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      KCI등재 SCOPUS SCIE

      Mineralogical and geochemical studies of Ypresian marly clays and silica rocks of phosphatic series, Gafsa-Metlaoui basin, southwestern Tunisia: implication for depositional environment

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      https://www.riss.kr/link?id=A104619547

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      다국어 초록 (Multilingual Abstract)

      Thick Ypresian marly clays and silica rich rocks constitute the so-called interbedded facies of phosphatic series, in the Gafsa-Metlaoui basin, southwestern Tunisia. Mineralogical and geochemical investigations are carried out on selected samples from...

      Thick Ypresian marly clays and silica rich rocks constitute the so-called interbedded facies of phosphatic series, in the Gafsa-Metlaoui basin, southwestern Tunisia. Mineralogical and geochemical investigations are carried out on selected samples from Kef Eddour section. The data obtained by using X-ray diffraction (XRD), scanning electron microscopy (SEM), and Energy Dispersive X-ray microanalysis (EDX) and chemical analysis and IR of clay fractions indicate that the bulk rock samples are composed of cristobalite-tridymite and dolomite. Observation by SEM showed the occurrence of dolomite as a well-crystallized and a weathered shape. Whereas, cristobalite-tridymite observed in the cherty bed appears as a spheres, filling the pore spaces. However, samples which contain moderately a significant amount of feldspars, clinoptilolite and pyrite occur in the upper part of Kef Eddour section. Clay minerals consist mainly of smectite, palygorskite, and sepiolite. In this clay assemblages, the N-alkane (m/z = 57) distributions, revealed that organic matter has phytoplankton and bacterial origin. The Pristane/Phytane ratio indicated that the organic matter is deposited in a reduced environment. In this latter, sulfate-reducing bacteria generate hydrogen sulfur, which is incorporated on the organic biomolecules that occurred at the lower part of Kef Eddour section. However, the high Fe activity on the depositional environment favored the occurrence of pyrite in the upper part.

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      참고문헌 (Reference)

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      3 Farmer, V.C., "The layer silicates, the infrared spectra of minerals" Mineralogical Society 331-338, 1974

      4 Peters, K.E., "The BiomarkerGuide. 2nd edition" Cambridge University Press 1132-, 2005

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      7 Henchiri, M, "Silicification of sulphateevaporites and their carbonate replacements in Eocene marinesediments, Tunisia: two diagenetic trends" 53 : 1135-1159, 2006

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      9 Ten Haven, H.L., "Restricted utility of the pristane/phytane ratio asa palaeoenvironmental indicator" 330 : 641-643, 1987

      10 Ounis. A., "Rareearth elements and stable isotope geochemistry (δ13C and δ18O)of phosphorite deposits in the Gafsa Basin, Tunisia" 268 : 1-18, 2008

      1 Tissot, B., "Utilisationdes alcanes comme fossiles géochimiques indicateurs des environnementsgéologiques" Enadimsa, Madrid 117-154, 1977

      2 Wilkin R.T., "The size distributionof framboidal pyrite in modern sediments: An indicator ofredox conditions" 60 : 3897-3912, 1996

      3 Farmer, V.C., "The layer silicates, the infrared spectra of minerals" Mineralogical Society 331-338, 1974

      4 Peters, K.E., "The BiomarkerGuide. 2nd edition" Cambridge University Press 1132-, 2005

      5 Zargouni, F., "Tectonique de l’atlas méridionale de la TunisieEvolution géométrique et cinématique des structures en zone decisaillement" Louis Strasbourg University 1985

      6 Disnar, J.R., "Sédimentationde la matière organique dans le nord-est du bassin de Pris:conséquense sur le dépôt des argilites carbonés du Toarcien inférieurOrganic matter sedimentation in the northeast of the ParisBassin consequences on the deposition of the lower Toarcienblack shales" 131 : 15-35, 1996

      7 Henchiri, M, "Silicification of sulphateevaporites and their carbonate replacements in Eocene marinesediments, Tunisia: two diagenetic trends" 53 : 1135-1159, 2006

      8 Henchiri, M., "Sedimentation, depositional environment anddiagenesis of Eocene biosiliceous deposits in Gafsa basin (southernTunisia)" 49 : 187-200, 2007

      9 Ten Haven, H.L., "Restricted utility of the pristane/phytane ratio asa palaeoenvironmental indicator" 330 : 641-643, 1987

      10 Ounis. A., "Rareearth elements and stable isotope geochemistry (δ13C and δ18O)of phosphorite deposits in the Gafsa Basin, Tunisia" 268 : 1-18, 2008

