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B. Pratt (2001)
Calcification of cyanobacterial filaments: Girvanella and the origin of lower Paleozoic lime mudGeology, 29
Cui Luo, J. Reitner (2014)
First report of fossil “keratose” demosponges in Phanerozoic carbonates: preservation and 3-D reconstructionNaturwissenschaften, 101
C. Monty (1982)
Cavity or fissure dwelling stromatolites (endostromatolites) from Belgian Devonian mud mounds
S. Taylor, S. McLennan (1985)
The continental crust: Its composition and evolution
(1974)
Marine Carbonates
(2011)
Stromatactis
J. Braga, Á. Puga-Bernabéu, K. Heindel, M. Patterson, D. Birgel, J. Peckmann, I. Sánchez‐Almazo, J. Webster, Y. Yokoyama, R. Riding (2019)
Microbialites in Last Glacial Maximum and deglacial reefs of the Great Barrier Reef (IODP Expedition 325, NE Australia)Palaeogeography, Palaeoclimatology, Palaeoecology
B. Pratt (2009)
The Origin, Biota and Evolution of Deep‐Water Mud‐Mounds
K Heindel, D Birgel, B Brunner, V Thiel, H Westphal, SB Ziegenbalg, E Gischler, G Cabioch, J Peckmann (2012)
Post-glacial microbialite formation in coral reefs in the Pacific Ocean, Caribbean, and Indian OceanChemical Geology, 304–305
J. Pigott, L. Land (1986)
Interstitial water chemistry of jamaican reef sediment sulfate reduction and submarine cementationMarine Chemistry, 19
E. Gischler, D. Birgel, B. Brunner, J. Peckmann (2020)
MICROBIALITE OCCURRENCE AND PATTERNS IN HOLOCENE REEFS OF BORA BORA, SOCIETY ISLANDSPalaios, 35
K. Heindel, D. Birgel, J. Peckmann, H. Kuhnert, H. Westphal (2010)
FORMATION OF DEGLACIAL MICROBIALITES IN CORAL REEFS OFF TAHITI (IODP 310) INVOLVING SULFATE-REDUCING BACTERIA, 25
J. Tait, V. Bachtadse, W. Franke, H. Soffel (1997)
Geodynamic evolution of the European Variscan fold belt: palaeomagnetic and geological constraintsGeologische Rundschau, 86
R. Riding, A. Virgone (2020)
Hybrid Carbonates: in situ abiotic, microbial and skeletal co-precipitatesEarth-Science Reviews
(1997)
Verkalkte Mikrobenrelikte und kryptische Habitate des Rübeland-Mikrobialiths (Elbingeröder Riffkomplex, Harz, Mittel-bis Oberdevon)
F. Brunton, O. Dixon (1994)
Siliceous sponge-microbe biotic associations and their recurrence through the Phanerozoic as reef mound constructorsPALAIOS, 9
E. Gischler, K. Heindel, D. Birgel, B. Brunner, J. Reitner, J. Peckmann (2017)
Cryptic biostalactites in a submerged karst cave of the Belize Barrier Reef revisited: Pendant bioconstructions cemented by microbial micritePalaeogeography, Palaeoclimatology, Palaeoecology, 468
G. Grammer, R. Ginsburg, P. Swart, D. McNeill, A. Jull, D. Prezbindowski (1993)
Rapid Growth Rates of Syndepositional Marine Aragonite Cements in Steep Marginal Slope Deposits, Bahamas and BelizeJournal of Sedimentary Research, 63
André Pellerin, D. Lacelle, D. Fortin, I. Clark, B. Lauriol (2009)
Microbial diversity in endostromatolites (cf. Fissure Calcretes) and in the surrounding permafrost landscape, Haughton impact structure region, Devon Island, Canada.Astrobiology, 9 9
F. Böhm, T. Brachert (1993)
Deep-water stromatolites andFrutexitesMaslov from the early and Middle Jurassic of S-Germany and AustriaFacies, 28
F Böhm, T Brachert (1993)
Deep-water stromatolites and Frutexites MASLOV from the early and middle Jurassic of S-GermanyFacies, 28
