Detrital Apatite Records of Neoproterozoic Subduction–Accretion evolution along the Northwestern Margin of the Yangtze Block
-
摘要: 【目的】活动大陆边缘弧前盆地能够较好保存邻近岩浆弧构造、岩浆和变质演化的重要沉积记录。扬子陆块西北缘碧口地区发育保存较好的新元古代弧前盆地沉积序列——横丹群,但其对邻区岩浆弧相关构造—岩浆过程的响应仍缺乏直接约束。【方法】对横丹群下部白杨组和中上部秧田坝组沉积岩中的碎屑磷灰石开展原位U-Pb定年和微量元素分析,并结合磷灰石成因类型判别,以揭示其物源组成变化及对扬子陆块西北缘新元古代俯冲增生演化过程的响应。【结果】横丹群碎屑磷灰石年龄总体以新元古代为主,白杨组和秧田坝组的主要峰值年龄分别为约810 Ma和770 Ma。其中白杨组含有相对更多的古元古代—中元古代碎屑组分,指示其沉积时期古老基底物质的贡献较大。基于磷灰石微量元素特征及SVM分类结果,横丹群碎屑磷灰石以I型花岗岩类及镁铁质火成岩(IM)为主,其年龄主要集中于740~860 Ma,对应区域新元古代弧岩浆活动。高级变质型(HM)磷灰石年龄峰值集中于800~900 Ma,可能记录了弧陆汇聚过程中区域高级变质基底的剥露与输入。低—中级变质岩及交代岩型(LM)磷灰石表现出两组年龄,分别为800~1000 Ma和600~700 Ma,前者可能与新元古代早期持续俯冲背景下的低—中级变质作用有关,后者则可能记录了新元古代晚期板内岩浆热事件的影响。IM型碎屑磷灰石年龄峰值由白杨组的约810 Ma年轻化至秧田坝组的约770 Ma,结合其Sr/Mn和Sr/Y随年龄的变化特征,表明横丹群沉积期间盆地物源区由相对分散逐步转向以年轻弧岩浆物质为主,同时反映岩浆弧由新生弧岩浆体系向较成熟的大陆弧岩浆体系演化。【结论】综合碎屑磷灰石U-Pb年代学和微量元素特征,横丹群主体沉积更可能形成于扬子陆块西北缘新元古代长期俯冲增生背景下活动陆缘弧前盆地发育晚期,或向后期伸展构造转换的早期阶段,其最大沉积年龄应接近720 Ma,沉积后又受到新元古代晚期区域热事件的叠加改造。Abstract: [Objective] Forearc basins along active continental margins can effectively preserve important sedimentary records of the tectonic, magmatic, and metamorphic evolution of adjacent magmatic arcs. The Hengdan Group exposed in the Bikou area at the northwestern margin of the Yangtze Block, serves as a well-preserved Neoproterozoic forearc-basin succession. However, its response to arc-related tectono-magmatic processes in adjacent areas remains poorly constrained. [Methods] In situ U–Pb dating and trace-element analyses were conducted on detrital apatite from sedimentary rocks of the lower Baiyang Formation and middle-upper Yangtianba Formation of the Hengdan Group. These data were combined with genetic-type discrimination of apatite to reveal changes in provenance composition and their response to the Neoproterozoic subduction–accretion evolution along the northwestern margin of the Yangtze Block. [Results] Detrital apatite ages from the Hengdan Group are dominated by Neoproterozoic populations, with major age peaks at approximately 810 Ma and 770 Ma for the Baiyang and Yangtianba formations, respectively. The Baiyang Formation contains relatively more Paleoproterozoic to Mesoproterozoic detrital components, indicating a greater contribution from ancient basement materials during its deposition. Based on apatite trace-element characteristics and SVM classification results, detrital apatite from the Hengdan Group is dominated by I-type granitoids and mafic igneous rocks (IM), with ages mainly concentrated between ca. 740 and 860 Ma, corresponding to regional Neoproterozoic arc magmatism. High-grade metamorphic apatite (HM) shows age peaks concentrated at 800–900 Ma, which may record the exhumation and input of regional high-grade metamorphic basement during arc–continent convergence. Low- to medium-grade metamorphic and metasomatic apatite (LM) displays two age groups of 800–1000 Ma and 600–700 Ma. The former may be related to low- to medium-grade metamorphism under a prolonged early Neoproterozoic subduction setting, whereas the latter may record the influence of late Neoproterozoic intraplate magmatic thermal events. The age peak of IM-type detrital apatite youngs from ca. 810 Ma in the Baiyang Formation to ca. 770 Ma in the Yangtianba Formation. Together with the age-related variations in Sr/Mn and Sr/Y ratios, this trend indicates that the provenance of the basin shifted from relatively diverse sources to a dominance of young arc-derived magmatic materials during deposition of the Hengdan Group, and that the magmatic arc itself evolved from a juvenile arc system into a more mature continental arc system. [Conclusion] Integrated detrital apatite U-Pb geochronology and trace-element characteristics suggest that the main deposition of the Hengdan Group most likely occurred during the late stage of active continental-margin forearc-basin development under a long-lived Neoproterozoic subduction–accretionary setting along the northwestern margin of the Yangtze Block, or during the early stage of transition to post-orogenic extension environment. The maximum depositional age of the Hengdan Group should be close to 720 Ma, and the succession was subsequently overprinted by late Neoproterozoic regional thermal events.
-
Key words:
- Detrital apatite /
- Geochronology /
- Neoproterozoic /
- Yangtze Block /
- Subduction-accretion
-
点击查看大图
计量
- 文章访问数: 10
- HTML全文浏览量: 3
- PDF下载量: 2
- 被引次数: 0
下载: