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Microfabrics of crystalline rocks from the drilling projects Gross-Umstadt Heubach and Wiebelsbach (Böllsteiner Odenwald): Constraints on deformation mechanisms, metamorphic temperature and kinematics 来自格罗斯-乌姆施塔特-休巴赫和维贝尔斯巴赫钻井项目(Böllsteiner Odenwald)的结晶岩石微组构:变形机制、变质温度和运动学的约束
IF 1.1 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2016-03-01 DOI: 10.1127/ZDGG/2016/0045
F. Loeckle, G. Zulauf, H. Nesbor
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引用次数: 2
Stress rotation in the suprasalt beneath Hanover (North German Basin) derived from image logs of the deep well Groß Buchholz Gt1 基于Groß Buchholz Gt1深井成像测井的汉诺威(北德盆地)地下超盐层应力旋转
IF 1.1 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2015-12-01 DOI: 10.1127/ZDGG/2015/0038
Wiete Hübner, Matthias Wellbrink, T. Röckel, S. Steuer, S. Krug, T. Tischner
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引用次数: 1
Lithofacies distribution in the Central European Basin: a 3D model of the Buntsandstein facies in the central German North Sea 中欧盆地的岩相分布:德国北海中部Buntsandstein相的三维模型
IF 1.1 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2015-12-01 DOI: 10.1127/ZDGG/2015/0039
Marco Wolf, S. Steuer, Heinz-Gerd Röhling, D. Rebscher, F. Jähne-Klingberg
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引用次数: 4
Die Mansfelder Schlotten – Verbreitung und Genese der größten mitteleuropäischen Anhydrit-Schichtgrenzhöhlen 这种社区中最大的中欧溶化洞的盛行和出现也在萌芽中
IF 1.1 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2015-12-01 DOI: 10.1127/ZDGG/2015/0037
M. Kupetz, F. Knolle
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引用次数: 3
Die jurassische hydrothermale Überprägung der sedimentären Deckgebirgsserien im Schwarzwald (Süddeutschland) The Jurassic hydrothermal alteration of sedimentary cover rocks of the Black Forest in Southern Germany Die jurassische hydrothermale Überprägung der sedimentären Deckgebirgsserien im Schwarzwald (s<s:2> deutschland)德国南部黑森林沉积盖层的侏罗纪热液蚀变
IF 1.1 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2015-09-01 DOI: 10.1127/zdgg/2015/0033
O. Brockamp, A. Schlegel
The extent of pervasive hydrothermal alteration of the sedimentary cover rock in the Black Forest is revealed by geochemical analyses together with illite K-Ar dating, thin section microscopy, microthermometry, X-ray diffractometry and infrared spectroscopy of bulk samples and clay separates. The alteration extends from faults in the five intramontane troughs into the Permo-Carboniferous sediments and further into the overlying Bunter deposits. Within the troughs, extensive alteration occurred by complete illitisation of detrital feldspar grains and recrystallisation of the illitic detritus. Authigenic illite particles are commonly grown in pore spaces and intersperse palisadian like as small authigenic illite flakes detrital mica particles encrusting feldspar and quartz grain surfaces of Bunter sandstones that are partly coated later by quartz overgrowth. The degree of intensive alteration within the intramontane troughs decreases from the northern to the southern Black Forest, and equally the smectite component in illite/smectite mixed-layered minerals of the <2 μm fractions increases from <5 % up to 25 %. Hydrothermal dioctahedral Al-rich chlorite from feldspar is widely observed as a minor component in the southern areas. Illite and chlorite authigenesis was triggered by hot and low saline solutions (150–250 °C, <10 wt% NaCleq), while the partly silicification was caused by low temperature and high saline fluids (<150 °C, 20–25 wt% NaCleq). Temperature of both fluid types decreases by about 50 °C from the northern to the southern Black Forest and likewise the ascending fluid volume appears to have been reduced. According to K-Ar ages of authigenic illite of the <2 and <0.2 μm fractions pervasive alteration occurred in the Upper Jurassic at about 145 Ma, and locally in addition Cretaceous hydrothermal events and – next to the Rhine Graben boundary fault – even those of Tertiary age are evident, indicating multiple hydrothermal activities. © 2015 E. Schweizerbart’sche Verlagsbuchhandlung, Stuttgart, Germany DOI: 10.1127/zdgg/2015/0033 www.schweizerbart.de 1860-1804/0033 $ 9.45 Z. Dt. Ges. Geowiss. (German J. Geol.), 166 (3), p. 275–295, 9 figs., 3 tables Article Published online June 2015