AD George (1999)
Deep-water stromatolites, Canning Basin, AustraliaPalaios, 14
(1974)
Marine Carbonates, 1–375
P. Bourque, H. Gignac (1983)
Sponge-constructed stromatactis mud mounds, Silurian of Gaspe, QuebecJournal of Sedimentary Research, 53
(1989)
Remarks on the Middle/Upper Devonian boundary in the Elbingerode Reef Complex
E. Turner (2021)
Possible poriferan body fossils in early Neoproterozoic microbial reefsNature, 596
L. Jonkers, A. Gopalakrishnan, Lea Weßel, C. Chiessi, J. Groeneveld, P. Monien, D. Lessa, R. Morard (2021)
Morphotype and Crust Effects on the Geochemistry of Globorotalia inflataPaleoceanography and Paleoclimatology, 36
(1995)
Automicrites in a modern marine microbialite. Formation model via organic matrices
Cui Luo, J. Reitner (2016)
‘Stromatolites’ built by sponges and microbes – a new type of Phanerozoic bioconstructionLethaia, 49
R. Wood, C. Oppenheimer (2000)
Spur and groove morphology from a Late Devonian reefSedimentary Geology, 133
W. Ziegler, C. Sandberg (1990)
The late Devonian Standard Conodont Zonation
E. Gischler (1996)
Late Devonian-Early Carboniferous deep-water coral assemblages and sedimentation on a Devonian seamount: Iberg Reef, Harz Mts., GermanyPalaeogeography, Palaeoclimatology, Palaeoecology, 123
C. Spötl, T. Vennemann (2003)
Continuous-flow isotope ratio mass spectrometric analysis of carbonate minerals.Rapid communications in mass spectrometry : RCM, 17 9
F. Neuweiler, V. D'Orazio, A. Immenhauser, G. Geipel, K. Heise, C. Cocozza, T. Miano (2003)
Fulvic acid–like organic compounds control nucleation of marine calcite under suboxic conditionsGeology, 31
W Kiessling, E Flügel, J Golonka (1999)
Paleoreef Maps: Evaluation of a comprehensive database on Phanerozoic reefsAmerican Association of Petroleum Geologists Bulletin, 83
(1996)
Phylogenie und Evolutionsökologie der Hexactinellida (Porifera) im Paläozoikum
S. Taylor, S. McLennan (1985)
The continental crust : its composition and evolution : an examination of the geochemical record preserved in sedimentary rocks
P. Copper (2002)
Silurian and Devonian Reefs: 80 Million Years of Global Greenhouse Between Two Ice Ages, 72
E. Gischler, A. Baliński, A. Fuchs, D. Heidelberger (2004)
Famennian brachiopod and gastropod occurrences on top of Devonian seamounts, Elbingerode and Iberg Reefs, Harz Mts., GermanySenckenbergiana lethaea, 84
J. Peckmann, E. Gischler, W. Oschmann, J. Reitner (2001)
An Early Carboniferous seep community and hydrocarbon-derived carbonates from the Harz Mountains, GermanyGeology, 29
W. Krebs (1974)
Devonian Carbonate Complexes of Central Europe
JA Tait, V Bachtadse, W Franke, HC Soffel (1997)
Geodynamic evolution of the European Variscan fold beltGeologische Rundschau, 86
D. Smrzka, J. Zwicker, D. Misch, C. Walkner, S. Gier, P. Monien, G. Bohrmann, J. Peckmann (2019)
Oil seepage and carbonate formation: A case study from the southern Gulf of MexicoSedimentology, 66
(1989)
Sedimentologie von Mud Mounds und ihr Nachweis im Harz
J. Ries (2010)
Review: geological and experimental evidence for secular variation in seawater Mg/Ca (calcite-aragonite seas) and its effects on marine biological calcificationBiogeosciences, 7
(1988)
