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1.
松辽盆地北部粘土矿物的成岩演化类型   总被引:6,自引:0,他引:6  
张民志  高山 《矿物岩石》1997,17(3):40-43
面临第三次采油技术研究及应用的大庆油田位于松辽盆地北部,其粘土矿物的研究受到新的重视。本文给出了松辽盆地北部粘土矿物成岩演化的具体类型以及粘土矿物在成岩过程中的演化特征,已经证明了对本区油气勘探开发的重要指导作用,对其他含油气区亦有一定借鉴意义。  相似文献   

2.
柴达木盆地储集层中粘土矿物的分布规律及其影响因素   总被引:1,自引:0,他引:1  
通过对储集层中粘土矿物类型,组合方式和横向分布规律的研究,探讨了影响粘土矿物形成和演化的控制因素,为成岩作用和粘土矿物对储支物性的影响提供信息和参数。  相似文献   

3.
粘土矿物研究在塔里木盆地石油勘探中的应用   总被引:2,自引:1,他引:1  
孙玉善  杨帆 《现代地质》1998,12(2):269-276
以塔里木盆地粘土矿物的分布特征及其组合形式、演化与形成机理为依据,探讨了粘土矿物在地层划分对比中的应用及其与有机质热演化、成岩阶段的关系和对储层物性的影响。研究表明,在侏罗系和白垩系两个不同古环境中形成的粘土矿物及其组合特征,为地层对比提供了一定的证据。泥岩中伊利石/蒙皂石间层中蒙皂石含量的纵向变化与有机质热演化及成岩阶段的关系不大。对储层物性影响不大但有利于储集性能的是以高岭石为主的粘土矿物组合类型及粘土矿物的早期自生(伊利石/蒙皂石间层矿物)衬垫式以及非自生(伊利石)衬垫式产状。  相似文献   

4.
粘土矿物对古气候指示作用浅析   总被引:25,自引:3,他引:25       下载免费PDF全文
由于粘土矿物的成分、组合、含量以及结晶度的变化可以反映母源区气候冷、暖周期性变化,因此利用粘土矿物重建古气候环境近年来得到广泛的应用。然而,由于粘土矿物的敏感性,其气候记录的信息往往会被其他影响因素(如母源区、沉积环境、成岩作用等)掩盖。因此,在利用粘土矿物重建古气候环境时,需要综合考虑气候以及非气候的各种影响因素。  相似文献   

5.
粘土矿物的“水敏效应”是引起砂岩储层伤害的最主要原因之一。本文应用自由膨胀比试验的新方法,测定了胜利油区27个砂岩储层岩心样品,并通过X衍射对样品中粘土矿物含量的测定,建立了储层自由膨胀比与蒙脱石含量之间良好的正相关模型。该方法可以更直观、准确地描述出油气储层中粘土矿物的自由膨胀行为,并定量地反映出粘土矿物水敏性导致的储层潜在伤害,也可以用于油田防膨剂的研制,因此在油气田开发中具有较广泛的应用前景。  相似文献   

6.
海拉尔盆地地质条件及其复杂,储层粘土矿物含量高,极大影响了油气资源的高效开发。通过对X-射线衍射,偏光显微镜观察和扫描电镜分析,确定贝尔凹陷贝16断块兴安岭群粘土类型及含量,阐明了其组合及纵向分布特征,并对水敏性极强的钠蒙脱石及其间层矿物进行了详细研究。研究表明,兴安岭群储层自上而下存在3种粘土矿物组合:S+K+(C)→K+I/S+I+(C)→I+C+S/C+I/S。由地层浅部到深部,粘土矿物含量呈现由高到低的变化规律。凝灰质的水解蚀变及长石和中、酸性岩屑在成岩过程中的次生变化是造成海拉尔地区粘土含量高的主要原因。  相似文献   

