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油氣煤鈾同盆共存成藏(礦)機理與富集分布規律-(上.下冊) 版權信息
- ISBN:9787030514677
- 條形碼:9787030514677 ; 978-7-03-051467-7
- 裝幀:暫無
- 冊數:暫無
- 重量:暫無
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油氣煤鈾同盆共存成藏(礦)機理與富集分布規律-(上.下冊) 本書特色
本書系首席科學家劉池陽教授主持的973項目"多種能源礦產共存成藏(礦)機理與富集分布規律"*終成果。全書分7篇31章,對油氣煤鈾等能源礦產同盆共存的形成機理和富集特點進行了全面系統的總結。本書適合于在石油、天然氣、煤和鈾礦等多種領域從事研究和原理的人員參閱。
油氣煤鈾同盆共存成藏(礦)機理與富集分布規律-(上.下冊) 內容簡介
本書系首席科學家劉池陽教授主持的973項目"多種能源礦產共存成藏(礦)機理與富集分布規律"*終成果。全書分7篇31章,對油氣煤鈾等能源礦產同盆共存的形成機理和富集特點進行了全面系統的總結。本書適合于在石油、天然氣、煤和鈾礦等多種領域從事研究和原理的人員參閱。
油氣煤鈾同盆共存成藏(礦)機理與富集分布規律-(上.下冊) 目錄
目錄沉積盆地動力學與能源礦產——代叢書前言前言**篇 油氣煤鈾同盆共存特征和其成藏(礦)與分布**章 全球油氣煤鈾藏(礦)同盆共存特征與分布規律 3**節 全球鈾礦和砂巖型鈾礦的產儲量 3第二節 全球已發現砂巖型鈾礦的特征和分布 15第三節 油氣煤鈾藏(礦)同盆共存特征 26參考文獻 35第二章 中東亞能源礦產成礦域 46**節 中東亞成礦域區劃與能源盆地分布 46第二節 中東亞成礦域能源盆地類型 55第三節 多種能源礦產賦存特點與分布規律 58第四節 多種能源盆地演化及其地球動力學環境 65參考文獻 70第三章 油氣煤鈾同盆共存成藏(礦)與分布理論及進展 73**節 油氣煤鈾的基本特性和成礦特點 73第二節 共存特征與分布規律 79第三節 成礦條件和賦存環境 88第四節 油氣煤鈾相互作用與共存成藏(礦)機理 119第五節 多種能源礦產共存的綜合判識體系 148第六節 多種能源礦產綜合評價預測與協同勘探開發 156參考文獻 165第二篇 鄂爾多斯盆地深部結構、構造熱特征及演化第四章 鄂爾多斯盆地及鄰區地球物理場與深部結構 179**節 盆地及鄰區的地球物理場和深部構造特征 179第二節 盆地南部及周鄰地殼上地幔結構寬頻地震觀測 184第三節 盆地南部及周鄰面波頻散特征與一維速度結構反演 200第四節 盆地南部及周鄰中新生代構造演化動力學的深部依據 205參考文獻 208第五章 鄂爾多斯盆地地溫場特征與熱演化史 212**節 盆地現今地溫場特征 212第二節 盆地中生代晚期古地溫場恢復與中生代熱異常特征 220第三節 盆地后期抬升冷卻及盆地熱演化恢復 230第四節 盆地及鄰區構造熱事件和其形成背景 238第五節 盆地熱演化史與多種能源礦產形成的關系 243參考文獻 247第六章 鄂爾多斯盆地中新生代構造事件年代學 251**節 盆地西南緣中新生代構造事件的年代學記錄 251第二節 盆地東北部中新生代構造事件的年代學記錄 260第三節 盆地中新生代構造演化事件的峰值年齡坐標 270第四節 盆地東北部中新生代構造熱轉換及其成礦效應 275參考文獻 293第七章 鄂爾多斯盆地中新生代沉積埋藏史 296**節 現今地層格架 296第二節 不整合面對應的剝蝕厚度恢復 304第三節 地層埋藏史 314參考文獻 320第八章 鄂爾多斯盆地新生代構造反轉及其動力學環境 323**節 盆地新生代東西部構造反轉的確定依據 323第二節 盆地東西部構造反轉的意義 331第三節 盆地新生代構造反轉的動力學環境 332參考文獻 337第九章 鄂爾多斯高原形成演化與環境變遷 340**節 中新世中晚期至第四紀初鄂爾多斯高原形成 340第二節 鄂爾多斯高原及周緣地區紅黏土 344第三節 “紅土高原”解體與黃土高原形成及環境變遷 359參考文獻 363第三篇 有機無機流巖作用與能源礦產共存物質基礎第十章 沉積有機相分布模式及有機能源礦產同盆共存的地球化學條件 371**節 沉積有機相 371第二節 中生界沉積有機相劃分及相特征 372第三節 中生界沉積有機相模式與生烴潛力及成礦類型 381第四節 沉積有機相的數值化分析方法探討 385參考文獻 387第十一章 鄂爾多斯盆地沉積地層放射性異常及分布特征 390**節 放射性異常的識別 390第二節 盆地內地層放射性異常分布特征 391第三節 放射性異常成因分析 402第四節 盆地內地層放射性異常的形成環境和形成機理 409參考文獻 413第十二章 鄂爾多斯盆地延長組長 7段烴源巖鈾元素分布、賦存狀態及富集機理 415**節 延長組長 7段烴源巖的鈾異常特征及測井識別 415第二節 長 7段鈾異常油頁巖的巖石學與元素地球化學特征 422第三節 長 7段鈾異常烴源巖中鈾的賦存狀態與富集機理 434參考文獻 445第十三章 鄂爾多斯盆地北部上古生界天然氣向北運移散失 446**節 天然氣運移散失的地球化學指標 446第二節 天然氣運聚動力與通道 454第三節 天然氣散失量估算 457參考文獻 463第十四章 盆地東北部天然氣耗散與砂巖漂白現象 465**節 天然氣逸散的地質地球化學證據 465第二節 盆地東北部砂巖漂白現象及其形成機制 477參考文獻 496第十五章 鄂爾多斯盆地北部天然氣運移耗散及其地質效應和判識標志 500**節 概述 500第二節 天然氣耗散作用證據 502第三節 地質蝕變和鈾富集效應 507第四節 地質蝕變效應的成因分析 519第五節 天然氣耗散地質效應的相關實驗進展 532第六節 天然氣耗散蝕變的判識標志與鈾成礦模式 537參考文獻 542第十六章 多種能源礦產熱液活動地球化學記錄 545**節 多種能源礦產成礦(藏)環境特征 545第二節 多種能源礦產熱液活動地球化學記錄 550參考文獻 563第四篇 鄂爾多斯盆地油氣煤鈾賦存、成藏(礦)與分布第十七章 鄂爾多斯盆地油氣賦存、成藏與分布 567**節盆地油氣賦存的地質背景 567第二節 古生界天然氣賦存特征 571第三節 盆地中生界石油賦存特征 583參考文獻 598第十八章 鄂爾多斯盆地延長組低滲透油田的成藏新模式 601**節 西峰油田的地質背景與成藏條件 601第二節 西峰油田主力儲層的成巖作用與油氣充注歷史 605第三節 西峰油田油氣二次運移方向與里程 611第四節 西峰油田的成藏過程與模式 618參考文獻 623第十九章 盆地北部流體動力、運移通道與成藏(礦)效應 632**節 水動力體系的分隔性 632第二節 流體動力的分布與演化 641第三節 天然氣運移的優勢通道 653第四節 天然氣的運移、成藏規律 660參考文獻 674第二十章 鄂爾多斯盆地煤地質特征、分布規律與資源潛力 678**節 石炭二疊紀煤田地質特征與資源潛力 678第二節 三疊紀煤田地質特征與資源潛力 686第三節 侏羅紀煤田地質特征與資源潛力 686第四節 