蒙混层粘土矿物-伊利石组合中,伊/蒙混层粘土矿物的定量分析计算。模拟定量法是对以前的各种粘土矿物X射线定量分析方法的补充。用纯净的蒙脱石、伊利石、高岭石、绿泥石及各种伊/蒙混层比的伊/蒙混层粘土矿物,配制了各种不同组合的粘土矿物混合样品,制成定向薄膜片,进行了X射线分析,讨论了各种组合的粘土矿物混合物相X射线衍射图谱的特征,并在此基础上提出了粘土混合物相定量分析的方法。  相似文献   

5.
为揭示临夏盆地晚渐新世沉积物的矿物组成对环境气候的指示意义, 利用X射线衍射和扫描电子显微分析方法, 对临夏盆地晚渐新世的沉积物的矿物组成以及坡缕石的矿物学特征进行了深入的研究.结果表明, 沉积物中的坡缕石主要为自生成因, 极少量具有碎屑成因.自生成因的坡缕石呈细长丝状的形态特征, 往往沿片状的伊/蒙混层粘土矿物颗粒的边缘交代、生长;碎屑成因的坡缕石呈平直细纤维状的, 以单颗粒形式产出, 与细小的粘土矿物颗粒混杂, 或叠合在片状粘土矿物颗粒的表面.在临夏盆地晚渐新世沉积物中, 下段岩层中的粘土矿物组合为伊利石、伊/蒙混层粘土和高岭石;中段岩层的为伊利石、伊/蒙混层粘土;而上段岩层则为伊利石、伊/蒙混层粘土和绿泥石, 反映在盆地形成之后, 气候演化经历从湿润→冷干的变化过程.而沉积物中坡缕石的含量自下而上逐渐增多, 其分布特征与粘土矿物组合所反映的气候环境变化趋势相吻合.伊利石和伊/蒙混层粘土普遍存在于临夏盆地晚渐新世沉积物中, 伊利石、伊/蒙混层粘土和高岭石的共存表明这些粘土矿物具有不同的来源.坡缕石是干旱、半干旱地区泥灰岩风化以及风成沙漠尘土沉积物的特征矿物, 临夏盆地晚渐新世的沉积物中碎屑成因坡缕石的发现, 表明自~9Ma以来便出现风成黄土的沉积.   相似文献   

6.
运用X射线全岩衍射和扫描电镜等技术,对湘西北地区下志留统龙马溪组的页岩矿物组成进行了定性和定量分析。龙马溪组页岩主要矿物成分是石英(48.1%)、黏土矿物(34.0%)和长石(11.5%),且含有少量方解石、白云石和黄铁矿等;黏土矿物呈伊利石、有序的伊/蒙混层和少量绿泥石以及微量高岭石的组合特征,其中伊利石和伊/蒙混层含量较高,分别达到64.7%和21.7%,反映出龙马溪组页岩达到晚成岩作用阶段。龙马溪组处于浅水陆棚向深水陆棚过渡的沉积环境,页岩有机质易于富集和保存。页岩岩心样品脆性矿物含量分布在34.4%~79.6%之间,平均脆性指数达65.4%,具备较好的压裂改造条件。与周边焦石坝页岩气田等相比,龙马溪组页岩矿物组成具有相似性,反映湘西北具备页岩气勘探开发的地质潜力。  相似文献   

7.
黄骅坳陷三马地区中-深部储层成岩作用及主控因素分析   总被引:12,自引:2,他引:12  
黄骅坳陷三马地区储集岩样品的显微特征及成岩矿物的组合关系分析结果表明,三马地区下第三系中深层储层主要处于晚成岩A期,成岩现象包括石英、长石的次生加大、碳酸盐矿物胶结作用、矿物交代作用、溶解作用和粘土矿物转化作用等。其中石英次生加大于2700m左右开始出现,随埋深增大,石英增生加强;长石次生加大现象不十分普遍;碳酸盐胶结作用包括早期自生泥晶方解石胶结作用、连晶方解石和晚期白云石(或铁方解石)的胶结作用。在扫描电镜下可见到方解石与含铁方解石集合体充填在粒间孔隙中或与石英、钠长石及粘土矿物共生,白云岩多呈菱形粒状分布于粒间;常见的交代现象主要有方解石交代长石、石英及粘土矿物,粘土矿物交代长石、石英等;溶解作用主要有长石的溶解、碳酸盐颗粒的溶解和方解石胶结物的溶解等,粘土矿物的转化主要为蒙脱石、高岭石向伊利石(或绿泥石)转化。还讨论了储层岩相、岩性特征、孔隙水中有机酸含量、早期方解石的充填、烃类早期注入等因素对储层成岩演化的控制作用。  相似文献   

