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Trinity Peninsula Group

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Journal Article
Published: 24 October 2011
Geological Magazine (2012) 149 (4): 626–644.
...JOHN D. BRADSHAW; ALAN P. M. VAUGHAN; IAN L. MILLAR; MICHAEL J. FLOWERDEW; RUDOLPH A. J. TROUW; C. MARK FANNING; MARTIN J. WHITEHOUSE Abstract Field observations from the Trinity Peninsula Group at View Point on the Antarctic Peninsula indicate that thick, southward-younging and overturned clastic...
Journal Article
Published: 01 September 1996
Geological Magazine (1996) 133 (5): 583–594.
Journal Article
Published: 01 December 1982
Journal of the Geological Society (1982) 139 (6): 713–720.
...R. D. Hamer; A. B. Moyes Abstract Garnet is widely found as a minor constituent in rocks of the Antarctic Peninsula Volcanic Group (APVG) of Trinity Peninsula. It occurs as conspicuous megacrysts, or in xenoliths within volcanic rocks of andesitic-rhyolitic composition and as detrital grains...
Image
Summary of time constraints on the Trinity Peninsula Group, the LeMay Group and the Latady Formation. Data sources in citations in text.
Published: 01 November 2003
Figure 3 Summary of time constraints on the Trinity Peninsula Group, the LeMay Group and the Latady Formation. Data sources in citations in text.
Journal Article
Published: 07 May 2025
Journal of the Geological Society (2025) 182 (4): jgs2024-164.
... of the Antarctic Peninsula and adjacent regions. Samples of the Camp Hill Formation at Camp Hill Peninsula (Botany Bay) yielded middle Permian–early Triassic K–Ar ages that are associated with upper–lower anchizonal conditions, reflecting the input of detrital illite derived from the Trinity Peninsula Group...
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Journal Article
Published: 01 November 2003
Journal of Sedimentary Research (2003) 73 (6): 1062–1077.
...Figure 3 Summary of time constraints on the Trinity Peninsula Group, the LeMay Group and the Latady Formation. Data sources in citations in text. ...
FIGURES | View All (14)
Journal Article
Published: 01 March 2001
Journal of the Geological Society (2001) 158 (2): 219–232.
.... The lithological and structural characteristics of the Mount King beds are comparable to the accretionary complex of the LeMay Group (hitherto of only proven Jurassic–Cretaceous age) of Alexander Island, in which they are provisionally placed. However, the beds may also correlate with the Trinity Peninsula Group...
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Image
Published: 01 November 2003
Table 2 Combined XRF and ICP-MS whole-rock analyses for representative sandstone from the Trinity Peninsula Group (TPG), LeMay Group (LMG), and Latady Formation (LF), Antarctic Peninsula.
Image
Location map of the northern Antarctic Peninsula. The outcrop extent of the Trinity Peninsula Group is shown, as are the principal outcrops of crystalline basement.
Published: 01 July 2012
Fig. 1. Location map of the northern Antarctic Peninsula. The outcrop extent of the Trinity Peninsula Group is shown, as are the principal outcrops of crystalline basement.
Image
Uncorrected SHRIMP data for two granitoid clasts from the conglomerate at View Point (Trinity Peninsula Group).
Published: 01 March 2002
Fig. 8 Uncorrected SHRIMP data for two granitoid clasts from the conglomerate at View Point (Trinity Peninsula Group).
Image
(a) Tectonic elements map of the Antarctic Peninsula modified after Vaughan et al. (2012a). (b) Distribution of plutonic rocks in the southern Antarctic Peninsula showing the Lassiter Coast Intrusive Suite (LCIS) after Vennum & Rowley (1986) and components of the Antarctic Peninsula (AP) batholith after Leat et al. (1995). Pluton areas from Rowley et al. (1992). BG, Beaumont Glacier study area; EZ, Eastern Zone; EPLP, Eastern Palmer Land Province; EPLSZ, Eastern Palmer Land Shear Zone; GVIS, George VI Sound; HIL, Hilton Inlet Lineament; LMG, LeMay Group; LB, Latady/Larsen Basin; THP, Target Hill Province; TPG, Trinity Peninsula Group; WB, Werner Batholith; WZ, Western Zone. Inset in (b) shows location of Figure 3.
Published: 01 November 2012
/Larsen Basin; THP, Target Hill Province; TPG, Trinity Peninsula Group; WB, Werner Batholith; WZ, Western Zone. Inset in ( b ) shows location of Figure 3 .
