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黔西南坳陷沉积盆地分析与锑、成矿研究
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摘要
改造矿床是著名矿床地质学家涂光炽院士于上世纪提出的与岩浆矿床、沉积矿床和变质矿床并列的矿床大类,其直接的成矿地质作用包括成岩作用和构造作用。黔西南坳陷是南盘江-右江盆地重要组成部分,在该构造单元内分布有众多属矿床,如与沉积盆地成岩(埋藏)作用有关的晴隆锑矿床,与冲断-褶皱活动有关的卡林型矿和铅锌矿。本文以沉积盆地分析为主线,以构造几何学为核心,以地球物理勘探资料和矿床分析测试资料为基础,探讨晴隆锑矿床成矿过程和构造-成岩成矿模式,分析卡林型矿冲断-褶皱构造控矿规律,预测有利的成矿靶区,获得了如下认识。
     1、地震勘探资料证实黔西南坳陷与其以东南盘江坳陷类似,盆地基底由下古生界地层组成的褶皱构成,两者同属华南褶皱带,其盆地结构与扬子地块(如黔南坳陷等)有明显的差别。
     2、黔西南坳陷构造单元内可分为四个二级构造单元/成矿单元,除Ⅱ单元现今保留有伸展构造外,其他几个单元现今均以挤压构造为特征。地震及大地电磁测深剖面显示,很多大的断层性质发生了由伸展向挤压的正向反转。重力异常显示,黔西南坳陷古隆起发育,其中以长田-坡坪隆起规模最大,锑、矿主要分布于古隆起之上。
     3、“大厂层”原岩是位于东吴不整合面之上的一套爆发相火山岩,可以分为三段:一段为火山角砾岩,二段为凝灰质复成分角砾岩,三段为凝灰岩。在黔西南坳陷甚至上扬子地区,“大厂层”原岩具有一定的对比性。虽然“大厂层”和峨眉山玄武岩都为玄武岩系列,但也存在一定的差异,“大厂层”凝灰岩K2O明显高于Na2O,而玄武岩正好相反,可能预示两者来源的不同。埋藏阶段火山岩发生硅化、萤石化等蚀变。
     4、晴隆锑矿具有成岩成矿的特点。根据磷灰石裂变径迹、孔-深曲线和地层模拟了晴隆锑矿床埋藏史:晚二叠世至三叠纪为快速埋藏阶段,侏罗纪至古近纪始新世中期为缓慢抬升阶段,古近纪始新世中期至今为快速剥蚀阶段。晴隆锑矿床包裹体均一温度分布于125℃~200℃,分布概率最大温度值为165℃~168℃,其主成矿期为中三叠世晚期到晚三叠世早期,成矿深度为3815m。
     凝灰岩蚀变前后稀土元素演化特征研究表明,成矿流体稀土元素含量很低、以富F-为特征且具有还原性,Y/Ho、Zr/Hf和Nb/Ta比值表明晴隆锑矿成矿流体具多源特征;辉锑矿稀土元素配分特征具有近似的W型四分组效应是海水沉积物继承海水或地层水稀土元素特征的表现。
     晴隆锑矿床成矿背景为在古隆起基础上的复式半地堑,大地电磁测深证实青山镇断层为其主控断层,其构造-成岩成矿模式可以描述为:晚二叠世末期,大陆火山活动形成的爆发相岩石提供了丰富的成矿物质,中三叠世晚期至晚三叠世早期为主成矿期,在岩石静压力驱动下,盆地成矿流体向大厂古隆起方向运移,并在有利部位成矿,在运移过程中东吴不整合面是成矿热液侧向运动的通道,北东向断层是成矿热液垂向运移的通道。
     5、根据黔西南中部地震勘探资料解译,控制该区矿床的构造具有冲断-褶皱特征,断层“上陡下缓”,为低角度逆冲断层,断层向下在上二叠统龙潭组煤系地层、“大厂层”角砾状凝灰岩和东吴运动形成的不整合面间滑脱,断层上盘常发育不对称背斜构造。根据冲断-褶皱带中位置,将矿床划分为断层控制型和断层伴生型两类,前者产于低角度逆冲断层中,发育与“上陡下缓”断层有关的陡倾斜脉状矿体和缓倾斜矿体,后者发育于层间滑动带的似层状矿体。分析认为,矿床在形成过程中,虽然古隆起具有初始富集作用,但是冲断-褶皱构造是成矿的关键因素。东吴不整合面一方面是冲断-褶皱构造促使盆地流体沿运移的通道,另一方面是成矿流体释压、卸载沉淀的储矿构造;印支晚期华南古特提斯洋的闭合是形成北西向和北东向两组主要构造的主控因素。
     6、在复式半地堑理论指导下,通过立体填图和激电测深,对控矿的北东向次级断层进行精确定位。通过工程验证和控制,找矿效果良好,提交333锑属资源量51012吨,达到中型矿床规模。
The reworked ore deposit is one type paralleled to sedimentary, magmatic and metamorphic deposit indicated last century by chinese academician Tu Guangchi, a famous ore geologist.At least,the direct mineralization of reworked deposit may include diagenesis of sedimentary rock and faulting.Southwetern Guizhou(SWG) depression is important part of Nanpanjiang-Youjiang sedimentary basin, where many metal deposits exist, e.g., Qinglong antimony deposit associated with diagenesis, Carlin type gold deposits and lead-zinc deposits related with thrust-fold strucure.This doctoral dissertation will analysis dynamics of sedimentary basins and structure geometry of SWG depression, ore forming model of diagenesis-structure at Qinglong Sb deposits, metallogenic regularity of Carlin Au deposits controlled by thrust-fold strucure and metallogenic prognosis. The study bases on geophysical and geological test data, the following new knowledge are acquired:
     1.Interpreted by seismic lines, the framwork of SWG depression is considered that to be similar to eastern adjacent Nanpanjiang (NP) depression which basin basement are composed of lower paleozoic fold and belongs to South China fold belt, but not Southern Guizhou depression in Yangtze paraplatform.
