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81.
A combined study of zircon morphology, U–Pb ages and Hf isotopes as well as whole‐rock major and trace elements was carried out for ultrahigh‐pressure (UHP) eclogite and felsic gneiss from the main hole (MH) of the Chinese Continental Scientific Drilling (CCSD) project in the Sulu orogen. The results show contrasting Hf isotope compositions for bimodal UHP metaigneous rocks, pointing to contrasting origins for their protoliths (thus dual‐bimodal compositions). The samples of interest were from two continuous core segments from CCSD MH at depths of 734.21–737.16 m (I) and 929.67–932.86 m (II) respectively. Zircon U–Pb dating for four samples from the two core segments yields two groups of ages at 784 ± 17 and 222 ± 3 Ma, respectively, corresponding to protolith formation during supercontinental rifting and metamorphic growth during continental collision. Although the Triassic UHP metamorphism significantly reset the zircon U–Pb system of UHP rocks, the Hf isotope compositions of igneous zircon can be used to trace their protolith origin. Contrasting types of initial Hf isotope ratios are, respectively, correlated with segments I and II, regardless of their lithochemistry. The first type shows positive ?Hf(t) values of 7.8 ± 3.1 to 6.0 ± 3.0, with young Hf model age of 1.03 and 1.11 Ga. The second type exhibits negative ?Hf(t) values of ?6.9 ± 1.6 to ?9.1 ± 1.1, with old Hf model ages of 2.11 and 2.25 Ga. It appears that the UHP rocks from the two segments have protoliths of contrasting origin. Consistent results are also obtained from their trace element compositions suggesting that mid‐Neoproterozoic protoliths of bimodal UHP metaigneous rocks formed during supercontinental rifting at the northern margin of the South China Block. Thus, the first type of bimodal magmatism formed by rapid reworking of juvenile crust, whereas the second type of bimodal magmatism was principally generated by rift anatexis of Paleoproterozoic crust. Melting of orogenic lithosphere has potential to bring about bimodal magmatism with contrasting origins. Because arc–continent collision zones are the best place to accumulate both juvenile and ancient crusts, the contrasting types of bimodal magmatism are proposed to occur in an arc–continent collision orogen during the supercontinental rifting, in response to the attempted breakup of the supercontinent Rodinia at c. 780 Ma.  相似文献   
82.
Based on Hagget's theory of spatial structure,researches on the nodes and field of tourist origins to Huang-cheng Village in Shanxi Province of China have been explored.Nodal hierarchy structure of tourist origins is analyzed with cluster analysis and the gravity model.And field of tourist origins is analyzed with attraction radius index(R)and geography concentration index(G).In the field analysis,R and G of Huangcheng Village are compared with Xidi Village that is a world heritage located in Huangshan City of Anhui Province in China.According to comparison of loca-tions of two areas,influential factors for field area of Huangcheng Village are identified.It is concluded that:1)cluster analysis and gravity model can be complementary methods to each other for nodal hierarchy structure analysis of tour-ist origins;and 2)as far as location is concerned,the weak intensity effect of tourism resources in the tourist region is a major cause for explaining why tourist origins to Huangcheng Village are mainly its neighboring areas.Moreover,it is suggested that the regional effect of tourist resources should be regarded as a component of destination attractiveness when applying gravity model.  相似文献   
83.
泗水县龙湾套地区发育大面积新太古代角闪辉长岩,为在该区寻找赋存在角闪辉长岩中的岩浆熔离型铜矿床,曾开展过普查工作,最终发现了一小型铜矿床。探讨该区角闪辉长岩岩石学特征,对在该区进一步寻找同类型铜矿床有重要意义。  相似文献   
84.
为了解鲁西南地区地下水中锰的含量及其成因,采集并分析了276组地下水样和18组地表水样,结果表明,鲁西南平原区浅层地下水中锰含量在未检出至2.84mg/L之间,平均浓度为0.35mg/L,超标率达41%。鲁西南地区地下水中锰含量的分布与该区的工业化程度以及所处的补、径、排条件密切相关。影响地下水中锰含量分布的因素主要有表层土壤、地下水径流条件及含水层介质和地下水矿化度等。  相似文献   
85.
