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961.
《China Geology》2018,1(3):346-353
There are plenty of Sinian and Cambrian potential shale gas resources in South China, which is characterized by high thermal evolution degrees, poor drilling performances and only occurs in local areas. Taking the principle “high to find low” is the key issue to achieving a breakthrough in older shale. China Geological Survey drilled in the periphery of the Proterozoic basement, i.e. the Huangling anticline, in the western Hubei, and Hannan paleocontinent in the southern Shanxi. It received high-quality gas-bearing shale with relatively low Ro in the in Lower Cambrian Niutitang formation and Sinian Doushantuo formation. Based on geological conditions of shale gas reservoirs in the Huangling anticline, this paper puts forward the new model named “Control over reservoirs by periphery of basement” about shale gas accumulation, suggesting that the shale deposited in a deepwater continental shelf in the periphery of the basement is characterized by shallow burial, a short burial time, stable tectonics, relatively low thermal evolution degrees, and shale gas reservoirs in a good condition. The shale of the Sinian-Cambrian strata deposited in deepwater continental shelves in the periphery of Chuanzhong paleo-uplift in Sichuan, Hannan paleocontinent in the southern Shanxi, Huangling anticline in western Hubei and Jiangnang-Xuefeng paleo-uplift in Hunan and Guizhou province have good shale gas exploration potential. 相似文献
962.
《China Geology》2018,1(3):331-345
The Gonghe Basin, a Cenozoic down-warped basin, is located in the northeastern part of the Qinghai-Xizang (Tibetan) Plateau, and spread over important nodes of the transfer of multiple blocks in the central orogenic belt in the NWW direction. It is also called “Qin Kun Fork” and “Gonghe Gap”. The basin has a high heat flow value and obvious thermal anomaly. The geothermal resources are mainly hot dry rock and underground hot water. In recent years, the mechanism of geothermal formation within the basin has been controversial. On the basis of understanding the knowledge of predecessors, this paper proposes the geothermal formation mechanism of the “heat source–heat transfer–heat reservoir and caprock–thermal system” of the Gonghe Basin from the perspective of a geological background through data integration-integrated research-expert, discussion-graph, compilation-field verification and other processes: (1) Heat source: geophysical exploration and radioisotope calculations show that the heat source of heat in the basin has both the contribution of mantle and the participation of the earth’s crust, but mainly the contribution of the deep mantle. (2) Heat transfer: The petrological properties of the basin and the exposed structure position of the surface hot springs show that one transfer mode is the material of the mantle source upwells and invades from the bottom, directly injecting heat; the other is that the deep fault conducts the deep heat of the basin to the middle and lower parts of the earth’s crust, then the secondary fracture transfers the heat to the shallow part. (3) Heat reservoir and caprock: First, the convective strip-shaped heat reservoir exposed by the hot springs on the peripheral fault zone of the basin; second, the underlying hot dry rock layered heat reservoir and the upper new generation heat reservoir and caprock in the basin revealed by drilling data. (4) Thermal system: Based on the characteristics of the “heat source-heat transfer-heat reservoir and caprock”, it is preliminarily believed that the Gonghe Basin belongs to the non-magmatic heat source hydrothermal geothermal system (type II21) and the dry heat geothermal system (type II22). Its favorable structural position and special geological evolutionary history have given birth to a unique environment for the formation of the geothermal system. There may be a cumulative effect of heat accumulation in the eastern part of the basin, which is expected to become a favorable exploration area for hot dry rocks. 相似文献
963.
曹四夭斑岩钼矿床位于内蒙古兴和县,是华北克拉通北缘最大的钼矿床。该矿床中部发育斑岩型钼矿体,外围和上部产出热液脉型铅锌金矿体。文章选取1件与斑岩钼矿化共生的绢云母样品进行了40Ar-39Ar定年,获得40Ar-39Ar坪年龄为(144.4±1.2)Ma,相应的39Ar/36Ar-40Ar/39Ar等时线年龄为(146.4±2.2)Ma(MSWD=0.31),将等时线年龄认作绢云母的Ar封闭年龄,表明曹四夭斑岩钼矿化发生在约146 Ma前。选取14件脉型铅锌矿石中的闪锌矿、黄铁矿和磁黄铁矿样品开展了Rb-Sr定年,获得4件闪锌矿的Rb-Sr等时线年龄为(145.1±3.0)Ma(MSWD=0.63);5件黄铁矿的Rb-Sr等时线年龄为(145.2±1.3)Ma(MSWD=0.53);4件闪锌矿、5件黄铁矿和1件磁黄铁矿的Rb-Sr等时线年龄为(145.3±1.0)Ma(MSWD=0.43)。硫化物Rb-Sr定年结果表明曹四夭矿床脉型铅锌矿化形成于约145 Ma前。本次绢云母40Ar-39Ar和硫化物Rb-Sr定年结果表明,曹四夭矿床斑岩型钼矿化和脉型铅锌金矿化为同期产物,两者均形成于晚侏罗世末期,属于同一个斑岩成矿系统。曹四夭矿床硫化物的w(Rb)和w(Sr)分别为0.1867×10~(-6)~1.305×10~(-6)和0.3175×10~(-6)~6.935×10~(-6),Sr同位素初始比值(87Sr/86Sr)i介于0.709 919~0.711 951之间,平均值0.710 952,结合前人获得的辉钼矿Re含量,认为曹四夭矿床的成矿物质主要来源于地壳。 相似文献
964.
