Structural characterization and K-Ar illite dating of reactivated, complex and heterogeneous fault zones: lessons from the Zuccale Fault, Northern Apennines

被引:14
|
作者
Viola, Giulio [1 ]
Musumeci, Giovanni [2 ,3 ]
Mazzarini, Francesco [3 ]
Tavazzani, Lorenzo [4 ]
Curzi, Manuel [1 ]
Torgersen, Espen [5 ]
van der Lelij, Roelant [5 ]
Aldega, Luca [6 ]
机构
[1] Univ Bologna, Dipartimento Sci Biol Geol Ambientali BiGeA, Bologna, Italy
[2] Univ Pisa, Dipartimento Sci Terra, Pisa, Italy
[3] Ist Nazl Geofis & Vulcanol, Pisa, Italy
[4] Swiss Fed Inst Technol, Inst Geochem & Petrol, CH-8092 Zurich, Switzerland
[5] Geol Survey Norway, Trondheim, Norway
[6] Sapienza Univ Roma, Dipartimento Sci Terra, Rome, Italy
关键词
ANGLE NORMAL FAULTS; BRITTLE-DUCTILE FAULT; UPPER CRUST INSIGHTS; EASTERN ELBA ISLAND; TEMPORAL EVOLUTION; INTERNAL STRUCTURE; CONTACT AUREOLE; TYRRHENIAN SEA; SLIP; DEFORMATION;
D O I
10.5194/se-13-1327-2022
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
We studied the Zuccale Fault (ZF) on Elba, part of the Northern Apennines, to unravel the complex deformation history that is responsible for the remarkable architectural complexity of the fault. The ZF is characterized by a patchwork of at least six distinct, now tightly juxtaposed brittle structural facies (BSF), i.e. volumes of deformed rock characterized by a given fault rock type, texture, colour, composition, and age of formation. ZF fault rocks vary from massive cataclasite to foliated ultracataclasite, from clay-rich gouge to highly sheared talc phyllonite. Understanding the current spatial juxtaposition of these BSFs requires tight constraints on their age of formation during the ZF lifespan to integrate current fault geometries and characteristics over the time dimension of faulting. We present new K-Ar gouge dates obtained from three samples from two different BSFs. Two top-to-the-east foliated gouge and talc phyllonite samples document faulting in the Aquitanian (ca. 22 Ma), constraining east-vergent shearing along the ZF already in the earliest Miocene. A third sample constrains later faulting along the exclusively brittle, flat-lying principal slip surface to < ca. 5 Ma. The new structural and geochronological results reveal an unexpectedly long faulting history spanning a ca. 20 Myr time interval in the framework of the evolution of the Northern Apennines. The current fault architecture is highly heterogeneous as it formed at very different times under different conditions during this prolonged history. We propose that the ZF started as an Aquitanian thrust that then became selectively reactivated by early Pliocene out-of-sequence thrusting during the progressive structuring of the Northern Apennine wedge. These results require the critical analysis of existing geodynamic models and call for alternative scenarios of continuous convergence between the late Oligocene and the early Pliocene with a major intervening phase of extension in the middle Miocene allowing for the isostatic re-equilibration of the Northern Apennine wedge. Extension started again in the Pliocene and is still active in the innermost portion of the Northern Apennines. In general terms, long-lived, mature faults can be very architecturally complex. Their unravelling, including understanding the dynamic evolution of their mechanical properties, requires a multidisciplinary approach combining detailed structural analyses with dating the deformation events recorded by the complex internal architecture, which is a phenomenal archive of faulting and faulting conditions through time and space.
引用
收藏
页码:1327 / 1351
页数:25
相关论文
共 36 条
  • [31] Precambrian fault reactivation revealed by structural and K-Ar geochronological data from the spent nuclear fuel repository in Olkiluoto, southwestern Finland
    Nordback, Nicklas
    Mattila, Jussi
    Zwingmann, Horst
    Viola, Giulio
    TECTONOPHYSICS, 2022, 824
  • [32] Precambrian fault reactivation revealed by structural and K-Ar geochronological data from the spent nuclear fuel repository in Olkiluoto, southwestern Finland
    Nordbäck, Nicklas
    Mattila, Jussi
    Zwingmann, Horst
    Viola, Giulio
    Tectonophysics, 2022, 824
  • [33] Timing and thermal evolution of fold-and-thrust belt formation in the Ultima Esperanza District, 51°S Chile: Constraints from K-Ar dating and illite characterization
    Suessenberger, Annette
    Schmidt, Susanne T.
    Wemmer, Klaus
    Baumgartner, Lukas P.
    Grobety, Bernard
    GEOLOGICAL SOCIETY OF AMERICA BULLETIN, 2018, 130 (5-6) : 975 - 998
  • [34] Successive reactivation of older structures under variable heat flow conditions evidenced by K-Ar fault gouge dating in Sierra de Ambato, northern Argentine broken foreland
    Nobile, Julieta C.
    Collo, Gilda
    Davila, Federico M.
    Martina, Federico
    Wemmer, Klaus
    JOURNAL OF SOUTH AMERICAN EARTH SCIENCES, 2015, 64 : 152 - 165
  • [35] Exhumation and uplift of the Sierras Pampeanas: preliminary implications from K-Ar fault gouge dating and low-T thermochronology in the Sierra de Comechingones (Argentina)
    Loebens, Stefan
    Bense, Frithjof A.
    Wemmer, Klaus
    Dunkl, Istvan
    Costa, Carlos H.
    Layer, Paul
    Siegesmund, Siegfried
    INTERNATIONAL JOURNAL OF EARTH SCIENCES, 2011, 100 (2-3) : 671 - 694
  • [36] Cretaceous-Cenozoic tectonic history of the Jiaojia Fault and gold mineralization in the Jiaodong Peninsula, China: constraints from zircon U-Pb, illite K-Ar, and apatite fission track thermochronometry
    Deng, Jun
    Wang, Changming
    Bagas, Leon
    Carranza, Emmanuel John M.
    Lu, Yongjun
    MINERALIUM DEPOSITA, 2015, 50 (08) : 987 - 1006