8.
李玉梅  赵澄林 《沉积学报》1998,16(1):126-131
在柴达木盆地阿尔金斜坡第三系地层中,砂岩中碳酸盐重结晶强烈、压实程度弱、石英自生加大较弱、早期碳酸盐胶结物发育。碳酸盐主要为无机成因,少量与生物气有关,其含量受盐度的影响。泥岩中粘土矿物以伊利石、绿泥石和伊蒙混层为主,缺少蒙脱石和高岭石,随埋深增加,伊利石相对含量变化无规律可循,绿泥石相对含量减少,推测伊利石主要为陆源成因。  相似文献   

9.
李玉梅  赵澄林 《沉积学报》1998,16(1):127-131
在柴达木盆地阿尔金斜坡第三系地层中,砂岩中碳酸盐重结晶强烈、压实程度弱、石英自生加大较弱、早期碳酸盐胶结物发育。碳酸盐主要为无机成因,少量与生物气有关,其含量受盐度的影响。泥岩中粘土矿物以伊利石、绿泥石和伊蒙混层为主,缺少蒙脱石和高岭石,随埋深增加,伊利石相对含量变化无规律可循,绿泥石相对含量减少,推测伊利石主要为陆源成因。  相似文献   

10.
采用X射线衍射、偏光显微镜和扫描电镜对赋存在临泽县北部杨台洼滩盆地中白杨河组地层上部凹凸棒石黏土的矿物成分、形貌和赋存状态进行了研究。结果表明,矿物成分除黏土矿物外,还含有石英、长石、方解石、白云石、石膏等其他矿物。黏土矿物以凹凸棒石和伊利石为主,还含有一定量的绿泥石、高岭石和伊蒙混层矿物。白杨河组地层沉积时期为干旱气候,盆地中的水体不断蒸发使得石膏沉积下来,致使水体中Mg~(2+)和Ca~(2+)的比率和水体的碱性增大。在富Mg~(2+)、碱性的介质条件中,二氧化硅胶体和Mg~(2+)、Al~(3+)、Fe~(3+)随着水体的蒸发结晶析出凹凸棒石。  相似文献   

11.
This work focuses on the relationship between the coal deposition and explosive volcanism of the Miocene basin, NW central Anatolia, Turkey. The coal-bearing Hirka Formation was deposited over the Galatian Andesitic Complex and/or massive lagoonal environments during the Miocene. The investigated lignite is a high ash (from 32 to 58%) and sulphur (from 1.43 to 3.03%) lignite which is petrographically characterised by a high humunite content. The mineral matter of the studied lignite samples is made up of mainly clay minerals (illite-smectite and kaolinite), plagioclase and quartz in Bolu coal field, clay minerals (illite-smectite, smectite and illite), quartz, calcite, plagioclase and gypsum in Seben coal field, quartz, K-feldspar, plagioclase and clay minerals (kaolinite and illite) in K?br?sc?k, and dolomite, quartz, clinoptilolite, opal CT and gypsum in Çaml?dere coal field. The differences in these four types of lignite with specific mineralogical patterns may be due to the explosive volcanic events and depositional conditions which changed from one coal field to the others. There is a zonation from SW to SE in the studied area for zeolites such as Opal CT+smectite-clinoptilolite-analcime-K-feldspar. Carbonate minerals are commonly calcite in Seben and K?br?sc?k coal fields. In Bolu, coal samples are devoid of calcite and dolomite. These analyses show that there is an increase in the amount of Mg and a decrease in the amount of Na from the northwestern part to the southern part in the study area.  相似文献   

12.
The x-ray powder diffraction identification of clay minerals both in bulk samples and in separated clay fraction confirmed the presence of palygorskite in samples of cave sediments from Wadi Haqil (the western slopes of Musandam Mountains; Ras Al-Khaimah Emirate, UAE). Samples contain quartz, gypsum, smectite, kaolinite, calcite, and palygorskite, some of them chlorite, illite, feldspars, and goethite. Calcite dominates in most samples; smectite prevails in clay fraction. After heating, the 001 reflection of chlorite shifts to higher diffraction angles and its intensity decreases; these features indicate that the chlorite represent a Fe-dominant species. Unit-cell dimensions of major phases as refined by the Rietveld method are in agreement with literature data. Chemical composition of palygorskite was derived from unit-cell dimensions as follows: MgO content is 11–14 wt% and Al2O3 10–13 wt%. Clay mineralogy is only hard to ascertain from the scanning electron microscope (SEM) images even after being combined with the energy-dispersive spectrometer data. The SEM was also used to characterize gypsum grains; they often display flow deformation features. Studied cave sediments represent palygorskite-bearing weathering products and desert soils re-deposited from the cave surroundings by slope processes and wind and/or surface runoff. The mixture with other clay minerals, quartz, feldspars, etc. supports this interpretation. Fine-grained quartz fraction is probably wind-blown. Gypsum and calcite are the precipitates (crusts and/or cements), although gypsum can also be re-deposited from omnipresent gypsum-cemented surface sediments.  相似文献   