<正>The classification and phytogeny of the basal Vespina(=Orussoidea+Apocrita)are reconsidered based primarily on rich and well preserved material from the Middle Jurassic of Daohugou in Inner Mongolia,China. Comparatively smooth morphological transitions are traced from a Xiphydriidae-like ancestor toward Orussoidea via the Jurassic family Karatavitidae,and through Karatavitidae and the Jurassic and Early Cretaceous family Ephialtitidae independently to Stephanidae,to Evanioidea,and,via the extinct Jurassic Kuafuidae fam.nov.to the remaining Apocrita.New hypothesis is proposed concerning development of the characteristic wasp-waist of Apocrita,which is supposed to appear independently and in different ways in Evanioidea and in the rest of Apocrita.As a result,six infraorders are proposed for the suborder Vespina with the following taxonomic structure:infraorder Orussomorpha including the only superfamily Orussoidea(Karatavitidae+Paroryssidae + Orussidae),infraorder Stephanomorpha with the only superfamily Stephanoidea(Ephialtitidae+Stephanidae), infraorder Evaniomorpha with the only superfamily Evanioidea of traditional composition,infraorder Ceraphronomorpha with the superfamilies Ceraphronoidea s.str.and monotypical Megalyroidea and Trigonaloidea,and the infraorders Proctotrupomorpha,Ichneumonomorpha,and Vespomorpha of traditional composition.The family Kuafuidae is unplaced to infraorder because it is putatively paraphyletic with respect to Ceraphronomorpha,Proctotrupomorpha,Ichneumonomorpha and Vespomorpha.Described as new are Karatavites junfengi sp.nov,Praeratavites wuhuaensis sp.nov.,P.perspicuus sp.nov.,Postxiphydria daohugouensis gen.et sp.nov.,P.ningchengensis gen.et sp.nov.,Postxiphydroides strenuus gen.et sp.nov.,Praeratavitoides amabilis gen.et sp.nov.,Proapocrtius densipediculus sp.nov.,P.sculptus sp.nov.,P.longantennatus sp.nov., P.formosus sp.nov.,P.atropus sp.nov.,P.elegans sp.nov.,Stephanogaster pristinus sp.nov.,Asiephialtites lini sp. nov.,Praeproapocritus vulgatus gen.et sp.nov.,Sinaulacogastrinus solidus gen.et sp.nov.,Sinevania speciosa gen. et sp.nov.,Eonevania robusta gen.et sp.nov.,Kuafua polyneura gen.et sp.nov.(all from the Middle Jurassic of Daohugou),as well as Kuafuidae fam.nov.including Kuafua gen.nov.as well as Arthrogaster Rasnitsyn,1975,and Leptogastrella Rasnitsyn,1975 from the Upper Jurassic of Karatau in Kazakhstan.  相似文献   
86.
甘新北山金窝子韧性剪切带型金矿床成因   总被引:5,自引:0,他引:5  
陈柏林 《矿床地质》2010,29(6):972-982
金窝子金矿床位于中朝_塔里木板块与哈萨克斯坦板块俯冲碰撞带南缘的甘新北山中带东段,受矿源岩系和区域性韧性剪切带的形成和演化的双重控制。下二叠统金窝子组中金元素含量高,又普遍发生浅变质作用和较强烈的构造变形作用,所以金窝子组能够提供成矿物质。区域性构造变形过程中,大规模深层次的韧性剪切变形促使金窝子组中金元素活化迁移,连同SiO2、K、Na等活性组分和岩石中H2O一起,形成含金动力变质热液;当含金热液上升并进入到NEE向低角度逆冲韧脆性断裂中,则发生交代蚀变和矿化,形成蚀变糜棱岩型和网脉型金矿化;而含金热液上升进入到NNW向高角度张性_张扭性脆性断裂中,则发生充填型矿化,形成石英大脉型金矿化。所以金窝子金矿的最主要控矿因素是矿源岩系和韧性剪切带。因此,金窝子金矿床属于韧性剪切带型金矿床,其成矿作用与控矿因素都与韧性剪切带有关。  相似文献   
87.
