来自苏格兰Rhynie异常的下泥盆世“下老红砂岩”沉积物的孢子组合

C. Wellman
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引用次数: 92

摘要

自20世纪80年代末以来,为了研究苏格兰格兰扁高原Rhynie异常的下泥盆世“下老红砂岩”矿床,开展了广泛的挖沟/钻孔计划。由于缺乏良好的地表暴露和矿床之间复杂的地质关系,这些钻孔提供了有关Rhynie离群地层演为和地质构造的新信息。收集了118个孢粉样品,代表了该河流的大部分地层序列,其中106个是生产性的。生产样品产生的组合保存完好的芽孢形态,主要是孢子和植物碎片,但也含有节肢动物角质层和罕见的淡水藻类遗骸。系统地描述了孢子组合,提出了2个新属和6个新种。它们在整个序列中相似,孢子属于Richardson & McGregor(1986)的polygonalis-emsiensis孢子组合Biozone和Streel等(1987)的PoW Oppel Zone(可能是Su Interval Zone),表明早期(但不是最早的)Pragian - ?最早的Emsian年龄范围,可能仅限于最近的Pragian - ?最早的埃姆斯期。礁岩组合仅包含陆相形式,支持沉积学的解释,即沉积为“下古红砂岩”流质和湖相沉积,偶尔穿插挤出火山和火山碎屑沉积。这些岩相具有不同的热成熟度(样品内部和样品之间),可能反映了与复杂的火山/热液系统相关的不同加热。新的孢粉学数据首次为沉积物提供了一个可靠的生物地层年龄,并表明它们的积累相对较快。孢子生物地层学和热成熟度研究有助于构造复杂矿床的对比研究,并有助于揭示离群区地质历史的其他方面。这些组合也有助于解释Rhynie盆地的生物群,包括特别保存的Rhynie和Windyfield燧石的生物群。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spore assemblages from the Lower Devonian ‘Lower Old Red Sandstone’ deposits of the Rhynie outlier, Scotland
ABSTRACT Since the late 1980s an extensive programme of trenching/borehole drilling has been undertaken in order to study the Lower Devonian ‘Lower Old Red Sandstone’ deposits of the Rhynie outlier in the Grampian Highlands of Scotland. The boreholes have provided new information on the stratigraphical succession and geological structure of the Rhynie outlier, both of which were hitherto poorly understood due to the paucity of good surface exposure and the complex geological relationships of the deposits. One hundred and eighteen palynological samples were collected, representing much of the stratigraphical sequence of the inlier, of which 106 were productive. Productive samples yield assemblages of well preserved palynomorphs, dominated by spores and phytodebris, but also containing arthropod cuticle and rare freshwater algal remains. The spore assemblages are systematically described and two new genera and six new species proposed. They are similar throughout the sequence and the spores belong to the polygonalis–emsiensis Spore Assemblage Biozone of Richardson & McGregor (1986) and the PoW Oppel Zone (possibly Su Interval Zone) of Streel et al. (1987), indicating an early (but not earliest) Pragian–?earliest Emsian age range, that may possibly be restricted to latest Pragian–?earliest Emsian. The palynomorph assemblages contain only terrestrial forms, supporting sedimentological interpretation of the deposits as ‘Lower Old Red Sandstone’ fluviatile and lacustrine deposits, with occasional extrusive volcanics and volcaniclastic sediments intercalated. The palynomorphs are of variable thermal maturity (within and between samples), probably reflecting differential heating associated with the complex volcanic/hydrothermal system. The new palynological data provide, for the first time, a reliable biostratigraphical age for the deposits, and suggest that they accumulated relatively rapidly. Spore biostratigraphy and thermal maturity studies facilitate correlation of the tectonically complex deposits, and shed light on other aspects of the geological history of the outlier. The palynomorph assemblages also aid interpretation of the biota of the Rhynie basin, including the exceptionally preserved biotas of the Rhynie and Windyfield cherts.
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