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991.
HUANG Junping YANG Zhanlong CHEN Qilin DI Jun BAI Yunlai LI Zhiyong and HUANG Chenggang 《《地质学报》英文版》2015,89(Z1):41-44
<正>1 Introduction Qinshui Basin is the major coal bearing basin in China.And the main exploration target layer is CarboniferousPermian.In recent years,not only in the coal-bed methane has made great progress,and also in the tight gas.Besides,shale gas in the Carboniferous-Permian has showed a good exploration prospect.Although Carboniferous- 相似文献
992.
<正>The tight sandstone gas prospecting is a key area of unconventional oil and gas exploration.The source rock of Shahezi Formation indicates adequate source condition for gas,which shows features of great thickness,wide distribution,high organic content and remaining high and overmature stages.Meantime,it possesses a reservoir condition with low porosity and low permeability,a 相似文献
993.
Characteristics and Main Controlling Factors of Tight Oil Reservoir in the Jimsar Sag of Junggar Basin 总被引:1,自引:0,他引:1
BAO Haijuan HE Wenjun FEI Liying JIA Xiyu ZHENG Menglin YANG Haibo GGUO Xuguang 《《地质学报》英文版》2015,89(Z1):182-183
<正>1 Introduction Jimsar sag covers about 1278 km2 in the south of the eastern uplift of Junggar basin.It is a half graben depression area in which the west,south and north is controlled by faults(Fig.1),and is tilting uplift to the east.It deposited Permian,Triassic,Jurassic,the Cretaceous and Cenozoic strata chronologically.The thickness of Lucaogou Formation is about 200 m to 350 m,it is the 相似文献
994.
JIANG Zhenxue TANG Xianglu LI Zhuo JI Wenming YANG Wei YUAN Yuan WANG Pengfei and XIONG Fengyang 《《地质学报》英文版》2015,89(Z1):251-252
<正>Shale gas exploration have yielded remarkable achievements recently in China,and four national demonstration areas for shale gas exploration and production have been established respectively as FulingJiaoshiba,Changning-Weiyuan,Zhaotong and Yanchang.During recent few years,nearly 400 wells have been drilled including 143 exploratory wells(vertical wells)and 相似文献
995.
MA Fujun WANG Qiujun DONG Junling YANG Yi WANG Wenji YAN Defei SUN Bainian 《《地质学报》英文版》2015,89(5):1453-1469
The present paper reports two new species of Buxus from the Oligocene Ningming Formation of Guangxi, South China, on the basis of several compressed fossil leaves. Buxus ningmingensis sp. nov. is characterized by an elliptic to ovate shape; pinnate venation with marginal secondary, long hairs on the adaxial side of the midvein base; and amphistomatic, anomocytic stomata with a prominent outer ring. All of these characteristics suggest a closest af?nity to the living Buxus microphylla subsp. sinica. Another new species identi?ed as Buxus preaustro-yunnanensis sp. nov. is characterized by the diagnostic formation of its admedially branched tertiaries, the trunks of which are often strongly thickened by sclereides. This species is most similar to the extant Buxus austro-yunnanensis. The co-occurrence of Buxus ningmingensis sp. nov. and Buxus preaustro-yunnanensis sp. nov. suggests that these two Buxus lived during the Oligocene under a warm, tropical to subtropical climate, similar to the current climate of Ningming. Our ?ndings provide the earliest fossil evidence of Buxus leaves with detailed illustrations of leaf architectural and cuticular features. The occurrence of these two species indicates that Buxus began to diversify in Guangxi no later than the Oligocene. 相似文献
996.