13.
The Shurijeh Reservoir Formation of Neocomian age is represented by a sandstone sequence, occasionally interbedded with shale, in the Gonbadli gas field, Kopet-Dagh Basin, Northeastern Iran. In this study X-ray diffraction (XRD) and X-ray fluorescence (XRF) techniques were used together to characterize the Shuirjeh clay minerals in 76 core samples collected from two deep Gonbadli wells. The results of XRF analysis showed high percentages of silicon and moderate to low percentages of aluminum, sulfur, calcium, potassium, sodium, magnesium, and iron in both wells. The XRD analysis indicated that the above elements were concentrated in the form of quartz, anhydrite, dolomite, calcite, plagioclase, K-feldspar, hematite, and clay minerals. Further XRD examination of the clay fraction revealed that illite, chlorite, and kaolinite were the major types of clay minerals. Unlike, glauconite, smectite, and a mixed layer clays of both the illite–smectite and chlorite–smectite types were observed only in very few samples. The percentages of individual clay minerals were determined using external standard calibration curves and successfully validated by a system of simultaneous linear equations acquired from detailed elemental information based on the XRF analysis. The error reached ± 5% for the main mineral constituent and ± 15% for minor minerals. A local regression relationship was also derived, based on the XRF elemental information, which can be used to estimate the clay contents of other Shurijeh drilled wells with data of pulsed-neutron spectroscopy tools. According to the proposed quantitative approach, the amount of illite varied considerably, reaching 18.3%. In contrast, the amounts of kaolinite and chlorite were generally small, i.e., less than 8.4%. The amount of total clay minerals changed greatly from a minimum of 5% to a maximum of 32.5%. An increase in illite with increasing burial depth and temperature was an obvious indication of deep burial diagenesis in this formation.  相似文献   

14.
Mineralogical and chemical investigations (<2μm clay separates) of shale samples from the Neogene-age Surma Group obtained from four wells (Habiganj-11, Shahbazpur-1, Titas-11, Titas-15) in the Bengal basin, Bangladesh, were carried out in order to reveal the clay mineral composition as reservoir exploration and exploitation requires a good understanding of the clay minerals. The samples were analyzed by X-ray diffraction (XRD), scanning electron microscope (SEM) and X-Ray fluorescence spectrometry (XRF). Mineralogically, the sub-surface Surma Group shales comprise predominantly quartz, plagioclase, illite, chlorite, kaolinite, with lesser amounts of K-feldspar, dolomite and smectite, and minor to trace amounts of calcite, siderite and pyrite. The chemical composition of the <2 μm clay separates also suggests an illite and chlorite-rich composition. With increasing burial depth, the Surma Group shales are enriched in illite. The gradual decreasing of the smectite clays with depth and ultimate disappearance at greater depths (≥ 3000 m) may have been responsible for the presence of the diagenetic illite. Based on the mineralogical composition it is most likely that the illite-chlorite associations together with quartz and feldspar were predominantly detrital in origin and thus reflect the presence of a rapidly-rising source terrain not subjected to intense weathering.  相似文献   

