The Trento Plateau (South-Alpine domain of the western passive continental margin of the Apulian plate), during the Middle–Late Jurassic was the site of extended microbialite development in Ammonitico Rosso facies. The setting was a current-swept, pelagic plateau located far from sources of terrigenous supply, characterized by very low average sedimentation rate. Both stromatolites and leiolites occur, commonly associated and passing into one another. For the carbonate-dominated Ammonitico Rosso depositional setting, it may be inferred that microbialites grew in well-oxygenated waters of normal salinity, arguably characterized by very low nutrient availability and probably located in the photic zone. A decimetre-scale basic rhythm occurring in some intervals of the local succession consists of a slightly clayey nodular unit stabilized by a carbonate, microbial unit. Transition from the lower to the upper unit of the rhythm may imply increase in hydrodynamics and oxygenation at the bottom and a progressive reduction in trophic level and bioturbation rate by burrowing metazoans. These rhythms are tentatively attributed to a precessional control.
Massari F. and Westphal H. (2011) Microbialites in the Middle–Upper Jurassic Ammonitico Rosso of the Southern Alps (Italy). In: Tewari V.C. & Seckbach T. (eds.). STROMATOLITES: Interaction of Microbes with Sediments (pp. 223-250). 10.1007/978-94-007-0397-1_10
@inbook{Massari2011,
Title = {Microbialites in the Middle–Upper Jurassic Ammonitico Rosso of the Southern Alps (Italy)},
Author = {Massari, Francesco and Westphal, Hildegard},
Editor = {Tewari, V.C. and Seckbach, T.},
Journal = {Cellular origin and life in extreme habitats},
Year = {2011},
Pages = {223-250},
Volume = {18},
Doi = {10.1007/978-94-007-0397-1_10},
Isbn = {978-94-007-0396-4},
Booktitle = {STROMATOLITES: Interaction of Microbes with Sediments},
Abstract = {The Trento Plateau (South-Alpine domain of the western passive continental margin of the Apulian plate), during the Middle–Late Jurassic was the site of extended microbialite development in Ammonitico Rosso facies. The setting was a current-swept, pelagic plateau located far from sources of terrigenous supply, characterized by very low average sedimentation rate. Both stromatolites and leiolites occur, commonly associated and passing into one another. For the carbonate-dominated Ammonitico Rosso depositional setting, it may be inferred that microbialites grew in well-oxygenated waters of normal salinity, arguably characterized by very low nutrient availability and probably located in the photic zone. A decimetre-scale basic rhythm occurring in some intervals of the local succession consists of a slightly clayey nodular unit stabilized by a carbonate, microbial unit. Transition from the lower to the upper unit of the rhythm may imply increase in hydrodynamics and oxygenation at the bottom and a progressive reduction in trophic level and bioturbation rate by burrowing metazoans. These rhythms are tentatively attributed to a precessional control.},
}
TY - CHAP
AU - Massari, Francesco
AU - Westphal, Hildegard
ED - Tewari, V.C.
ED - Seckbach, T.
TI - Microbialites in the Middle–Upper Jurassic Ammonitico Rosso of the Southern Alps (Italy)
T2 - Cellular origin and life in extreme habitats
PY - 2011
SP - 223-250
VL - 18
DO - 10.1007/978-94-007-0397-1_10
SN - 978-94-007-0396-4
BT - STROMATOLITES: Interaction of Microbes with Sediments
AB - The Trento Plateau (South-Alpine domain of the western passive continental margin of the Apulian plate), during the Middle–Late Jurassic was the site of extended microbialite development in Ammonitico Rosso facies. The setting was a current-swept, pelagic plateau located far from sources of terrigenous supply, characterized by very low average sedimentation rate. Both stromatolites and leiolites occur, commonly associated and passing into one another. For the carbonate-dominated Ammonitico Rosso depositional setting, it may be inferred that microbialites grew in well-oxygenated waters of normal salinity, arguably characterized by very low nutrient availability and probably located in the photic zone. A decimetre-scale basic rhythm occurring in some intervals of the local succession consists of a slightly clayey nodular unit stabilized by a carbonate, microbial unit. Transition from the lower to the upper unit of the rhythm may imply increase in hydrodynamics and oxygenation at the bottom and a progressive reduction in trophic level and bioturbation rate by burrowing metazoans. These rhythms are tentatively attributed to a precessional control.
ER -
Details
Date21.01.2011
Volume18
Pages223-250
Book TitleSTROMATOLITES: Interaction of Microbes with Sediments