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101.
A New Progress of the Proterozoic Chronostratigraphical Division   总被引:1,自引:0,他引:1  
The Precambrian, an informal chronostratigraphical unit, represents the period of Earth history from the start of the Cambrian at ca. 541 Ma back to the formation of the planet at 4567 Ma. It was originally conceptualized as a "Cryptozoic Eon" that was contrasted with the Phanerozoic Eon from the Cambrian to the Quaternary, which is now known as the Precambrian and can be subdivided into three eons, i.e., the Hadean, the Archean and the Proterozoic. The Precambrian is currently divided chronometrically into convenient boundaries, including for the establishment of the Proterozoic periods that were chosen to reflect large-scale tectonic or sedimentary features(except for the Ediacaran Period). This chronometric arrangement might represent the second progress on the study of chronostratigraphy of the Precambrian after its separation from the Phanerozoic. Upon further study of the evolutionary history of the Precambrian Earth, applying new geodynamic and geobiological knowledge and information, a revised division of Precambrian time has led to the third conceptual progress on the study of Precambrian chronostratigraphy. In the current scheme, the Proterozoic Eon began at 2500 Ma, which is the approximate time by which most granite-greenstone crust had formed, and can be subdivided into ten periods of typically 200 Ma duration grouped into three eras(except for the Ediacaran Period). Within this current scheme, the Ediacaran Period was ratified in 2004, the first period-level addition to the geologic time scale in more than a century, an important advancement in stratigraphy. There are two main problems in the current scheme of Proterozoic chronostratigraphical division:(1) the definition of the Archean–Proterozoic boundary at 2500 Ma, which does not reflect a unique time of synchronous global change in tectonic style and does not correspond with a major change in lithology;(2) the round number subdivision of the Proterozoic into several periods based on broad orogenic characteristics, which has not met with requests on the concept of modern stratigraphy, except for the Ediacaran Period. In the revised chronostratigraphic scheme for the Proterozoic, the Archean–Proterozoic boundary is placed at the major change from a reducing early Earth to a cooler, more modern Earth characterized by the supercontinent cycle, a major change that occurred at ca. 2420 Ma. Thus, a revised Proterozoic Eon(2420–542 Ma) is envisaged to extend from the Archean–Proterozoic boundary at ca. 2420 Ma to the end of the Ediacaran Period, i.e., a period marked by the progressive rise in atmospheric oxygen, supercontinent cyclicity, and the evolution of more complex(eukaryotic) life. As with the current Proterozoic Eon, a revised Proterozoic Eon based on chronostratigraphy is envisaged to consist of three eras(Paleoproterozoic, Mesoproterozoic, and Neoproterozoic), but the boundary ages for these divisions differ from their current ages and their subdivisions into periods would also differ from current practice. A scheme is proposed for the chronostratigraphic division of the Proterozoic, based principally on geodynamic and geobiological events and their expressions in the stratigraphic record. Importantly, this revision of the Proterozoic time scale will be of significant benefit to the community as a whole and will help to drive new research that will unveil new information about the history of our planet, since the Proterozoic is a significant connecting link between the preceding Precambrian and the following Phanerozoic.  相似文献   
102.
南岭钨矿床研究一直是重要的前沿课题,近十余年来测试方法和技术的革新为南岭钨矿床研究注入了新活力,也取得了众多新进展.本文在系统查阅前人研究基础上对其进行总结,概括如下:①该区的岩浆-钨成矿活动不仅有燕山期,也有加里东期和印支期,但以燕山期最为强烈;②花岗岩浆是南岭钨矿床主要的直接物质来源,即使有少部分成矿物质是热液直接对含矿地层淋滤、萃取而来,但却被认为是次要的;③与花岗岩有关钨矿床的成矿流体主要来自花岗岩浆,在成矿作用晚期有不同程度的大气降水混入;④与钨有关的花岗岩主要由下地壳的早—中元古代岩石重熔形成,但地幔岩浆一定程度上参与了花岗岩的形成作用;⑤碱质交代在花岗岩浆演化形成钨矿床的过程中发挥了关键性作用;⑥不同学者对燕山期钨成矿作用动力学背景尚有不同看法,但该时期确定为板内伸展和裂谷环境已达成共识.  相似文献   
103.
