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中国南部及邻区能源资源成矿区带数据集 被引量:1
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作者 游国庆 易荣龙 +4 位作者 耿树方 陈炳蔚 庞健峰 杨志新 李佳林 《中国地质》 CAS CSCD 北大核心 2018年第A01期66-75,227-239,共11页
能源矿产是国家安全和经济发展的战略资源,加强我国及周边地区油气和煤等能源资源的研究和开发利用意义重大。依据板块构造和大陆动力学以及油气与煤成藏地质学理论,以深部构造控制盆—山发育、盆—山耦合和热动力系统控制成矿的研究工... 能源矿产是国家安全和经济发展的战略资源,加强我国及周边地区油气和煤等能源资源的研究和开发利用意义重大。依据板块构造和大陆动力学以及油气与煤成藏地质学理论,以深部构造控制盆—山发育、盆—山耦合和热动力系统控制成矿的研究工作思路,应用70个油气田、471个煤田的基础地质资料,从沉积盆地发育的区域地质特征、成矿地质条件和成矿单元诸多方面,在地理信息系统(GIS)平台上提示了该区板块构造格局与能源资源的时空分布规律。中国南部及邻区能源资源可划分为3个成矿域,每个成矿域又可进一步划分为成矿省、含矿区(盆地)、矿田聚集区带、矿田(油气田)五个级别的成矿区域。数据集由构造带(断裂带和造山带)类型和时代、盆地类型和时代、能源矿产资源类型和丰度、成矿区带等元数据组成。该数据集是在区域大地构造研究的基础上,结合沉积盆地能源矿产(石油、天然气、煤)资源评价资料,综合分析成矿区带特征,利用地理信息系统(GIS)建立的一套完整的数据库,不仅是对中国南部及邻区区域地质认识和沉积盆地能源资源勘查工作成果的集成,而且为国家科学地引导地质找矿工作部署提供理论基础。 展开更多
关键词 能源资源 成矿区带 数据集 中国南部及邻区
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Geochronology and Tectonic Evolution of the West Section of the Jiangnan Orogenic Belt 被引量:7
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作者 ZHANG Heng LI Tingdong +5 位作者 XIE Ying ZHANG Chuanheng GAO Linzhi geng shufang CHEN Tingyu YOU Guoqing 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2015年第5期1497-1515,共19页
As an important part of South China Old Land, the Jiangnan Orogenic Belt plays a significant role in explaining the assembly and the evolution of the Upper Yangtze Block and Cathaysia, as well as the structure and gro... As an important part of South China Old Land, the Jiangnan Orogenic Belt plays a significant role in explaining the assembly and the evolution of the Upper Yangtze Block and Cathaysia, as well as the structure and growth mechanism of continental lithosphere in South China.The Lengjiaxi and the Banxi groups are the base strata of the west section of the Jiangnan Orogenic Belt.Thus, the research of geochronology and tectonic evolution of the Lengjiaxi and the Banxi groups is significant.The maximum sedimentary age of the Lengjiaxi Group is ca.862 Ma, and the minimum is ca.822 Ma.The Zhangjiawan Formation, which is situated in the upper part of the Banxi Group is ca.802 Ma.The Lengjiaxi Group and equivalent strata should thus belong to the Neoproterozoic in age.The Jiangnan Orogenic Belt consisting of the Lengjiaxi and the Banxi groups as important constituents is not a Greenville Orogen Belt(1.3 Ga–1.0 Ga).The Jiangnan Orogenic Belt is a recyclic orogenic belt, and the prototype basin is a foreland basin with materials derived from the southwest and the sediments belong to the active continental sedimentation.By combining large amounts of dating data of the Lengjiaxi and the Banxi groups as well as equivalent strata, the evolutionary model of the western section of the Jiangnan Orogenic Belt is established as follows: Before 862 Ma, the South China Ocean was subducted beneath the Upper Yangtze Block, while a continental island arc was formed on the side near the Upper Yangtze Block.The South China Ocean was not closed in this period.From 862 Ma to 822 Ma, the Upper Yangtze Block was collided with Cathaysia; and sediments began to be deposited in the foreland basin between the two blocks.The Lengjiaxi Group and equivalent strata were thus formed and the materials might be derived from the recyclic orogenic belt.From 822 Ma to 802 Ma, Cathaysia continued pushing to the Upper Yangtze Block, experienced the Jinning-Sibao Movement(Wuling Movement); as result, the folded basement of the Jiangnan Orogenic Belt was formed.After 802 Ma, Cathaysia and the Upper Yangtze Block were separated from each other, the Nanhua rift basin was formed and began to receive the sediments of the Banxi Group and equivalent strata.These large amounts of dating data and research results also indicate that before the collision of the Upper Yangtze Block with Cathaysia, materials of the continental crust became less and less from the southwest to the east in the Jiangnan Orogeneic Belt; only island arc and neomagmatic arc were developed in the eastern section.Ocean-continent subduction or continent-continent subduction took place in the western and southern sections, while intra-oceanic subduction occurred in the eastern section.Comprehensive analyses on U-Pb ages and Hf model ages of zircons, the main provenance of the Lengjiaxi Group is Cathaysia. 展开更多
关键词 zircon U-Pb age evolutionary process Lengjiaxi Group Banxi Group Jinning-Sibao Movement(Wuling Movement) Jiangnan Qrogenic Belt
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华东地区高大平房仓粳稻储藏新工艺研究 被引量:7
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作者 耿淑芳 张太 +4 位作者 石嘉怿 张帅帅 沈晓宇 何伟 卓磊 《粮食储藏》 2020年第1期4-10,共7页
以华东地区的“嘉花”粳稻为研究对象,开展高大平房仓内环流均温、风管机空调降温等多项低温储藏技术的研究,分析比较上述储粮控温技术与传统控温技术的效果。同时,以整仓不同部位(表层、冷心、全仓)作为特定扦样位点,系统评价不同储粮... 以华东地区的“嘉花”粳稻为研究对象,开展高大平房仓内环流均温、风管机空调降温等多项低温储藏技术的研究,分析比较上述储粮控温技术与传统控温技术的效果。同时,以整仓不同部位(表层、冷心、全仓)作为特定扦样位点,系统评价不同储粮工艺条件下,粳稻在全年储藏期间水分、脂肪酸值、直链淀粉、发芽率等品质指标变化,以评估控温储粮实际效果。结果表明,通过粮面压盖、PEF保温材料、夏季风管机空调结合内环流均温、冬季短期适时通风等技术集成应用,可有效降低水分损失及延缓品质劣变,实现华东地区全年准低温储粮。 展开更多
关键词 大型平房仓 准低温 内环流 风管机空调
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