Structural investigations of the Paleozoic reef limestone in the Elbingerode Complex (Lower Harz
Helmut Weller (2014)
Das Rübeländer Mud Mound im Riffkomplex von Elbingerode (Harz) und seine sedimentologischen Eigenschaften, 26
E. Gischler (1995)
Current and wind induced facies patterns in a Devonian atoll; Iberg Reef, Harz Mts., GermanyPALAIOS, 10
Helmut Weller (2003)
Anmerkungen zur Devon-Korrelationstabelle, R 078 di-ds 03: Lithostratigraphie im Devon und Unterkarbon des Elbingeröder Komplexes (Harz) — ein ÜberblickSenckenbergiana Lethaea, 83
A Fuchs (1989)
Remarks on the Middle/Upper Devonian boundary in the Elbingerode Reef Complex, Harz MountainsCourier Forschungsinstitut Senckenberg, 117
B. Haq, S. Schutter (2008)
A Chronology of Paleozoic Sea-Level ChangesScience, 322
G. Flajs, Manfred Vigener, H. Keupp, D. Meischner, F. Neuweiler, J. Paul, J. Reitner, K. Warnke, H. Weller, P. Dingle, C. Hensen, P. Schäfer, P. Gautret, R. Leinfelder, H. Hüssner, B. Kaufmann (1995)
Mud mounds: A polygenetic spectrum of fine-grained carbonate buildupsFacies, 32
R Riding, A Virgone (2020)
Hybrid carbonate: In situ abiotic, microbial and skeletal co-precipitatesEarth-Science Reviews, 208
R. Riding, S. Awramik, B. Winsborough, K. Griffin, R. Dill (1991)
Bahamian giant stromatolites: microbial composition of surface matsGeological Magazine, 128
Michaela Aehnelt, Helmut Weller (2004)
Die ältesten Kalke im Elbingeröder Riffkomplex (Harz): Conodontenstratigraphische Datierung einer Vorphase der RiffentwicklungSenckenbergiana lethaea, 84
(2008)
Elbingeröder Komplex
(1988)
Structural investigations of the Paleozoic reef limestone in the Elbingerode Complex (Lower Harz, G.D.R.)
(2008)
Elbingeröder Komplex . In Stratigraphie von Deutschland VIII . Devon , ed . Deutsche Stratigraphische Kommission
(1982)
Problems in the analysis of receptaculitid affinities
(1991)
Calcified cyanobacteria
(1991)
Geochemische Faziesanalyse devonischer Riffkarbonate des Elbingeröder Komplexes (Östliches Rhenoherzynikum, Harz), 1–311
L. Montaggioni, G. Camoin (1993)
Stromatolites associated with coralgal communities in Holocene high-energy reefsGeology, 21
W. Schlager (2000)
Sedimentation rates and growth potential of tropical, cool-water and mud-mound carbonate systemsGeological Society, London, Special Publications, 178
J. Reitner (1993)
Modern cryptic microbialite/metazoan facies from Lizard Island (Great Barrier Reef, Australia) formation and conceptsFacies, 29
(1995)
Automicrites in a modern marine microbialite
H Weller (2008)
Elbingeröder Komplex, in Deutsche Stratigraphische Kommission, ed., Stratigraphie von Deutschland VIII. DevonSchriftenreihe der Deutschen Gesellschaft für Geowissenschaften, 52
T. Himmler, W. Bach, G. Bohrmann, J. Peckmann (2010)
Rare earth elements in authigenic methane-seep carbonates as tracers for fluid composition during early diagenesisChemical Geology, 277
C. Heim, N. Quéric, D. Ionescu, N. Schäfer, J. Reitner (2017)
Frutexites-like structures formed by iron oxidizing biofilms in the continental subsurface (Äspö Hard Rock Laboratory, Sweden)PLoS ONE, 12
(1991)
Geochemische Faziesanalyse devonischer Riffkarbonate des Elbingeröder Komplexes (Östliches Rhenoherzynikum
(1986)
Zur Biostratigraphie der Karbonatgesteine des Elbingeröder Komplexes (Harz) unter besonderer Berücksichtigung der Riffkalke auf der Grundlage von Conodonten, 1–293
