首页 | 本学科首页   官方微博 | 高级检索  
相似文献
 共查询到20条相似文献,搜索用时 62 毫秒
1.
中、上扬子地区下寒武统牛蹄塘组烃源岩分布广泛,在川东-鄂西-黔北-黔中一带,高有机质丰度的泥质烃源岩具有相当大的厚度.通过采集烃源岩样品分析,并根据前人对海相烃源岩评价标准,对该区牛蹄塘组海相烃源岩进行了综合评价.研究表明,中上扬子地区烃源岩有机碳含量总体很高,大部分烃源岩达到了好、很好的标准,有机质类型主要为Ⅰ型,烃...  相似文献   

2.
通过综合运用有机地球化学方法,利用实测和收集到的烃源岩数据,对堡古2井的烃源岩进行分析,从有机质丰度、有机质成熟度、热解产率和排烃门限对区内烃源岩进行了评价,研究了该井的有机生烃特征,结果表明,南堡3号潜山发育丰富的烃源岩,有机碳含量高,有机质类型以Ⅱ1、Ⅱ2型为主,烃源岩已不同程度地进入成熟 高成熟阶段.综合分析表明,南堡3号潜山具备一定的生烃条件和油气勘探前景,可作为下一步的重要勘探和开发目标.  相似文献   

3.
南黄海海域广泛分布了海相古生界,区域地质研究表明,南黄海海相古生界主要发育4套烃源岩层系,分别为下寒武统幕府山组泥质烃源岩,上奥陶统-下志留统五峰组-高家边组泥质烃源岩,下二叠统栖霞组灰质烃源岩和上二叠统龙潭-大隆组泥质烃源岩。通过对这4套烃源岩沉积特征及地球化学实验数据分析,开展了烃源岩地化特征和生烃潜力的评价。评价结果认为,下寒武统幕府山组、下二叠统栖霞组烃源岩有机质丰度高,类型好,生烃潜力高,为好-最好烃源岩;上二叠统龙潭组、大隆组烃源岩,其有机质丰度高,但有机质组成以陆源有机质为主,为较好烃源岩;奥陶-志留系为一般烃源岩,在此基础上,计算南黄海地区的天然气资源量为2.75万亿m~3。  相似文献   

4.
中国海域及邻区某些盆地生油岩的有机地球化学特征   总被引:1,自引:0,他引:1  
本文根据有机地球化学资料,研究和探讨了中国海域及邻区某些盆地生油岩的有机质丰度、可溶有机质的组成特征和不溶有机质的性质。结果表明,绝大多数生油岩有机碳含量大于0.90%,氯仿沥青“A”含量平均值大于600ppm,总烃大于200ppm。母质类型为腐殖—腐泥型和腐泥—腐殖型。  相似文献   

5.
为了综合确定平北地区的主力烃源岩,深化其油气成藏动力学过程研究,在烃源岩分布特征及有机质丰度、类型和成熟度分析的基础上,应用舍油气盆地数值模拟技术,定量恢复了研究区主要烃源岩层系的生排烃历史。研究表明,平北地区主要发育始新统平湖组、渐新统花港组两套烃源岩系,其中平湖组暗色泥岩为主力烃源岩,具较高的有机质丰度、成熟度、生排烃强度与排烃效率;以平湖组为源岩的油气系统应是本区油气勘探的主要目标。  相似文献   

6.
以下刚果盆地M区块Madingo组烃源岩为研究对象,通过X-射线衍射、薄片鉴定、背散射、能谱分析、主量元素及有机地化测试等技术手段,分析了烃源岩的矿物组成、古生物与岩相特征,并讨论了烃源岩有机质富集机制。结果表明:Madingo组烃源岩矿物组成以黏土矿物和硅质矿物为主,方解石和长石次之,含有少量的白云石和黄铁矿;有孔虫、放射虫等微古生物发育;根据矿物组成、古生物特征和磷酸盐含量,并结合显微岩石构造,共识别出富有孔虫细粒岩、富放射虫细粒岩、磷质细粒岩、黏土质细粒岩、长英质细粒岩和灰质细粒岩6种岩相类型。研究区Madingo组烃源岩的发育受海平面升降、上升流、古地理和古气候的控制:Madingo组共识别出3期海侵/海退旋回,海平面升降通过控制水体深度、氧化还原条件和沉积物类型,进而控制岩相和烃源岩的发育;富放射虫细粒岩、磷质细粒岩和富有孔虫细粒岩有机质含量较高,推测为两期不同规模的上升流沉积;Madingo组沉积时期,研究区发育与盐底辟活动相关的陆架内部洼陷,相对封闭的水体环境有利于有机质的保存;古气候经历了干旱气候、相对湿润气候和湿润气候3个阶段,通过控制海洋中陆源有机质输入在一定程度上影响烃源岩有机质丰度和有机质类型。  相似文献   

