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1.
Sensitive high-resolution ion microprobe U–Pb dating showsthat a biotite orthogneiss from the Hercynian belt of westerncentral Iberia contains 1000–300 Ma zircon. Older, 1000–570Ma ages within this range represent inherited, detrital materialamong which four age components may be recognized:  相似文献   
2.
李兴奎  李才  王明  刘金恒  罗安波 《地质通报》2018,37(8):1439-1449
地壳基底性质及其演化对区域金属成矿类型和成矿潜力具有重要影响。藏北多龙矿集区是目前中国规模最大的斑岩-浅成低温热液型铜多金属矿集区之一,其地壳基底性质与演化缺少研究,制约了对区内铜多金属成矿构造背景和成矿物质来源的全面认识。多龙矿集区内波龙火山-侵入岩中继承锆石LA-ICP-MS U-Pb测年结果显示,14颗继承锆石具有新太古代—古元古代年龄(2581~1670Ma),这些锆石多为自形-半自形颗粒,具有原地来源的特征,表明多龙矿集区深部存在新太古代—古元古代结晶基底。该基底应该是南羌塘中心地区古老基底向南延伸的一部分。该基底在中元古代—早古生代遭受多次构造-岩浆热事件改造,尤以泛非期—早古生代最强烈。进入晚中生代后,由于年轻地幔物质的加入,多龙地壳发生明显的垂向生长,形成富含金属和成矿组分的新生下地壳,该新生下地壳在早白垩世发生活化,为多龙成矿体系提供大量的金属及其他幔源有用组分。多龙矿集区是一个"两期岩浆叠加成矿"的典型例子。  相似文献   
3.
Exhumed basin margin‐scale clinothems provide important archives for understanding process interactions and reconstructing the physiography of sedimentary basins. However, studies of coeval shelf through slope to basin‐floor deposits are rarely documented, mainly due to outcrop or subsurface dataset limitations. Unit G from the Laingsburg depocentre (Karoo Basin, South Africa) is a rare example of a complete basin margin scale clinothem (>60 km long, 200 m‐high), with >10 km of depositional strike control, which allows a quasi‐3D study of a preserved shelf‐slope‐basin floor transition over a ca. 1,200 km2 area. Sand‐prone, wave‐influenced topset deposits close to the shelf‐edge rollover zone can be physically mapped down dip for ca. 10 km as they thicken and transition into heterolithic foreset/slope deposits. These deposits progressively fine and thin over tens of km farther down dip into sand‐starved bottomset/basin‐floor deposits. Only a few km along strike, the coeval foreset/slope deposits are bypass‐dominated with incisional features interpreted as minor slope conduits/gullies. The margin here is steeper, more channelized and records a stepped profile with evidence of sand‐filled intraslope topography, a preserved base‐of‐slope transition zone and sand‐rich bottomset/basin‐floor deposits. Unit G is interpreted as part of a composite depositional sequence that records a change in basin margin style from an underlying incised slope with large sand‐rich basin‐floor fans to an overlying accretion‐dominated shelf with limited sand supply to the slope and basin floor. The change in margin style is accompanied with decreased clinoform height/slope and increased shelf width. This is interpreted to reflect a transition in subsidence style from regional sag, driven by dynamic topography/inherited basement configuration, to early foreland basin flexural loading. Results of this study caution against reconstructing basin margin successions from partial datasets without accounting for temporal and spatial physiographic changes, with potential implications on predictive basin evolution models.  相似文献   
4.
Based on a synthesis of zircon inheritance from Mesozoic igneous rocks in the eastern portion of the North China Craton (NCC) , it is proposed that inherited zircons with Neoproterozoie ages identified from these rocks are of a heterogenous derivation from the Yangtze/South China block, rather than from the NCC itself. The mechanism that introduces these zircons incorporated into the NCC is likely by tectonic underplating during the Triassic continental subduction of the Yangtze block beneath the NCC. Tectonic addition of abundant crustal materials represented by the heterogenous zircons into the NCC, probably along Moho or weak interfaces within the NCC's crust, led to the crustal thickening in the NCC. These heterogenous materials, either as (partial) source rocks or as contaminants of the magmas generated during an extension environment following the crustal thickening, were reworked and therefore have significant contribution to petrogenesis of the Mesozoic igneous rocks. The crustal thickening resulted from the tectonic underplating, as indicated by the distribution extent of the heterogenous zircons, is spatially similar to that of the lithospheric thinning, with both mainly occurring in the eastern segment of the NCC. This is probably suggestive of an intrinsic relation between the thickening and thinning events during the Mesozoic evolution of the NCC.  相似文献   
5.