崤山金矿床位于华北克拉通南缘的豫西地区,矿体大多呈脉状产于断裂带内。成矿期可以划分为3个阶段:(1)石英-黄铁矿阶段;(2)石英-多金属硫化物阶段;(3)石英-碳酸盐阶段。成矿期石英中发育气液两相水溶液包裹体(WL型)和H_2O-CO_2包裹体(C型)。石英-黄铁矿阶段发育WL型和C型包裹体,它们的均一温度为300~393℃,盐度w(NaCl_(eq))为1.6%~11.0%,密度介于0.57~0.82 g/cm~3;石英-多金属硫化物阶段亦发育WL型和C型包裹体,它们的均一温度为261~298℃,盐度w(NaCl_(eq))为1.1%~11.8%,密度介于0.74~0.89 g/cm~3;石英-碳酸盐阶段仅见WL型包裹体,其均一温度为193~258℃,盐度w(NaCl_(eq))介于2.2%~12.7%,密度为0.87~0.97g/cm~3。成矿流体具有中高温、中低盐度、低密度等特征,属于H_2O-NaCl±CO_2体系。崤山金矿石英的δ~(18)OH_2O值介于0.7‰~4.5‰之间,δDV-SMOW值介于-47.8‰~-69.5‰之间。H-O同位素结果表明成矿流体主要来源于岩浆水。矿石硫化物的δ_(34)SV-CDT值为0.7‰~3.9‰,206Pb/204Pb值为17.391~17.728,~(207)Pb/~(204)Pb值为15.420~15.577,~(207)Pb/~(204)Pb值为37.420~37.923。S-Pb同位素结果表明成矿物质主要来源于花岗质岩浆。崤山金矿为中温热液脉型金矿,流体相分离和温度的降低是导致矿质沉淀的主要机制。 相似文献
965.
碘化氨除锡后封闭酸溶-电感耦合等离子体质谱测定锡矿石中的共生和伴生元素 总被引:1,自引:1,他引:0
锡矿石是难分解的矿物,主要存在形式是锡石(SnO_2),且共生和伴生元素多,常用的酸溶方法几乎不能溶解SnO_2,从而给锡矿石中的共生与伴生元素的准确测定带来困难。本文基于碘化氨在较低温度下熔融可产生无水状态的碘化氢,利用碘化氢的酸性和氨的还原性分解SnO_2,使Sn呈SnI_4升华分离的原理处理锡矿石。实验中以高纯铂丝作催化剂,加入碘化铵在450℃的马弗炉中分解锡矿石30 min,使得Sn以SnI_4形式挥发,除锡率达到98%以上,再用2 mL氢氟酸和1 mL硝酸封闭溶解残渣,电感耦合等离子体质谱测定钴镍铜铌钽钍铀等24个共生和伴生元素。元素检出限在0. 001~2. 9μg/g之间,90%以上元素的相对标准偏差(RSD)小于5%,相对误差小于10%。本方法解决了锡矿石难分解的问题,可测定共存金属元素,也适合测定Sn含量在1. 27%~62. 49%之间的锡矿石中的微量和痕量元素及锡精矿中的微量元素。 相似文献
966.
正2018年5月26日,自然资源部中国地质调查局在黑龙江省安达市松科二井工程现场召开大陆科学钻探工程(松科二井)完井暨学术研讨现场会。中国地质学会常务副理事长兼秘书长、自然资源部中国地质调查局副局长、松科二井工程领导小组组长李金发宣布松辽盆地大陆深部科学钻探工 相似文献
967.
