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中国烃源岩研究进展、挑战与展望 被引量:8
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作者 腾格尔 蒋启贵 +2 位作者 陶成 郑伦举 谢小敏 《中外能源》 CAS 2010年第12期37-52,共16页
新中国油气工业发展60年历经两次大飞跃:第一次是在20世纪50年代初至80年代初,实现了陆相油气勘探重大发现并建立了陆相石油地质理论;第二次是在上世纪80年代初至今,实现了海相碳酸盐岩层油气勘探的重大突破并形成了中国特色海相石油地... 新中国油气工业发展60年历经两次大飞跃:第一次是在20世纪50年代初至80年代初,实现了陆相油气勘探重大发现并建立了陆相石油地质理论;第二次是在上世纪80年代初至今,实现了海相碳酸盐岩层油气勘探的重大突破并形成了中国特色海相石油地质理论。这些成果基于从中元古界到新近系均有发育的丰厚烃源岩基础,其中新生界陆相烃源岩和下古生界海相烃源岩生成了主要的石油储量,发现了大庆油田、渤海湾富油区和塔河等大油田;石炭—二叠系和侏罗系烃源岩构成了天然气储量主体,探明了苏里格、克拉2和普光等大气田。进入21世纪以来,中国油气勘探更呈现出"三海一陆"并进、石油稳定发展、天然气快速发展的良好态势,继上世纪60年代大庆和渤海湾油气大发现以后,全国年均新增探明石油地质储量再次突破10×108t大关,新增探明天然气储量也以年均5000×108m3的速度增长。该成果的取得与优质烃源岩、多元生烃的认识及陆相岩性地层油气藏、海相碳酸盐岩油气藏理论的提出等理论认识的重大突破,以及不断进步的钻探、物探和有机地球化学等勘探技术密不可分。目前,我国烃源岩研究仍面临着找到了大油气田主力烃源岩尚未明确、深层油气生成及其保存机制尚不清楚和资源潜力预测仍存在不确定性等亟待解决的众多挑战,其未来发展必须借助于油气勘探稳定发展的良好时机,把握生烃成藏的核心问题和勘探开发实际需求,切实将成烃与成盆、成藏作为一个含油气系统来动态研究烃源岩问题。 展开更多
关键词 中国烃源岩 陆相 海相 碳酸盐岩 多元生 石油 天然气
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《中国烃源岩》已由科学出版社出版
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《石油实验地质》 CAS CSCD 北大核心 2005年第5期461-461,共1页
《中国烃源岩》一书于2005年10月由科学出版社正式出版面世。该书是中国石化无锡石油地质研究所秦建中教授20多年从事冀中、二连及海拉尔湖泊相烃源岩评价、未熟油研究;华北及柴北缘煤成烃研究;青藏高原、华北、南方及塔里木等海相烃... 《中国烃源岩》一书于2005年10月由科学出版社正式出版面世。该书是中国石化无锡石油地质研究所秦建中教授20多年从事冀中、二连及海拉尔湖泊相烃源岩评价、未熟油研究;华北及柴北缘煤成烃研究;青藏高原、华北、南方及塔里木等海相烃源岩评价研究等形成的生烃理论的系统归纳和总结,集中体现了科研、基础理论与油气勘探生产紧密结合的特色。全书共5章90万字。 展开更多
关键词 中国烃源岩 科学出版社 源岩 理论 演化机制
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浅析中国新元古—下古生界海相烃源岩发育模式 被引量:30
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作者 张宝民 张水昌 +2 位作者 边立曾 金之钧 王大锐 《科学通报》 EI CAS CSCD 北大核心 2007年第A01期58-69,共12页
通过对中国钻井及露头剖面海相烃源岩岩石类型、赋存形式、指相矿物和生物、沉积地球化学和有机相的研究,并借鉴国外海相源岩发育模式的研究成果,认为单纯强调"保存模式"或单纯强调"高有机生产力模式",均不能客观... 通过对中国钻井及露头剖面海相烃源岩岩石类型、赋存形式、指相矿物和生物、沉积地球化学和有机相的研究,并借鉴国外海相源岩发育模式的研究成果,认为单纯强调"保存模式"或单纯强调"高有机生产力模式",均不能客观地解释和正确地揭示高有机质丰度烃源岩的形成机理.针对中国的地质实际,将新元古—下古生界海相源岩的形成机理概括为热水活动-上升洋流-缺氧事件、碳酸盐缓坡-上升洋流、干热气候-咸化静海、湿润气候-滞留静海4种模式.其典型实例分别为塔里木、华南及华北西南缘下寒武统欠补偿盆地有机相,塔里木塔中上奥陶统、上扬子下志留统碳酸盐缓坡灰泥丘有机相,塔里木、上扬子中寒武统蒸发澙湖有机相,塔里木西部中-上奥陶统、上扬子下志留统龙马溪组闭塞欠补偿陆源海湾有机相.此外,将中国海相低有机质丰度沉积概况为广阔陆表海"消耗"-"稀释"和超补偿盆地"贫化"-"稀释"两类模式. 展开更多
关键词 中国海相源岩 上升洋流 缺氧事件 热水活动 干热气候-咸化静海 湿润气侯-滞留静海
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Organic petrology and hydrocarbon generation of potential source rocks in Permian formation of Junggar Basin,Northwest in China 被引量:2
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作者 秦黎明 张枝焕 《Journal of Central South University》 SCIE EI CAS 2013年第6期1693-1702,共10页
From the outcrops in the Yaomoshan and Hongyanchi sections, oil shales, deep dark mudstones or black mudstones with better organic richness were found. Through the analysis of the samples in the organic petrology meth... From the outcrops in the Yaomoshan and Hongyanchi sections, oil shales, deep dark mudstones or black mudstones with better organic richness were found. Through the analysis of the samples in the organic petrology method, the microscope features of the sedimentary organic matter were studied. The results indicate that three types of kerogens present in the measured samples. Kerogen type I consists of the laminate algainite, abundant sporinite and only little content of cutinite, which can mainly generate oil. The generation hydrocarbon components of the type II kerogen are dominated by the sporinite, cutinite and little the exinite debris. The type III kerogen is comprised of the sporinite and debris of the exinite with some components of gas generation. Through the analysis of the experiments, the organic kerogen of the Lucaogou formation is mostly comprised of the type I, partially type II, and particularly type III. In Hongyanchi formation, the organic type is mixed by the types II and III. The plot of the ($1+$2) or TOC value and the content of exinite show two trends. From the evolution of burial and the Permian source rocks in Changji Depression, the Permian formation source rock has ended the generation of hydrocarbon. A significant difference in constituents of the organic macerals among three kerogens in these samples leads to the distinction of the potential hydrocarbon generation. The Lucaogou formation for kerogen type I has better potential hydrocarbon generation. It can reach the oil peak with Ro ratio Of 0.9%. For the kerogen II, the oil peak of the source rocks comes late with the Ro ratio of 1.0% with less quantity of the generation hydrocarbon than the kerogen I. For type III, it can mainly generate gas and reach the gas peak with the Ro ratio of 1.3%. In a word, the Lucaogou formation and Hongyanchi formation source rocks with high organic richness in Permian source rocks have well exploration prospects. 展开更多