通过地球化学分析、伊利石K-Ar定年、薄片显微镜、显微测温、x射线衍射和红外光谱分析,揭示了黑森林沉积盖层普遍热液蚀变的程度。蚀变从5个山内槽的断裂延伸到二叠-石炭系沉积物,并进一步延伸到上覆的Bunter矿床。在槽内,由于碎屑长石颗粒的完全石化和伊利质碎屑的再结晶,发生了广泛的蚀变。自生伊利石颗粒通常生长在孔隙空间中,并以细小的自生伊利石薄片、碎屑云母颗粒的形式散布在邦特砂岩的长石和石英颗粒表面,这些长石和石英颗粒表面后来部分被石英过度生长包裹。黑森林山内槽内蚀变强度由北向南递减,伊利石/蒙脱石混合层状矿物<2 μm组分中蒙脱石组分从< 5%增加到25%。来自长石的热液二八面体富铝绿泥石在南方地区普遍存在,但其成分较少。伊利石和绿泥石的自生是由高温和低盐溶液(150 - 250°C, <10 wt% NaCleq)引起的,而部分硅化是由低温和高盐溶液(<150°C, 20-25 wt% NaCleq)引起的。从黑森林北部到南部,这两种流体的温度下降了约50°C,同样,上升的流体体积似乎也减少了。根据<2 μm和<0.2 μm自生伊利石的K-Ar年龄,上侏罗统在145 Ma左右发生了普遍的蚀变,局部除了白垩纪热液事件外,在莱茵地堑边界断裂附近甚至有第三纪热液事件,表明存在多次热液活动。©2015 E. Schweizerbart 'sche verlagschbuchhandlung,斯图加特,德国DOI: 10.1127/zdgg/2015/0033 www.schweizerbart.de 1860-1804/0033 $ 9.45 Z. Dt。全球经济。Geowiss。(德文J. Geol.), 166(3),页275-295,图9。文章于2015年6月在线发表
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引用次数: 0
Inlandvereisungen in Nordeuropa während des Neogens? Continental glaciations in Northern Europe during the Neogene period? Inlandvereisungen in nordeeuropa während des Neogens?新近纪时期北欧大陆冰川作用?
IF 1.1 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2015-09-01 DOI: 10.1127/1860-1804/2015/0093
A. Ludwig
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引用次数: 1
Post-industrial landscape transformation and its application for geotourism, education and recreation – an example of the Wide Mt. near Strzegom, Lower Silesia/Poland 后工业景观转型及其在地理旅游、教育和娱乐中的应用——以波兰下西里西亚斯特泽戈姆附近的宽山为例
IF 1.1 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2015-06-01 DOI: 10.1127/zdgg/2015/0018
K. Tokarczyk-Dorociak, M. Lorenc, B. Jawecki, Katarzyna Zych-Głuszyńska
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引用次数: 9
Edutainment with basalt and volcanoes – the Rockeskyller Kopf example in the Westeifel Volcanic Field/Vulkaneifel European Geopark, Germany 以玄武岩和火山为主题的寓教于乐——德国Westeifel火山场/Vulkaneifel欧洲地质公园的rockeskyler Kopf例子
IF 1.1 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2015-06-01 DOI: 10.1127/zdgg/2015/0029
P. Bitschene
The West Eifel Volcanic Field (WEVF), geotouristically better circumscribed as “Vulkaneifel European Geopark, VEG”, is a roughly 60 x 30 km wide intracontinental volcanic field with monogenetic multiphase alkali basaltic volcanoes featuring maars, tuff rings, scoria and cinder cones, and lava flows. The setting of the WEVF is intraplate extensional; its origin is commonly attributed to the Eifel plume. A fine ambassador for the WEFV is the Rockeskyller Kopf Volcanic Complex (RVC), the Eifel’s and Germany’s most complete volcano. The volcanic rocks there comprise alkaline basalts, very rare evolved rocks, and upper mantle to crustal xenolith suites. No doubt, there are enough basaltic and volcanic assets to educate and entertain the public in general. The problem to overcome here is: How to facilitate petrologic and volcanologic expert knowledge to the mildly interested visitor? One solution is a geopark with trails and panels, with guided walks and informative leaflets, and properly managed museums that exhibit and explain volcanic content. In particular, “volcanic” storytelling indoor and outdoor is essential to both educate and entertain people and thus bridge the gap between science and society. Kurzfassung: Das Westeifel-Vulkanfeld (WEVF) ist ein ca. 30 x 60 km großes intrakontinentales Vulkangebiet mit monogenetischen, alkalibasaltischen Vulkanen, die in Form von Maaren, Tuffringen, Schlackenkegeln und Lavaströmen auftreten. Geotouristisch wird die WEVG besser als Vulkaneifel Geopark (VEG) bezeichnet. Das WEVF ist geotektonisch einem extensionalen Intraplatten-Regime zuzuordnen, seinen Ursprung verdankt es dem sog. „Eifel-Plume“. Ein exemplarischer Vertreter des WEVF ist der Rockeskyller-Kopf-Vulkankomplex (RVC), er gilt als komplettester Vulkan der Eifel und Deutschlands. Die vulkanischen Gesteine dort umfassen alkaline Basalte, sehr selten höher differenzierte Gesteine, und Xenolithe aus dem oberen Erdmantel und der Erdkruste. Kein Zweifel, hier gibt es genügend basaltische und vulkanische Aspekte, die der Öffentlichkeit zur Bildung und Unterhaltung dienen. Eine Schwierigkeit gilt es jedoch zu überwinden: Wie vermittelt man petrologisches und vulkanologisches Expertenwissen an nur halbherzig interessierte Besucher? Eine Möglichkeit ist ein Geopark mit Pfaden und Tafeln, mit geführten Wanderungen und informativen Faltblättern, und natürlich mit ordentlich geführten Museen, welche die vulkanischen Zeugnisse ausstellen und erklären. Ganz wichtig ist auch das „vulkanische“ Geschichtenerzählen, drinnen und draußen, um die Menschen sowohl zu bilden wie auch zu unterhalten, und um somit die Brücke zu schlagen zwischen Wissenschaft und Gesellschaft.