(2008)
Deutsche Stratigraphische Kommission
CLV Monty (1982)
Cavity or fissure dwelling stromatolites (endo-stromatolites) from Belgian Devonian mud mounds (extended abstract)Annales de la Societé Géologique De Belgique, 105
(1997)
Verkalkte Mikrobenrelikte und kryptische Habitate des Rübeland-Mikrobialiths (Elbingeröder Riffkomplex, Harz, Mittel-bis Oberdevon). 1-184
R. Riding (1991)
Classification of Microbial Carbonates
(2014)
Geologische Karte Elbingeröder Komplex 1:25.000
D. Hebbeln, E. Samankassou (2015)
Where did ancient carbonate mounds grow — In bathyal depths or in shallow shelf waters?Earth-Science Reviews, 145
A. George (1999)
Deep-water stromatolites, Canning Basin, northwestern AustraliaPALAIOS, 14
H. Weller (1991)
Facies and development of the devonian (Givetian/Frasnian) elbingerode reef complex in the Harz Area (Germany)Facies, 25
G. Webb (2001)
Famennian mud-mounds in the proximal fore-reef slope, Canning Basin, Western AustraliaSedimentary Geology, 145
B. Pratt (1982)
Limestone response to stress; pressure solution and dolomitization; discussion and examples of compaction in carbonate sedimentsJournal of Sedimentary Research, 52
E. Suosaari, E. Suosaari, R. Reid, P. Playford, J. Foster, J. Stolz, G. Casaburi, P. Hagan, V. Chirayath, I. Macintyre, N. Planavsky, G. Eberli (2016)
New multi-scale perspectives on the stromatolites of Shark Bay, Western AustraliaScientific Reports, 6
A. Fuchs (1987)
Conodont biostratigraphy of the Elbingerode Reef Complex, Harz Mountains
G. Mossop (1972)
Origin of the Peripheral Rim, Redwater Reef, AlbertaBulletin of Canadian Petroleum Geology, 20
(1990)
Character and termination of the Devonian reefs in the Harz Mountains
G. Evans (1982)
The seaward margin of Belize barrier and atoll reefsEarth-Science Reviews, 18
Y. Lith, R. Warthmann, C. Vasconcelos, J. Mckenzie (2003)
Sulphate‐reducing bacteria induce low‐temperature Ca‐dolomite and high Mg‐calcite formationGeobiology, 1
C Janssen, CH Friedel, HJ Paech (1990)
Zur Frühdiagenese der devonischen Riffkalksteine des Elbingeröder Komplexes (Harz)Zeitschrift für Geologische Wissenschaften, 18
B. Sames, M. Wagreich, J. Wendler, B. Haq, C. Conrad, M. Melinte-Dobrinescu, Xiumian Hu, I. Wendler, E. Wolfgring, İ. Yılmaz, S. Zorina (2016)
Review: Short-term sea-level changes in a greenhouse world — A view from the CretaceousPalaeogeography, Palaeoclimatology, Palaeoecology, 441
NP James, R Wood, NP James, DW Dalrymple (2010)
ReefsFacies Models, 4
K. Heindel, D. Birgel, B. Brunner, V. Thiel, H. Westphal, E. Gischler, S. Ziegenbalg, G. Cabioch, P. Sjövall, J. Peckmann (2012)
Post-glacial microbialite formation in coral reefs of the Pacific, Atlantic, and Indian OceansChemical Geology, 304
G. Webb (1996)
Was Phanerozoic reef history controlled by the distribution of non-enzymatically secreted reef carbonates (microbial carbonate and biologically induced cement)?Sedimentology, 43
W. Krebs (1969)
EARLY VOID‐FILLING CEMENTATION IN DEVONIAN FORE‐REEF LIMESTONES (GERMANY)Sedimentology, 12
R. Nance, G. Gutiérrez-Alonso, J. Keppie, U. Linnemann, J. Murphy, C. Quesada, R. Strachan, N. Woodcock (2008)
Evolution of the Rheic OceanTectonophysics, 461