The Basic Ocean Law (BOL) and Basic Ocean Plan (BLP) are important guarantee for the maritime strategy of Japan, which has established a complete policy system for the development of marine science and technology. On the other hand, the Japanese Government has started some major marine strategies and plans to promote the BLP. In this paper, the marine science and technology plans launched by the Japanese Government and its participation in the international cooperative research projects were introduced. The research of Japan Marine Science and Technology Center and the University of Tokyo Institute of Oceanography in the long-term planning and focus on the layout features, deep sea research technology layout, contents and advanced equipment were analyzed. At last, some recommendations for China’s development on marine science and technology were proposed, such as strengthening the legislation work and process, carrying out research and development of marine infrastructure with independent intellectual property rights, actively participating in international large-scale ocean plan, improving the discourse right and enhancing national maritime awareness and suggestions and so on.  相似文献   
104.
For 15 years since the beginning of China Argo project, China has deployed over 350 profiling floats in Pacific and Indian ocean, and constructed China Argo ocean observing network. Moreover, we have setup the Argo data receiving, processing and distributing system, and developed various Argo data products using Argo observations, which has promoted the progress of ocean data sharing in China. The abundant Argo data have become a main data source in oceanic and atmospheric basic researches and operational applications. A batch of important achievements in basic research and operational application have been brought, e.g. in aspects of tropical cyclone (typhoon), ocean circulation, meso-scale eddy, turbulence, heat/salt storage and transport and water mass, as well as in ocean, atmosphere/climate operational forecasting and predicting. With the extension of the international Argo program from “Core Argo” to “Global Argo”, we are faced with great challenges in the long-term maintaining and sustained developing of our Argo ocean observing network. It is suggested that we should take the opportunity to construct China regional Argo ocean observing network as soon as possible in adjacent northwestern Pacific and Indian ocean using Chinese BeiDou profiling floats, which will make us to take responsibility and obligation of a big country for addressing global climate changes and preventing natural disasters.  相似文献   
105.
Marine scientific research is crucial to forge solutions in the development of a new international legally binding instrument for the conservation and sustainable use of marine biological diversity in areas beyond national jurisdiction (ABNJ) under the 1982 United Nations Convention on the Law of the Sea . The transfer of marine technology, capacity development and marine genetic resources are key issues. This paper examines how the Intergovernmental Oceanographic Commission (IOC), as a competent international organisation for marine scientific research and technology transfer, can inform the development of the instrument. Synergies between marine technology transfer and non-monetary benefit sharing of genetic resources are illustrated. Four key lessons from the IOC are examined: 1. Coordinating international cooperation in marine scientific research; 2. Enabling open access to data and knowledge; 3. Facilitating capacity development through scientific training and education; and 4. Governance of marine scientific research. Realising the potential of the IOC to advance governance solutions for ABNJ will depend on increased political will from Member States and strengthened partnerships to reduce resource constraints and enhance the IOC's capacity at global and regional scales.  相似文献   
106.
综述了国外近20 a珊瑚礁连通性的研究简史,总结了珊瑚礁连通性研究的方法,阐述了"珊瑚礁连通性"的研究对珊瑚礁生态系统管理的重要意义。中国的珊瑚礁连通性研究刚起步,离国外还有很大差距,今后应加强珊瑚幼虫扩散路径、珊瑚群体内(群体间)遗传分化、遗传距离、基因流的研究,对我国海域珊瑚幼虫扩散的走廊加以保护。  相似文献   
107.