7.
珠一坳陷深层砂岩储层孔隙演化研究   总被引:1,自引:1,他引:0  
过去珠一坳陷古近系砂岩储层因埋藏深,其储层物性受到质疑,国内外深部优质储层的不断发现大大拓宽了油气勘探的新领域。通过对砂岩储层的沉积环境、岩石成分、成岩作用、矿物转化等与孔隙特征的关系综合分析发现,胶结作用是导致深部储层物性变差的主要因素,粘土矿物、硅质和硬石膏胶结堵塞了孔隙;深部储层毗邻珠江口盆地最为重要的烃源岩,在中成岩A亚期,有机质处于高成熟阶段,有机质生烃以及粘土矿物在转化过程中所释放出的酸性水的溶解作用是产生大量次生孔隙的重要因素,深部异常超压是孔隙得以保存的条件,珠一坳陷作为油气勘探的新领域,次生孔隙的大量出现和超压对孔隙的保护揭示了其巨大的勘探潜力。  相似文献   

8.
粘土矿物在形成过程中受构造运动、气候、盆地规模、地表母岩、土壤、植被、地貌、介质环境、风以及成岩作用等多种因素的影响,这些因素对地层中粘土矿物的类型和含量的影响程度不一。构造运动和气候是影响粘土矿物形成的两个主要因素,对沉积物中的粘土矿物形成和含量以及影响粘土矿物形成的其他次要影响因素有着控制作用。在构造活动稳定的状态下,气候则成为影响粘土矿物形成和含量的决定性因素,其他因素尽管也有不同程度的影响,但可以看成是相对稳定不变的,粘土矿物携带的主要是气候环境变化的信息。地表水系的复杂程度引起的沉积物的混合程度影响粘土矿物信号的清晰度,沉积埋藏成岩作用对粘土矿物的影响也不容忽视。  相似文献   

9.
在成岩过程中形成的粘土矿物真实地记录了地层形成的成岩温度及其盆地热演化的信息,可以作为沉积盆地的热史指标。本文主要介绍了伊利石/蒙皂石间层矿物(以下简称伊/蒙间层或I/S间层)、伊利石结晶度、绿泥石化学成分三种常用的粘土矿物地温计的发展历史、基本原理和影响因素;回顾了我国沉积盆地热演化研究中粘土矿物地温计的应用现状,并对未来的应用推广工作提出了若干参考建议。  相似文献   

10.
朱莲芳 《沉积学报》1988,6(1):39-49
酒西盆地下白垩统陆相碎屑岩胶结物的形成关系到油气储集的重要问题,富铁的洪积扇沉积体系和非富铁的河流一湖泊沉积体系形成两种不同的胶结物组合类型,平面上可分为三带胶结物:混合胶结带、铁镁胶结带和浓聚成岩带。盆地边缘带是以铁、泥、钙为主的混合胶结物,中间为以碳酸铁镁矿物的白云石、铁白云石为主的胶结物,盆中带形成胶结物的浓聚成岩层,事实证明过渡的铁镁胶结带是最富于聚集油气的地带。本文还在纵向上探讨了泥质粘土矿物和碳酸盐胶结物的成岩变化。  相似文献   

11.
成岩过程中泥岩的成岩矿物会随成岩体系的改变而发生变化,因此有效地识别成岩矿物组合与划分成岩体系,对深刻 理解有机质生烃的差异性具有重要的意义。文章选取东营凹陷古近系不同层段埋深在1200~4500 m的泥岩,通过岩石薄片、 扫描电镜和X射线衍射等检测,有效地区分了外源输入的矿物(如石英)与成岩矿物(亮晶方解石和白云石)等显微特征的差 异,据此建立了定量估算泥岩中成岩转化的黏土矿物含量的方法:C陆源=(C/Q)沙一×Q样品和C成岩=CXRD-C陆源,其中C为黏土矿物含 量,Q为石英含量,更好地反映了泥岩成岩过程中黏土矿物的演化特征。在埋藏演化过程中泥岩中的成岩矿物和组合呈现出 两段性,3000 m以上黏土矿物和白云石的成岩转化较慢,形成了以伊蒙间层+高岭石的成岩矿物组合,推断其经历了酸性成岩 环境和开放成岩体系;3000 m以下黏土矿物和白云石的成岩转化过程加快,形成了以伊利石+绿泥石+白云石的成岩矿物组 合,推断其经历了碱性成岩环境和封闭成岩体系,充分展现了泥岩在深浅层成岩环境和体系的差异性。与前人研究东营凹陷 泥岩中由有机质生烃产生异常压力造成的开放/封闭体系界限基本吻合,表明泥岩中矿物埋藏演化经历的成岩体系与有机质 生烃形成的压力体系具有较好的响应关系,这对认识不同成岩体系下有机质的生烃过程和生烃机理的差异性具有重要的 意义。  相似文献   

