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作 者:万渝生[1] 刘敦一[1] 伍家善[1] 张宗清[1] 宋彪[1]
机构地区:[1]中国地质科学院地质研究所
出 处:《岩石学报》1998年第3期278-288,共11页Acta Petrologica Sinica
基 金:国家自然科学基金
摘 要:鞍山-本溪地区中太古代花岗质岩浆作用十分发育,形成了3.1Ga立山细粒奥长花岗岩、3.0Ga东鞍山片麻状花岗岩、3.0Ga铁架山片麻状花岗岩和3.0Ga弓长岭片麻状花岗岩等一系列花岗质岩石。岩石的εNd(t)分别为,立山奥长花岗岩(10个样品)变化于-1.96~4.24之间,平均值为0.76,东鞍山片麻状花岗岩(5个样品)变化于0.26~2.72之间,平均值为1.26,铁架山片麻状花岗岩(5个样品)变化于-3.85~-4.83之间,平均值为-4.28,弓长岭片麻状花岗岩(1个样品)为-2.58。结合岩石的常量、微量和稀土元素特征,可以认为,立山奥长花岗岩和东鞍山片麻状花岗岩形成于地壳滞留时间不长的中酸性陆壳岩石的部分熔融,前者很可能有玄武质物质的参与。而铁架山片麻状花岗岩和弓长岭片麻状花岗岩则来自于成熟度很高的早期陆壳物质。由此可以推断,鞍山-本溪地区在中太古代以前陆壳基底就有了相当的规模,并具有很长的地壳演化历史。This paper concerns the Anshan-Benxi area in the southwestern segment of the Liaoning Province. The area contains numerous occurrences of Mesoarchaean granitic rocks, including 3 1 Ga Lishan fine-grained trondhjemite, 3 0 Ga Donganshan gneissic granite, 3 0 Ga Tiejiashan gneissic granite and 3 0 Ga Gongchangling gneissic granite. According to neodymium isotopic analyses performed on whole rock powders, the Lishan trondhjemite(10 samples) and the Donganshan granite(5 samples) have the initial ε Nd ( t ) values varying between -1 96 and 4 24(with an average of 0 76) and between 0 26 and 2 72(with an average of 1 26) respectively. The Tiejiashan granite(5 samples) shows much more enriched signature, yielding the initial ε Nd (3 0 Ga) values from -3 85 to -4 83 and an average of -4 28. The Nd isotopic composition for the Gongchangling granite(1 sample) is somewhat similar to that for the Tiejiashan granite. Combined with element geochemical researches, some main conclusions can be obtained that first, the Lishan trondhjemite and Donganshan granite were formed by partial melting of different kinds of intermediate acid terrestrial rocks but noly with short crustal residence time, the source region of the Lishan trondhjemite might include some basaltic material. Second, the Tiejiashan granite and the Gongchangling granite were derived from more ancient continental crust with significantly higher maturity. In the Anshan Benxi area a relatively large scale continental basement with long evolutional history had already existed before the Mesoarchaean at the early stage of the Earth evolution.
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