Arid
DOI10.1180/claymin.2014.049.4.07
Weathering, sedimentary and diagenetic controls of mineral and geochemical characteristics of the vertebrate-bearing Silesian Keuper
Srodon, J.1; Szulc, J.2; Anczkiewicz, A.1; Jewula, K.1,3; Banas, M.1; Marynowski, L.4
通讯作者Srodon, J.
来源期刊CLAY MINERALS
ISSN0009-8558
EISSN1471-8030
出版年2014
卷号49期号:4页码:569-594
英文摘要

Mudstones and claystones from the southern marginal area of the European Upper Triassic, midcontinental Keuper basin (Silesia, southern Poland) were investigated using XRD, organic and inorganic geochemistry, SEM, K-Ar of illite-smectite, AFT, and stable isotopes of O and C in carbonates in order to unravel the consequent phases of the geological history of these rocks, known for abundant fossils of land vertebrates, and in particular to evaluate the diagenetic overprint on the mineral composition. The detected and quantified mineral assemblage consists of quartz, calcite, dolomite, Ca-dolomite, illite, mixed-layer illite-smectite, and kaolinite as major components, plus feldspars, hematite, pyrite, chlorite, anatase, siderite, goethite as minor components. Palygorskite, gypsum, jarosite and apatite were identified in places.


The K-Ar dates document a post-sedimentary thermal event, 164 Ma or younger, which resulted in partial illitization of smectite and kaolinite. The maximum palaeotemperatures were estimated from illite-smectite as similar to 125 degrees C. Apatite fission track data support this conclusion, indicating a 200-160 Ma age range of the maximum temperatures close to 120 degrees C, followed by a prolonged period of elevated temperatures. These conclusions agree well with the available data on the Mesozoic thermal event, which yielded Pb-Zn deposits in the area. Organic maturity indicators suggest the maximum palaeotemperatures <110 degrees C.


Palygorskite was identified as authigenic by crystal morphology (TEM), and calcite by its accumulation in soil layers and by its isotopic composition evolving with time, in accordance with the sedimentary and/or climatic changes. Dolomite isotopic composition indicates more saline (concentrated) waters. Palygorskite signals a rapid local change of sedimentary conditions, correlated with algal blooms. This assemblage of authigenic minerals indicates an arid climate and the location at the transition from a distal alluvial fan to mudflat.


Fe-rich smectite, kaolinite, and hematite were products of chemical weathering on the surrounding lands and are therefore mostly detrital components of the investigated rocks. Kaolinite crystal morphology and ordering indicates a short transport distance. Hematite also crystallized in situ, in the soil horizons. A large variation in kaolinite/2:1 minerals ratio reflects hydraulic sorting, except of the Rhaetian, where it probably signals a climatic change, i.e. a shift in the weathering pattern towards kaolinite, correlated with the disappearance of hematite. Quartz, 2M(1) illite, and minor feldspars and Mg-chlorite were interpreted as detrital minerals. The documented sedimentation pattern indicates that in more central parts of the Keuper playa system, where an intense authigenesis of the trioctahedral clays (chlorite, swelling chlorite, corrensite, sepiolite) took place, illite and smectite were the dominant detrital clay minerals.


Cr/Nb and Cr/Ti ratios were found as the best chemostratigraphic tools, allowing for the correlation of all investigated profiles. A stable decrease of these ratios up the investigated sedimentary sequence is interpreted as reflecting changes in the provenance pattern from more basic to more acidic rocks.


英文关键词AFT carbonate stable isotopes chemostratigraphy clay minerals diagenesis hematite K-Ar Keuper palygorskite playa provenance quantitative XRD weathering
类型Article
语种英语
国家Poland ; England
收录类别SCI-E
WOS记录号WOS:000346116100007
WOS关键词VITRINITE REFLECTANCE ; ILLITE-SMECTITE ; EVOLUTION ; POLAND ; ORIGIN ; BASIN ; IDENTIFICATION ; BENTONITES ; PROVENANCE ; NITROGEN
WOS类目Chemistry, Physical ; Geosciences, Multidisciplinary ; Mineralogy
WOS研究方向Chemistry ; Geology ; Mineralogy
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/181399
作者单位1.Polish Acad Sci, Inst Geol Sci, Res Ctr Krakow, PL-31002 Krakow, Poland;
2.Jagiellonian Univ, Inst Geol Sci, PL-30063 Krakow, Poland;
3.Chemostrat Ltd, Unit Ravenscroft Court 1, Welshpool SY21 8SL, Powys, England;
4.Univ Silesia, Fac Earth Sci, PL-41200 Sosnowiec, Poland
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Srodon, J.,Szulc, J.,Anczkiewicz, A.,et al. Weathering, sedimentary and diagenetic controls of mineral and geochemical characteristics of the vertebrate-bearing Silesian Keuper[J],2014,49(4):569-594.
APA Srodon, J.,Szulc, J.,Anczkiewicz, A.,Jewula, K.,Banas, M.,&Marynowski, L..(2014).Weathering, sedimentary and diagenetic controls of mineral and geochemical characteristics of the vertebrate-bearing Silesian Keuper.CLAY MINERALS,49(4),569-594.
MLA Srodon, J.,et al."Weathering, sedimentary and diagenetic controls of mineral and geochemical characteristics of the vertebrate-bearing Silesian Keuper".CLAY MINERALS 49.4(2014):569-594.
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