      11 Salamon, V., "Protection of organic matter by mineral matrix inCenomanien black shale" 31 : 463-474, 2000

      12 Burollet, P.F, "Paléocène et Eocène en Tunisie:Pétrole et Phosphate" 24 : 203-216, 1980

      13 Daoudi, L., "Palygorskite in the uppermost Cretaceous-Eocenerocks from Marrakech High Atlas, Marocco" 39 : 353-358, 2004

      14 Tlili, A., "Origin and depositionalenvironment of palygorskite and sepiolite from the Ypresianphosphatic series, Southwestern Tunisia" 58 : 573-581, 2010

      15 Frost, R.L., "Near- infrared and mid-infrared spectroscopic study of sepioliteand palygorskites" 27 : 1-13, 2001

      16 Felhi, M., "Mineralogicalstudy of kaolinitic clays from Sidi El Bader in the farnorth of Tunisia" 39 : 208-217, 2008

      17 Jørgensen, B.B., "Mineralization of organic matter in the seabed-The role of sulphate reduction" 296 : 643-645, 1982

      18 Courtinat, B., "Matièreorganique sédimentaire et paléoenvironnements du Tithonieninférieur quercynois (France) sedimentary organic matte randpaleoenvironnements" 36 : 13-25, 2003

      19 Felhi, M., "Les niveaux intercalaires de la série yprésienne dubassin Gafsa-Métlaoui: Apports de la minéralogie des argiles etde la géochimie de la matière organique résiduelle à la reconstitutionpaléoenvironnementale" Sfax University 2010

      20 Sassi, S., "La sédimentation phosphatée au Paléocène dans leSud et dans le Centre Ouest de la Tunisie" ParisSud Orsay University 1974

      21 Chahi, A., "Infrared evidence ofdioctahedral-trioctahedral site occupancy in palygorskite" 50 : 306-313, 2002

      22 Serna, C., "Hydroxyl groupsand water in palygorskite" 62 : 784-792, 1977

      23 Riboulleau, A., "Géochimie des black shales du jurassiquesupérieur de la plateforme russe. Processus de sédimentation dela matière organique" Paris VI University 2000

      24 Felhi, M., "Geochemistry, petrographicand spectroscopic studies of organic matter of clay associatedkerogen of Ypresian series: Gafsa-Metlaoui phosphaticbasin, Tunisia" 59 : 428-436, 2008

      25 Arfaoui, A, "Geochemical characterizationgiven by Rock-Eval parameters and n-alkanes distribution onYpresian organic matter at jebel Chaker, Tunisia" 57 : 37-46, 2007

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      27 Madejová, J., "FTIR techniques in clay minerals studies" 31 : 1-10, 2003

      28 Suárez, M, "FTIR spectroscopic studyof palygorskite: influence of the composition of the ochtahedralsheet" 31 : 154-163, 2006

      29 Martinez, L., "Evolution thermique des séries sedimentaires de la margeardechoise: étude petrographiqe de la matière organique et desargiles" 334 : 1021-1028, 2002

      30 Belayouni, H., "Etude de la matière organique dans la sériephosphatée du bassin de Gafsa Metlaoui (Tunisie): Application àla compréhension des mécanismes de la phosphatogenèse" University of Tunis 1983

      31 Boussafir, M., "Electron microscopy and pyrolysis of kerogensfrom the Kimmeridge Clay formation, U.K: source organisms,preservation processes and origin of microcycles" 59 : 3731-3747, 1995

      32 Chaâbani, F., "Dynamique de la partie orientale du bassin deGafsa au crétacé et au paléogène. Etude minéralogique et géochimiquede la série phosphatée éocène (Tunisie méridionale)" University of Tunis 1995

      33 Durand, B.M., "Du kérogène au pétrole et au charbon : les voieset les mécanismes des transformations des matières organiquessédimentaires au cours de l’enfouissement" 151 : 77-95, 1987

      34 Brindly, G.W, "Crystal structures of clay mineralsand their X-ray identification" Mineralogical Society 197-248, 1980

      35 Burollet, P.F., "Contribution à l’étude stratigraphique de la Tunisiecentrale" 18 : 350-, 1956

      36 Mayer, L.M., "Biological and granulometric controlon sedimentary organic matter of an intertidal madflat" 20 : 491-503, 1985

      37 Schippers, A, "Biogeochemistry of pyriteand iron sulfide oxidation in marine sediments" 66 : 85-92, 2002

      38 Sinninghe Damsté, J.S, "Analysis, structureand geochemical significance of organical-bound sulphur in the geosphere:state of the art and future research" 16 : 1077-1101, 1990

      39 Bernoullia, D, "A dolomitized diatomitein an Oligocene-Miocene deep-sea fan succession, Gonfolite LombardaGroup, Northern Italy" 139 : 71-91, 2001

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      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.98 0.27 0.74
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.68 0.59 0.424 0.15
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