YANG Minghui LI Liang ZHOU Jin JIA Huichong SUN Xiao GONG Ting DING Chao 《《地质学报》英文版》2015,89(5):1636-1648
The hydrocarbon potential of the Hangjinqi area in the northern Ordos Basin is not well known, compared to the other areas of the basin, despite its substantial petroleum system.Restoration of a depth-converted seismic profile across the Hangjinqi Fault Zone(HFZ) in the eastern Hangjinqi area shows one compression that created anticlinal structures in the Late Triassic, and two extensions in ~Middle Jurassic and Late Early Cretaceous, which were interrupted by inversions in the Late Jurassic–Early Early Cretaceous and Late Cretaceous, respectively.Hydrocarbon generation at the well locations in the Central Ordos Basin(COB) began in the Late Triassic.Basin modeling of Well Zhao-4 suggests that hydrocarbon generation from the Late Carboniferous–Early Permian coal measures of the northern Shanbei Slope peaked in the Early Cretaceous, predating the inversion in the Late Cretaceous.Most source rocks in the Shanbei Slope passed the main gas-migration phase except for the Hangjinqi area source rocks(Well Jin-48).Hydrocarbons generated from the COB are likely to have migrated northward toward the anticlinal structures and traps along the HFZ because the basin-fill strata are dipping south.Faulting that continued during the extensional phase(Late Early Cretaceous) of the Hangjinqi area probably acted as conduits for the migration of hydrocarbons.Thus, the anticlinal structures and associated traps to the north of the HFZ might have trapped hydrocarbons that were charged from the Late Carboniferous–Early Permian coal measures in the COB since the Middle Jurassic. 相似文献
997.
如何有效地解释评价异常是化探找矿取得成功的关键,传统的地球化学异常处理方法一般是以单一元素的含量值与背景值的差异来圈定异常,因子-泛克立格求异模型则建立在矿床主成矿期元素共生组合与地球化学异常之间的对应关系。采用因子-泛克立格模型对津巴布韦东部奇马尼马尼地区进行成矿预测,结果表明:奇马尼马尼地区存在7种元素组合,分别对应于不同的岩性组合,F4和F6元素组合异常可作为区内热液成矿指示标志,与东部塔卡金矿套合程度高。利用该模型圈定了5处找矿远景区,Ⅰ号远景区为铜镍金钛铁矿成矿有利区,Ⅱ号远景区具有与塔卡金矿相似的地球化学组合背景,Ⅲ号、Ⅳ号和Ⅴ号远景区则具寻找热液型金铜矿及多金属矿的潜力。 相似文献
998.
青海冷湖盐场北山黑云母二长花岗岩年代学、地球化学及其地质意义 总被引:2,自引:0,他引:2
柴北缘西端青海冷湖盐场北山地区发育黑云母二长花岗岩,岩体高硅(Si O2=73.92%~75.98%)、富钾(K2O=3.71%~4.78%)、贫镁钙,铝饱和指数A/CNK介于1.03~1.11,属强过铝质花岗岩。稀土元素球粒陨石标准化曲线呈右倾型,Eu异常不明显;岩体含有富铝矿物石榴子石,刚玉标准分子约为1%,Th、Y含量低,且与Rb呈负相关性,源岩为沉积岩,具S型花岗岩特征,是幔源岩浆底侵作用引发地壳物质部分熔融的产物。LA-ICP-MS锆石U-Pb测年结果表明岩体形成于254±4 Ma。结合区域地质背景及岩石地球化学特征认为盐场北山黑云母二长花岗岩形成与俯冲作用有关,类似于岛弧环境产物,从而揭示柴北缘晚二叠世具有活动大陆边缘性质。 相似文献
999.
HUANG Zhu YANG Jingsui ZHU Yongwang XIONG Fahui LIU Zhao ZHANG Zhongming XU Wei 《《地质学报》英文版》2015,89(Z2):30-31
<正>Previously reported in the Mesozonic Tibet and the early Paleozoic Polar Ural,Russia,diamond and other deep minerals are found in ophiolite mantle peridotite chromite that need to be reconsidered ophiolite and chromite traditional understanding of the causes of shallow.The ophiolitic chromitite can be divided two classes,the high-Cr chromitite and high-Al chromitite. 相似文献
1000.