论同沉积、继承性控煤构造--禹州煤田虎头山断层   总被引:2,自引:0,他引:2  
李文勇  夏斌  路文芬 《沉积学报》2004,22(1):148-153
聚煤盆地内的同沉积断层,对煤系的厚度、岩相、含煤性等均具有明显的控制作用,而这种断层的聚煤期后继承活动,不仅使之成为地质自然边界,而且直接影响到矿区规划和煤炭生产。近期研究表明,禹州煤田虎头山断层是一个同沉积、继承性大型控煤构造,它在聚煤期就已活动,具聚煤期同沉积构造性质,主要证据有岩性、沉积厚度、聚煤作用、地层断距、断裂带近旁的不协调沉积现象以及趋势面分析结果等;聚煤期后该断层又发生了继承性活动,主要表现在基岩错断、地层缺失、对地貌及新生界沉积的控制和改造、断层旁侧次级构造发育、煤层露头遭受牵引、断裂破碎带特征等。虎头山断层这一重要特征的发现,对指导煤矿建井开采、深入探讨禹州煤田煤厚变化、地质构造乃至华北板块的构造演化,均具有重要的理论意义和实际价值。  相似文献   
6.
宇生核素暴露测年过程中,通常假设在样品最后一次暴露前,样品中的宇生核素(继承性宇生核素)浓度为0。然而,大量的测年数据研究发现,样品的暴露年代结果会受到继承性核素的影响从而高估地貌的真实年代。因此,如何降低继承性核素对暴露年代结果的影响或者定量分析继承性核素的影响程度不仅可为地貌演化提供准确的年代数据,而且对宇生核素暴露测年技术的研究具有重要意义。因此,本文以宇生核素暴露测年技术在冰川地貌中应用为例,通过分析继承性核素的研究概况,并结合宇生核素暴露测年原理,探讨继承性核素对测年结果影响的定量分析方法。研究结果表明: ① 通过样品中 n ( 26 Al)/ n ( 10 Be) 值\[即同一样品中宇生核素Al 26 与Be 10 浓度(单位为atom/g)的比值\]以及同一地貌位置多个的样品年代数据分布情况可初步判断测年结果是否受到继承性核素的影响;② 通过现代冰川冰碛物中宇生核素的浓度可以定量分析继承性核素对暴露测年结果的影响; ③ 通过计算冰碛垄顶部和一定深度(>2~3 m)样品的宇生核素浓度差,可以减少继承性核素的影响。本研究内容对冰川地貌宇生核素暴露测年具有重要意义。  相似文献   
7.
本文根据华北和扬子陆块及秦岭-大别造山带地表和深部出露的各种岩石中发现的继承性锆石的测年数据,报道了太古宙基底和岩浆事件的新信息,并简要地论述其地质意义。华北陆块东北缘、东南缘、北缘、西北缘共6个地区的深部都存在新太古代和中、古太古代岩浆事件的新信息;南缘深部也存在古太古代岩浆事件的新信息。在华北陆块早前寒武纪同位素年龄直方图(以太古宙岩浆事件为主)上,最高峰值位于2.45-2.6 Ga区间,而以2.5-2.55 Ga最为突出,显示该区间岩浆事件最为强烈,可能代表一次重要的碰撞事件。此外还见有2.7 Ga,2.8 -2.85 Ga,2.95-3.0 Ga,3.1-3.15 Ga,3.3-3.4 Ga,3.45-3.5 Ga,3.6 Ga和3.8 Ga等较高峰值,反映了岩浆事件不同活动阶段的演化趋势。扬子陆块北缘地表和深部有与华北陆块相似的太古宙古老基底信息。扬子陆块中部的长江中下游地区、东南缘相当于江南古陆的地区以及扬子陆块西南缘地区在地壳深部均保留有新太古代和/或古太古代岩浆锆石的年龄信息。秦岭-大别造山带从东到西,多处(主要是深部)也发现有新-中太古代残余岩浆锆石的年龄信息。  相似文献   
8.
