A multi-analytical approach for determining the origin of the marbles in Temple-A from Laodicea ad Lycum (Denizli-Western Anatolia, Turkey)

被引:14
作者
Koralay, Tamer [1 ]
Kilincarslan, Sanem [2 ]
机构
[1] Pamukkale Univ, Dept Geol Engn, Fac Engn, Kinikli Campus, TR-20017 Denizli, Turkey
[2] Zorlu Nat Elect Generat Inc, Saraykoy Denizli, Turkey
关键词
Laodicea ad Lycum; Temple-A; Marble chemistry; C-O stable isotopes; Marble provenance; MENDERES MASSIF; COLORED MARBLES; PROVENANCE; WHITE; DATABASE; CARBON; GREEK;
D O I
10.1016/j.culher.2015.05.005
中图分类号
K85 [文物考古];
学科分类号
0601 ;
摘要
Laodicea ad Lycum is the major and most important Hellenistic city in the Lycos Valley. The ancient city is located at 6 km northeast of Denizli and the most contemporary and significant archaeological site in southwestern Turkey. A large marble temple complex, which is simply named Temple-A, is a remarkable structure. The marbles of Temple-A can be classified into four groups, based on color, crystal size, crystal boundaries and foliation status. These groups are identified as (i) lilac-purple-veined, (ii) white, (iii) gray-veined and (iv) gray-blackish marbles. Microscopically, the lilac-purple veined, gray-veined and gray-blackish marbles display heteroblastic mosaic texture, and the white marbles display a homoeoblastic polygonal texture. The marble groups chiefly consist of calcite + dolomite + augite (lilac-purple veined), calcite (white), calcite + dolomite + quartz + muscovite + opaque minerals (gray veined) and calcite + quartz + pyroxene + zircon (gray-blackish). The minero-petrographic, geochemical and C-0 stable isotope results reveal that most of the marbles sampled Temple-A at Laodicea share the same characteristics and composition of the marbles exploited in the ancient quarries of Hierapolis and Domuzderesi. (C) 2015 Elsevier Masson SAS. All rights reserved.
引用
收藏
页码:42 / 52
页数:11
相关论文
共 36 条
  • [21] A CONTRIBUTION TO THE IDENTIFICATION OF ITALIAN, GREEK AND ANATOLIAN MARBLES THROUGH A PETROLOGICAL STUDY AND THE EVALUATION OF CA-SR RATIO
    LAZZARINI, L
    MOSCHINI, G
    STIEVANO, BM
    [J]. ARCHAEOMETRY, 1980, 22 (AUG) : 173 - &
  • [22] Matthews K. J., 1992, ACTA ARCHAEOLOGICA L, P203
  • [23] RAMAN-SPECTROSCOPY IN MINERALOGY AND GEOCHEMISTRY
    MCMILLAN, PF
    [J]. ANNUAL REVIEW OF EARTH AND PLANETARY SCIENCES, 1989, 17 : 255 - 283
  • [24] Isotope chemostratigraphy of marbles in northeastern Mozambique:: Apparent depositional ages and tectonostratigraphic implications
    Melezhik, V. A.
    Bingen, B.
    Fallick, A. E.
    Gorokhov, I. M.
    Kuznetsov, A. B.
    Sandstad, J. S.
    Solli, A.
    Bjerkgard, T.
    Henderson, I.
    Boyd, R.
    Jamal, D.
    Moniz, A.
    [J]. PRECAMBRIAN RESEARCH, 2008, 162 (3-4) : 540 - 558
  • [25] Strontium and carbon isotope geochemistry applied to dating of carbonate sedimentation: an example from high-grade rocks of the Norwegian Caledonides
    Melezhik, VA
    Gorokhov, IM
    Fallick, AE
    Gjelle, S
    [J]. PRECAMBRIAN RESEARCH, 2001, 108 (3-4) : 267 - 292
  • [26] Moens L, 1988, NATO ASI SER, V153, P243
  • [27] Monna D., 1977, MARMI ASIA MINORE CO
  • [28] Sr, C and O isotope composition of marbles from the Sierra de Ancasti, Eastern Sierras Pampeanas, Argentina: age and constraints for the Neoproterozoic-Lower Paleozoic evolution of the proto-Gondwana margin
    Murra, J. A.
    Baldo, E. G.
    Galindo, C.
    Casquet, C.
    Pankhurst, R. J.
    Rapela, C. W.
    Dahlquist, J.
    [J]. GEOLOGICA ACTA, 2011, 9 (01) : 79 - 92
  • [29] A new methodology for the provenance of marble based on EPR spectroscopy
    Polikreti, K
    Maniatis, Y
    [J]. ARCHAEOMETRY, 2002, 44 : 1 - 21
  • [30] A NEW METHOD FOR THE DETERMINATION OF THE PROVENANCE OF WHITE MARBLES BY CHEMICAL ANALYSIS OF INCLUSION FLUIDS: THE MARBLES OF THE MAUSOLEUM OF BELEVI/TURKEY
    Prochaska, W.
    Grillo, S. M.
    [J]. ARCHAEOMETRY, 2010, 52 : 59 - 82