The Tongde Picritic Dikes in the Western Yangtze Block:Evidence for Ca.800-Ma Mantle Plume Magmatism in South China during the Breakup of Rodinia
【摘要】:正Secondary ion mass spectroscopy U-Pb zircon ages and mineralogical,geochemical,and Nd isotopic data are reported for the Tongde picritic dikes in the Yanbian area of the western Yangtze Block,South China.The pi critic dikes,which intruded in the ca.820-Ma Tongde complex,are dated at 796±5 Ma.Most of the picritic rocks are highly porphyritic (ca.15-35 vol%phenocrysts)with dominant olivine(Fo=82-92)phenocrysts that are high in CaO(up to 0.43 wt%), Cr_2O_3,and Ni.All the studied rocks are high-Ti and alkaline in composition and exhibit light rare earth element-enriched and"humped"incompatible trace-element patterns,similar to the alkaline basalts within the ocean islands and continental rifts.Variably highε_(Nd)(T)values between +6.9 and +8.7 indicate that these rocks were derived from an asthenospheric mantle source with inappreciable crustal contamination.Geochemical modeling suggests a primary melt of 22.7%MgO for batch melting and 21.4%MgO for fractional melting.The high MgO content in the modeled primary magmas implies a minimum melt temperature of1400℃and a mantle potential temperature of 1600°- 1620℃.The Tongde picritic dikes were therefore generated by melting of an anomalously hot mantle source with a potential temperature ca.200℃higher than that of the ambient mid-ocean ridge basalt-source mantle,similar to that of modern mantle plumes.Thus,the Tongde picritic dikes provide solid petrological evidence for the proposed Neoproterozoic mantle plume that led to the breakup of the supercontinent Rodinia.
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1 |
王剑;“Rodinia超大陆的聚合与裂解:华南野外现场国际学术交流会”圆满结束[J];地质论评;2004年01期 |
2 |
郑永飞;新元古代超大陆构型中华南的位置[J];科学通报;2004年08期 |
3 |
陈跃昆;廖宗廷;;Rodinia研究及其对滇黔桂地区构造分析的启示[J];南方油气;2003年03期 |
4 |
陆松年;新元古时期Rodinia超大陆研究进展述评[J];地质论评;1998年05期 |
5 |
乔秀夫,高林志;华北中新元古代及早古生代地震灾变事件及与Rodinia的关系[J];科学通报;1999年16期 |
6 |
王康明,阚泽忠;扬子地台西缘对Rodinia形成期地质响应[J];华南地质与矿产;2001年04期 |
7 |
曾雯,钟增球,周汉文,江麟生,周忠友,陈铁龙;黄陵地区基性岩墙群的地球化学特征及其地质意义[J];地球科学-中国地质大学学报;2004年01期 |
8 |
凌文黎,程建萍;Rodinia研究意义、重建方案与华南晋宁期构造运动[J];地质科技情报;2000年03期 |
9 |
杨进辉,吴福元,张艳斌,张旗,S.A.Wilde;辽东半岛南部三叠纪辉绿岩中发现新元古代年龄锆石[J];科学通报;2004年18期 |
10 |
刘本培;Rodinia泛大陆离散和前寒武寒武纪转折[J];现代地质;1999年02期 |
11 |
徐备;Rodinia超大陆构造演化研究的新进展和主要目标[J];地质科技情报;2001年01期 |
12 |
陆松年;从31届国际地质大会分析前寒武纪地质研究进展和走向[J];地质论评;2001年01期 |
13 |
朱永峰,孙世华,毛骞,赵光;内蒙古锡林格勒杂岩的地球化学研究:从Rodinia聚合到古亚洲洋闭合后碰撞造山的历史记录[J];高校地质学报;2004年03期 |
14 |
周宇章;邢光福;杨祝良;沈加林;陈荣;包超民;魏乃颐;;浙江诸暨新元古代后造山铝质A型花岗岩的厘定[J];地球学报;2006年02期 |
15 |
王红军;李巨初;薛钧月;;康滇地轴元古代成矿作用对Rodinia事件的响应[J];四川地质学报;2009年01期 |
16 |
孙玮;罗志立;刘树根;陶晓风;代寒松;;华南古板块兴凯地裂运动特征及对油气影响[J];西南石油大学学报(自然科学版);2011年05期 |
17 |
于海峰;“Rodinia超大陆研究座谈会”在天津召开[J];前寒武纪研究进展;2000年01期 |
18 |
祁生胜,王秉璋,王瑾,安勇胜;晋宁运动在东昆仑东段的表现及其意义[J];青海国土经略;2001年S1期 |
19 |
包志伟;王强;白国典;赵振华;宋要武;柳小明;;东秦岭方城新元古代碱性正长岩形成时代及其动力学意义[J];科学通报;2008年06期 |
20 |
宫晓华;国家自然科学基金重点项目“我国古陆块对Rodinia全球超大陆事件的响应”(40032010)开始启动[J];前寒武纪研究进展;2001年01期 |
|