期刊文献+
共找到5篇文章
< 1 >
每页显示 20 50 100
湘中湘南地区奥陶纪达瑞威尔中晚期-凯迪早期岩相古地理及其油气地质意义 被引量:5
1
作者 葛祥英 牟传龙 +1 位作者 周恳恳 梁薇 《沉积与特提斯地质》 CAS CSCD 2011年第4期40-45,共6页
湘中湘南地区在早古生代时期,由于受海平面变化以及全球古气候的影响,形成了有利于烃源岩形成的沉积环境。笔者通过对湘中湘南地区的奥陶纪达瑞威尔中晚期-凯迪早期开展沉积相、岩相古地理和油气地质等研究,结合前人所取得的相关研究成... 湘中湘南地区在早古生代时期,由于受海平面变化以及全球古气候的影响,形成了有利于烃源岩形成的沉积环境。笔者通过对湘中湘南地区的奥陶纪达瑞威尔中晚期-凯迪早期开展沉积相、岩相古地理和油气地质等研究,结合前人所取得的相关研究成果,将该区划分为陆架相、盆地相和陆架边缘相。陆架相主要由砂质板岩、砂岩、黑色页岩和硅质岩组成;陆架边缘相为粉砂-细粒石英砂岩、长石石英砂岩夹条带状板岩、炭质板岩和硅质岩等组成;而盆地相为一套炭质页岩和硅质岩组成的黑色岩系,代表了一种平静还原的滞流缺氧环境。该套岩性有机质含量高,具较高的生烃潜力,且分布范围广,是湘中湘南地区达瑞威尔-凯迪阶的富烃沉积区,也是下一步油气地质调查和勘探的重要层位。 展开更多
关键词 湘中湘南地区 达瑞威尔阶-凯迪阶 烃源岩 岩相古地理 油气勘探
下载PDF
塔里木盆地奥陶纪碳同位素波动特征与对比 被引量:4
2
作者 刘存革 刘永立 +3 位作者 罗明霞 邵小明 罗鹏 张智礼 《成都理工大学学报(自然科学版)》 CAS CSCD 北大核心 2016年第2期241-248,共8页
在牙形石生物地层的基础上,利用塔里木盆地塔北隆起钻井全岩碳同位素数据,结合其他学者公布的碳同位素曲线,探讨了塔里木盆地奥陶纪碳同位素波动特征,并与世界其他地区进行对比。塔里木盆地奥陶纪特马豆克阶-达瑞威尔阶早期碳同位素波... 在牙形石生物地层的基础上,利用塔里木盆地塔北隆起钻井全岩碳同位素数据,结合其他学者公布的碳同位素曲线,探讨了塔里木盆地奥陶纪碳同位素波动特征,并与世界其他地区进行对比。塔里木盆地奥陶纪特马豆克阶-达瑞威尔阶早期碳同位素波动较弱,缺乏可全球对比的波动标志。达瑞威尔阶中期和凯迪阶早期发育明显的碳同位素正漂移,分别对应于国际上的中达瑞威尔阶碳同位素正漂移(MDICE)和加顿伯格碳同位素正漂移(GICE),能够进行全球对比。桑比阶早期牙形石Pygodus anserinus带内发育波动幅度达1.4‰的正漂移,其可能仅在部分地区分布,暂时命名为早桑比阶碳同位素正漂移(ESICE)。凯迪阶中后期碳同位素波动特征目前还不清楚,晚奥陶世赫南特阶碳同位素正漂移(HICE)在塔里木盆地也未见报道。MDICE和GICE可作为塔里木盆地中上奥陶统的等时对比标志。 展开更多
关键词 塔里木盆地 奥陶纪 碳同位素正漂移 达瑞威尔阶 桑比阶 凯迪阶
下载PDF
中国主要块体奥陶纪达瑞威尔期(Darriwilian)晚期—凯迪期(Katian)早期海相红层及其构造意义 被引量:10
3
作者 林宝玉 任纪舜 +1 位作者 李明 武振杰 《地质学报》 EI CAS CSCD 北大核心 2018年第10期2002-2017,共16页
根据中国主要块体奥陶纪达瑞威尔期地层学、古生物学和岩石学的特点,本文主要论述了中国9个块体,其中包括5个主要块体(扬子克拉通、中朝克拉通、塔里木克拉通、拉萨地块和喜马拉雅北坡)中达瑞威尔晚期—凯迪期早期海相红层的分布、岩性... 根据中国主要块体奥陶纪达瑞威尔期地层学、古生物学和岩石学的特点,本文主要论述了中国9个块体,其中包括5个主要块体(扬子克拉通、中朝克拉通、塔里木克拉通、拉萨地块和喜马拉雅北坡)中达瑞威尔晚期—凯迪期早期海相红层的分布、岩性特征和古动物群。它们的岩性特征:如红色灰岩;古生物群特征:如牙形石Pygodus serra动物群,P.anserinus动物群和Hamarodus europaeus动物群,珊瑚Yohophyllum动物群,以及头足类Sinoceras chinense动物群均十分相似或相同。这就充分阐明,中华古陆块群(包括扬子、中朝和塔里木克拉通等)与冈瓦纳古陆北缘古陆块群(包括拉萨地块和喜马拉雅北坡等)之间的关系十分密切,可能在此之前它们同属于冈瓦纳古陆。这对于阐明中华古陆块群与冈瓦纳古陆之间的关系具有重要意义。此外,还将海相红层分为两类:陆棚红层和大洋红层。陆棚红层主要见于寒武纪至三叠纪,大洋红层主要见于白垩纪至现代。 展开更多
关键词 中国主要块体 奥陶纪 达瑞威尔晚期至凯迪早期 海相红层 构造意义
下载PDF
Positive carbon isotope excursions:global correlation and genesis in the Middle-Upper Ordovician in the northern Tarim Basin,Northwest China 被引量:5
4
作者 Cun-Ge Liu Li-Xin Qi +4 位作者 Yong-Li Liu Ming-Xia Luo Xiao-Ming Shao Peng Luo Zhi-Li Zhang 《Petroleum Science》 SCIE CAS CSCD 2016年第2期192-203,共12页
Stable carbon isotope ratio (δ13Ccarb) analysis has been widely applied to the study of the inter-conti- nental or global marine carbonate correlation. Large-scale Cambrian-Ordovician carbonate platforms were devel... Stable carbon isotope ratio (δ13Ccarb) analysis has been widely applied to the study of the inter-conti- nental or global marine carbonate correlation. Large-scale Cambrian-Ordovician carbonate platforms were developed in the Tarim Basin. But research on fluctuation character- istics and global correlation of δ13Ccarb is still weak. Based on conodont biostratigraphy and whole-rock δ13Ccarb data in the Tahe oil-gas field of the northern Tarim Basin, the global correlation and genesis of positive carbon isotope excursions in the Darriwilian--Early Katian was exam- ined. Three positive excursions were identified in the Tahe oil-gas field including the middle Darriwilian carbon iso- tope