关键词 organic macerals hydrocarbon generation potential Permian source rocks southern Junggar Basin
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Hydrocarbon charging of the Ordovician reservoirs in Tahe-Lunnan area, China 被引量:1
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作者 WU Nan CAI ZhongXian +3 位作者 YANG HaiJun WANG ZhenQi LIU XianFeng HAN JianFa 《Science China Earth Sciences》 SCIE EI CAS 2013年第5期763-772,共10页
The Tahe-Lunnan hydrocarbon province is China's largest region with oil-and-gas-producing marine carbonate rocks. However, in terms of multi-source hydrocarbon generation, multi-episode reservoir adjustment and re... The Tahe-Lunnan hydrocarbon province is China's largest region with oil-and-gas-producing marine carbonate rocks. However, in terms of multi-source hydrocarbon generation, multi-episode reservoir adjustment and reconstruction, it remains unsettled how to determine the geological period of primary hydrocarbon filling of the Ordovician reservoir in this region. Based on the analysis of distribution and properties of reservoir, hydrocarbon filling of the Cambrian source rocks in the Late Caledon stage has largely been destroyed. However, hydrocarbon filling of the Middle Ordovician source rocks in the Early Carboniferous resulted in the major body of crude oil. During the charging process, the hydrocarbons were oxidatively degraded to heavy oil due to the poor closure conditions, which is corroborated by homogenization temperature of inclusions. Moreover, the capturing of hydrocarbon inclusions with high-temperature does not represent the filling of mature petroleum in the later period, but represents the result of the natural gas containing light fraction. Therefore, the Tahe-Lunnan area underwent two hydrocarbon filling processes, and the invasion of excessive dry gas led to a gas-washing fractionation upon the original Ordovician reservoirs. 展开更多
关键词 Lunnan uplift hydrocarbon charging ORDOVICIAN gas washing
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The geobiological formation process of the marine source rocks in the Middle Permian Chihsia Formation of South China 被引量:5
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作者 LIU XiTing YAN JiaXin +2 位作者 XUE WuQiang MA ZhiXin LI Bo 《Science China Earth Sciences》 SCIE EI CAS 2014年第5期957-964,共8页
The Chihsia Formation is one of the four sets of regional marine hydrocarbon source rocks from South China.In the past two decades,detailed geochemical and sedimentological studies have been carried out to investigate... The Chihsia Formation is one of the four sets of regional marine hydrocarbon source rocks from South China.In the past two decades,detailed geochemical and sedimentological studies have been carried out to investigate its origination,which have demonstrated that the high primary productivity plays a primary role in the deposition of sediments enriched in the organic matter.However,the mechanism of this high productivity and the path of the deposition and burial of the organic matter have always been a mystery.Based on the previous studies on the Shangsi Section in Guangyuan City,Sichuan Province,we proposed that the development of the equatorial upwelling due to the sea level rise is responsible for the relatively high productivity in the Chihsia Formation.The sea waters with high nutrient were transported by the sub-surface currents along the equator.High organic carbon flux was deposited on the deeper shelf,and then decomposed by bacteria,leading to the occurrence of anaerobic respiration.The metabolism of the microorganisms consumed the dissolved oxygen in waters,which was in favor of the preservation of the organic matter.This suggested geobiological model integrating with paleoclimatology,paleoceanography and geomicrobiology will help us to understand the causes of this particular sedimentary sequence. 展开更多
