Arid
DOI10.1016/j.apgeochem.2021.105088
Texture, mineralogy and geochemistry of late Quaternary sediments of the Mahi River basin, western India: Implications to climate and tectonics
Farooqui, Shazi; Shah, Abhi P.; Maurya, D. M.; Archna, G.; Ali, S. Nawaz; Sharma, Anupam
通讯作者Sharma, A (corresponding author), Birbal Sahni Inst Palaeosci, 53 Univ Rd, Lucknow 226007, Uttar Pradesh, India.
来源期刊APPLIED GEOCHEMISTRY
ISSN0883-2927
EISSN1872-9134
出版年2021
卷号134
英文摘要We carried out textural, petrological, mineralogical and multi-element geochemical investigations of a -25 m sediment core from the lower reaches of the Mahi River basin to understand the influence of climate and tectonics in the Gujarat Alluvial Plain (GAP) over the last 115 thousand years (ka) (Marine Isotopic Stage; MIS-5e). Ternary diagrams of texture analysis, A-CN-K, and A-CNK-FM including mafic index of alteration (MIA) and elemental ratios, suggest that most of the sediments are sandy-silt to silty-sand in nature and show incipient to moderate degree of chemical weathering. Additionally, the higher concentrations of lithic fragments (17%), feldspar (9%), and the presence of pyroxene and amphibole are also suggestive of increased physical weathering rather than chemical weathering. An increase in silt, clay and organic carbon contents register an increase in immobile elements (Al2O3, TiO2, FeOt, K2O, REEs, and Al2O3/SiO2), suggesting grain size control in the sediment geochemistry. The increase in sand and secondarily produced carbonates reduces the absolute concentration of all other elements due to the quartz and calcite dilution effect, respectively. Four major tectonoclimatic zones, namely 1 to 4 (oldest to youngest), have been identified based on the observed changes. The extrapolated Bayesian-base age model suggests that the bottom zone 1 (-25-17.64 m depth) was deposited between >115 and 60 ka (MIS-5a-e) during the enhanced phase of the Indian summer monsoon (ISM), as indicated by higher Rb/Sr ratio and dominance of kaolinite-illite over smectite. However, the deposition of gravel/coarser sediment horizons is also linked to base level change due to localized tectonic activities. The terminal part of zone 1 shows relatively drier conditions that continued through zone 2 (-60-54 ka; MIS-4), represented by lower values of immobile elements and Rb/Sr and kaolinite/smectite ratios. However, during Zone 3 (-54-38 ka; MIS-3), the sediment became coarser, implying enhanced rainfall or tectonic activity and a higher sedimentation rate. The top-most zone 4 (-38.0-6.7 ka MIS-3, 1) marks a fluctuating trend as indicated by the presence of gravely sand in the lower part of this zone (at -5 m and -3 m depth) due to intense rainfall or tectonic activity at -37-38 ka. However, the upper part of this zone is dominated by sand and silt as evidenced by the decreasing chemical index of alteration (CIA) values and lower Rb/Sr ratio (<0.5), shows a reduction in the monsoon precipitation and stable tectonic conditions, besides the initiation of an arid phase in western India.
英文关键词Indian summer monsoon Gujarat alluvial plain Multiproxy data Palaeoclimate Sediment geochemistry
类型Review
语种英语
收录类别SCI-E
WOS记录号WOS:000702688100006
WOS关键词TRACE-ELEMENT GEOCHEMISTRY ; GUJARAT ALLUVIAL PLAINS ; RARE-EARTH-ELEMENTS ; SEA-LEVEL CHANGES ; SABARMATI RIVER ; DECCAN TRAPS ; THAR DESERT ; LUMINESCENCE CHRONOLOGY ; CHEMICAL-COMPOSITION ; FLUVIAL SEDIMENTS
WOS类目Geochemistry & Geophysics
WOS研究方向Geochemistry & Geophysics
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/362482
作者单位[Farooqui, Shazi; Ali, S. Nawaz; Sharma, Anupam] Birbal Sahni Inst Palaeosci, 53 Univ Rd, Lucknow 226007, Uttar Pradesh, India; [Shah, Abhi P.; Maurya, D. M.; Archna, G.] Maharaja Sayajirao Univ Baroda, Vadodara 390002, India
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Farooqui, Shazi,Shah, Abhi P.,Maurya, D. M.,et al. Texture, mineralogy and geochemistry of late Quaternary sediments of the Mahi River basin, western India: Implications to climate and tectonics[J],2021,134.
APA Farooqui, Shazi,Shah, Abhi P.,Maurya, D. M.,Archna, G.,Ali, S. Nawaz,&Sharma, Anupam.(2021).Texture, mineralogy and geochemistry of late Quaternary sediments of the Mahi River basin, western India: Implications to climate and tectonics.APPLIED GEOCHEMISTRY,134.
MLA Farooqui, Shazi,et al."Texture, mineralogy and geochemistry of late Quaternary sediments of the Mahi River basin, western India: Implications to climate and tectonics".APPLIED GEOCHEMISTRY 134(2021).
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