7.
对阜新凹陷白垩系源岩生烃基本条件进行了详细分析,并结合原油、天然气特征及油源对比研究,认为研究区存在浅湖相泥岩和沼泽相煤系源岩(由煤和泥岩构成)2种不同沉积环境下形成的烃源岩.2种源岩虽然层位不同,但在其有机质丰度和类型上并不存在较大的差异,生烃特征也基本相似,都具备成气为主、成油为辅的煤成烃特征,有机质成熟度及烃源岩的分布控制了源岩在整个演化过程中的生烃类型和数量.研究表明:在有机质受热演化的各个阶段,都会伴随着不同类型有机成因气的产出,未成熟阶段为煤型生物气,成熟—高成熟阶段主要为煤型热解气,还伴生少量的石油.  相似文献   

8.
丽水—椒江凹陷是东海陆架盆地油气勘探的一个重要领域,目前处于较低的油气勘探阶段。基于现有地质资料,在烃源岩发育特征及有机质丰度、类型和成熟度分析的基础上,采用含油气盆地数值模拟技术,定量恢复了研究区月桂峰组烃源岩的生排烃史。结果表明,月桂峰组烃源岩有机质丰度高,有机质类型以Ⅱ1型和Ⅱ2型为主,具有油气兼生的能力,总体上处于成熟阶段和高成熟阶段;月桂峰组烃源岩具有较高的生排烃强度,总体上经历了2次生排烃过程,但在不同构造单元存在明显的差异性。总之,以月桂峰组烃源岩为油气来源的含油气系统是该区油气勘探的主要目标。  相似文献   

9.
利用最新的三维地震、钻井、测井、烃源岩和原油分析化验等资料,对庙西北洼烃源岩地球化学指标、分布特征及成因环境进行了分析,借助盆地模拟和油源对比结果,明确了庙西北洼的主力烃源岩层系和勘探潜力。研究认为:庙西北洼发育东营组和沙一二段2套烃源岩,其中沙一二段烃源岩有机质类型好、丰度高、有机质成熟度高,为好—很好烃源岩,其排烃量占洼陷总排烃量的56%,是庙西北洼的主力烃源岩。油源对比结果表明,PL15-2亿吨级大油田的原油来自沙一二段烃源岩,进一步佐证了沙一二段为主力烃源岩,也预示了庙西北洼具有良好的勘探潜力。  相似文献   

10.
陆相烃源岩评价参数浅析   总被引:16,自引:0,他引:16  
为了更好地把握陆相烃源岩评价参数的研究现状和发展趋势,在查阅大量有关陆相烃源岩评价指标文献的基础上,结合前人对陆相烃源岩评价参数的分析,综述了陆相烃源岩评价的3个主要参数,即有机质丰度、有机质类型和有机质成熟度,分析认为,各种参数都有其适用范围,相互影响,相互依存,需要多种指标相互配合综合评价才能得出客观的评价参数;简要讨论了烃源岩评价中存在的问题。  相似文献   

11.
Surface water was collected from the Jiulong Estuary for determination of activity concentrations of uranium isotopes in different size fractions, namely, greater than 53, 10 -53, 2 - 10, 0.4 -2 μm, 10 000 u -0.4 μm and less than 10 000 u fractions by microfihration and cross-flow uhrafiltration technologies. Results indicated that most of the dissolved uranium ( 〈 0.4 μm) exis- ted in the low molecular mass fraction ( 〈 10 000 u), and the colloidal uranium-238 (10 000 u -0.4 μm) only contributed less than 1% of the dissolved uranium-238. The fractions of colloidal uranium in the dissolved phases decreased with the increasing sa- linity. A positive linear relationship between uranium-238 activities and salinities was observed for the dissolved, colloidal and low molecular mass fractions, indicating a conservative behavior of uranium in the Jiulong Estuary. In the particulate phases ( 〉 0.4 μm), the partitioning of uranium isotopes among different size fractions was controlled by the partitioning of particle concentrations. In the regions with salinities below 20, the partitioning of uranium-238 among different size fractions was as follows: 10 - 53 μm 〉 2 - 10 μm 〉 0.4 - 2 μm greater than above 53 μm. However, the order at the offshore station with salinities above 30 changed as follows : 0.4 - 2 μm 〉 10 - 53 μm 〉 2 - 10 μm greater than above 53 μm. The fraction of the 0.4 - 2 μm particles increased at the offshore station, suggesting the increased contribution of the authigenic uranium. The activity ratio of uranium-234 to uranium-238 in the dissolved phases, including the low molecular mass fraction and the colloidal fraction, was larger than unity, showing the occurrence of excess uranium-234. In contrast, the activity ratio of uranium-234 to uranium-238 in all size fractions of the particulate phase was close to the equilibrium value (1.0). The observed different values of the activity ratio of uranium-234 to uranium-238 in the dissolved phase and the partic  相似文献   

