碳酸盐岩-蒸发岩共生体系沉积特征及演化模式——以四川盆地东部高台组为例
- 收稿日期:
2023-08-03
- 网络出版日期:
2024-04-09
摘要: 【目的】 碳酸盐岩-蒸发岩共生体系在四川盆地寒武系广泛分布,然而该共生体系的发育特征、沉积环境、沉积过程和演化模式研究薄弱,研究方法亟待厘清。【方法】以四川盆地东部寒武系高台组为例,基于钻井取心、野外剖面、岩石薄片和碳氧同位素、Fe、Mn和S同位素特征等资料,探讨共生体系的岩石学特征,蒸发岩的赋存状态,共生体系的沉积环境及沉积过程和演化模式。【结果】结果表明:1)研究区碳酸盐岩-蒸发岩共生体系发育五种碳酸盐岩-蒸发岩共生体系岩石组合序列,包括:碳酸盐岩与蒸发岩互层、蒸发岩夹碳酸盐岩、蒸发岩上覆碳酸盐岩、碳酸盐岩上覆蒸发岩和碳酸盐岩夹蒸发岩。2)共生体系地球化学特征δ18O主要集中在-8‰~-9‰;δ13C主要集中在-1‰~3‰;利用碳氧同位素数值计算古盐度及古温度结果表明,绝大多数Z值>120‰,且δ13C值>-2‰,古海水温度在23.10~40.64℃;Fe主要集中在0~2000×10-5;Mn主要集中在范围内10-5~30×10-5,说明在高台组时期,沉积环境为温暖或炎热的古气候和咸化海水环境,水体氧化程度较高,经历了与大气水有关的相对开放体系中的成岩作用。3)干旱炎热气候和高盐度富Ca低SO4的“方解石海”的条件背景下海相碳酸盐岩-蒸发岩共生体系沉积时期可分为海平面下降期蒸发岩-白云岩沉积阶段和海平面上升期白云岩-蒸发岩-灰岩沉积阶段;“潮坪萨布哈模式”和“水下浓缩沉积模式”是碳酸盐岩-蒸发岩共生体系发育的两种模式。【结论】碳酸盐岩-蒸发岩共生体系承载了沉积时期的古环境、古气候以及古海水化学等信息,也记录了共生体系沉积过程和演化模式,该研究为寒武系高台组海相蒸发环境碳酸盐岩-蒸发岩共生体系沉积环境和沉积模式提供了新的思路与认识。
Sedimentary Characteristics and Evolutionary Patterns of the Carbonatite-evaporite Syngenetic System: A Case Study of the Gaotai Formation in eastern Sichuan Basin
- Received Date:
2023-08-03
- Available Online:
2024-04-09
Abstract: 【Objective】The carbonate-evaporite syngenetic system is widely distributed in the Cambrian of the Sichuan Basin, however, the developmental characteristics, depositional environments, depositional processes, and evolutionary modes of this syngenetic system are weakly studied, and the research methods need to be clarified urgently. 【Methods】The petrological characteristics of the symbiotic system, the state of the evaporites, the depositional environment of the symbiotic system, the depositional process and the evolutionary pattern of the symbiotic system are investigated based on the data of drilling cores, field sections, rock sheets and carbon and oxygen isotopes, and the isotopic signatures of Fe, Mn and S. 【Results】The results show that 1) the developmental characteristics of the symbiotic system, 2) the depositional environment, and 3) the evolutionary pattern of the symbiotic system are not well understood, but are not well understood. The results show that: 1) the carbonate-evaporite symbiotic system in the study area has developed five kinds of carbonate-evaporite symbiotic system rock assemblage sequences, including: carbonate rock and evaporite interbedded, evaporite sandwiched with carbonate rock, evaporite overlain carbonate rock, carbonate rock overlain with evaporite rock, and carbonate rock sandwiched with evaporite rock. 2) the geochemical features of the symbiotic system, including δ18O, mainly concentrated in -8‰~-9‰, and δ13C, mainly concentrated in -8‰~9‰; δ13C is mainly concentrated in -1‰~3‰; the results of using carbon and oxygen isotope values to calculate palaeosalinity and palaeotemperature show that the vast majority of Z values>120‰ and δ13C values>-2‰, and the palaeoseawater temperatures are in the range of 23.10~40.64℃; Fe is mainly concentrated in the range of 0~2000×10-5; and Mn is mainly concentrated in the range of 10-5~30×10-5, which indicates that in the Gautai Group During the Gaotai Formation, the depositional environment was a warm or hot paleoclimate and saline seawater environment, with a high degree of oxidation of the water body, and the rock-forming action in a relatively open system related to atmospheric water was experienced.3) Deposition of marine carbonate rocks and evaporites in a symbiotic system against the background of an arid and hot climate and a Ca-rich and low-SO4 calcite sea with a high degree of salinity The period of time can be divided into the sea level falling evaporite - dolomite deposition stage and sea level rising dolomite - evaporite - greywacke deposition stage; "tidal ping Sabuha mode" and "underwater condensed deposition mode" are two kinds of carbonate rock - evaporite symbiosis system development mode.【Conclusion】The carbonatite-evaporite symbiotic system carries the information of paleoenvironment, paleoclimate and paleohaline water chemistry during the depositional period, and also records the depositional process and evolutionary pattern of the symbiotic system. This study provides new ideas and understanding of the depositional environments and depositional patterns of the carbonatite-evaporite symbiotic system of the evaporitic environment of the marine phase of the Cambrian Gautai Formation.
王纪煊, 胡忠贵, 远光辉, 李世临, 张俊, 王文静, 张宸瑜. 碳酸盐岩-蒸发岩共生体系沉积特征及演化模式——以四川盆地东部高台组为例[J]. 沉积学报. doi: 10.14027/j.issn.1000-0550.2024.024
Sedimentary Characteristics and Evolutionary Patterns of the Carbonatite-evaporite Syngenetic System: A Case Study of the Gaotai Formation in eastern Sichuan Basin[J]. Acta Sedimentologica Sinica. doi: 10.14027/j.issn.1000-0550.2024.024
Citation: |
Sedimentary Characteristics and Evolutionary Patterns of the Carbonatite-evaporite Syngenetic System: A Case Study of the Gaotai Formation in eastern Sichuan Basin[J]. Acta Sedimentologica Sinica. doi: 10.14027/j.issn.1000-0550.2024.024
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