关键词 Chihsia Formation source rocks primary productivity paleo-oxygenation facies GEOBIOLOGY South China
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Formation mechanism of condensates, waxy and heavy oils in the southern margin of Junggar Basin, NW China 被引量:6
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作者 CHEN JianPing DENG ChunPing +7 位作者 WANG XuLong NI YunYan SUN YongGe ZHAO Zhe LIAO JianDe WANG PeiRong ZHANG DiJia LIANG DiGang 《Science China Earth Sciences》 SCIE EI CAS CSCD 2017年第5期972-991,共20页
It is a challenge to determine the source and genetic relationship of condensate, waxy and heavy oils in one given complicated petroliferous area, where developed multiple sets of source rocks with different maturity ... It is a challenge to determine the source and genetic relationship of condensate, waxy and heavy oils in one given complicated petroliferous area, where developed multiple sets of source rocks with different maturity and various chemical features.The central part of southern margin of Junggar Basin, NW China is such an example where there are condensates, light oils, normal density oils, heavy crude oils and natural gases. The formation mechanism of condensates has been seriously debated for long time;however, no study has integrated it with genetic types of waxy and heavy oils. Taking the central part of southern margin of Junggar Basin as a case, this study employs geological and geochemical methods to determine the formation mechanism of condensates,waxy and heavy oils in a complicated petroliferous area, and reveals the causes and geochemical processes of the co-occurrence of different types of crude oils in this region. Based on detailed geochemical analyses of more than 40 normal crude oils, light oils,condensates and heavy oils, it is found that the condensates are dominated by low carbon number n-alkanes and enriched in light naphthenics and aromatic hydrocarbons. Heptane values of these condensates range from 19% to 21%, isoheptane values from1.9 to 2.1, and toluene/n-heptane ratios from 1.5 to 2.0. The distribution of n-alkanes in the condensates presents a mirror image with high density waxy crude oils and heavy oils. Combined with the oil and gas-source correlations of the crude oils, condensates and natural gas, it is found that the condensates are product of evaporative fractionation and/or phase-controlled fractionation of reservoir crude oils which were derived from mature Cretaceous lacustrine source rocks in the relatively early stage. The waxy oils are the intermediate products of evaporative fractionation and/or phase-controlled fractionation of reservoir crude oils, while the heavy oils are in-situ residuals. Therefore, evaporative fractionation and/or phase-controlled fractionation would account for the formation of the condensate, light oil, waxy oil and heavy oil in the central part of southern margin of Junggar Basin, resulting in a great change of the content in terms of light alkanes, naphthenics and aromatics in condensates, followed by great uncertainties of toluene/n-heptane ratios due to migration and re-accumulation. The results suggest that the origin of the condensate cannot be simply concluded by its ratios of toluene/n-heptane and n-heptane/methylcyclohexane on the Thompson's cross-plot, it should be comprehensively determined by the aspects of geological background, thermal history of source rocks and petroleum generation,physical and chemical features of various crude oils and natural gas, vertical and lateral distribution of various crude oils in the study area. 展开更多
关键词 Condensate Waxy oil Heavy oil Light hydrocarbons Evaporative fractionation Phase-controlled fractionation Southern margin of Junggar Basin
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