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41.
侯江龙  王登红 《地质论评》2016,62(S1):387-388
锂是银白色的、自然界最轻的金属,广泛应用于纺织、陶瓷、冶金、核能、新能源等领域,有“高能金属”、“21世纪的能源金属”之称。锂矿床按成因类型可分为内生和外生两种类型,内生型可具体分为花岗伟晶岩型、花岗岩型、云英岩型和岩浆热液型,外生型则包括盐湖型及地下卤水型(赵一鸣等,2004)。伟晶岩型锂矿主要开采锂辉石、透锂云母、锂云母、磷铝锂石等,是锂矿资源的重要来源。  相似文献   
42.
李乐意  常宏  关冲 《地质论评》2024,70(4):2024040021-2024040021
青藏高原古高度研究可以为理解高原的构造隆升过程和机制等提供重要的信息,但是由于受到研究材料和条件的限制,相较于高原南部而言高原中北部的古高度研究相对滞后。鉴于此,笔者等在羌塘地体东北部可可西里盆地的一个次级盆地—沱沱河盆地中选取了一个剖面(命名为沱沱河剖面),基于适于盆地的古高度计经验公式重建了沱沱河盆地晚始新世到早中新世的古高度演化历史。结果表明,沱沱河盆地的构造挤压隆升可以分为3个阶段:第一阶段为~37. 0~30. 5 Ma,海拔高度从2397 m变化到2940 m,为构造隆升活动的活跃阶段;第二阶段为30. 5~26. 0 Ma,海拔高度从2940 m变化到3100 m,为构造隆升活动的相对减弱阶段;第三阶段为26. 0~19. 7 Ma,海拔高度从3100 m变化到约3150 m,为构造隆升活动的相对静止阶段。综合沱沱河剖面的古高度和构造变形结果,同时结合紧邻盆地周边的古高度、地壳缩短等地质证据,文章认为沱沱河盆地在新生代中晚期经历了明显的两阶段隆升过程,分别是晚始新世到早中新世和中中新世(~16. 0 Ma)到现在,其隆升的机制分别可以用上地壳缩短变形和“地幔对流去根”或者“下地壳流”或者“岩浆底侵”等理论加以解释。  相似文献   
43.
穿过天津地区张渤带的长86 km、NE向深地震反射剖面揭示了该区清晰的地壳精细结构图像和断裂的深浅构造特征,为研究张渤地震构造带的深部孕震环境和构造模式提供了地震学证据,对探讨晚中生代以来华北裂陷盆地的深部动力学过程及演化具有重要意义.结果表明,天津地区张渤带地壳以结晶基底反射TG为界,分为上下两部分;上地壳反射波组丰富,分层特征明显,界面起伏形态清楚,清晰地刻画出冀中坳陷新生代沉积分层、箕状沉积凹陷的底界、潮白河断裂、蓟运河断裂及丰台—野鸡坨断裂的几何结构;地壳内部结晶基底(TG)至Moho之间,显示出近于"反射透明"的地震波场特征,无明显震相,这与华北其他地区的深地震反射剖面结果明显不同;地壳厚度为30.0~34.5 km,总体变化趋势为中段地壳厚而南北端相对较薄,Moho在横向上显示出明显的不均匀和横向间断特征,在Moho被错断处存在两个明显的反射事件RA和RC,RA可能是软流圈热物质上涌的侧向残留物,叠层状反射震相RC则表现出壳幔过渡带特征;剖面揭示了2条错断Moho的超壳深大断裂(FD1和FD2)和9条上地壳断裂,深大断裂应是软流圈热物质上涌,造成上地幔隆起而形成的,上地壳断裂与地壳垂直运动及侧向引张力有关;超壳深断裂(FD1和FD2)为本区深部热物质的上涌与能量交换提供了通道,而与之对应的地壳浅部断裂(F3和F9),则为能量调整提供了可能的条件,断裂邻近区域可能是未来发生强震的地区,值得注意.  相似文献   
44.