黔东松桃地区燕山期构造特征研究——以高地超大型锰矿床为例 总被引:2,自引:0,他引:2
黔东松桃地区构造格局主要是受到燕山运动影响形成。燕山早期,区内处于SEE—NWW向区域挤压收缩,形成了NNE—SSW向褶皱和断裂。下寒武统杷榔组—变马冲组地层和南华系下统大塘坡组地层作为两套滑脱层,在构造变形过程中起到滑脱作用,滑脱层内褶皱变形强烈,以大量紧闭、顶厚不协调褶皱为主要构造样式,而其上、下岩层则以断块或宽缓褶皱变形为主,以软弱层为界面,其上、下岩层发生逆冲滑脱作用,形成了区内隔槽式褶皱的构造样式。燕山晚期,区内处于NNE—SSW挤压为主,形成了区内NWW向小型褶皱和断裂,同时燕山晚期构造横跨叠加在早期变形之上,导致早期NNE向褶皱枢纽呈波状起伏,轴迹弯曲,部分地区形成了构造穹窿和构造盆地,部分早期断层呈左行走滑性质。在燕山早、晚两期构造作用下,高地矿区含锰岩系作为软弱滑脱层,向猴子坳向斜的核部进行滑脱聚集,使其在向斜的核部富集,翼部相对减薄。同时,由于犁式正断层的存在,也影响了锰矿层的保存与破坏。 相似文献
968.
伊犁盆地蒙其古尔铀矿床为典型的层间氧化带型铀矿床,虽然前人对该区铀矿的成矿流体进行了较为系统的研究,但对其成矿流体来源依然存在较大的分歧,尤其对该区成矿流体与蚀变特征、铀成矿的内在联系研究较少。本文为了研究蒙其古尔铀矿床成矿流体来源及其与成岩蚀变、铀成矿的内在联系,综合地应用了偏光显微镜、扫描电镜、电子探针等手段,对其含矿目的层砂岩成岩蚀变进行系统的分析,并对蚀变矿物高岭石H—O同位素、碳酸盐胶结物C—O同位素及黄铁矿S同位素进行了研究。研究表明:与砂岩型铀矿有关的成岩蚀变类型主要有黏土化、碳酸盐化、硅化及金属矿化;成矿流体中水δDH2O,V SMOW为-48.3‰~-93‰,
δ18OH2O,V SMOW为-10.3‰~-5.1‰,碳酸盐胶结物δ13CV PDB为-10.9‰~-7.2‰,δ18OV SMOW为176‰~249‰,黄铁矿δ34SV CDT为-17.3‰~12‰,上述特征揭示蒙其古尔铀矿床成矿流体是由大气降水性质的地表水(无机)和煤系地层有机质脱羟基及热降解作用产生的有机酸及CH4等还原性气体(煤层气)(有机)两部分组成;成岩蚀变和铀成矿效应皆是有机—无机流体及流体与周围砂岩相互作用的结果。 相似文献
969.
从我国地勘行业诚信现状和面临的新形势来看,地勘行业诚信体系被视为行业健康发展的命脉和基础。通过分析地勘行业诚信体系建设的现状和面临的问题,借鉴国外发达国家社会信用体系建设的模式,提出政府主导构建地勘行业诚信体系的模式。在此基础上,运用斜坡球体理论提出了地勘行业诚信体系建设的支撑力、下滑力和拉动力以及相互之间的驱动机制,并从抑制及减少下滑力、增强拉动力和构筑牢固的支撑力三方面提出了政府主导模式下各参与方建设地勘行业诚信体系的实现路径和具体措施。 相似文献
970.
S. W. Mao J. M. Li W. Liu Z. C. Wang Z. L. Huang 《Australian Journal of Earth Sciences》2018,65(4):535-555
The Middle Ordovician Kelimoli Formation carbonate reservoirs in the northern Tianhuan area, Ordos Basin, China are main exploration targets. Subsurface core samples, logging, drilling and production data from the area were used to characterise the carbonate reservoir and to construct a genetic model for exploration. The sedimentary facies identified include trough–continental rise, upper–lower slope, platform margin reef-shoal, open platform and evaporation-restricted platform. The slope and platform margin facies are potential zones for high-quality reservoirs. Porosity in the study area comprises intergrain, intercrystal, intragrain and intracrystal pores, fractures and vughs. The Sr/Ba (0.40–4.87) and V/(V + Ni) (0.64–0.97) ratios indicate deposition in a brackish water-dominated environment under reducing conditions, associated with sea-level fluctuations during the deposition of the Kelimoli Formation. The Sr/Ba, V/(V + Ni), 87Sr/86Sr ratios, δ18O values and crystal texture of dolomite samples suggest that meteoric water was involved in the diagenetic fluid in the near-surface depositional environment. Isotopes (δ13C and δ18O) and trace elements (Fe and Mn) allowed the identification of seepage-reflux and mixed-water dolomitisation. The crystal textures of the samples consist of micritic, bioclastic and reefal limestones, and dolomite with gypsum, which were easily dissolved during the early diagenetic stage. The epidiagenetic stage was the key period for the development of high-quality reservoirs because of large-scale bedding-parallel karstification from meteoric water. The reservoir zones, dominated by partially filled and unfilled vughs, and fractures, are favourable exploration targets in the northern Tianhuan area. 相似文献