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赣南6722铀矿床隐爆碎屑岩地质构造特征与地下核爆炸地质效应的对比

章邦桐 王湘云 饶冰 张富生   

  1. [1]南京大学地球科学系 [2]南京大学内生金属矿床成矿
  • 收稿日期:1998-12-20 修回日期:1998-12-20 出版日期:1998-12-20 发布日期:1998-12-20

COMPARISION BETWEEN THE GEOLOGICAL STRUCTURAL FEATURES OF FELSIC CRYPT0EXPLOSIVE BRECCIA 0F NO.6722 URANIUM DEPOSIT IN SOUTH JIANGXI PROVINCE AND THE GEOLOGICAL EFFECTS OF UNDERGR0UND NUCLEAR EXPLOSION

Zhang Bang-tong1, Wang Xiang-yun1, Rao Bing2, Zhang Fusheng3   

  1. 1. Department of Earth Sciences, Nanjing University, Nanjing, 210093; 2. State Key Laboratory for Mineral Deposits Research, Nanjing University, Nanjing, 210093; 3. Center of Materials Analysis,Nanjing University,Nanjing 210093
  • Received:1998-12-20 Revised:1998-12-20 Online:1998-12-20 Published:1998-12-20

摘要: 对产出在花岗岩基底中的6722铀矿床长英质隐爆碎屑岩地质构造行征进行了研究,并与我国在相似地质条件下进行的地下核爆炸试验产生的地质效应作了对比,类比计算出形成该隐爆碎屑岩体的爆炸能量(TNT当量)。采用偏光显微镜和透射电镜(TEM)研究隐爆碎屑岩中花岗岩角砾内石英的显微裂隙构造,光性特征及自由位错的类型和密度并与基底花岗岩(大富足花岗岩体)中的石英进行对比。综合研究阐明的类型和密度,并与基底花岗岩(大富足花岗岩体)中的石英进行对比。综合研究阐明6722铀矿床隐爆碎屑岩的形成机制届于一种在高温(>400℃ )条件下由瞬问爆炸而产生的脆性变形作用,同时引起石英中位错退火现象的发生。

Abstract: Based on a comparision between the geological structural features of felsic cryptoex-plosive breccia within granitic basement of No.6722 uranium deposit and the geological effects of underground nuclear explosion, the explosion equivalent of TNT for cryptoexplosive breccia of No.6722 uranium deposit is calculated by a comparision method. The microfissuring optic features, and ultramicrostructure of quartz for cryptoexplosive breccia and basement granite have been studied respectively under the polarization microscope and transmision electron microanalyzer (TEM). The densely parallel directional microfissuring, similar to impact microfoliation (shock lamellae), is observed in quartz grains of cryptoexplosive breccia for No.6722 uranium deposit, but undulatory extinction is not found. It has been found under the TEM that the free dislocations and dislocation walls are sparsely distributed in quartz grains of basement granite, but sharply reduced and even disappeared in quartz grains of granite breccia. The results of a comprehensive study suggest that the cryptoexplosion-forming mechanism of No.6722 uranium deposit is attributed to a brittle deformation due to instantaneous explosion which simultaneously caused the annealing of dislocations; U quartz.