Hydrochemical mixing‐zones trigger dolomite formation in an alkaline lake

IF 2.6 2区 地球科学 Q1 GEOLOGY Sedimentology Pub Date : 2023-11-09 DOI:10.1111/sed.13155
Jeremy McCormack, Andre Baldermann, Tomaso R. R. Bontognali, Annabel Wolf, Ola Kwiecien
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Abstract

ABSTRACT Dolomite is globally present in past geological records, but rare in modern environments. The mechanisms favouring its precipitation under ambient conditions remain highly debated. This study investigates sediments, containing high concentrations of early diagenetic calcian dolomite, from alkaline Lake Van (Republic of Türkiye, formally Turkey) dating back to 252 ka BP. Powder X‐ray diffraction and scanning electron microscopy evidence suggests that dolomite formation is associated with prior dissolution of aragonite and low‐Mg calcite and a subsequent co‐precipitation with, and/or partial transformation of, high‐Mg calcite into dolomite. The infrequent presence of diatom frustules encapsulated by dolomite suggests, for Lake Van, unusually low pore‐water pH at the time of dolomite formation. Conditions facilitating the preservation of silica, as well as dissolution and subsequent reprecipitation of carbonate phases, could result from periodic reventilations of Lake Van's deep water and an advection of pore fluids with contrasting redox potential and chemical concentration gradients. This continental analogue of the coastal ‘mixing‐zone’ dolomitization model argues that not overcoming a single specific hydrochemical threshold, but highly dynamic and fluctuating conditions trigger dolomite formation in Lake Van.
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水化学混合带触发碱性湖泊中的白云岩形成
白云岩在过去的地质记录中普遍存在,但在现代环境中却很少见。在环境条件下有利于其降水的机制仍然存在高度争议。本研究调查了来自碱性湖Van (t rkiye共和国,前身为土耳其)的沉积物,其中含有高浓度的早成岩钙白云岩,其历史可追溯到252ka BP。粉末X射线衍射和扫描电镜证据表明,白云石的形成与文石和低镁方解石的预先溶解以及随后的高镁方解石的共沉淀和/或部分转化成白云石有关。被白云岩包裹的硅藻体的罕见存在表明,对于凡湖来说,白云岩形成时孔隙水的pH值异常低。有利于二氧化硅保存的条件,以及碳酸盐相的溶解和随后的再沉淀,可能是由Van湖深水的周期性通风和具有对比氧化还原电位和化学浓度梯度的孔隙流体平流造成的。这种与海岸“混合带”白云化模型相似的大陆模型认为,Van湖的白云岩形成不是克服一个特定的水化学阈值,而是高度动态和波动的条件。
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来源期刊
Sedimentology
Sedimentology 地学-地质学
CiteScore
8.20
自引率
11.40%
发文量
94
审稿时长
6-12 weeks
期刊介绍: The international leader in its field, Sedimentology publishes ground-breaking research from across the spectrum of sedimentology, sedimentary geology and sedimentary geochemistry. Areas covered include: experimental and theoretical grain transport; sediment fluxes; modern and ancient sedimentary environments; sequence stratigraphy sediment-organism interaction; palaeosoils; diagenesis; stable isotope geochemistry; environmental sedimentology
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