煤炭資源與開發現狀分析 693第五節 煤層氣資源 694參考文獻 701第二十一章 鄂爾多斯盆地南部砂巖型鈾礦分布及其基本特征 703**節 盆地南部鈾礦類型及時空分布 703第二節 盆地南部砂巖型鈾礦基本特征 707第三節 盆地南部與北部砂巖型鈾成礦綜合對比研究 721參考文獻 725第二十二章 鄂爾多斯盆地斷褶帶式砂巖鈾礦地質特征與成礦作用 726**節 惠安堡地區鈾成礦環境 726第二節 惠安堡砂巖型鈾礦床礦化特征 732第三節 西緣斷褶帶式惠安堡鈾成礦模式 742參考文獻 745第二十三章 鄂爾多斯盆地東北部侏羅紀含煤巖系與鈾成礦關系 746**節 含煤含鈾巖系等時地層格架 746第二節 侏羅紀含煤巖系生烴能力 751第三節 侏羅紀含煤巖系對鈾成礦的潛在影響 754參考文獻 759第二十四章 東勝地區砂巖型鈾礦有機地球化學特征與有機質來源 762**節 樣品與實驗 763第二節 有機質的地球化學特征及其來源 764參考文獻 781第二十五章 鄂爾多斯盆地北部東勝砂巖型鈾礦成礦特征和模式 785**節 東勝砂巖鈾礦地質背景和基本特點 785第二節 東勝砂巖鈾礦灰綠色砂巖成因研究 789第三節 直羅組砂巖的蝕變作用 796第四節 有機質特征及其與鈾成礦的關系 801第五節 東勝砂巖型鈾礦疊合成礦模式 814參考文獻 818第五篇 有機無機能源礦產相互作用的實驗模擬研究第二十六章 天然氣在鈾成礦中的作用 823**節 模擬實驗及其產物和反應歷程 823第二節 地質驗證和創新機理 829參考文獻 830第二十七章 鈾在烴源巖生烴演化中的作用 832**節 油氣生成過程中的有機無機相互作用 832第二節 鈾在烴源巖生烴演化中作用的實驗研究 834第三節 實驗樣品與方法 835第四節 鈾在I型烴源巖生烴演化中的作用 837第五節 鈾在II型烴源巖生烴演化中的作用 845第六節 鈾在III型烴源巖生烴演化中的作用 851第七節 鈾在低熟煤生烴演化中的作用 858第八節 模擬實驗結果差異性分析及其與地質實際之間相關性 860參考文獻 863第六篇 與能源礦產伴生的其他礦產資源第二十八章 煤型鎵(鋁)礦床形成、特征及其分布 869**節 準格爾黑岱溝礦煤層的煤巖學和煤化學特征 870第二節 鎵的資源/儲量評估 874第三節 準格爾煤中鎵的主要載體與鎵富集 877第四節 準格爾電廠燃煤產物的礦物學和地球化學 882參考文獻 889第二十九章 煤中伴生礦產的形成與分布 893**節 煤中伴生礦產研究進展 893第二節 中國煤中主要伴生礦產 896第三節 煤中伴生礦產的成因類型及利用前景展望 919參考文獻 922第七篇 多種能源礦產協同勘探模式與沉積盆地成礦系統第三十章 鄂爾多斯盆地多種能源礦產分布特征與協同勘探 929**節 盆地多種能源礦產的時空分布特征 929第二節 多種能源礦產成生與共存關系 933第三節 多種能源礦產成礦階段劃分與成礦系統分析 939第四節 多種能源礦產協同勘探 944參考文獻 951第三十一章 沉積盆地成藏(礦)系統 954**節 沉積盆地動力學與盆地成礦系統 954第二節 成礦特點及影響因素 956第三節 成礦作用和過程 961第四節 成礦環境與背景 970參考文獻 974The dynamics of sedimentary basins and energy minerals Preface Part 1 Coexisting characteristics, accumulation (mineralization) mechanism, and spatial enrichment law of oil/gas, coal and uranium in the same basin Chapter 1 Global characteristics and distribution law of oil, gas, coal and uranium coexisting in the same basin 3 1.1 Resources and production of global uranium deposits and sandstone-type uranium deposits 3 1.2 Distribution characteristics of sandstone-type uranium deposits discovered in the world 15 1.3 Characteristics of oil, gas, coal and uranium co-existing in basins 26 References 35 Chapter 2 Metallogenetic province of multi-energy minerals in Central-east Asia 46 2.1 Subdivisions of the Central-east Asia multi-energy minerals metallogenetic domain and distribution of those basins 46 2.2 Types of energy basins in the Central-east Asia 55 2.3 Occurrences characteristics and distribution pattern of multi-energy minerals 58 2.4 Geodynamic environment and evolution of multi-energy basins 65 References 70 Chapter 3 Mineralization mechanism, spatial enrichment law and related advances of oil/gas, coal and uranium coexisting in the same basin 73 3.1 Fundamental features and mineralization characteristics of oil, gas, coal and uranium 73 3.2 Co-existing characteristics and distribution pattern 79 3.3 Metallogenetic conditions and occurrences environment 88 3.4 Interaction and accumulation/mineralization mechanism of oil, gas, coal and uranium 119 3.5 Distinguishing signs of Co-exist of multiple energy minerals 148 3.6 Integrated assessment, prediction and co-exploration of multiple energy minerals 156 References 165 Part 2 Deep