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Dolomitization and evolution of the Puerto Rico North Coast confined aquifer system.

机译:波多黎各北海岸密闭含水层系统的白云石化和演化。

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摘要

The Lares Limestone and Montebello Member of the Cibao Formation form the lower confined aquifer system of the Puerto Rico North Coast. These extensively cored Neogene limestone units dip from 4° to 6° toward the north, are exposed over a broad area, and have a relatively well-known geologic setting and history.; Dolomite is absent in the exposed sections of the units but is abundant in the subsurface. Dolomitization was apparently limited to the subsurface and seaward portions of the units.; Petrography indicates the following paragenetic sequence: (1) shallow submarine diagenesis, (2) extensive dissolution and/or neomorphism of calcitic and aragonitic allochems, (3) burial compaction and pressure solution, (4) dolomitization, (5) dolomite dissolution and generation of coarse calcite cements. Dolomites are not affected by pressure-solution features, indicating dolomitization after at least 300 m burial. Modern aquifer water is undersaturated with respect to dolomite and high Mg2+ content in the water indicates dissolution of dolomite is occurring, therefore dolomitization occurred after some burial (middle Miocene) and before modern aquifer conditions developed (late Miocene). The dolomites are calcian with CaCO3 mean mole percentage of 56. Average δ18O and δ13C values relative to PDB are +1.0‰ (±0.4‰) and +0.2‰ (±0.5‰) respectively. Mean dolomitic Sr concentration is 360 ppm. Fe and Mn mean concentrations in the dolomites are 266 ppm and 25 ppm respectively. 87Sr/86Sr ranges from 0.708276 to 0.708509 ± 0.000008 in the dolomites and from 0.708199 to 0.708295 ± 0.000008 in the aquifer waters.; These geochemical data are consistent with dolomitization by both marine waters or a mixture of marine and aquifer waters. High concentrations of Fe and Mn indicate non-marine waters. Meteoric fabrics before and after dolomitization suggest meteoric water influences. Sr isotopic ratios are consistent with mixing of marine and aquifer waters.; Although there are other viable explanations, mixing-zone dolomitization in a deep confined aquifer provides the best way to explain all the data obtained. Miocene eustatic sea-level fluctuations probably maintained flow and movement of the mixing zone producing thick dolomitic intervals.
机译:Cibao组的Lares灰岩和Montebello成员形成了波多黎各北海岸的下部承压含水层系统。这些宽核的新近纪石灰岩单元向北倾斜4°至6°,暴露在广阔的区域,并且具有相对众所周知的地质环境和历史。在单元的裸露部分没有白云石,但是在地下很丰富。白云石化显然仅限于该单元的地下和向海部分。岩相学表明以下共生序列:(1)浅层海相成岩作用;(2)钙质和古铜变质作用的广泛溶解和/或新晶形;(3)埋藏压实和压力溶液;(4)白云石化作用;(5)白云石溶解作用和生成方解石水泥的混合物。白云岩不受压力作用特征的影响,表明在埋葬至少300 m后白云石化。现代含水层水相对于白云石而言是不饱和的,并且水中的Mg 2 + 含量高表明白云岩正在溶解,因此白云石化发生在某些埋葬(中新世中期)之后和现代含水层条件发展之前(晚期)。中新世)。白云岩为钙化岩,CaCO 3 平均摩尔百分数为56。相对于PDB,平均δ 18 O和δ 13 C值为+ 1.0‰ (±0.4‰)和+ 0.2‰(±0.5‰)。平均白云岩Sr浓度为360 ppm。白云岩中的Fe和Mn平均浓度分别为266 ppm和25 ppm。白云岩中 87 Sr / 86 Sr的范围在含水层水域中为0.708276至0.708509±0.000008,在含水层水域中为0.708199至0.708295±0.000008。这些地球化学数据与海水或海水和含水层水的混合物的白云石化一致。高浓度的铁和锰表明是非海水。白云石化前后的流星织物暗示了流星水的影响。锶同位素比与海水和含水层的混合一致。尽管还有其他可行的解释,但在密闭含水层中的混合区白云石化作用是解释所有获得的数据的最佳方法。中新世正常的海平面波动可能会维持混合区的流动和运动,从而产生较厚的白云岩层段。

著录项

  • 作者

    Ramirez Martinez, Wilson R.;

  • 作者单位

    Tulane University.;

  • 授予单位 Tulane University.;
  • 学科 Geology.; Geophysics.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 338 p.
  • 总页数 338
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地质学;地球物理学;
  • 关键词

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