庐枞火山盆地深部岩石与成矿过程   总被引:8,自引:3,他引:5  
张荣华  张雪彤  胡书敏 《岩石学报》2010,26(9):2665-2680
黄铁矿-硬石膏-磁铁矿矿石为典型矿石的金属矿床产于长江中下游中生代火山盆地,庐枞火山岩盆地。丰富的铁矿和黄铁矿床,主要分布在火山岩和潜火山岩里,同时也分布于盆地周边。火山岩石主要是钾玄岩-粗安岩-粗面岩组合。在深部,与它们的成分对应的岩浆岩石是碱性辉长岩-辉石二长岩-正长岩组合,如缺口辉长岩,杨山地区的辉石正长岩。火山岩和深部的辉长岩-二长岩-正长岩都经历了多次水热活动。黄铁矿-硬石膏-磁铁矿矿床主要伴随两套蚀变,即,火山岩石的大面积深色蚀变(硬石膏-辉石-长石蚀变岩)和浅色蚀变(硅化泥化)。在二长-正长岩与火山岩石的接触带,有强烈的类云英岩石(电气石-石英-云母组合)。在缺口辉长岩里,曾经发现大量磁铁矿脉(磁铁矿-方柱石-方钠石-石榴石组合)。在杨山和马口地区,正长岩里的铁矿是辉石钾长石磁铁矿组合及阳起石-磷灰石-磁铁矿组合。二长-正长岩体在盆地里广泛分布,在大范围内是几乎是层状的。调查研究表明:火山盆地底部辉长岩-二长岩-正长岩组合与铁矿有关。盆地里深部岩石和成矿作用存在有垂直分布特性。上面是喷发岩石,及潜火山岩石,下面是深部的碱性辉长岩-二长岩-正长岩杂岩体。中间有过渡带,岩墙岩席带。上面是与钾玄岩-粗安岩层和潜火山岩石里赋存的磁铁矿和黄铁矿床,下面有产于碱性辉长岩-二长岩-正长岩里也有铁矿化。蚀变岩石地质年代的初步研究发现:罗河铁矿的深部钠长石化岩石,与马口铁矿附近的正长岩石的地质年代接近(110~119Ma)。事实说明,在火山岩和潜水火山岩石里成矿作用和深部岩浆岩里成矿作用可能是同时发生的。20~435℃条件下正长岩石与水的反应动力学实验表明,在400℃左右时正长岩最容易被溶解。正长岩与水反应后,也会形成一个携带金属的流体。水岩相互作用实验提供了认识深部岩石性质的依据,有利于理解对深部的地球物理探测结果。  相似文献   
88.
鲁中南抱犊崮地区,山体陡峭挺拔,风景秀丽,以有鲁南小泰山之称的抱犊崮为代表,山体顶部主要由古生代寒武纪九龙群张夏组灰岩组成,其下分布由长清群馒头组砂岩、砂质页岩、泥质灰岩、薄层灰岩及朱砂洞组灰岩、泥质灰岩等。“崮”的成因主要是古生代寒武纪灰岩经受了强烈的地壳切割和抬升运动,并遭受长期的侵蚀、溶蚀、重力崩塌和风化剥蚀等多重地质作用而形成抱犊崮所具有的岱崮地貌,作为地质遗迹和地质地貌景观,具有重要的地学研究价值,也是潜力巨大的旅游资源。  相似文献   
89.
内蒙古自治区翁牛特旗姚家店铅锌矿矿床为一受NW向断裂带构造控制的中低温岩浆热液充填交代型铅锌矿床,形成于燕山晚期,矿体呈脉状产于二叠世额里图组安山质凝灰岩之构造破碎带内,形态产状严格受断裂构造控制。矿石为硅化、黄铁矿化碎裂岩型铅锌矿石。  相似文献   
90.
沂水县常庄钛铁矿床产于中细粒含钛磁铁矿辉石角闪石岩中,该岩体既是成矿母岩又是赋矿围岩。矿体长1 800 m,平均宽75 m,控制斜深344 m,平均品位TiO28.85%,品位变化系数为104%,TFe+TiO2平均品位28.24%,品位变化系数为102%。属品位变化较不均匀的矿体。该矿床具有矿体规模大,形态简单,易于开采之特点。通过对矿床地质特征的研究,认为该矿床属基性岩浆分异型钛铁矿床,其成矿时代为古元古代。  相似文献   
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