...
首页> 外文期刊>Marine and Petroleum Geology >Geochemical evolution of organic-rich shales with increasing maturity: A STXM and TEM study of the Posidonia Shale (Lower Toarcian, northern Germany)
【24h】

Geochemical evolution of organic-rich shales with increasing maturity: A STXM and TEM study of the Posidonia Shale (Lower Toarcian, northern Germany)

机译:日趋成熟的富含有机物的页岩的地球化学演化:Posidonia页岩的STXM和TEM研究(德国北部下Toarcian)

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Hydrocarbon generation and retention processes occurring within gas shales as a response to increases in thermal maturation are still poorly constrained. While efforts have been directed at unravelling the resource potential, composition and textures of these economically important unconventional systems, their spatial variability in chemistry and structure is still poorly documented at the sub-micrometer scale. Here, we have characterized samples of the Lower Toarcian Posidonia Shale samples from northern Germany at varying stages of thermal maturation using a combination of compositional organic geochemistry and spectrornicroscopy techniques, including synchrotron-based scanning transmission X-ray microscopy (STXM). We document geochemical and mineralogical heterogeneities down to the nanometer scale within the investigated samples as a function of their level of thermal maturity. In particular, authigenic albite crystals containing nanometric halite inclusions have been documented within the investigated mature and overmature samples. The presence of such tracers of palaeobrine —carbonate interactions supports a maturation scenario for the Lower Toarcian Posidonia Shale intimately related to ascending brine fluids rather than a maturation scenario solely resulting from high heat flows. In addition, various types of asphaltene- and NSO-rich bitumen have been detected within the same samples, very likely genetically derived from thermally degraded organic precursors. Furthermore, the formation of nanoporous pyrobitumen has been inferred for samples of gas window maturity, likely resulting from the formation of gaseous hydrocarbons. By providing in-situ insights into the fate of bitumen and pyrobitumen as a response to the thermal evolution of the macromolecular structure of kerogen, the results reported here constitute an important step towards better constraining hydrocarbon generation processes during natural shale gas maturation.
机译:在页岩气中对热成熟度增加的响应所产生的碳氢化合物生成和保留过程的约束仍然很有限。尽管已经着力于揭示这些经济上重要的非常规系统的资源潜力,组成和质地,但在亚微米级上仍未充分记录其化学和结构的空间变异性。在这里,我们结合了有机地球化学和光谱学技术,包括基于同步加速器的扫描透射X射线显微镜(STXM),对德国北部下Toarcian Posidonia页岩样品进行了热成熟的不同阶段的表征。我们记录了被调查样品中纳米级以下的地球化学和矿物学异质性,作为其热成熟度的函数。特别是,在研究的成熟和过成熟样品中,已记录了含有纳米盐岩夹杂物的自生钠长石晶体。此类古生物碱与碳酸盐相互作用的示踪剂的存在,为下Toarcian Posidonia页岩的成熟情景提供了与上升盐水密切相关的条件,而不是仅由高热流引起的成熟情景。此外,在同一样品中还检测到各种类型的富含沥青质和NSO的沥青,很可能是从热降解的有机前体中遗传而来。此外,对于气窗成熟度的样品,已经推断出纳米多孔焦化土的形成,这可能是由于气态烃的形成所致。通过提供有关沥青和焦土沥青的命运的原位洞察,作为对干酪根大分子结构热演化的响应,此处报道的结果构成了在自然页岩气成熟过程中更好地限制烃类生成过程的重要一步。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号