Arid
DOI10.1016/j.jafrearsci.2017.01.009
Geochemical characterization of the Jurassic Amran deposits from Sharab area (SW Yemen): Origin of organic matter, paleoenvironmental and paleoclimate conditions during deposition
Hakimi, Mohammed Hail1; Abdullah, Wan Hasiah2; Makeen, Yousif M.2; Saeed, Shadi A.1; Al-Hakame, Hitham1; Al-Moliki, Tareq1; Al-Sharabi, Kholah Qaid1; Hatem, Baleid Ali2
通讯作者Hakimi, Mohammed Hail
来源期刊JOURNAL OF AFRICAN EARTH SCIENCES
ISSN1464-343X
EISSN1879-1956
出版年2017
卷号129页码:579-595
英文摘要

Calcareous shales and black limestones of the Jurassic Amran Group, located in the Sharab area (SW Yemen), were analysed based on organic and inorganic geochemical methods. The results of this study were used to reconstruct the paleoenvironmental and paleoclimatic conditions during Jurassic time and their relevance to organic matter enrichment during deposition of the Amran calcareous shale and black limestone deposits. The analysed Amran samples have present-day TOC and Stotai content values in the range of 0.25-0.91 wt % and 0.59-4.96 wt %, respectively. The relationship between Stotal and TOC contents indicates that the Jurassic Amran deposits were deposited in a marine environment as supported by biomarker environmental indicators. Biomarker distributions also reflect that the analysed Amran deposits received high contributions of marine organic matter (e.g., algal and microbial) with minor amount of land plant source inputs. Low oxygen (reducing) conditions during deposition of the Jurassic Amran deposits are indicated from low Pr/Ph values and relatively high elemental ratios of V/Ni and V/(V + Ni). Enrichment in the pyrite grains and very high DOPT and high Fe/Al ratios further suggest reducing bottom waters. This paleo-redox (i.e., reducing) conditions contributed to preservation of organic matter during deposition of the Jurassic Amran deposits. Semi-arid to warm climatic conditions are also evidenced during deposition of the Amran sediments and consequently increased biological productivity within the photic zone of the water column during deposition. Therefore, the increased bioproductivity in combination with good preservation of organic matter identified as the major mechanisms that gave rise to organic matter enrichment. This contradicts with the low organic matter content of the present-day TOC values of less than 1%. The biomarker maturity data indicate that the analysed Amran samples are of high thermal maturity; therefore, the low present-day TOC is attributed to the thermal effect on the original organic matter. This high thermal maturity level is due to the presence of volcanic rocks, which have invaded the Jurassic rocks during Late Oligocene to Early Miocene. (C) 2017 Elsevier Ltd. All rights reserved.


英文关键词Jurassic marine Amran deposits Organic matter Paleoenvironmental conditions Paleoclimate Sharab area Taiz Governorate Yemen
类型Article
语种英语
国家Yemen ; Malaysia
收录类别SCI-E
WOS记录号WOS:000401399100045
WOS关键词NORTHERN BENUE TROUGH ; OIL-SHALE ; YOLA SUBBASIN ; BASIN ; MARINE ; PRESERVATION ; SEDIMENTS ; CARBON ; INDICATOR ; SULFUR
WOS类目Geosciences, Multidisciplinary
WOS研究方向Geology
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/199930
作者单位1.Taiz Univ, Fac Appl Sci, Geol Dept, Taizi 6803, Yemen;
2.Univ Malaya, Dept Geol, Kuala Lumpur 50603, Malaysia
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GB/T 7714
Hakimi, Mohammed Hail,Abdullah, Wan Hasiah,Makeen, Yousif M.,et al. Geochemical characterization of the Jurassic Amran deposits from Sharab area (SW Yemen): Origin of organic matter, paleoenvironmental and paleoclimate conditions during deposition[J],2017,129:579-595.
APA Hakimi, Mohammed Hail.,Abdullah, Wan Hasiah.,Makeen, Yousif M..,Saeed, Shadi A..,Al-Hakame, Hitham.,...&Hatem, Baleid Ali.(2017).Geochemical characterization of the Jurassic Amran deposits from Sharab area (SW Yemen): Origin of organic matter, paleoenvironmental and paleoclimate conditions during deposition.JOURNAL OF AFRICAN EARTH SCIENCES,129,579-595.
MLA Hakimi, Mohammed Hail,et al."Geochemical characterization of the Jurassic Amran deposits from Sharab area (SW Yemen): Origin of organic matter, paleoenvironmental and paleoclimate conditions during deposition".JOURNAL OF AFRICAN EARTH SCIENCES 129(2017):579-595.
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