15.
Inorganic minerals in mudstone are composed of clay minerals,carbonate and detrital minerals.Detrital minerals(such as quartz and feldspar)are mainly original deposit.However,clay minerals(kaolinite,illite,and chlorite)and carbonate(calcite and dolomite)are mostly diagenetic minerals.Furthermore,conversion of the four kinds of clay minerals are common.The formation of clay minerals and carbonate is controlled by temperature,pressure,p H,Eh and type of cations during diagenesis.Therefore mineral assemblage can indicate the characteristics and change of diagenetic environment.In addition to inorganic minerals,there are also organic matter of different sources and chemical properties in mudstone.Traditionally,it is considered that evolution of organic matter is controlled by thermal effect.Now studies show that inorganic and organic matter can interact with each other and form clay-organic complexes.This suggest that attention should be paid to the influence of diagenetic mineral assemblage and diagenetic environment on the evolution of organic matter* Samples of mudstone from 1500-4500m of the Palaeogene in the Dongying Depression,China,were collected to investigate the changes of mudstone diagenetic environment.XRD,thin section and SEM were used to detect diagenetic minerals and assemblage characteristics.Results showed that content of detrital minerals,which are floating in mud matrix or preserved as silt laminae,is basically unchanged from shallow to deep strata.Clay minerals which are gathered as argillaceous matrix or preserved as argillaceous laminae have growth and decline relation to carbonate which mainly appear as micropoikilitic ferriferous calcite and ferriferous dolomite.All these characteristics indicate that detrital minerals are exogenetic,whereas carbonate is diagenetic minerals.Based on the SEM analysis of the clay minerals,it was found that smectite present honeycomb and reticulate structure,while illite present filiform and schistose structure and there are growth and decline relationship between them.Nevertheless,hexagonal tabular and stratified kaolinite has the highest content from 2400m to3300m.Rosette and stratified chlorite shows increase trend when the burial depth is deeper than 3300m.These characteristics indicated that clay minerals are diagenetic minerals and there are conversions among the four types.Therefore form shallow to deep,three diagenetic mineral assemblage zones can be divided based on the characteristics of carbonate and clay minerals in mudstone.Namely,smectite+illite/smectite zone in the depth of 2000-2500m;kaolinite+illite/smectite zone in the depth of 2500-3300m and illite+chlorite+carbonate zone below 3300m.Previous studies showed that kaolinite is stable under acidic conditions,while other clay minerals and carbonate are stable under alkaline conditions.Hence according to mineral assemblages feature,it was inferred that diagenetic environment of mudstonehasundergonethechangeof alkaline-acid-alkaline.For the organic matter with different chemical properties in mudstone,the hydrocarbon generation will be different in the acidic and alkaline diagenetic environment even if the conditions of temperature and pressure are the same.Therefore,for hydrocarbon generation we should not only focus on thermal effect,but also pay more attention to the differences of diagenetic environment which have great significance for the understanding of hydrocarbon generation,hydrocarbon expulsion and reservoir formation in mudstone.  相似文献   

16.
X-ray Diffraction of Dust Particles in Spring Beijing   总被引:1,自引:1,他引:0  
X-ray diffractometry was utilized to study the mineralogical characteristics of the inhalable particles (PM10) sampled during two dust storms in Beijing city on March 18th and May 21st, 2008. We confirm, for the first time, that there stably exists ammonium chloride in the atmosphere when temperature is low. The total sulfates particles were affected by relative humidity. Both species and concentration of sulfates decreased first and then grew back by the end of each dust storm. Koninckite, a phosphate mineral never reported as particulate aerosol before, was identified. Meanwhile, our result shows that a chemical modification on dust minerals occurs during long range transportation. PM10 samples collected during the period of dust storms were dominated by crustal minerals such as quartz, illite/ smectite, illite, chlorite, feldspar and calcite, and were notably higher in concentration than that in normal periods of time. The amounts of total sulfates, calcite and feldspar altered in each dust storm. It is derived from 24-hour isentropic backward trajectories that two dust events in spring 2008 originated in different sources.  相似文献   

17.
Grain size and mineral composition of core sediments were used to investigate influences of various terrestrial and marine conditions, which have prevailed on the southwestern Black Sea shelf during the Holocene. Siliciclastic mud with small amounts of sand and gravel from nearby coastal hinterland is the principal sediment type, whereas sediments deposited near the shelf edge and the Istanbul Strait and off the Duru Lake (a paleo-river mouth) constitued large quantities of sand and gravel of both biogenic and terrigenic origin. Variable amounts of aragonite, 1 nmmicas, quartz, feldspars, calcite and dolomite constitute the dominant non-clay minerals in bulk sediments. The clay mineral assemblage in the 〈 2 μm fraction is made up of smectite, illite, kaolinite and chlorite. Aragonite and calcite are mainly derived from benthic accumulations, whereas feldspars (mainly plagioclase) and smectite reflect magmaticvolcanic provenance and the distribution of 1 nm-micas and chlorite correlate with nearby metamorphic sources onland. Nevertheless, grain size and mineral distribution generally indicate a combination of effects of wind and wave climate, longshore and offshore cyclonic currents, changing sea-level stands and nearby source rock and morphological conditions. It is also suggested that at least part of clay minerals could be derived from the northwesterly Danube River input.  相似文献   