12.
粘土矿物对油气层的损害及防治研究   总被引:15,自引:1,他引:14  
戴宗  孙晗森 《矿物岩石》1998,18(1):74-78
粘土矿物的分散运移、膨胀以及酸敏导致沉淀物的生成,都严重地造成了地层孔隙的堵塞,对油气的三次开采造成了很大的危害。本文从粘土矿物的晶体结构入手,对粘土矿物损害油气层的机理进行了初步探讨,并对粘土矿物损害地层的三种方式提出了有效的防治措施,并通过室内实验,找出了有效的合理配方。  相似文献   

13.
成岩过程中泥岩的成岩矿物会随成岩体系的改变而发生变化,因此有效地识别成岩矿物组合与划分成岩体系,对深刻 理解有机质生烃的差异性具有重要的意义。文章选取东营凹陷古近系不同层段埋深在1200~4500 m的泥岩,通过岩石薄片、 扫描电镜和X射线衍射等检测,有效地区分了外源输入的矿物(如石英)与成岩矿物(亮晶方解石和白云石)等显微特征的差 异,据此建立了定量估算泥岩中成岩转化的黏土矿物含量的方法:C陆源=(C/Q)沙一×Q样品和C成岩=CXRD-C陆源,其中C为黏土矿物含 量,Q为石英含量,更好地反映了泥岩成岩过程中黏土矿物的演化特征。在埋藏演化过程中泥岩中的成岩矿物和组合呈现出 两段性,3000 m以上黏土矿物和白云石的成岩转化较慢,形成了以伊蒙间层+高岭石的成岩矿物组合,推断其经历了酸性成岩 环境和开放成岩体系;3000 m以下黏土矿物和白云石的成岩转化过程加快,形成了以伊利石+绿泥石+白云石的成岩矿物组 合,推断其经历了碱性成岩环境和封闭成岩体系,充分展现了泥岩在深浅层成岩环境和体系的差异性。与前人研究东营凹陷 泥岩中由有机质生烃产生异常压力造成的开放/封闭体系界限基本吻合,表明泥岩中矿物埋藏演化经历的成岩体系与有机质 生烃形成的压力体系具有较好的响应关系,这对认识不同成岩体系下有机质的生烃过程和生烃机理的差异性具有重要的 意义。  相似文献   

14.
研究表明,在含油气岩系中,当有机质发生热演变而成熟、并逐渐向烃类转变的整个过程中,氮主要以NH+4的形式释放出来而进入孔隙流体与周围介质 (成岩矿物 )相互作用,最重要的机制是NH+4可取代粘土矿物 (如伊利石,I/S混层矿物等 )层间的K+而参与成岩作用,形成含铵矿物,这一过程中氮的地球化学性质发生了重要变化,含铵矿物中固定 -NH4的富集状况与有机质成熟度及烃类运移有关。通过研究成岩和油气生成、运移、聚集过程中氮的岩石地球化学行为及其控制因素,可将固定 -NH4作为有机质成熟度和油气运移路径的一种新的、有意义的示踪剂。  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.
As the two important components of shale, organic matter(OM) and clay minerals are usually thought to strongly influence the hydrocarbon generation, enrichment and exploitation. The evolution process of OM and clay minerals as well as their interrelationship over a wide range of thermal maturities are not completely clear. Taking Yanchang(T_3y), Longmaxi(S_1l) and Niutitang(?_1n) shales as examples, we have studied the microstructure characteristics of OM and clay minerals in shales with different thermal maturities. The effects of clay minerals and OM on pores were reinforced through sedimentation experiments. Using a combination of field emission scanning electron microscopy(FESEM) and low-pressure N_2 adsorption, we investigated the microstructure differences among the three shales. The results showed that both OM and clay minerals have strong effects on pores, and small mesopore(2–20 nm) is the dominant pore component for all three samples. However, the differences between the three samples are embodied in the distribution of pore size and the location. For the T_3y shale, clay minerals are loosely arranged and develop large amounts of pores, and fine OM grains often fill in intergranular minerals or fractures. Widespread OM pores distribute irregularly in S_1l shale, and most of the pores are elliptical and nondirectional. The ?_1n shale is characterized by the preferred orientational OM-clay aggregates, and lots of pores in the composites are in the mesopore range, suggesting that over maturity lead to the collapse and compaction of pores under huge pressure of strata. The results of the current research imply that with increasing thermal maturity, OM pores are absent at low maturity(T_3y), are maximized at high maturity(S_1l) and are destroyed or compacted at over-mature stage(?_1n). Meanwhile, clay minerals have gone through mineral transformation and orientational evolution. The interaction of the two processes makes a significant difference to the microstructure evolution of OM and clay minerals in shale, and the findings provide scientific foundation in better understanding diagenetic evolution and hydrocarbon generation of shale.  相似文献   