人类已进入大数据和人工智能时代,其成果已惠及千家万户。然而,大数据和人工智能技术在科学研究领域的应用却相形见绌,还未真正得到重视。大数据和人工智能是一种方法,一种思路,它不同于传统的科学研究方法和思路。在科学研究中,什么是大数据研究呢?符合大数据3个技术取向的是大数据研究,采用全数据模式的是大数据研究,从数据出发的是大数据研究。文中介绍了我们利用全球数据库数据厘定的玄武岩、安山岩、大陆边缘弧玄武岩(CAB)构造环境判别图,其中安山岩判别图填补了学术界的空白。玄武岩(MORB、OIB、IAB)判别图也不同于学术界早先熟知的判别图,是根据元素之间的相关关系厘定的。文中还讨论了大数据研究带来的一些可能很有意义的科学问题。如:1.在判别图研究中发现了许多效果较好的图解,主要依赖的是主元素、过渡元素和金属元素之间的关系,上述关系有什么意义,为什么会起到判别的作用?2.数据挖掘发现,全球大洋中脊中酸性岩极度匮乏,是否说明上地幔严重缺水?3.研究发现,中新世是全球岩浆活动最发育的时期,这一时期全球还出现了许多重大地质事件,二者之间是否存在关联?4.中新世全球埃达克岩最发育,按照埃达克岩的出露,发现从青藏高原到喀尔巴阡可能存在一个巨型的欧亚高原;5.根据对新生代苦橄岩全球时空分布研究,提出了一个如何认识全球热点问题等。文中还提出了下一步研究的建议并强调指出,科学已经进入大数据和人工智能时代,在大数据和人工智能时代,科学划分的标准发生了变化:凡是能够用数据化表述的学科才称之为科学,而不能用数据化表述的学科就不是科学,看来,能否被数据化是科学与非科学的分水岭。在大数据和人工智能时代,地质学和矿床学遭遇了空前的危机。按照我们的预测,在可以预见的未来,地球物理学将远超地质学,空间科学将异军突起,而在地质学领域内地球化学一花独放的局面还将维系很长一段时间。文中最后还探讨了今后找矿靠什么的问题,认为物化探和钻探测试技术的进步非常重要,同时,发展人工智能技术也已迫在眉睫。  相似文献   
108.
The Belt and Road initiative has a significant focus on infrastructure, trade, and economic development across a vast region, and it also provides significant opportunities for sustainable development. The combined pressure of climate variability, intensified use of resources, and the fragility of ecosystems make it very challenging, however, to achieve future sustainability. To develop the path in a sustainable way, it is important to have a comprehensive understanding of these issues across nations and evaluate them in a scientific and well-informed approach. In this context, the Digital Belt and Road (DBAR) program was initiated as an international venture to share expertise, knowledge, technologies, and data to demonstrate the role of Earth observation science and technology and big Earth data applications to support large-scale development. In this paper, we identify pressing challenges, present the research priorities and foci of the DBAR program, and propose solutions where big Earth data can make significant contributions. This paper calls for further joint actions and collaboration to build a digital silk road in support of sustainable development at national, regional and global levels.  相似文献   
109.
我国干热岩资源分布及勘探:进展与启示   总被引:3,自引:0,他引:3  
干热岩是地热资源的重要赋存形式之一,是未来地热开发的主攻方向.我国干热岩勘查工作近年来进展迅速,先后在不同地区发现了优质的干热岩资源,取得了我国干热岩资源勘查突破,但同时也存在不少勘查失败的案例.本文在分析高放射性产热型、沉积盆地型、近代火山型和强烈构造活动带型等四种类型干热岩成因模式的基础上,结合我国的地质构造背景、地热地质条件,对未来我国干热岩资源重点勘查方向及靶区进行了论述,并重点针对目前不同类型区干热岩资源勘探工程进行了梳理,简要分析了不同勘探区的选址依据、勘探过程、地温场分布及特征、前景预测等,并初步进行了经验总结,希望对我国未来干热岩资源勘查及开发工作起到借鉴作用.  相似文献   
110.
青藏高原气候变化若干前沿科学问题   总被引:9,自引:2,他引:7  
在全球变化的背景下,青藏高原冰冻圈和大气圈正在发生快速变化,对“亚洲水塔”和“第三极”的生态环境带来深刻影响。研究并梳理了近年来青藏高原气候变化的若干前沿科学问题的研究进展,如高原极端气候事件变化及其与大气环流的关系;高原变暖放大效应及海拔依赖型变暖的物理机制;再分析资料在高原气候变化应用的适用性;气候模式在高原资料稀缺地区的模拟偏差特征及不确定性;以及不同升温阈值下高原气候变化的预估及其风险等。同时展望了高原气候变化研究的前沿问题和科学难点。认清高原气候变化研究的前沿科学问题,可为“一带一路”倡议顺利实施提供科学依据。  相似文献   
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