西艾菲尔火山场(WEVF),在地理旅游上被更好地定义为“Vulkaneifel欧洲地质公园,VEG”,是一个大约60 x 30公里宽的大陆内火山场,拥有单成因多相碱性玄武岩火山,具有岩浆,凝灰岩环,矿渣和煤渣锥以及熔岩流。WEVF的背景为板内伸展;它的起源通常被认为是艾菲尔羽流。洛基克勒科普夫火山群(RVC)是WEFV的优秀大使,它是埃菲尔铁塔和德国最完整的火山。火山岩包括碱性玄武岩、稀有演化岩和上地幔-地壳捕虏岩套。毫无疑问,这里有足够的玄武岩和火山资产来教育和娱乐公众。这里要克服的问题是:如何使对岩石学和火山学专业知识感兴趣的游客更容易了解?一种解决方案是建立地质公园,有小径和面板,有导游和信息传单,以及管理得当的博物馆,展示和解释火山的内容。特别是,室内和室外的“火山式”讲故事对于教育和娱乐人们至关重要,从而弥合科学与社会之间的差距。Kurzfassung: Das Westeifel-Vulkanfeld (WEVF)在约30 × 60 km的groß ßes intrakcontinentales Vulkangebiet mit monogenetischen, alalibasaltischen Vulkanen, die in Form von Maaren, Tuffringen, Schlackenkegeln and Lavaströmen auftreten。地质旅游风die WEVG又称Vulkaneifel地质公园(VEG)。WEVF第一次地质构造分析是基于扩展的平台内系统的地质构造分析。Eifel-Plume”。在WEVF - first der rockkyler - kopf - vulkankomplex (RVC)的范例测试中,我们还提供了完整的Vulkan der Eifel和Deutschlands测试。Die vulkanischen Gesteine ort umfassen碱性玄武岩,sehr selten höher differenzierte Gesteine, and Xenolithe ausdem oberen Erdmantel and der Erdkruste。Kein Zweifel,他的研究对象是一般的玄武岩理论和vulkanische Aspekte, die der Öffentlichkeit zur建筑和Unterhaltung dienen。[中文]:岩石学与生物学的研究进展与发展趋势?Eine Möglichkeit ist in geoppark mit Pfaden und Tafeln, mit gegetenwanderungen and informativen Faltblättern, und natrlich mit ordentlich gefhlten Museen, welche die vulkanischen Zeugnisse ausstellen and erklären。Ganz (Ganz):我的名字是“vulkanische”Geschichtenerzählen,我的名字是“我的名字”,我的名字是“我的名字”,我的名字是“我的名字”,我的名字是“我的名字”,我的名字是“我的名字”。
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引用次数: 12
The landscape evolution of the Lausitz Block since the Palaeozoic – with special emphasis to the neovolcanic edifices in the Lausitz Volcanic Field (Eastern Germany) 劳西茨地块古生代以来的景观演变——以德国东部劳西茨火山场的新火山大厦为重点
IF 1.1 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2015-06-01 DOI: 10.1127/zdgg/2015/0031
O. Tietz, J. Büchner
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引用次数: 19
Nature and distribution of PGE mineralisation in gabbroic rocks of the Lusatian Block, Saxony, Germany 德国萨克森卢萨田地块辉长岩中PGE矿化性质及分布
IF 1.1 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY Pub Date : 2015-03-01 DOI: 10.1127/1860-1804/2014/0083
D. Sandmann, J. Gutzmer
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引用次数: 9
期刊
Zeitschrift Der Deutschen Gesellschaft Fur Geowissenschaften
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