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31.
宿松地区茅口阶为一连续的海退沉积序列,先后发育浅海陆棚相、开阔台地相、颗粒滩相。所经历的成岩作用主要有胶结、重结晶、白云石化、压溶、溶蚀及充填等.本文还对成岩环境进行了讨论。  相似文献   
32.
关于成岩作用与变质作用界线的讨论:从沸石相谈起   总被引:15,自引:1,他引:15  
柳益群 《地质论评》1996,42(3):215-222,T001
成岩作用与变质作用界线的划分是当前地质学界关注的焦点之一。传统的观点将沸石相作为最低级变质相,本文以鄂尔多斯盆地东部上三叠统延长组的浊沸碱玫吐鲁番-哈密盆地哈密凹陷三叠系的浊沸石为例,提出浊沸石的形成为高pH值,低Pco2和Xco2高钙离子活度,高SiO2活性的高盐度等,稳定在从80℃到200℃左右的广大温度范围内,常与油气生成带一致,属成岩矿物相,取消沸石相,用明确的综合划分标志来确定成岩作用与  相似文献   
33.
鄂尔多斯地区南部和东秦岭北部是华北稳定陆块与秦岭海槽之间的过渡带.早古生代可划分为5个中层序(mesosequence).MS-1.包括下寒武统及中寒武统徐庄组,为混水台地沉积体系,时间跨度在35Ma;MS-2.包括下寒武统张夏组、上寒武统和下奥陶统冶里—亮甲山组,为清水台地沉积体系,时间跨度近37.9Ma;MS-3.包括下奥陶统马家沟组和峰峰组,为蒸发型台地沉积体系,时间跨度近31Ma.三者组成显生宙第一大层序(megasequence),形成一巨大沉积旋回,为地壳动力伸张所成;MS-4.包括赵老峪组,为弧后盆地形成的斜坡沉积体系和盆地沉积体系,时间跨度17Ma;MS-5.系上奥陶统,包括背锅山组、上店组、两岔口组等,为残留海台地型沉积体系.这两个中层序形成显生宙第二大层序的主体,形成一巨大沉积旋回,为地壳动力挤压所成.  相似文献   
34.
新晃贡溪超大型重晶石矿床的岩石学特征与沉积成岩作用   总被引:9,自引:0,他引:9  
胡清洁 《湖南地质》1997,16(2):106-111
本文阐述了新晃贡溪矿床沉积型重晶石岩的组构特征和5类重晶石岩,进而讨论了重晶石岩的组构特征与沉积成岩作用的成生联系。  相似文献   
35.
Fluid flow in fractured rock is an increasingly central issue in recovering water and hydrocarbon supplies and geothermal energy, in predicting flow of pollutants underground, in engineering structures, and in understanding large-scale crustal behaviour. Conventional wisdom assumes that fluids prefer to flow along fractures oriented parallel or nearly parallel to modern-day maximum horizontal compressive stress, or SHmax. The reasoning is that these fractures have the lowest normal stresses across them and therefore provide the least resistance to flow. For example, this view governs how geophysicists design and interpret seismic experiments to probe fracture fluid pathways in the deep subsurface. Contrary to these widely held views, here we use core, stress measurement, and fluid flow data to show that SHmax does not necessarily coincide with the direction of open natural fractures in the subsurface (>3 km depth). Consequently, in situ stress direction cannot be considered to predict or control the direction of maximum permeability in rock. Where effective stress is compressive and fractures are expected to be closed, chemical alteration dictates location of open conduits, either preserving or destroying fracture flow pathways no matter their orientation.  相似文献   
36.
The diffusion of an ion in porewaters cannot occur independently of the other ions in solution as a result of Coulombic coupling, as well as from other effects not considered here. Unfortunately, a longstanding disagreement exists about the correct form and meaning of the equations that describe Coulombic coupling in porewaters, i.e., Ben-Yaakov [Am. J. Sci. 281 (1981) 974] vs. Lasaga [Am. J. Sci. 281 (1981) 981]. This paper re-examines this controversy by reformulating the problem starting from fundamental concepts of mass and charge conservation. We show that these antagonistic formulations are both valid and, in fact, equivalent, when the different interpretations of charge balance are resolved. Most of the disagreements between Ben-Yaakov and Lasaga are then shown to result from differing methods of solution, not fundamental disparities in their models. We note, however, that the explanation for the concept of “stationary” gradients of nonreacting ions as given Ben-Yaakov is inaccurate, and such gradients do lead to diffusive fluxes that are counterbalanced by electrochemical migrational fluxes to produce no net flux (excluding advective flux). We further find that the bicarbonate diffusive flux will not balance the diffusional charge flux of sulfate during its reduction if advection is present. This latter imbalance generates compensating fluxes in the other nonreacting ions. We have applied our theory to a simplified case of sulfate reduction in a marine sediment. The results show that nonreacting ions do diffuse and that with normally expected values of porewater advection, the ratio of the bicarbonate to the sulfate flux can be far different than the ideal value of −2.  相似文献   
37.