structure, tectonic-thermal characteristics and evolution in the Ordos Basin Chapter 4 Geophysical field and deep structure in the Ordos Basin and its adjacent areas 179 4.1 Features of geophysical fields and deep structure in the Ordos Basin and its adjacent regions 179 4.2 Observation of the crustal and upper mantle structures from broadband seismics in the southern Ordos Basin and its adjacent regions 184 4.3 Surface wave dispersion features and 1 -D velocity structure beneath the southern Ordos Basin and its adjacent regions 200 4.4 The Meso-Cenozoic geodynamics of tectonic evolution in the southern Ordos Basin and its adjacent regions from deep structure 205 References 208 Chapter 5 Geothermal field and thermal history reconstruction in the Ordos Basin 212 5.1 Characteristics of present geothermal field in basin 212 5.2 Recovery of paleo-geothermal field and characteristics of thermal anomaly in the Late Mesozoic basin 220 5.3 Late uplifting cooling and recovery of basin geothermal history in basin 230 5.4 Tectonic thermal events and their forming background in basins and adjacent areas 238 5.5 Basin thermal history and formation of multi-energy minerals 243 References 247 Chapter 6 Geochronology of tectonic-thermal events during the Meso-Cenozoic in the Ordos Basin 251 6.1 Geochronology records of the Meso-Cenozoic tectonic events in the southwest Ordos Basin 251 6.2 Geochronology records of the Meso-Cenozoic tectonic events in the northeast Ordos Basin 260 6.3 Peak age coordinates of the Meso-Cenozoic tectonic events in the Ordos Basin 270 6.4 Meso-Cenozoic tectono-thermal conversion effecting on the coexistence of multi-resources 275 References 293 Chapter 7 Meso-Cenozoic depositional and burial histories in the Ordos Basin 296 7.1 Current stratigraphic framework 296 7.2 Calculation of the unconformity surfaces denudation thickness 304 7.3 Burial history of the strata 314 References 320 Chapter 8 Cenozoic tectonic inversion and geodynamic setting in the Ordos Basin 323 8.1 Determination of the tectonic reverses in the east and west of Ordos Basin 323 8.2 Significance of the tectonic reverses in the east and west of Ordos Basin 331 8.3 Geodynamic environment of the tectonic reverses in the Ordos Basin 332 References 337 Chapter 9 Formation, evolution and environmental changes in the Ordos Plateau 340 9.1 Formation of the Ordos Plateau from the Mid-Late Miocene to Early Quaternary 340 9.2 The lateritic clay of Ordos Plateau and its adjacent areas 344 9.3 Dissolution of “lateritic clay plateau”, the formation and environmental change of Loess Plateau 359 References 363 Part 3 Fluid-rock interaction between organic and inorganic materials and its implications for co-existance of multi-energy resources Chapter 10 Distribution patterns of sedimentary organic facies and geochemical conditions for coexistence of various organic energy resources within the same basin 371 10.1 Sedimentary organic facies 371 10.2 Sedimentary organic facies division and facies characteristics in Mesozoic 372 10.3 Model of