18.
对辽河三角洲大凌河河口湿地地区ZK3钻孔的58个沉积物样品中碎屑矿物和黏土矿物进行鉴定和分析,结果显示:碎屑矿物中轻矿物占比大,平均含量为95.7%,主要包括斜长石(43.89%)、钾长石(28.10%)和石英(22.45%);重矿物平均含量仅为4.3%,主要为普通角闪石(38.03%)、绿帘石(27.51%)和自生重晶石(12.01%)。黏土矿物中伊利石平均含量(50.3%)最高,其次为蒙脱石(24.5%)、绿泥石(12.7%)和高岭石(12.6%),黏土矿物组合为伊利石-蒙脱石-绿泥石-高岭石型。ZK3孔晚更新世以来沉积物的物源有所差异,但总体上来说,除河道和湖相沉积时期物源主要来自大凌河外,其它沉积环境中沉积物主要来自辽河和大辽河,物源相对稳定。黏土矿物组合特征所指示的气候变化过程与本区域的孢粉数据有很好的对应关系:45~31 ka BP处于庐山—大理的间冰期阶段,蒙脱石/(伊利石+绿泥石)比值较大,指示气候温和湿润;31~11 ka BP为大理冰期阶段,蒙脱石/高岭石比值较低,指示气候寒冷干燥;11 ka BP至今为冰后期阶段,随着新仙女木事件(YD)的结束,温度逐渐回升,蒙脱石/(伊利石+绿泥石)比值升高,指示气候温暖湿润。  相似文献   

19.
The Upper Red Formation (URF) comprises over 1–5 km of late Miocene siliciclastic sediments in the Central Iran Basin. The formation is dominated by volcaniclastic conglomerates and arenites. The prevailing arid conditions during most of the basin's history resulted in deposition of predominantly organic‐poor, red sediments with gypsum and zeolites. This investigation concentrates on the mineralogy and geochemistry of the URF in the southern and northern margins of the basin where the formation was buried to depths of 2.4 and 6.6 km, respectively. Fine fraction mineral separates from the southern margin consist of nearly pure smectite and zeolites at a depth of 400 m and smectite with minor quartz and calcite at 1800 m. Shallow samples (1350 m) from the northern section are rich in smectite, illite/smectite with some discrete illite and chlorite. This assemblage is progressively replaced by discrete illite and chlorite with increasing burial depth so that only these two minerals are found at depths greater than 4300 m. The initial alteration process involved replacement of glass and volcanic lithics by smectite and zeolites in both margins of the basin. Increased depth of burial in the northern margin resulted in the progressive isochemical alteration of smectite to discrete illite and chlorite. Diagenesis of clay assemblages occurred essentially in a closed system. Solute products of glass hydrolysis reactions were retained in highly alkaline, saline ground waters from which zeolites, carbonates and oxides precipitated as cements. It is unlikely that these sediments were ever significantly leached by meteoric waters or by organic acids generated during burial diagenesis. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   

20.
The mineralogy and geochemistry data are presented for thirty-seven shales,four concretions,two carbonate sediments and seven lignites from the Marathousa coal field of the Megalopolis Basin in Greece.The argillaceous rocks consist of chlorite,illite,kaolinte,albite,quartz.opal-A,calcite and dolomite;the concretions of aragonite,gypsum and pyrite;and the carbonate rocks of calcite,quartz and illite.The mineral matter in the lignites consists of gypsum,quartz,albite,chlorite,illite,opal-A,dolomite,pyrite,and rarely calcite and kaolinite Athree-factor model explains the total variaition of major and trace elements in the argillaceous sediments.The first factor is an aluminosilicate factor and involves the following elements:Al,Si,Mg,Na,K,Ti,Mn,Nb,Y,Rb,Zn,Cu,Ni,Cr,Nband V,associated with chlorite,albite and illite.The second factor involves the elements Ca,Sr,Ba,Znand Sc and is related to carbonate lithology and mainly the carbonate concretions with gypsum.The third factor involves Fe and Ce with a weak association with Mn.The diagenesis of the Marathousa sediments and lignites was not very advanced as indicated by (a) the total thickness of the sequence (500m),(b) the presence of biogenic silica(opal-A) and (c) the age of the deposit(Pleistocene).FOr these reasons the rpresence of chlorite,illite and kaolinite in the sediments and lignite is due not to diagenetic reactions but to weathering of the flysch and metamorphic rocks at the edges of the Megalopolis Basin and transport of the weathering products(illite,chlorite,kaolinite)into the basin of deposition.The diagenetic minerals of the Marathousa sequence include pyrite,gypsum,dolomite and aragonite.  相似文献   

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