Fabrics of meteoric phreatic diagenesis: inferences from the petrographic analysis of the Turonian Wadatta Limestone, Nigeria

C.S. Nwajide
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Abstract

The Wadatta Limestone, composed of biosparite and biomicrite, is a marine member of the otherwise fluvial Makurdi Formation (Turonian). The carbonate unit exhibits calcite cement precipitation in both primary and secondary pore spaces. Replacement fabrics were created when the original aragonite of shells was dissolved and simultaneously precipitated as calcite crystals of various sizes, in some cases with oriented inclusions left as relics of the former texture. The original microcrystalline aragonite matrix was neomorphosed, mostly beyond the micrite barrier, into microspar and pseudospar.

These diagenetic effects—precipitation of sparry cement and calcitization of both molluscan shells and matrix—are diagnostic of meteoric phreatic environment. The change from marine to freshwater phreatic condition is suggested to have transpired when extensive regimes of meteoric groundwater flushed away marine waters from the carbonate deposit after the Turonian regression led to subaerial exposure in thet part of the Benue Trough.

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大气潜水成岩作用的构造:来自尼日利亚Turonian Wadatta石灰岩岩石学分析的推论
Wadatta灰岩由生物矽晶岩和生物泥晶岩组成,是河相马库尔迪组(Turonian)的海相成员。碳酸盐单元在原生和次生孔隙空间均表现出方解石胶结沉淀。当原来的贝壳文石被溶解并同时沉淀成不同大小的方解石晶体时,替代织物就被创造出来了,在某些情况下,定向包裹体作为以前纹理的遗迹留下了。原始微晶文石基体出现新形态,大部分越过泥晶屏障,形成微晶石和假晶石。这些成岩作用——晶石胶结物的沉淀和软体动物壳和基质的钙化——是大气潜水环境的诊断。从海洋到淡水潜水的变化可能发生在Turonian回退后,大量的大气地下水从碳酸盐沉积物中冲走海水,导致Benue海槽部分的地面暴露。
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