17.
烃源岩催化生烃机制研究进展   总被引:4,自引:0,他引:4  
刘洛夫  李术元 《地质论评》2000,46(5):491-498
本文扼要综述了国内外在热模拟催化生烃领域的研究进展,并针对其存在问题或不足之处,提出了新的研究思路,设计了新的实验方案,对烃源岩催化生烃机理和过程进行定量的研究,建立定量的催化反应速率数学模型和催化生烃产离数学模型,并制作成可操作的计算软件,划分出起正催化作用和反催化作用的催化剂。在研究过程中,全面考虑某生油岩中的所有粘土矿物和地下水中的无机盐类对生烃的催化作用,即系统地分别考虑生油岩中存在的各单  相似文献   

18.
运用扫描电镜观察和X射线衍射分析等技术,在对泌阳凹陷核桃园组砂岩储集层中黏土矿物分布特征研究的基础上,从黏土矿物的形成条件和形成过程入手,详细分析了地质流体的性质、组成、流动方式、迁移速度等对砂岩储集层中黏土矿物形成和分布的影响,指出砂岩储集层中参与成岩反应的碎屑活性组分和地质流体对砂岩储集层中黏土矿物的形成和分布具有控制作用,并讨论了它们的形成机理.研究表明,黏土矿物的形成和分布能够不同程度地影响砂岩储集层的孔渗性和含油气性;高岭石发育层段与次生孔隙的发育和渗透率的增加以及油气的富集层段具有良好的对应关系.  相似文献   

19.
Water-based drilling fluids are increasingly being used for oil and gas exploration, and are generally considered to be more environmentally acceptable than oil-based or synthetic-based fluids. Unfortunately, their use facilitates clay hydration and swelling. Clay swelling, which occurs in exposed sedimentary rock formations, can have an adverse impact on drilling operations and may lead to significantly increased oil well construction costs. Minimizing clay swelling is therefore an important area attracting a large amount of interest from both academia and industry. To effectively reduce the extent of clay swelling the mechanism by which clay minerals swell needs to be understood so that efficient swelling inhibitors may be developed. Acceptable clay swelling inhibitors must not only significantly reduce clay hydration, but must also meet increasingly stringent environmental guidelines while remaining cost effective. The development of these inhibitors, which are generally based upon water soluble polymers, therefore represents a challenge to oilfield geochemistry. This review aims to provide a comprehensive understanding of the mechanism by which clay minerals swell and what steps have been taken in the development of effective and environmentally friendly clay swelling inhibitors.  相似文献   

20.
粘土矿物对有机质生烃的催化作用   总被引:3,自引:1,他引:3  
烃源岩的有机质主要以有机粘土复合体的形式存在。有机质生烃是一种有机粘土化学反应。反应过程中,有机质与粘土之间存在质子和电子迁移,粘土通过对水分子的吸附和离解为有机质加氢裂解提供H+,而有机质生成的有机酸激活了粘土的催化活性,也为蒙皂石伊利石化反应创造了条件。烃源岩不同粘土矿物的选择性催化特征是影响油气组成的最重要因素。粘土的催化活性大小和发育时间是决定烃源岩生烃潜力大小的因素。由于烃源岩在蒙皂石伊利石化阶段具有最大的催化活性,而且与有机质生烃反应同步,因此富含伊$蒙混合层的烃源岩是世界含油气盆地的最有利烃源岩。不同地质时期的烃类地质储量与烃源岩膨胀性粘土的丰度有密切关系。  相似文献   

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