Jeong‐Hyun Lee, R. Riding (2018)
Marine oxygenation, lithistid sponges, and the early history of Paleozoic skeletal reefsEarth-Science Reviews, 181
M. Hoek (2013)
BiofilmsVirulence, 4
(1995)
Automicrites in a modern marine microbialite . Formation model via organic matrices ( Lizard Island , Great Barrier Reef , Australia )
A. Fuchs (1990)
Charakter und Ende der devonischen Riffentwicklung im Elbingeröder Komplex (Harz)Facies, 23
(1989)
Begründung und Bedeutung des Bode-Lineaments
P. Bourque, F. Boulvain (1993)
A Model for the Origin and Petrogenesis of the Red Stromatactis Limestone of Paleozoic Carbonate MoundsJournal of Sedimentary Research, 63
B. Haley, G. Klinkhammer, J. McManus (2004)
Rare earth elements in pore waters of marine sedimentsGeochimica et Cosmochimica Acta, 68
W. Kiessling, E. Fluegel, J. Golonka (1999)
Paleoreef maps; evaluation of a comprehensive database on Phanerozoic reefsAAPG Bulletin, 83
B. Pratt (1982)
Stromatolitic Framework of Carbonate Mud-MoundsJournal of Sedimentary Research, 52
(1990)
Character and termination of the Devonian reefs in the Harz Mountains (Elbingerode Complex, Germany)
A massive occurrence of microbial carbonates, including abundant sponge remains, within the Devonian Elbingerode Reef Complex was likely deposited in a former cavity of the fore-reef slope during the early Frasnian. It is suggested that the formation of microbial carbonate was to a large part favored by the activity of heterotrophic, i.e., sulfate-reducing bacteria, in analogy to Quaternary coral reef microbialites. The Elbingerode Reef Complex is an example of an oceanic or Darwinian barrier reef system. In modern barrier reef settings, microbialite formation is commonly further facilitated by weathering products from the central volcanic islands. The Devonian microbialites of the Elbingerode Reef Complex occur in the form of reticulate and laminated frameworks. Reticulate framework is rich in hexactinellid glass sponges, the tissue decay of which led to the formation of abundant micrite as well as peloidal and stromatactis textures. Supposed calcimicrobes such as Angusticellularia (formerly Angulocellularia) and Frutexites, also known from cryptic habitats, were part of the microbial association. The microbial degradation of sponge tissue likely also contributed to the laminated framework accretion as evidenced by the occurrence of remains of so-called “keratose” demosponges. Further typical textures in the microbialite of the Elbingerode Reef Complex include zebra limestone, i.e., the more or less regular intercalation of microbial carbonate and cement. Elevated concentrations of magnesium in the microbialite as compared to the surrounding metazoan (stromatoporoid-coral) reef limestone suggests that the microbialite of the Elbingerode Reef Complex was initially rich in high-magnesium calcite, which would be yet another parallel to modern, cryptic coral reef microbial carbonates. Deposition and accretion of the microbialite largely occurred in oxygenated seawater with suboxic episodes as indicated by the trace element (REE + Y) data.
PalZ – Springer Journals
Published: Dec 1, 2021
Keywords: Devonian; Reef; Microbialite; Carbonate; Sponge
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