The Tan-Lu Fault Zone(TLFZ), a well-known lithosphere fault zone in eastern China, is a boundary tectonic belt of the secondary block within the North China plate, and its seismic risk has always been a focus problem. Previous studies were primarily conducted on the eastern graben faults of the Yishu segment where there are historical earthquake records, but the faults in western graben have seldom been involved. So, there has been no agreement about the activity of the western graben fault from the previous studies. This paper focuses on the activity of the two buried faults in the western graben along the southern segment of Yishu through combination of shallow seismic reflection profile and composite drilling section exploration. Shallow seismic reflection profile reveals that the Tangwu-Gegou Fault(F4)only affects the top surface of Suqian Formation, therefore, the fault may be an early Quaternary fault. The Yishui-Tangtou Fault(F3)has displaced the upper Pleistocene series in the shallow seismic reflection profile, suggesting that the fault may be a late Pleistocene active fault. Drilling was implemented in Caiji Town and Lingcheng Town along the Yishui-Tangtou Fault(F3)respectively, and the result shows that the latest activity time of Yishui-Tangtou Fault(F3)is between(91.2±4.4)ka and(97.0±4.8)ka, therefore, the fault belongs to late Pleistocene active fault. Combined with the latest research on the activity of other faults along TLFZ, both faults in eastern and western graben were active during the late Pleistocene in the southern segment of the Yishu fault zone, however, only the fault in eastern graben was active in the Holocene. This phenomenon is the tectonic response to the subduction of the Pacific and Philippine Sea Plate and collision between India and Asian Plate. The two late Quaternary active faults in the Yishu segment of TLFZ are deep faults and present different forms on the surface and in near surface according to studies of deep seismic reflection profile, seismic wave function and seismic relocation. Considering the tectonic structure of the southern segment of Yishu fault zone, the relationship between deep and shallow structures, and the impact of 1668 Tancheng earthquake(M=8(1/2)), the seismogenic ability of moderate-strong earthquake along the Yishui-Tangtou Fault(F3)can't be ignored.  相似文献   
45.
雅安地区青衣江流域第四纪阶地特征分析   总被引:5,自引:0,他引:5  
唐熊  陶晓风 《沉积学报》2009,27(1):137-141
雅安青衣江流域阶地非常发育。通过砾石的岩性、粒度、扁平面的统计,研究区阶地砾石主要来源于青衣江上游地区,在万古场古青衣江流向由北东改为向东,在阳坪现代青衣江流向一致为东南,流速有逐渐减小的趋势。根据阶地测年和阶面相对高程分析,从早更新世至全新世本区至少有7次构造抬升,万古场阶地最大抬升幅度达85 m,最大抬升速率为0.532 mm/a,阳坪阶地抬升幅度最大达到52 m,最大抬升速率为1.25 mm/a。  相似文献   
46.
通过对胶东牟平—乳山热液脉状金,铅锌矿床成矿动力学控制规律的研究,说明了建立热液成矿反应体系的方法,并得出以下认识:(1)区域断裂构造活动,通过影响成矿反应体系的热力学性质和条件,控制元素的富集和分散。(2)热液成矿过程中容矿断裂活动可划分为两种作用方式:脆性破裂和韧—脆性张开,构成热液成矿的两种构造动力学环境。(3)热液成矿反应体系是一种开放的动态的热力学体系。断裂的脆性破裂阶段,使体系处于强烈的过饱和状态,矿质在远离平衡状态下快速结晶,加剧物质分异;在脆—韧性张开阶段,矿质在接近平衡态体系中缓慢晶出。(4)热液演化晚期,金在残余溶液中富集;当断裂再次发生构造脉动震颤时,早期形成的块状黄铁矿矿石碎裂,富金溶液充填其中,形成含裂隙金和晶隙金的富矿石。成矿体系热力学演化与构造动力学条件有利的匹配控制着富矿石的形成。  相似文献   
47.
