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101.
石晓兰  孟凡超  王尉  魏嘉怡  周瑶琪 《地质学报》2023,97(12):4085-4100
石泡构造是酸性火山岩中的一种特殊原生构造,常见于流纹岩中。石泡构造成因的研究对认识流纹质岩浆性质和喷发环境都具有重要意义。然而,关于形成石泡构造的岩浆性质、形成机理及其影响因素的研究仍比较薄弱。本文以苏鲁造山带白垩系青山群流纹岩石泡构造为研究对象,通过矿物学、岩石学、地球化学等方法,对石泡构造的发育规律、石泡和石泡间胶结熔浆的矿物组成、元素变化进行了系统研究。结果表明,石泡构造流纹岩主要发育于溢流相上部亚相,石泡可划分为实心型和空心型两类。地球化学特征显示石泡流纹岩与流纹构造流纹岩属同源岩浆,石泡流纹岩经历了更高程度的分异作用。石泡构造流纹岩胶结熔浆中水含量高于下部流纹构造流纹岩的玻璃质,导致溢流相上部亚相挥发分逸出趋势相对明显,受限于富硅岩浆的高黏度,挥发分未能顺利逸出,在逸出点猝冷形成石泡壁,受瞬时应力作用和过冷程度影响,形成形态多样的空腔。随着结晶温度下降,空腔内部残余岩浆依次冷凝结晶形成玉髓或石英。石泡构造的形成意味着岩浆作用过程或者喷发环境水的加入,对于研究酸性岩浆的演化和火山喷发机制具有重要意义。  相似文献   
102.
内蒙古鸡冠山钼矿流纹斑岩的成岩年龄及地质意义   总被引:1,自引:0,他引:1  
陈伟军 《地质与勘探》2015,51(6):1107-1113
内蒙古鸡冠山钼矿床是近年来发现的一个大型斑岩型钼矿床,位于华北克拉通北缘、西拉沐沦钼矿带的中段,产出于一破火山机构的NW侧。矿床矿石矿物辉钼矿Re-Os同位素等时线法测得成矿年龄为151.1±1.3Ma,为晚侏罗世成矿。本文通过SIMS锆石U-Pb年龄法,测定流纹斑岩成岩年龄为148.5±3.3Ma(U-Pb等时线年龄,2σ,MSWD=2.2),为晚侏罗世成岩。该成岩年龄与成矿年龄在误差范围内一致,说明与流纹斑岩有关的岩浆活动可能形成成矿的母岩浆,成岩与成矿近乎同时发生。  相似文献   
103.
西天山阿吾拉勒地区A型流纹斑岩的初步研究   总被引:1,自引:0,他引:1  
新疆阿吾拉勒山是中亚造山带的重要组成部分。通过对区内火山岩的主量元素和微量元素地球化学研究,在群吉萨伊-塔尔得套一带下二叠统乌朗组中厘定出了一套铝质A型流纹斑岩。群吉萨伊和塔尔得套的流纹斑岩具有富硅(SiO2≥69.9%)和富碱(Na2O+K2O≥7.06%)的特征。其中,塔尔得套流纹斑岩的总碱含量低于群吉萨伊流纹斑岩,但其K2O含量则明显高于后者,属于高钾火山岩。二者均具有明显的Ba、Sr、Eu和Ti亏损,稀土总量在90.7×10-6~264×10-6之间。主量元素和微量元素特征显示,群吉萨伊和塔尔得套的A型流纹斑岩的源区均与硬质砂岩相似,属于A2型花岗岩,同时具有较高的锆饱和温度(TZr约900°C),其成因可能与后俯冲阶段的岩石圈拆沉过程有关。  相似文献   
104.
《International Geology Review》2012,54(16):1967-1982
ABSTRACT

The Taupo Volcanic Zone (TVZ), New Zealand, is a well-documented volcanic arc characterized by explosive rhyolitic magmas within a series of caldera complexes that include the Okataina Volcanic Centre (OVC). New quartz melt inclusion and volcanic glass data from the 45 ka caldera-forming Rotoiti eruption within the OVC are compared to published studies. The new data are characterized by low K2O (~1.5–3.5 wt.%), Rb (~30–70 ppm), Sr (~40–90 ppm), U (~0.5–2.5 ppm), and Ba (~300–1000 ppm) ranges that differ significantly from other OVC systems (~3.0–4.5 wt.% K2O, ~80–150 ppm Rb, and ~2.5–5.0 ppm U). Most interestingly, the Rotoiti melt inclusion data measured in this study show a decrease in Rb, Sr, and U, although the fractionation trends originate from the same source point as published OVC data. This progressive decreasing trend is interpreted as an interaction with a less enriched rhyolitic melt (represented by the low Rb, Sr, and U of glasses) during fractionation processes from a common TVZ source. The established model for TVZ rhyolites is that they are extracted from a middle or upper crustal source (‘mush’ zone) prior to eruption. Adding to this model, new melt inclusion data suggest that all TVZ rhyolites are fractionated from this common TVZ source and, prior to eruption, the Rotoiti system was rejuvenated by this source (evidenced by the low REE glasses). Exactly what triggers the common TVZ source to fractionate remains unclear, but a proposed mechanism to account for this involves the successive melting of the upper crust by upwelling mantle induced by incremental subduction.  相似文献   
105.