excursion (MDICE), the Guttenberg carbon isotope excursion (GICE), and a positive excursion within the Pygodus anserinus conodont zone which is named the Early Sandbian carbon isotope excursion (ESICE) in this paper. Furthermore, these positive excursions had no direct relation with sea level fluctuations. MDICE and GICE could be globally correlated. The Middle-Upper Ordovi- cian Saergan Formation source rocks of the Kalpin outcrops were in accordance with the geological time of MDICE and ESICE. GICE had close relationship with the source rock of the Lianglitag Formation in the basin.Massive organic carbon burial was an important factor controlling the genesis of these positive excursions. 展开更多
关键词 Tarim Basin Tahe oil-gas field - Middle-Upper Ordovician Carbon isotope DARRIWILIAN Sandbian Katian source rock
下载PDF
Middle–Upper Ordovician(Darriwilian–Early Katian) Positive Carbon Isotope Excursions in the Northern Tarim Basin, Northwest China: Implications for Stratigraphic Correlation and Paleoclimate 被引量:9
5
作者 Cunge Liu Guorong Li +3 位作者 Dawei Wang Yongli Liu Mingxia Luo Xiaoming Shao 《Journal of Earth Science》 SCIE CAS CSCD 2016年第2期317-328,共12页
Three positive carbon isotope excursions are reported from Middle-Upper Ordovician in Tahe oil-gas field, northern Tarim Basin. Based on conodont biostratigraphy, the Middle Darriwilian Isotope Carbon Excursion(MDICE... Three positive carbon isotope excursions are reported from Middle-Upper Ordovician in Tahe oil-gas field, northern Tarim Basin. Based on conodont biostratigraphy, the Middle Darriwilian Isotope Carbon Excursion(MDICE) and the Guttenberg Carbon Isotope Excursion(GICE) are identified from Darriwilian to Early Katian by the aid of whole-rock carbon isotope data from two well cores. Positive excursion within conodont Pygodus anserinus zone is developed in Early Sandbian, and the fluctuation range is no less than MDICE. Because the range of this excursion in the generalized global carbon isotope curve is short, previous studies paid little attention to it, and named Early Sandbian Isotope Carbon Excursion(ESICE) in this paper. Furthermore, these positive excursions are not directly related to sea level fluctuations and the MDICE and GICE identified in northern Tarim can be globally correlated to that in southern China, North America, South America, and Europe. The Saergan Fm. source rocks of Middle-Upper Ordovician in Kalpin Dawangou outcrop are in accord with the geologic time of MDICE and ESICE, and GICE have strong ties to the source rock of Lianglitag Fm. in basin. Abundant organic carbon burial is an important factor in genesis of positive isotope carbon excursions. Positive oxygen isotope excursion, conodont fauna turnover, decreased conodont total diversity, and the change of sedimentary facies indicated that dramatic changes of paleoceanographic environment of Early-Middle Ordovician in Tarim Basin started from the end of Darriwillian, and an obvious icehouse climate of Late Ordovician occurred in ESICE. 展开更多
关键词 Tarim basin Tahe oil-gas field DARRIWILIAN Sandbian KATIAN carbon isotope paleoclimate source rock.
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部