Strata behaviors are mainly affected by regional geodynamic background. The influence of rock mass stress and energy distribution on strata behaviors in the Tongxin mine is studied in terms of regional tectonic movement, seismic activity and tectonic stress field. The results show that the extrusion lifting movement of Kouquan fault adjacent to the Tongxin mine results in the stress concentration in the rock of the Carboniferous coal bed and accumulation of a large amount of elastic energy and forms structural background of Tongxin mine. Due to various seismic activities in the mine area, the strain energy is known to reach much higher levels, up to 0.5×108 J1/2. Since the stratigraphic structure is sensitive to the mining operation, the strain energy could cause strong strata behaviors. A special geological structure model of the Tongxin mine is established based on the geodynamic division method. The distribution of regional structure stress field is determined by the rock mass stress analysis system. Based on this model, Tongxin mine is divided into five areas with high stress, eight areas with low stress and eight areas with gradient stress. The strong strata behaviors mostly occur in high stress areas. These results could provide guidance to predict the strength of regional or mine pressure and control strata behavior in different areas.  相似文献   
48.
莺歌海盆地是发育在古红河断裂带之上的新生代盆地,晚第三纪的构造运动触发了盆地中热流体自超压封存箱向外大规模突破,使热流体及泥质的活动具有规律性成群成带的特征。本次实验基于相似理论,在对盆地的演化史及区域构造应力场充分分析的基础上,进行了晚第三纪盆地构造应力场的三维泥料模拟,证实了红河断裂右旋走滑派生的拉分效应控制了莺歌海盆地晚第三纪的构造活动,而晚第三纪的构造活动又是雁列式断裂展布及底辟体分布的主导因素。  相似文献   
49.
Abstract In the Kamuikotan zone, jadeite occurs in pelitic rocks, in metaplagiogranites, in veins in amphibolites and mafic sedimentary rocks, and in jadeite-albite rocks. In the first and second types, jadeite is associated with quartz, and is often in direct contact with it. However, such rock-types never occur as part of the coherent metamorphic sequence, but are found only as exotic blocks enclosed in serpentinite. Thus, jadeite + quartz-bearing assemblages are not regarded as representative of the Kamuikotan metamorphism. Lawsonite and aragonite, however, commonly do occur in the Kamuikotan metamorphic rocks, and this metamorphism belongs to a subfacies of the lawsonite-albite facies, in which aragonite is stable. The serpentinite matrix which carried jadeite + quartz-bearing pelites and metaplagiogranites into the metamorphic sequence is interpreted as a tectonic rather than a sedimentary melange.  相似文献   
50.
During the Early-Middle Proterozoic era, three major lithostratigraphic unit associations, namely Hekou-Dahongshan, Dongchuan, and Kunyang-Huili Groups, were established for the metamorphosed volcanic-sedimentary rocks exposed in the southwestern Yangtze Block (SWYB). The integration of petrology, geochemistry and geochronology constrains tectonic framework and evolution of the SWYB, in which four sets of SHRIMP U-Pb zircon ages were obtained from the volcanic rocks interbedded within the Middle Proterozoic successions: 1800–1600 Ma, 1600–1300 Ma, 1300–1100 Ma, and 1100–1000 Ma. Major and trace elemental analysis indicate that four key tectonic evolutionary stages, each coinciding with the above radiometric age set, of the SWYB during the Early-Middle Mesoproterozoic. The SWYB was characterized by an east-westerly trending rift in the Hekou, Dongshan, and Dongchuan areas, and separate basin-forming events during 1800–1600 Ma and 1600–1300 Ma, respectively. In the SWYB, an intracontinental rift basin and a rift basin occurred in the Caiziyuan-Matang and Laowushan areas, respectively in 1300–1100 Ma ago. During 1100–1000 Ma, the SWYB was characterized by the closure of the Caiziyuan-Matang rift-ocean basin, collision between the Huili Blocks and Kunyang Blocks, and presence of volcanic arcs in the Tianbaoshan and Fulingpen areas. Accordingly, the SWYB represents a new basin that records the relatively complete assembly process of the Rodina during the Early-Middle Mesoproterozoic era.  相似文献   
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