The Lake CHAd Deep DRILLing project (CHADRILL) – targeting  ∼ 10 million years of environmental and climate change in Africa

IF 1.6 Q3 GEOSCIENCES, MULTIDISCIPLINARY Scientific Drilling Pub Date : 2018-10-22 DOI:10.5194/SD-24-71-2018
F. Sylvestre, M. Schuster, H. Vogel, Moussa Abdheramane, D. Arizteguí, U. Salzmann, A. Schwalb, N. Waldmann
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引用次数: 6

Abstract

Abstract. At present, Lake Chad (∼ 13∘′ N, ∼ 14∘ E) is a shallow freshwater lake located in the Sahel/Sahara region of central northern Africa. The lake is primarily fed by the Chari–Logone river system draining a ∼ 600 000 km2 watershed in tropical Africa. Discharge is strongly controlled by the annual passage of the intertropical convergence zone (ITCZ) and monsoon circulation leading to a peak in rainfall during boreal summer. During recent decades, a large number of studies have been carried out in the Lake Chad Basin (LCB). They have mostly focused on a patchwork of exposed lake sediments and outcrops once inhabited by early hominids. A dataset generated from a 673 m long geotechnical borehole drilled in 1973, along with outcrop and seismic reflection studies, reveal several hundred metres of Miocene–Pleistocene lacustrine deposits. CHADRILL aims to recover a sedimentary core spanning the Miocene–Pleistocene sediment succession of Lake Chad through deep drilling. This record will provide significant insights into the modulation of orbitally forced changes in northern African hydroclimate under different climate boundary conditions such as high CO2 and absence of Northern Hemisphere ice sheets. These investigations will also help unravel both the age and the origin of the lake and its current desert surrounding. The LCB is very rich in early hominid fossils (Australopithecus bahrelghazali; Sahelanthropus tchadensis) of Late Miocene age. Thus, retrieving a sediment core from this basin will provide the most continuous climatic and environmental record with which to compare hominid migrations across northern Africa and has major implications for understanding human evolution. Furthermore, due to its dramatic and episodically changing water levels and associated depositional modes, Lake Chad's sediments resemble maybe an analogue for lake systems that were once present on Mars. Consequently, the study of the subsurface biosphere contained in these sediments has the potential to shed light on microbial biodiversity present in this type of depositional environment. We propose to drill a total of ∼ 1800 m of poorly to semi-consolidated lacustrine, fluvial, and eolian sediments down to bedrock at a single on-shore site close to the shoreline of present-day Lake Chad. We propose to locate our drilling operations on-shore close to the site where the geotechnical Bol borehole (13∘28′ N, 14∘44′ E) was drilled in 1973. This is for two main reasons: (1) nowhere else in the Chad Basin do we have such detailed information about the lithologies to be drilled; and (2) the Bol site is close to the depocentre of the Chad Basin and therefore likely to provide the stratigraphically most continuous sequence.
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乍得湖深层钻探项目(CHADRILL) -目标为非洲约1000万年的环境和气候变化
摘要目前,乍得湖(∼13°N,∼14°E)是一个浅淡水湖,位于非洲中北部的萨赫勒/撒哈拉地区。该湖主要由Chari-Logone河系统提供水源,该系统排水约60万平方公里的热带非洲流域。年通过的热带辐合带(ITCZ)和季风环流强烈地控制着降水,导致北方夏季降水达到峰值。近几十年来,在乍得湖盆地(LCB)进行了大量研究。他们主要关注的是裸露的湖泊沉积物和早期人类曾经居住过的露头。从1973年钻的673米长的地质技术钻孔生成的数据集,以及露头和地震反射研究,揭示了数百米的中新世-更新世湖泊沉积物。CHADRILL旨在通过深钻恢复乍得湖中新世-更新世沉积序列的沉积岩心。这一记录将为在不同气候边界条件下(如高二氧化碳和北半球冰盖缺失)北半球水文气候的轨道强迫变化调制提供重要见解。这些调查也将有助于揭开这个湖的年龄和起源,以及它现在周围的沙漠。LCB非常丰富的早期人科化石(南古猿;晚中新世的萨赫勒人(tchadensis)。因此,从该盆地提取沉积物岩心将提供最连续的气候和环境记录,用于比较北非的原始人类迁徙,并对理解人类进化具有重要意义。此外,由于乍得湖的水位和相关的沉积模式的剧烈和间歇性变化,乍得湖的沉积物可能类似于火星上曾经存在的湖泊系统。因此,对这些沉积物中包含的地下生物圈的研究有可能揭示这种沉积环境中存在的微生物多样性。我们建议在靠近今天乍得湖海岸线的一个单岸地点钻取总计约1800米的半固结湖泊、河流和风成沉积物,直至基岩。我们建议把我们的钻井作业地点设在岸上,靠近1973年钻地质工程钻孔(13°28′北纬,14°44′东经)的地点。这主要有两个原因:(1)在乍得盆地的其他地方,我们没有如此详细的岩性信息;(2) Bol遗址靠近乍得盆地的沉积中心,因此可能提供地层上最连续的层序。
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来源期刊
Scientific Drilling
Scientific Drilling GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
2.50
自引率
0.00%
发文量
12
审稿时长
27 weeks
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