The Segmented Zambezi Sedimentary System from Source to Sink: 1. Sand Petrology and Heavy Minerals

IF 1.5 4区 地球科学 Q2 GEOLOGY
Journal of Geology Pub Date : 2021-06-09 DOI:10.1086/715792
E. Garzanti, G. Pastore, A. Resentini, G. Vezzoli, P. Vermeesch, L. Ncube, H. V. Niekerk, G. Jouet, M. Dall’asta
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引用次数: 10

Abstract

The Zambezi River rises at the center of southern Africa, flows across the low-relief Kalahari Plateau, meets Karoo basalt, plunges into Victoria Falls, follows along Karoo rifts, and pierces through Precambrian basement to eventually deliver its load onto the Mozambican passive margin. Reflecting its polyphase evolution, the river is subdivided into segments with different geological and geomorphological character, a subdivision finally fixed by man’s construction of large reservoirs and faithfully testified by sharp changes in sediment composition. Pure quartzose sand recycled from Kalahari desert dunes in the uppermost tract is next progressively enriched in basaltic rock fragments and clinopyroxene. Sediment load is renewed first downstream of Lake Kariba and next downstream of Lake Cahora Bassa, documenting a stepwise decrease in quartz and durable heavy minerals. Composition becomes quartzo-feldspathic in the lower tract, where most sediment is supplied by high-grade basements rejuvenated by the southward propagation of the East African rift. Feldspar abundance in Lower Zambezi sand has no equivalent among big rivers on Earth and far exceeds that in sediments of the northern delta, shelf, and slope, revealing that provenance signals from the upper reaches have ceased to be transmitted across the routing system after closure of the big dams. This high-resolution petrologic study of Zambezi sand allows us to critically reconsider several dogmas, such as the supposed increase of mineralogical “maturity” during long-distance fluvial transport, and forges a key to unlock the rich information stored in sedimentary archives, with the ultimate goal to accurately reconstruct the evolution of this mighty river flowing across changing African landscapes since the late Mesozoic.
赞比西分块沉积体系从源到汇:1。砂岩石学和重矿物
赞比西河发源于南部非洲的中心,流经地势较低的喀拉哈里高原,与卡鲁玄武岩汇合,汇入维多利亚瀑布,沿着卡鲁裂谷,穿过前寒武纪基底,最终将河水输送到莫桑比克被动边缘。这条河流被细分为具有不同地质地貌特征的河段,反映了它的多相演化,这一细分最终被人类建造的大型水库所固定,并被沉积物组成的急剧变化所忠实地证明。从最上层的喀拉哈里沙漠沙丘中回收的纯石英砂随后逐渐富含玄武岩碎片和斜辉石。沉积物负荷首先在卡里巴湖下游和卡霍拉巴萨湖下游更新,记录了石英和耐用重矿物的逐步减少。下河段的成分变成石英长石,大部分沉积物由东非裂谷向南扩展而恢复的高品位基底提供。赞比西河下游泥沙中的长石丰度在地球上的大河中是不相等的,远远超过北部三角洲、陆架和斜坡沉积物中的长石丰度,这表明在大坝关闭后,来自上游的物源信号已经停止通过路线系统传递。这项对赞比西河砂的高分辨率岩石学研究使我们能够批判性地重新考虑一些教条,例如在长距离河流运输过程中假定的矿物“成熟度”的增加,并为解锁沉积档案中存储的丰富信息提供了钥匙,最终目标是准确地重建自中生代晚期以来这条流经不断变化的非洲景观的强大河流的演变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Geology
Journal of Geology 地学-地质学
CiteScore
3.50
自引率
5.60%
发文量
0
审稿时长
3 months
期刊介绍: One of the oldest journals in geology, The Journal of Geology has since 1893 promoted the systematic philosophical and fundamental study of geology. The Journal publishes original research across a broad range of subfields in geology, including geophysics, geochemistry, sedimentology, geomorphology, petrology, plate tectonics, volcanology, structural geology, mineralogy, and planetary sciences. Many of its articles have wide appeal for geologists, present research of topical relevance, and offer new geological insights through the application of innovative approaches and methods.
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