     2. SWG depression may be divided into 4 secondary geological units. Three units (UnitⅠ,Ⅲ,Ⅳ)are characteristics of compressional structures,and one unit (UnitⅡ)is extensional tectonics on surface. The sections of seismic and MT show us many big faults are positive inversion structure. On maps of gravity, magnetic, electric and seismic prospecting, it is clear that there are many uplifts and sub-depressions on the top level of Dian-Qian-Gui old land in Early Palaeozoic Era which is formed by Yunan Movement, and Changtian-poping uplift is biggest one.
     3. The original rocks of Dachang Strata are dominated by volcanic rock of explosive facies overlaps upon the Dongwu unconformable contact, and composed of volcanic breccia, tuffaceousvolcanic breccia and tuff. The original rock of Dachang strata may be comparable in SWG depression, even in upper Yangtze area. There are differentiations with K2O>Na2O in Dachang Strata and Na2O>K2O in Emeishan basalt, although they are both belong to basalt series. This may be integrated to come from different source area. The quartz and ankerite alteration occurs in volcanic rock during burial period in Qinglong antimony deposit.
     4.Qinglong antimony deposit shows certain ore structure characteristics of diagenesis deposits. The curve of buried history based on apatite fission-track, porosity-depth curve and bed thickness show us rapidly bury from late Permian to Triassic, slowly uplift from Jurassic to middle Eocene, rapidly uplift from late Eocene to now. The main ore-forming age is from the late of middle Triassic to the early of late Triassic,and the ore-forming depth is about 3815m.
     Ore-forming fluid is characterized by lower REE, higher F- and reducibility. The ratios of Y/Ho, Zr/Hf and Nb/Ta indicated the polyphyleticism of ore-forming fluids. Its W-type tetrad effect is the preference of the fixation of seawater or groundwater REE onto sedimentary rocks.
     The ore forming setting of Qinglong antimony deposit is believed as multiple half-graben which bases on old uplift. Qingshanzhen fault is interpreted to be main controlled fault by MT data in multiple half-graben system. The diagenesis-structure ore forming model of Qinglong antimony deposit may be described as followings: The explosive land volcanic rock bring about rich Sb element in latest Permian period, the basin metallogenic fluid is driven to Dachang paleo uplift in Triassic period by lithostatic pressure, and then form ore deposit in favorable areas. Dongwu unconformity plays as horizontal pathway, faults with NE trend as a vertical one during ore fluid flowing.
     5. The seismic lines provide us that ore-controlled structure is characteristics of thrust-fold belt with low angle thrust and unsymmetrical anticline. The thrust detach into coal measures of Longtan Formation in upper Permian, tuff of Dachang Strata and Dongwu unconformity, so the angle of thrust in deep is gentler than in shallow area. Gold deposits may be classified into two kinds, i.e. thrust-controlled and thrust-accompanied ore by their position in thrust-fold belt. The thrust-controlled gold ores occur in fault with vein and low angle strata-dissecting ore bodies. The thrust-accompanied gold ores occurs in interlayer-gliding structures with stratiform-like ore bodies. The thrust-folding is key factor in ore forming, although the paleo uplift has an initially enrichments of gold. Thrust-folding impel basin ore fluid flow along Dongwu unconformity. On other hand, thrust-fold is a trap where ore fluid precipitates. The closure of Paleo-Tethys Ocean in South China began from W parts then to E parts, and formed NW and NE trends thrust-gold structures in later Indosinian epoch.
     6. Using Geological Stereomapping and IP Sounding Method, our team localized secondary concealed NE trend fault attached to multiple half graben system and got antimony inferred reserves (333) 51 012t by exploration holes and tunnels.
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