sedimentary organic facies and potential of hydrocarbon generation and type of mineralization in Mesozoic 381 10.4 Discussion on numerical analysis method of sedimentary organic facies 385 References 387 Chapter 11 Characteristics and distribution of radioactive anomalies originated from different strata in the Ordos Basin 390 11.1 Identification of radioactive anomalies 390 11.2 Characteristics and distribution of radioactive anomalies originated from different strata of the Ordos Basin 391 11.3 Genetic analysis of radioactive anomalies 402 11.4 The forming environment and mechanism of radioactive anomalies originated from different strata of the Ordos Basin 409 References 413 Chapter 12 Distribution, occurrence and enrichment mechanism of uranium element in the Chang-7 interval of the Yanchang Formation in the Ordos Basin 415 12.1 Features of uranium anomaly of source rocks in Chang-7 interval of Yanchang Formation and the logging identification 415 12.2 Petrology and element geochemistry characteristics of Chang-7 interval oil shale with anomaly uranium 422 12.3 Occurrence and enrichment mechanism of uranium in the source rocks of Chang-7 interval 434 References 445 Chapter 13 Northward migration-dissipation of the natural gas in Upper Paleozoic strata in the northern Ordos Basin 446 13.1 Geochemical evidences of the natural gas migration and dissipation 446 13.2 Dynamics and passage of the natural gas migration 454 13.3 The estimated loss amount of natural gas 457 References 463 Chapter 14 Natural gas dissipation and characteristics of bleaching sandstone in the northeastern Ordos Basin 465 14.1 Geological and geochemical evidence of dissipation of natural gas 465 14.2 Characteristics and forming mechanism of bleaching sandstone in the northeastern Ordos Basin 477 References 496 Chapter 15 Migration-dissipation of natural gas and its geological effect,identification 500 15.1 Introduction 500 15.2 Evidences of the dissipation of natural gas 502 15.3 Geological alteration and the effects of uranium mineralization 507 15.4 Causation analysis of geological alteration effects 519 15.5 Related experimental process of the geological effects of dissipation of natural gas 532 15.6 Discrimination indicator of the alteration of natural gas dissipation and uranium ore-formation model 537 References 542 Chapter 16 Geochemistry records of hydrothermal activities of multi-energy resources 545 16.1 Features of accumulation environment of multi-energy resources 545 16.2 Geochemistry records of hydrothermal activities of multi-energy resources 550 References 563 Part 4 Occurrence, mineralization and distribution of multi-energy resources in the Ordos Basin Chapter 17 Occurrence, accumulation and distribution of hydrocarbon resources in the Ordos Basin 567 17.1 Geological background of petroleum occurrence in Ordos Basin 567 17.2 Accumulation and distribution characteristics of the Paleozoic gas reservoirs 571 17.3 Accumulation and distribution characteristics of the Mesozoic oil reservoirs 583 References 598 