12.
13.
In China submarine geosciences represents a newly established discipline of oceanography, focusing on the oceanic lithosphere, and its interface with the hydrosphere and biosphere. Recently, supported by the National High Technology Research and Development Program and other high-tech development projects, significant progress has been made in the development of advanced technologies and equipment. This en- ables the scientists in China to carry out explorations of the international seabed area in the Pacific Ocean and on the Southwest Indian Ridge. In addition, they have been active in the research activities associated the mid-ocean ridges and western Pacific marginal seas. It is anticipated that this research field will continue to be highly fruitful in the near future.  相似文献   

14.
湄洲湾夏季的初级生产力   总被引:2,自引:3,他引:2  
王宪  李文权 《台湾海峡》1994,13(1):8-13
湄洲湾1992年夏季的叶绿素a,三磷酸腺苷,碳比积累速率,初级生产力的变化范围和均值分别为0.45-4.72,1.49mg/m^3;0.12-1.07,0.31μg/dm^3;0.06-0.58,0.34d^-1;0.07-0.34,0.21m/(m^2.d)。叶绿素a与三磷酸腺苷之间。初级生产力与碳比积累速率之间均呈正相关关系。叶绿素a三磷本能腺苷的比值为4.8,湄洲湾夏季浮游植物的生长受氮不足  相似文献   

15.
海水中重金属铅的检测方法研究进展   总被引:3,自引:0,他引:3       下载免费PDF全文
苏庆梅  秦伟 《海洋科学》2009,33(6):105-111
铅(Pb)是已知毒性最大的重金属污染物之一,它可通过呼吸以及饮食摄入人体.铅是一种慢性的积累性毒物和潜在的致癌、致突变物质.铅的性质与钙类似,在人体骨骼中能够积蓄,主要损害神经系统、造血器官和肾脏 [1].鉴于重金属铅对人体如此严重的生物毒性作用,美国环保总局(EPA)将其列入内分泌干扰物(又称环境激素)名单,因此对环境水体中铅的检测具有重要意义.本文简述了海水中铅的含量及其存在形态,评述了原子光谱法、分子光谱法、质谱法及电化学法在海水中铅含量及其形态分析中的应用.  相似文献   

16.
Izvestiya, Atmospheric and Oceanic Physics - The results of satellite wildfire monitoring and estimates for the amounts of emissions of harmful gases and fine aerosols in Siberia from 2001 to 2019...  相似文献   

17.
夏季珠江口沉积物中营养盐剖面分布和界面交换通量   总被引:21,自引:4,他引:21  
通过对夏季珠江口区域沉积物间隙水营养盐剖面分析,调查了营养盐含量分布和特征,探讨了有机物的降解特性、营养盐的底部通量估算和作用.结果表明,珠江口沉积物间隙水中营养盐以高含量铵盐为主要的存在形式,沉积物中有机物的降解反应主要在厌氧状态下进行,底部水体铵盐的增加来源于底部沉积物有机质的降解释放,而且对水体的营养盐循环有较大的贡献.  相似文献   

18.
Marine environment protection in Europe faces a number of challenges. One is the coordination of relevant sectoral policies — such as agricultural and fisheries policies — with regard to marine protection objectives. The question in the following is on how marine protection issues can be more closely integrated in sectoral policies under the conditions prevailing at present. In particular the strength and weaknesses of the Marine Strategy Framework Directive (MSFD) as the key instrument for marine environment protection in Europe are analyzed in this context. In particular, the MSFD does not adequately address all sectors and policies which are relevant to marine environment protection. One possible means of giving the MSFD greater influences on other policies of relevance to marine waters is to integrate the objectives established under the MSFD in the European maritime policy. The aim should be to require the further development of sectoral policies to take unrestricted account of the objectives of the MSFD implementation process. But also other instruments of marine policy such as maritime spatial planning and marine protected areas are crucial to advance the protection of European seas.  相似文献   

19.
20.
Much of the recent Canadian activity in marine technology has focused on development of capabilities in Arctic waters, and on the update and replacement of naval vessels. This paper describes some of the significant projects and programs now under way, and suggests future research and development requirements.  相似文献   

设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号