蔺广太 《吉林地质》2003,22(2):50-55
建设国家地质公园是时代发展、保护自然遗产的客观要求.四平山门-伊通一带分布着的十数座流纹岩柱状节理火山锥和玄武岩柱状节理火山锥,辅以燕国古城遗址、努尔哈赤起兵和慈禧祖籍地、解放战争"四战四平"战绩地等人文景观和其他自然景观,以及各类保护区和经济开发区的建设,使本区具备了地质公园的地质遗迹特殊的科学意义.稀有的自然属性,优雅的美学观赏价值,融合自然与人文景观并具有生态、历史和文化价值,为建立国家地质公园奠定了丰厚的物质基础.本文对四平山门-伊通火山地质公园从基础条件,基础研究、基础建设、申报工作等方面给予了详实论述.  相似文献   
106.
Young (<65 ka) explosive silicic volcanism at Taupo volcano,New Zealand, has involved the development and evacuation ofseveral crustal magmatic systems. Up to and including the 26·5ka 530 km3 Oruanui eruption, magmatic systems were contemporaneousbut geographically separated. Subsequently they have been separatedin time and have vented from geographically overlapping areas.Single-crystal (secondary ionization mass spectrometry) andmultiple-crystal (thermal ionization mass spectrometry) zirconmodel-age data are presented from nine representative eruptiondeposits from 45 to 3·5 ka. Zircon yields vary by threeorders of magnitude, correlating with the degrees of zirconsaturation in the magmas, and influencing the spectra of modelages. Two adjacent magma systems active up to 26·5 kashow wholly contrasting model-age spectra. The smaller systemshows a simple unimodal distribution. The larger system, usingdata from three eruptions, shows bimodal model-age spectra.An older 100 ka peak is interpreted to represent zircons (antecrysts)derived from older silicic mush or plutonic rocks, and a youngerpeak to represent zircons (phenocrysts) that grew in the magmabody immediately prior to eruption. Post-26·5 ka magmabatches show contrasting age spectra, consistent with a mixtureof antecrysts, phenocrysts and, in two examples, xenocrystsfrom Quaternary plutonic and Mesozoic–Palaeozoic metasedimentaryrocks. The model-age spectra, coupled with zircon-dissolutionmodelling, highlight contrasts between short-term silicic magmageneration at Taupo, by bulk remobilization of crystal mushand assimilation of metasediment and/or silicic plutonic basementrocks, and the longer-term processes of fractionation from crustallycontaminated mafic melts. Contrasts between adjacent or successivemagma systems are attributed to differences in positions ofthe source and root zones within contrasting domains in thequartzo-feldspathic (<15 km deep) crust below the volcano. KEY WORDS: zircon; U-series dating; rhyolite; Taupo Volcanic Zone; Taupo volcano  相似文献   
107.
The 1305 Kaharoa rhyolite eruptive episode is the largest volcanic event(4 km3 magma) to have occurred in New Zealand during the last 1000 years. Proximal areas were devastated by pyroclastic flows, and tephra fell over much of the northern North Island. No eyewitness observations are recorded, but ejecta analyses show that the rhyolite eruptions were primed and triggered by basalt intrusions. This key finding, combined with observations of similar modern eruptions, has allowed construction of a conceptual scenario of the seismic and other activity that likely preceded the Kaharoa episode.The precursory scenario begins at -5 years (before the first eruption). Rising basalt magma intrusions generate deep long-period earthquakes in the lower crust, before intersecting and heating a rhyolite magma body at 6 km depth beneath Tarawera. By -1 year, increased heat flux from the rhyolite magma body had raised temperatures and pressures in the overlying hydrothermal system; generating shallow long-period earthquakes and increased heat flow at the surface. At -2 months, shallow volcano-tectonic earthquake activity intensified, driven by inflation of the rhyolite magma body, with magmatic gas appearing in fumarole discharges. Rapidly accelerating seismicity, ground deformation and surface heat flow occurred in the last few weeks and days, before the initial vent-opening explosions intensified into major plinian eruptions.Effectiveness of the present volcano monitoring system at Tarawera can be evaluated against this scenario. The precursory seismic activity, including the critical deep long-period earthquakes, would be recorded but not accurately located. Similarly, the existing ground deformation monitoring systems would detect early magma chamber inflation, but discrimination from the background tectonic tilting signal would be difficult. Continuous telemetering of geodetic data from existing and additional instruments would be required for any useful monitoring of rapid ground deformation in the final precursory phases.  相似文献   
108.
