法内罗纪海水化学中的振荡:来自液体含的证据
T K Lowenstein1, M N Timofeeff, S T Brennan
1Department of Geological Sciences and Environmental Studies, State University of New York, Binghamton, NY 13902, USA. lowenst@binghamton.edu
概括
在地球历史上,海水的化学成分发生了变化,海洋海藻中含有液体的含量证明了这一点. 这些变化与地质事件和海洋主要矿物质的变化有关.
科学领域:
- 地质化学 地质化学
- 古海洋学是古海洋学.
- 沉积地质学的地质学
背景情况:
- 海水的组成对于了解地球的气候和地质过程至关重要.
- 哈利特中的主要液体含量提供了古代海水化学的独特档案.
研究的目的:
- 为了重建Phanerozoic海水化学波动.
- 研究海水化学与重大地质事件之间的关系.
主要方法:
- 分析了海水蒸发中的系统化学变化,这些变化发生在海洋质中的初级流体含量中.
- 地化学数据与地质记录的相关性 (海底扩散,火山活动,海平面,矿物学).
主要成果:
- 海水的化学成分,特别是Mg2+/Ca2+比率和Na+度,在法内罗纪时期有系统的波动.
- 较高的Mg2+/Ca2+比率和Na+的特征是晚期的前坎布里亚,珀米亚和三级时期,与阿拉戈尼特和MgSO4降水相吻合.
- 低Mg2+/Ca2+比率和Na+的特征是坎布里亚,西卢里亚和白时期,与石和特定的蒸发物形成相吻合.
结论:
- 海水的化学成分不是恒定的,在地质时间尺度上表现出显著的振荡.
- 这些波动与主要的地质周期同步,包括构造活动和海平面变化.
- 海水的Mg2+/Ca2+比率和Na+度是控制海洋蒸发物和碳酸盐矿物学的关键因素.
更多相关视频
11:50Metal-silicate Partitioning at High Pressure and Temperature: Experimental Methods and a Protocol to Suppress Highly Siderophile Element Inclusions
Published on: June 13, 2015
09:45Laboratory Simulation of an Iron(II)-rich Precambrian Marine Upwelling System to Explore the Growth of Photosynthetic Bacteria
Published on: July 24, 2016
相关概念视频
The Phosphorus Cycle
Unlike carbon, water, and nitrogen, phosphorus is not present in the atmosphere as a gas. Instead, most phosphorus in the ecosystem exists as compounds, such as phosphate ions (PO43-), found in soil, water, sediment and rocks. Phosphorus is often a limiting nutrient (i.e., in short supply). Consequently, phosphorus is added to most agricultural fertilizers, which can cause environmental problems related to runoff in aquatic ecosystems.
Membrane Fluidity
Cell membranes are composed of phospholipids, proteins, and carbohydrates loosely attached to one another through chemical interactions. Molecules are generally able to move about in the plane of the membrane, giving the membrane its flexible nature called fluidity. Two other features of the membrane contribute to membrane fluidity: the chemical structure of the phospholipids and the presence of cholesterol in the membrane.Fatty acids tails of phospholipids can be either saturated or...
Membrane Fluidity
Membrane fluidity is explained by the fluid mosaic model of the cell membrane, which describes the plasma membrane structure as a mosaic of components—including phospholipids, cholesterol, proteins, and carbohydrates—that gives the membrane a fluid character.
Mosaic nature of the membrane
The mosaic characteristic of the membrane helps the plasma membrane remain fluid. The integral proteins and lipids exist as separate but loosely-attached molecules in the membrane. The membrane is a relatively...
Mosaic nature of the membrane
The mosaic characteristic of the membrane helps the plasma membrane remain fluid. The integral proteins and lipids exist as separate but loosely-attached molecules in the membrane. The membrane is a relatively...
Phase Diagram
The phase of a given substance depends on the pressure and temperature. Thus, plots of pressure versus temperature showing the phase in each region provide considerable insights into the thermal properties of substances. Such plots are known as phase diagrams. For instance, in the phase diagram for water (Figure 1), the solid curve boundaries between the phases indicate phase transitions (i.e., temperatures and pressures at which the phases coexist).
Cell Inclusions
Prokaryotic cells possess a variety of inclusions that play crucial roles in nutrient storage, metabolic processes, and environmental adaptation. These structures enable bacteria to thrive under fluctuating environmental conditions by storing essential resources and optimizing their metabolic efficiency.Carbon Storage: Poly-β-Hydroxybutyric Acid and Glycogen GranulesBacteria frequently store excess carbon in specialized granules. Poly-β-hydroxybutyric acid (PHB) granules are lipid polymers that...
Diversity of Protists III
Rhizaria are a diverse group of unicellular protists characterized by their threadlike cytoplasmic extensions known as pseudopodia. These structures aid in both locomotion and feeding, giving Rhizaria an amoeboid appearance. Their amoeboid morphology once led to taxonomic confusion, but molecular phylogenetics has clarified their evolutionary placement and emphasized their shared use of pseudopodia despite divergent lineages.This clade comprises diverse lineages such as Chlorarachniophyta,...