Chapter 18 A novel pool-forming model of the low-permeability oil field in the Yanchang Formation 601 18.1 Geological background and reservoir formation conditions of the Xifeng oilfield 601 18.2 Diagenesis and hydrocarbon charge history of major reservoir in the Xifeng oilfield 605 18.3 Direction and distance of the second migration of the oils in the Xifeng oilfield 611 18.4 Accumulation process and model of the Xifeng oilfield 618 References 623 Chapter 19 Fluid dynamics, migration pathways and pool-forming effect in northern Ordos Basin 632 19.1 Separation of hydrodynamic system 632 19.2 Distribution and evolution of fluid dynamics 641 19.3 Dominant migrating channel of the natural gas 653 19.4 Reservoiring pattern and migration of the nature gas 660 References 674 Chapter 20 Geological characteristics, distribution and potential resource of coal resource in the Ordos Basin 678 20.1 Geology characteristics and resource potential of the Carboniferous-Permian coalfield 678 20.2 Geology characteristics and resource potential of the Triassic coalfield 686 20.3 Geology characteristics and resource potential of the Jurassic coalfield 686 20.4 Analysis of coal resources and development situation 693 20.5 Coalbed methane resource 694 References 701 Chapter 21 Distribution, basic characteristics of the sandstone-type uranium deposit in the southern Ordos Basin 703 21.1 Types and spatial and temporal distribution of uranium deposit in the southern Ordos Basin 703 21.2 The characteristics of sandstone-type uranium deposit in the southern Ordos Basin 707 21.3 Comprehensive comparison of sandstone-type uranium mineralization in the southern and northern Ordos Basin 721 References 725 Chapter 22 Geological characteristics and mineralization of sandstone-type uranium deposit developed in fault-fold structural belt in the Ordos Basin 726 22.1 Uranium mineralization environment in Huianbu area 726 22.2 Mineralization characteristics of sandstone-type uranium deposit in Huianbu area 732 22.3 Mineralization model of uranium deposit in the Huianbu area, western edge of fault-fold zone 742 References 745 Chapter 23 Relationship between the Jurassic coal-bearing strata and uranium mineralization in the northeastern Ordos Basin 746 23.1 Isochronous stratigraphic architecture of coal-uranium-bearing strata 746 23.2 Hydrocarbon generation capacity of the Jurassic coal-bearing strata 751 23.3 Potential influence of Jurassic coal-bearing strata on uranium mineralization 754 References 759 Chapter 24 Geochemical characteristics and source of organic matter in the Dongsheng sandstone-type uranium deposit 762 24.1 Samples and experimental 763 24.2 Organic geochemical characteristics and their sources 764 References 781 Chapter 25 Metallogenic features and model of the Dongsheng sandstone-type uranium deposit in the northeastern Ordos Basin 785 25.1 Geological setting and basic signatures of Dongsheng sandstone uranium deposit 785 25.2 Origin of greenish sandstones in the Dongsheng ore area 789 25.3 Alterations of