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Cratons are conventionally assumed to be areas of long-term stability. However, whereas Precambrian basement crops out across most of the Baltic Shield, Palaeozoic and Mesozoic sediments rest on basement in southern Sweden, and thus testify to a complex history of exhumation and burial. Our synthesis of published stratigraphic landscape analysis and new apatite fission-track analysis data reveals a history involving five steps after formation of the extremely flat, Sub-Cambrian Peneplain. (1) Cambrian to Lower Triassic rocks accumulated on the peneplain, interrupted by late Carboniferous uplift and exhumation. (2) Middle Triassic uplift removed the Palaeozoic cover along the south-western margin of the shield, leading to formation of a Triassic peneplain with a predominantly flat relief followed by deposition of Upper Triassic to Lower Jurassic rocks. (3) Uplift that began during the Middle Jurassic to earliest Cretaceous caused denudation leading to deep weathering that shaped an undulating, hilly relief that was buried below Upper Cretaceous to Oligocene sediments. (4) Early Miocene uplift and erosion produced the South Småland Peneplain with scattered hills. (5) Early Pliocene uplift raised the Miocene peneplain to its present elevation leading to reexposure of the sub-Cretaceous hilly relief near the coast. Our results thus provide constraints on the magnitude and timing of episodes of deposition and removal of significant volumes of Phanerozoic rocks across the southern portion of the Baltic Shield. Late Carboniferous, Middle Triassic and mid-Jurassic events of uplift and exhumation affected wide areas beyond the Baltic Shield, and we interpret them as epeirogenic uplifts accompanying fragmentation of Pangaea, caused by accumulation of mantle heat beneath the supercontinent. Early Miocene uplift affected north-west Europe but not East Greenland, and thus likely resulted from compressive stresses from an orogeny on the Eurasian plate. Early Pliocene uplift related to changes in mantle convection and plate motion affected wide areas beyond North-East Atlantic margins. 相似文献
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西藏桑日县地区中生代火山岩地层层序——基于锆石U-Pb 年龄及地球化学数据 总被引:1,自引:0,他引:1
青藏高原中生代时期新特提斯洋演化及其相应的岩浆作用一直是高原基础研究的热点之一,其系统研究对新特提斯洋及拉萨地块的地质演化具有重要的意义。以桑日县地区出露的叶巴组、桑日群比马组、桑日群麻木下组、旦师庭组火山-沉积岩系为研究对象,在详细的野外调查及前人研究基础上,选择麻木下组安山岩和旦师庭组火山凝灰岩样品进行锆石U-Pb测年,对叶巴组和桑日群比马组火山岩进行地球化学对比研究。结果表明,桑日群上部比马组火山岩(189.0±3.0~195.0±3.0Ma)与叶巴组火山岩(174.2±3.6~192.7±1.3Ma)均形成于早侏罗世,且两者具有相似的地球化学特征,均为钙碱性岛弧火山岩,表明二者可能形成于相同的构造背景。因此,将比马组从原桑日群中解体出来与叶巴组合并为同一套火山岩地层,而桑日群下部麻木下组(99.9±0.7~136.5±1.7Ma)的形成时间明显晚于比马组,属早白垩世火山岩地层,且具有埃达克岩的地球化学特征,应单独建组;旦师庭组形成于93.7±1.2Ma,属晚白垩世地层,也单独成为一组。 相似文献
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四川成都市唐昌镇土壤硒分布特征及影响因素 总被引:1,自引:0,他引:1
硒是人体必须的微量元素之一,食用含硒农产品是人体获取硒元素的重要途径。调查土壤硒的含量特征、划定富硒区、查明硒空间分布和迁移富集的影响因素,对富硒土地资源利用和富硒农产品开发具有重要意义。本文选择成都市唐昌镇采集土壤样品,采用原子荧光光谱法(AAS)和电感耦合等离子体发射光谱/质谱法(ICP-OES/MS)等方法测定土壤中的Se、As、总有机碳(TOC)等组分含量和pH值,运用方差分析、相关性分析、地理探测器等方法对土壤硒含量、分布特征及影响因素进行探讨。结果表明:(1)研究区土壤硒含量范围为0.082~1.10mg/kg,平均含量为0.337mg/kg,分别是成都市、四川省和全国土壤硒平均含量的1.47、4.02和1.16倍;(2)全镇99.2%的土壤硒呈足硒及富硒状态,且土壤硒含量随着深度增加总体呈降低趋势,空间分布上,高硒区整体呈北西向带状分布于战旗、柏木、大云和竹林等村落;(3)相关性分析表明土壤Pb、Cr、Ni、Cd、Hg、As、总钾(TK)、总氮(TN)、pH、TOC和海拔高度对土壤硒的富集迁移均有极为显著(P<0.01)的影响,但影响程度不一;(4)地理探测器的因子... 相似文献
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