阿尔泰南缘泥盆纪流纹岩的地球化学和大地构造背景   总被引:19,自引:1,他引:19  
新疆阿尔泰南缘克朗和麦兹盆地内泥盆系康布铁堡组发育浅变质的酸性火山岩,岩相学特征和主量元素组成表明它们的原岩为流纹岩。该流纹岩具有高SiO2、较高(Na2O+K2O)、低TiO2和低CaO含量,属于亚碱性系列。稀土元素配分模式以轻稀土富集、Eu负异常强烈为特征。在不相容元素蛛网图上,流纹岩相对于洋脊花岗岩总体上富集大离子亲石元素和轻稀土元素,而明显亏损高场强元素Nb、Ta、Zr、Hf。在Nb-Y和Rb-(Y+Nb)判别图上,它们落入火山弧花岗岩区。这些结果显示,所研究的流纹岩形成于与俯冲作用密切相关的陆缘火山弧环境。本文研究结果为阿尔泰南缘在泥盆纪属于活动大陆边缘的认识提供了进一步的证据。  相似文献   
109.
呼伦湖早白垩世碱性流纹岩的地球化学特征及其意义   总被引:34,自引:2,他引:34       下载免费PDF全文
大兴安岭呼伦湖一带的上库力组第3段流纹岩具有高硅(SiO2=75.41%~77.32%)、富碱(Na2O+K2O=7.98%~8.74%)、富Y、Nb、Zr及低Al、Mg、Ca、Ni、Cr、Ti和高Ga/Al比值等特点,类似于A型花岗岩,而与高度分异的I型和S型花岗岩有明显差别。该流纹岩的地球化学特征类似于A1型花岗岩,且与该区A型花岗岩同时,很可能是A型花岗岩浆喷出相的产物。流纹岩的全岩Rb-Sr等时线年龄127±5Ma,与伊列克得组玄武岩(125±2Ma)时代一致,两者构成了双峰式火山岩组合,形成于早白垩世岩石圈拉张环境。  相似文献   
110.
Voluminous (3·9 x 105 km3), prolonged (18 Myr) explosivesilicic volcanism makes the mid-Tertiary Sierra Madre Occidentalprovince of Mexico one of the largest intact silicic volcanicprovinces known. Previous models have proposed an assimilation–fractionalcrystallization origin for the rhyolites involving closed-systemfractional crystallization from crustally contaminated andesiticparental magmas, with <20% crustal contributions. The lackof isotopic variation among the lower crustal xenoliths inferredto represent the crustal contaminants and coeval Sierra MadreOccidental rhyolite and basaltic andesite to andesite volcanicrocks has constrained interpretations for larger crustal contributions.Here, we use zircon age populations as probes to assess crustalinvolvement in Sierra Madre Occidental silicic magmatism. Laserablation-inductively coupled plasma-mass spectrometry analysesof zircons from rhyolitic ignimbrites from the northeasternand southwestern sectors of the province yield U–Pb agesthat show significant age discrepancies of 1–4 Myr comparedwith previously determined K/Ar and 40Ar/39Ar ages from thesame ignimbrites; the age differences are greater than the errorsattributable to analytical uncertainty. Zircon xenocrysts withnew overgrowths in the Late Eocene to earliest Oligocene rhyoliteignimbrites from the northeastern sector provide direct evidencefor some involvement of Proterozoic crustal materials, and,potentially more importantly, the derivation of zircon fromMesozoic and Eocene age, isotopically primitive, subduction-relatedigneous basement. The youngest rhyolitic ignimbrites from thesouthwestern sector show even stronger evidence for inheritancein the age spectra, but lack old inherited zircon (i.e. Eoceneor older). Instead, these Early Miocene ignimbrites are dominatedby antecrystic zircons, representing >33 to 100% of the datedpopulation; most antecrysts range in age between 20 and 32 Ma.A sub-population of the antecrystic zircons is chemically distinctin terms of their high U (>1000 ppm to 1·3 wt %) andheavy REE contents; these are not present in the Oligocene ignimbritesin the northeastern sector of the Sierra Madre Occidental. Thecombination of antecryst zircon U–Pb ages and chemistrysuggests that much of the zircon in the youngest rhyolites wasderived by remelting of partially molten to solidified igneousrocks formed during preceding phases of Sierra Madre Occidentalvolcanism. Strong Zr undersaturation, and estimations for veryrapid dissolution rates of entrained zircons, preclude coevalmafic magmas being parental to the rhyolite magmas by a processof lower crustal assimilation followed by closed-system crystalfractionation as interpreted in previous studies of the SierraMadre Occidental rhyolites. Mafic magmas were more probablyimportant in providing a long-lived heat and material flux intothe crust, resulting in the remelting and recycling of oldercrust and newly formed igneous materials related to Sierra MadreOccidental magmatism. KEY WORDS: ignimbrite; rhyolite; Sierra Madre Occidental; Tertiary; U–Pb geochronology; zircon; antecryst; crustal melting  相似文献   
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