Zhiluo Formation sandstones related to uranium mineralization 796 25.4 Signatures of organic materials and their relations to uranium mineralization 801 25.5 Metallogenic superposition model of Dongsheng sandstone uranium deposit 814 References 818 Part 5 Experimental simulation of the interaction between organic and inorganic energy minerals Chapter 26 Role of natural gas in the process of uranium mineralization 823 26.1 Simulation experiment results and the reaction mechanism 823 26.2 The verification by geological conditions and the novel mechanism 829 References 830 Chapter 27 Effects of uranium on hydrocarbon evolution of hydrocarbon source rock 832 27.1 Organic-inorganic interactions in hydrocarbon generation process 832 27.2 Experimental study of the effects of uranium on hydrocarbon generation of hydrocarbon source rocks 834 27.3 Samples and methods 835 27.4 Effects of uranium on hydrocarbon generation of hydrocarbon source rocks with type-I kerogen 837 27.5 Effects of uranium on hydrocarbon generation of hydrocarbon source rocks with type-II kerogen 845 27.6 Effects of uranium on hydrocarbon generation of hydrocarbon source rocks with type-III kerogen 851 27.7 Effects of uranium on hydrocarbon generation of immature coal 858 27.8 Difference and correlation between experiment and geology reality 860 References 863 Part 6 Other mineral resources co-existed with the major energy deposits Chapter 28 Formation, characteristics and distribution of coal-hosted Ga (Al) ore deposit 869 28.1 Coal petrology and chemistry of the coal in the Heidaigou coal mine 870 28.2 Estimations of Ga resources/reserves 874 28.3 Major carriers and enrichment of Ga in the Jungar coal 877 28.4 Mineralogy and geochemistry of coal combustion products from Jungar power plants 882 References 889 Chapter 29 Formation and distribution of coal-associated minerals 893 29.1 Advances of study on coal-associated minerals 893 29.2 Coal-associated minerals in Chinese coal 896 29.3 Genetic types of the associated minerals in coal and the utilization prospect 919 References 922 Part 7 Cooperative exploration mode about multi-energy resources and mineralization system within sedimentary basin Chapter 30 Distribution and cooperative exploration mode about multi-energy resources in the Ordos Basin 929 30.1 Space-time distribution of multi-energy minerals resources in the Ordos Basin 929 30.2 Relationship of genesis and coexistence of multi-energy minerals resources 933 30.3 Metallogenic stages classification and metallogenic system analysis of multi-energy minerals resources 939 30.4 Co-exploration mode of multi-energy minerals resources 944 References 951 Chapter 31 Metallogenic or pool-forming system within sedimentary basin 954 31.1 Dynamics of sedimentary basin and basin reservoir (ore) forming system 954 31.2 Mineralization characteristics and influencing factors 956 31.3 Ore-forming processes and mineralization 961 31.4 Ore-forming environment and setting 970 References 974
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