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Generation and preservation of continental crust in the Grenville Orogeny 被引量:1
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作者 Christopher J.Spencer Peter A.Cawood +5 位作者 Chris J.Hawkesworth Anthony R.Prave Nick M.W.Roberts Matthew S.A.Horstwood martin j.whitehouse EIMF 《Geoscience Frontiers》 SCIE CAS CSCD 2015年第3期357-372,共16页
Detrital zircons from modern sediments display an episodic temporal distribution of U-Pb crystallization ages forming a series of 'peaks' and 'troughs'. The peaks are interpreted to represent either periods of enh... Detrital zircons from modern sediments display an episodic temporal distribution of U-Pb crystallization ages forming a series of 'peaks' and 'troughs'. The peaks are interpreted to represent either periods of enhanced generation of granitic magma perhaps associated with mantle overturn and superplume events, or preferential preservation of continental crust during global collisional orogenesis. The close association of those peaks with the assembly of supercontinents implies a causal relationship between collisional orogenesis and the presence of zircon age peaks. Here these two end-member models (episodic periodicity of increased magmatism versus selective preservation during collisional orogenesis) are assessed using U-Pb, Hf, and 0 analysis of detrital zircons from sedimentary successions deposited during the - 1.3-1.1 Ga accretionary, -1.1-0.9 Ga collisional, and 〈 0.9 Ga extensional collapse phases of the Grenville orogenic cycle in Labrador and Scotland. The pre-collisional, accretionary stage provides a baseline of continental crust present prior to orogenesis and is dominated by Archean and Paleoproterozoic age peaks associated with pre-1300 Ma Laurentian geology. Strata deposited during the Grenville Orogeny display similar Archean and Paleoproterozoic detrital populations along with a series of broad muted peaks from - 1500 to 1100 Ma. However, post-collisional sedimentary successions display a dominant age peak between 1085 and 985 Ma, similar to that observed in modern North American river sediments. Zircons within the post-orogenic sedimentary successions have progressively lower EHf and higher -lSO values from - 1800 to - 1200 Ma whereupon they have higher EHf and -3180 within the dominant 1085-985 Ma age peak. Furthermore, the Lu-Hf isotopic profile of the Grenville-related age peak is consistent with significant assimilation and contamination by older crustal material, The timing of this dominant age peak coincides with the peak of metamorphism and magmatism associated with the Grenville Orogeny, which is a typical collisional orogenic belt. The change from broad muted age peaks in the syn-orogenic strata to a single peak in the post-orogenic sedimentary successions and in the modern river sediments implies a significant shift in provenance following continental collision. This temporal change in provenance highlights that the source(s), from which detrital zircons within syn-orogenic strata were derived, was no longer available during the later stages of the accretionary and collisional stages of the orogenic cycle. This may reflect some combination of tectonic burial, erosion, or possibly recycling into the mantle by tectonic erosion of the source(s). During continental collision, the incorporated continental crust is isolated from crustal recycling processes operative at subduction margins. This tectonic isolation combined with sedimentary recycling likely controls the presence of the isotopic signature associated with the Grenville Orogeny in the modern Mississippi and Appalachian river sed- iments. These results imply that zircon age peaks, which developed in conjunction with supercontinents, are the product of selective crustal preservation resulting from collisional orogenesis. 展开更多
关键词 Zircon Continental crust Grenville Orogeny Crustal preservation
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分异的冲击熔岩席可能是冥古宙碎屑锆石的潜在来源之一
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作者 Gavin G.Kenny martin j.whitehouse +1 位作者 Balz S.Kamber 夏群科 《矿物岩石地球化学通报》 CAS CSCD 北大核心 2017年第1期47-47,共1页
由于普遍缺少大于40亿年的岩石记录,赋存在太古宙变质沉积岩中的冥古宙碎屑锆石构成了探索地球初期地壳演化及其动力学机制的唯一直接证据。因此,较好地限制冥古宙碎屑锆石的来源和历史也就成为探索这一问题的关键。
关键词 碎屑锆石 熔岩席 潜在来源 地壳演化 动力学机制 太古宙 变质沉积岩 萨德 离子探针 数据范围
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分异的冲击熔岩席可能是冥古宙碎屑锆石的潜在来源之一
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作者 袁超 Gavin G.Kenny +1 位作者 martin j.whitehouse Balz S.Kamber 《矿物岩石地球化学通报》 CAS CSCD 北大核心 2016年第5期907-907,共1页
由于普遍缺少大于40亿年的岩石记录,赋存在太古宙变质沉积岩中的冥古宙碎屑锆石构成了探索地球初期地壳演化及其动力学机制的唯一直接证据。因此,较好地限制冥古宙碎屑锆石的来源和历史也就成为探索这一问题的关键。
关键词 碎屑锆石 熔岩 分异 动力学机制 变质沉积岩 地壳演化 太古宙 岩石
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