Pennsylvanian Silicification of Shallow Marine Fossils in the Jemez Mountains, New Mexico

P. Carey, Deborah Petrak Green
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Abstract

The frequently red silicification of northern New Mexican Pennsylvanian fossils, especially brachiopods, is well-known to collectors but, as of yet, has not been described in detail or explained in the geological literature of New Mexico. In general, the process is interpreted as early, shallow burial, replacement diagenesis produced in calcite skeletons surrounded by marine water enriched in dissolved silica. Usually, fossil shells in limestones are silicified, while the enclosing calcite matrix is not. This is because replacement silicification is favored in the microscopic environments in the shell that contain organic matter, which upon decay, produces the more acidic conditions necessary for silica precipitation concomitant with calcite dissolution. Pore-water enrichment is ascribed to episodic increases in dissolved silica, principally produced either by variations in the delivery of primary silica by rivers or by changes in the delivery of wind-blown dust, which could be climatically controlled. Two occurrences that have been linked to red silicfication at other localities are not petrographically abundant in these rocks, namely sponge spicules or pyrite.
新墨西哥州杰梅兹山脉浅海化石的宾夕法尼亚硅化作用
新墨西哥北部宾夕法尼亚化石,尤其是腕足类化石,经常发生红色硅化,这是收藏家们所熟知的,但到目前为止,在新墨西哥的地质文献中还没有详细描述或解释。一般来说,这一过程被解释为早期、浅埋、替代成岩作用,发生在方解石骨架中,周围是富含溶解二氧化硅的海水。通常,石灰岩中的化石壳是硅化的,而包裹的方解石基质则不是。这是因为在含有有机物的外壳的微观环境中,替代硅化作用是有利的,这些有机物在衰变时,产生更酸的条件,这是硅石沉淀和方解石溶解所必需的。孔隙水富集归因于溶解二氧化硅的间歇性增加,这主要是由河流输送原生二氧化硅的变化或风吹尘埃输送的变化造成的,这可以由气候控制。在其他地方与红硅化有关的两种赋存物在岩石学上并不丰富,即海绵针状体或黄铁矿。
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