西部挤压盆地内低渗性含油气砂泥岩储层构造运动期次多、埋藏深度大、泥质夹层多、高角度网状缝继承性发育,裂缝不仅是油气的有效运移通道,也是储层压裂开发效果的主要影响因素。选择西部天山山前某区块深层砂泥岩裂缝性气藏为研究区,以裂缝形成机制的探讨和研究为突破点,在岩心观察、CT层析成像扫描、成像测井解释的基础上,精细统计裂缝产状、开度、充填度,结合流体包裹体及古应力场划分裂缝发育期次,最后总结继承性裂缝的发育模式。研究结果表明,砂泥岩储层裂缝继承性缝的有利发育条件为多期次构造运动、低应力差、低逼近角度、适当泥质含量或低摩擦因数,岩性是内因,构造应力是外因。  相似文献   
9.
安徽铜陵狮子山矿田岩浆岩锆石U Pb年龄意义   总被引:20,自引:0,他引:20  
铜陵地区中酸性侵入岩与广泛分布的铜、金矿床有着密切成因关系。为有效限定狮子山矿田内岩浆活动时代,对其中岩性由辉石闪长质、石英闪长质至花岗闪长质的侵入岩体进行系统的锆石LAICPMS定年研究,获得南洪冲花岗闪长岩的206Pb/238U年龄为141.2±1.6 Ma。在辉石闪长岩和石英闪长岩中发现继承锆石(继承锆石构成的核部),为揭示分散复杂的年龄中包含的地质意义,通过综合相关研究成果,做207Pb/235U206Pb/238U图解,发现年龄介于太古宙到古元古代和年龄介于中元古代到早白垩世的投影点分别构成了不一致直线(下交点年龄分别为1785+64-69 Ma,141.9±8.1 Ma;上交点年龄分别是2795+91-80Ma,1290±12 Ma,其中,141.9±8.1 Ma与燕山期岩浆活动时代相一致,而三个较为古老的交点年龄与年轻地壳中锆石的统计峰值年龄(2.7Ga、1.9Ga、1.2Ga)较为接近,暗示了壳源物质加入的可能性;通过把已发表的岩浆成分数据代入由锆石结晶实验获得的公式,得到Zr饱和温度,辉石闪长岩为650~700℃,石英闪长岩为750~790℃,花岗闪长岩为750~760℃。饱和温度、ZrSiO2图解和继承锆石出现的事实,共同表明狮子山矿田内岩浆温度偏低。  相似文献   
10.
Devonian–Carboniferous granites are widespread in Tasmania. In eastern Tasmania, Devonian granites intrude Ordovician–Early Devonian quartz-rich turbidites of the Mathinna Supergroup. The earliest (~400 Ma) I-type granodiorites may be arc-related. Following the Tabberabberan Orogeny (~389 Ma), more felsic and, finally, strongly fractionated I- and S-type granites were emplaced until ~373 Ma. In contrast, western Tasmania granites intrude a more diverse terrane of predominantly marine shelf successions, with depositional ages as old as Late Mesoproterozoic. They are mostly felsic and fractionated I- and S-types emplaced from ~374–351 Ma, possibly in response to post-collisional crustal extension following juxtaposition of the eastern and western Tasmanian terranes. Granites from the two terranes are readily distinguishable by the age spectra of their inherited zircon, which are noticeably similar to those of the detrital zircon from sedimentary successions in their respective terranes. Furthermore, within each terrane, both I and S-types yield similar inheritance patterns. This suggests a pivotal role for the sedimentary successions in the petrogenesis of both types. Western Tasmanian granites are also enriched in ~1600 Ma zircon, which is essentially unrepresented in the exposed supracrustal succession. Subtle differences between the inheritance and detrital age spectra in eastern Tasmania probably relate to unrepresentative sampling of the supracrustal rocks. Nd, Sr and Pb isotopic characteristics of the granites are consistent with their derivation by mixing of magmas derived from the mantle, possibly the lower crust, and from supracrustal rocks. Systematic isotopic trends in some eastern Tasmanian I-types, particularly in the Scottsdale Batholith, correlate well with major and trace element geochemistry and age. The isotopes are inconsistent with simple restite unmixing or crystal fractionation in a closed magma chamber, and indicate progressive contamination by the Mathinna Supergroup, or similar rocks. The isotopic characteristics of late, strongly fractionated granites, although sometimes obscured by hydrothermal alteration, are also consistent with concurrent assimilation-fractional crystallisation processes. Together with the close association of some strongly fractionated I- and S-types, this suggests that such granites were generated directly in the lower crust, and were not derived from unfractionated parental granite magmas.  相似文献   
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