南非高德拉肯斯堡的冰缘地貌:与岩石风化壳和灌木生长模式的形态发生联系

IF 1.4 4区 地球科学 Q3 GEOGRAPHY, PHYSICAL Geografiska Annaler Series A-Physical Geography Pub Date : 2021-01-11 DOI:10.1080/04353676.2020.1856625
S. Grab, J. Knight, L. Mol, T. Botha, C. Carbutt, S. Woodborne
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引用次数: 4

摘要

在这里,我们的目标是通过(a)通过薄片显微镜和SEM-EDX分析检查岩石表面风化皮,以及(b)通过AMS 14C年龄测定支持的三叶蜡菊高山灌木生长模式,建立冰周现象(分选圆和草皮/石质叶)之间可能的形态发生联系。该研究区域位于非洲南部最高的高山地区之一马蒂迪-恩杰苏希峰顶地带。岩石风化结果表明,大分选圈中心的碎屑在暴露(上)和非暴露(下)表面都经历了高的化学风化速率,而裂片和非常大的明显“残余”分选圈的碎屑在很长一段时间内都不活跃,这是基于暴露和非暴露碎屑表面上强烈对比的风化速率。源自上一个(可能是末次冰期极大期或末次冰期)较冷时期的大型分选圈层仍在轻微或间歇性地活跃,从而限制了这些地貌上的植物演替。即使在非常大的分选圈和草皮/石质叶片不活跃的地方,它们的遗产仍在继续,正如今天的地表形态所表现的那样,它们仍然通过微地形和小气候的产生影响着地面的非生物条件,而微地形和小气候反过来又影响着包括三叶莲分布在内的生态系统模式。这种灌木生长模式受微尺度场地形态、相关的非生物控制和持续的季节性低温活动的影响。德拉肯斯堡峰顶冰缘地貌的活跃和不活跃都代表了具有不同细尺度非生物和地貌背景的微尺度环境,而这些微尺度环境又分别表现为植物生态和岩石表面风化的差异。
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Periglacial landforms in the high Drakensberg, Southern Africa: morphogenetic associations with rock weathering rinds and shrub growth patterns
ABSTRACT Here, we aim to establish possible morphogenetic associations between periglacial phenomena (sorted circles and turf-/stone-banked lobes) by examining (a) rock surface weathering rinds by thin section microscopy and SEM-EDX analysis, and (b) alpine shrub growth patterns of Helichrysum trilineatum supported by AMS 14C age determination. The study area is the Mafadi–Njesuthi summit zone, one of the highest alpine regions of southern Africa. Rock weathering results indicate that clasts in large sorted circle centres experience high chemical weathering rates on both exposed (upper) and non-exposed (lower) surfaces, whereas clasts in lobes and very large apparently ‘relict’ sorted circles have been inactive for a prolonged period of time, based on strongly contrasting weathering rates on both exposed and non-exposed clast surfaces. Large sorted circles originating from a previous (possibly Last Glacial Maximum or late-glacial) colder period are still marginally or episodically active, thus restricting plant succession on these landforms. Even where very large sorted circles and turf-/stone-banked lobes are inactive, their legacy continues, as expressed in today’s surface morphology, and still influence ground abiotic conditions through the generation of microrelief and microclimate which in turn have impacts on ecosystem patterns including the distribution of H. trilineatum. Such shrub growth patterns are influenced by microscale site morphology, associated abiotic controls, and ongoing seasonal cryogenic activity. Both active and inactive periglacial landforms on highest summits of the Drakensberg represent microscale environments with distinct fine-scale abiotic and geomorphic settings, which in turn are manifested through differences in plant ecology and rock surface weathering, respectively.
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来源期刊
CiteScore
3.60
自引率
0.00%
发文量
12
审稿时长
>12 weeks
期刊介绍: Geografiska Annaler: Series A, Physical Geography publishes original research in the field of Physical Geography with special emphasis on cold regions/high latitude, high altitude processes, landforms and environmental change, past, present and future. The journal primarily promotes dissemination of regular research by publishing research-based articles. The journal also publishes thematic issues where collections of articles around a specific themes are gathered. Such themes are determined by the Editors upon request. Finally the journal wishes to promote knowledge and understanding of topics in Physical Geography, their origin, development and current standing through invited review articles.
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