TY - JOUR
T1 - Roundness of heavy minerals (zircon and apatite) as a provenance tool for unraveling recycling
T2 - A case study from the Sefidrud and Sarbaz rivers in N and SE Iran
AU - Zoleikhaei, Yousef
AU - Frei, Dirk
AU - Morton, Andrew
AU - Zamanzadeh, S. Mohammad
N1 - Publisher Copyright:
© 2016 Elsevier B.V.
PY - 2016/8/1
Y1 - 2016/8/1
N2 - In order to improve techniques for provenance studies, and especially to address the question of sediment recycling, morphological changes of two minerals with contrasting durability (zircon and apatite) were tracked during both fluvial transport and littoral reworking. The Sefidrud river system in northern Iran, which drains the Alborz volcano-sedimentary range into the Caspian Sea, and the Sarbaz river system in southeastern Iran, which drains the Makran Accretionary Prism into the Oman Sea, were chosen for this study. To determine source rocks of the grains, and thus their nature in terms of sedimentary cycles, zircon geochronology was conducted on both rivers. The zircon data indicate that most of the Sefidrud sediments are first cycle, derived from crystalline rocks, and the Sarbaz sediments are generally recycled from older wedges of the Makran. Results from SEM analysis show significant differences between the roundness of associated zircon and apatite grains. Zircon grains remain unrounded through several cycles, while apatite grains show abrasion from the early stages of their first cycle.
AB - In order to improve techniques for provenance studies, and especially to address the question of sediment recycling, morphological changes of two minerals with contrasting durability (zircon and apatite) were tracked during both fluvial transport and littoral reworking. The Sefidrud river system in northern Iran, which drains the Alborz volcano-sedimentary range into the Caspian Sea, and the Sarbaz river system in southeastern Iran, which drains the Makran Accretionary Prism into the Oman Sea, were chosen for this study. To determine source rocks of the grains, and thus their nature in terms of sedimentary cycles, zircon geochronology was conducted on both rivers. The zircon data indicate that most of the Sefidrud sediments are first cycle, derived from crystalline rocks, and the Sarbaz sediments are generally recycled from older wedges of the Makran. Results from SEM analysis show significant differences between the roundness of associated zircon and apatite grains. Zircon grains remain unrounded through several cycles, while apatite grains show abrasion from the early stages of their first cycle.
KW - Apatite
KW - Grain roundness
KW - Iran
KW - Sediment recycling
KW - U–Pb zircon geochronology
KW - Zircon
UR - https://www.scopus.com/pages/publications/84978245350
U2 - 10.1016/j.sedgeo.2016.06.016
DO - 10.1016/j.sedgeo.2016.06.016
M3 - Article
AN - SCOPUS:84978245350
SN - 0037-0738
VL - 342
SP - 106
EP - 117
JO - Sedimentary Geology
JF - Sedimentary Geology
ER -