研究区石炭系碎屑岩储集层的主要成岩作用为机械压实作用、胶结作用、交代作用、溶解作用和破裂作用。机械压实作用和胶结作用对储层物性改善有破坏作用;溶解作用、交代作用、破裂作用在一定程度上有利于改善碎屑储集岩的孔隙结构及储集物性。研究区碎屑岩储集层处于早成岩阶段B期一晚成岩B期。晚成岩期,烃类从源岩中进入储集层发生石油侵位,改变了岩石的成岩环境。由于烃类的侵位,使石英的次生加大、自生铁白云石的生长受到抑制,同时也对自生伊利石生长有抑制作用,黄铁矿由于烃类侵位分布在油层、油水层,尤其在油水层中较为发育。  相似文献   
38.
该区储层岩石类型主要为岩屑质长石砂岩,溶解作用是主要的建设性成岩作用,压实、自生矿物充填和胶结作用是主要的破坏性成岩作用,成岩阶段处于晚成岩A亚期。该区储层较高的孔隙度是晚成岩期强烈的溶解作用形成次生溶孔的结果,而储层砂岩较低渗透率的主要成因机理是成岩期各种自生矿物的充填和胶结作用;此外,溶蚀作用形成的孤立、互不连通的粒间孔也是形成低渗微细喉道储层的主要原因。有利孔隙组合为粒间溶蚀孔-原生粒间孔-粒内破碎缝,有利储层的分布受砂体分布、构造配置及成岩作用的联合控制。  相似文献   
39.
Upper Cretaceous phosphorite beds of the Duwi Formation, Upper Egypt, are intercalated with limestone, sandy limestone, marl, calcareous shales, and calcareous sandstone. Calcareous intercalations were subjected to field and detailed petrographic, mineralogical and geochemical investigations in order to constrain their rock composition and origin. Mineralogically, dolomite, calcite, quartz, francolite and feldspars are the non-clay minerals. Smectite, kaolinite and illite represent the clay minerals. Major and trace elements can be classified as the detrital and carbonate fractions based on their sources. The detrital fraction includes the elements that are derived from detrital sources, mainly clay minerals and quartz, such as Si, Al, Fe, Ti, K, Ba, V, Ni, Co, Cr, Zn, Cu, Zr, and Mo. The carbonate fraction includes the elements that are derived from carbonates, maily calcite and dolomite, such as Ca, Mg and Sr. Dolomite occurs as being dense, uniform, mosaic, very fine-to-fine, non-ferroan, and non-stoichiometrical, suggesting its early diagenetic formation in a near-shore oxidizing shallow marine environment. The close association and positive correlation between dolomite and smectite indicates the role of clay minerals in the formation of dolomite as a source of Mg^2+ -rich solutions. Calcareous rocks were deposited in marine, oxidizing and weakly alkaline conditions, marking a semi-arid climatic period. The calcareous/argillaceous alternations are due to oscillations in clay/carbonate ratio.  相似文献   
40.
Abstract. Inorganic chemical compositions are determined for a series of rocks crossing an Early Jurassic stratiform manganese ore deposit in a chert‐dominant sequence at Katsuyama, in the Mino Terrane of central Japan. The lithology in the vicinity of the manganese ore bed is classified into lower bedded chert, black shale, massive chert, manganese ore and upper bedded chert, in ascending order. The rocks surrounding the manganese deposit are anomalously high in certain elements: Pb (max. 29 ppm), Ni (1140) and Co (336) in the lower bedded chert, Mo (438), As (149), Tl (29) and U (12) in the black shales, V (210) and Cr (87) in the massive chert, and MnO and W (24) in the manganese ore. The aluminum‐normalized profiles reveal a distinct zonation of redox‐sensitive elements: Pb‐Zn, Ni‐Co‐Cu(‐Zn) and U‐Cr in the lower bedded chert, Mo‐As‐Tl in the black shale, V(‐Cr) in the massive chert, and Mn‐Fe‐Ba‐W in the manganese ore, in ascending order. The lower and upper bedded cherts and manganese ore generally exhibit flat rare earth element patterns with positive Ce anomalies, whereas the uppermost part of the lower bedded chert, the black shale and massive chert have flat patterns with weak or nonexistent negative Ce anomalies and weak positive Eu anomalies. The strong enrichment in Ni, Co, W, Tl and As detected in the Katsuyama section is not recognized in other sediments, including those of anoxic deposition origin, but is identified in modern ferromanganese nodules, suggesting that metal enrichment in the Katsuyama section is essentially due to the formation of ferromanganese nodules rather than to deposition in an anoxic environment. The observed elemental zonation is well explained by equilibrium calculations, reflecting early diagenetic formation and associated gradual reduction with depth. The concentration profiles in combination with litho‐ and biostratigraphical features suggest that formation of these bedded manganese deposits was triggered by an influx of warm, saline and oxic water into a stagnant deep ocean floor basin in Panthalassa at the end of the middle Early Jurassic. Paleoceanographic environmental controls thus appear to be important factors in the formation and preservation of this type of stratiform manganese deposit.  相似文献   
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