Image
Variations of εHft v. δ18O values in zircon for Permian and early Triassic zircons of samples from Tierra del Fuego and western North Patagonian Massif. The εHft v. δ18O values for the Huingancó complex are plotted in the figure for comparison; data from Hervé et al. (2013). εHft v. δ18O values for Permian and early Triassic detrital zircons from accretionary complexes from Patagonia (above) and the Antarctic Peninsula (below); data for the Western Series of the late Palaeozoic accretionary complex from central Chile (Western Series ACCCh) were taken from Hervé et al. (2013), and data for the Duque de York Complex, the Trinity Peninsula Group, Miers Bluff Formation and Cape Wallace beds were taken from Castillo et al. (2016).
Published: 03 May 2017
al. (2013) , and data for the Duque de York Complex, the Trinity Peninsula Group, Miers Bluff Formation and Cape Wallace beds were taken from Castillo et al. (2016) .
Journal Article
Published: 01 July 2012
Journal of the Geological Society (2012) 169 (4): 381–393.
...Fig. 1. Location map of the northern Antarctic Peninsula. The outcrop extent of the Trinity Peninsula Group is shown, as are the principal outcrops of crystalline basement. ...
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Series: Geological Society, London, Memoirs
Published: 27 May 2021
DOI: 10.1144/M55-2018-52
EISBN: 9781786209863
... to extension during Gondwana break-up rather than subduction ( Pankhurst et al. 2000 ; Riley et al. 2001 ; Riley and Leat 2021 ). Detrital zircons from the Trinity Peninsula Group, Miers Bluff Formation and Cape Wallace Beds, all Late Paleozoic–Jurassic metasedimentary units in northern Graham Land...
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Time–space plot summarizing the stratigraphy within each proposed domain of the Antarctic Peninsula. Symbols as in Figure 1. Sed, depositional age of sedimentary rocks; Vol, magmatic age of volcanic rocks; Int, emplacement age of non-metamorphosed intrusive rocks; Met, protolith age of metamorphic rocks; PLE, Palmer Land Event (Vaughan et al. 2012a). Units for the Western Domain are as follows. Sed: LeMay Group, Sinnemurian–Albian (Thomson & Tranter 1986; Holdsworth & Nell 1992); Fossil Bluff Group, Kimmeridgian–Albian (Butterworth et al. 1988); Adelaide Is., c. 150–113.9 Ma (Thomson 1972; Riley et al. 2012a). Vol: Alexander Is., 157–152 Ma (Macdonald et al. 1999), 80–46 Ma (McCarron 1997) and 2.5–0.5 Ma (Hole 1988); Adelaide Is., 76–39.2 Ma (Griffiths & Oglethorpe 1998; Riley et al. 2012a); South Shetland Is., 135–22.6 Ma (Smellie et al. 1998; Haase et al. 2012) and 2.4–0.1 Ma (Pankhurst & Smellie 1983). Int: Alexander Is., 75–56 Ma (McCarron 1997); Adelaide Is., 60–44 Ma (Pankhurst 1982; Griffiths & Oglethorpe 1998; Riley et al. 2012a). Units for the Central Domain are as follows. Vol: arc magmatism, 153–86 Ma (Rex 1976; Leat & Scarrow 1994); alkali magmatism, 3.1–0.1 Ma (Ringe 1991). Int: 267–8.9 Ma (Ringe 1991; Millar et al. 2002). Met: 422–178 Ma (Pankhurst 1983; Millar et al. 2002). Units for the Eastern Domain are as follows. Sed: Fitzgerald and Erehwon Beds, Pre-Late Palaeozoic to Latest Permian (Laudon 1991); Trinity Peninsula Group, Latest Carboniferous to Mid-Triassic (Smellie & Millar 1995; Riley et al. 2011b; Bradshaw et al. 2012); Latady Group and Mt Hill Fm, 185–140 Ma (Meneilly et al. 1987; Hunter & Cantrill 2006); Larsen Basin, 167 Ma to Paleocene–Eocene (Hathway 2000; Hunter et al. 2005). Vol: Chon Aike Group, 188–178 and 172–162 Ma (Pankhurst et al. 2000); arc magmatism, <162 to 35 Ma (Rex 1976); alkali magmatism, 6.5–0.5 Ma (Rex 1976). Int: 256–54 Ma (Rex 1976; Riley et al. 2012b). Met: 487–175 Ma (Gledhill et al. 1982; Riley et al. 2012b).
Published: 04 August 2015
Palaeozoic to Latest Permian ( Laudon 1991 ); Trinity Peninsula Group, Latest Carboniferous to Mid-Triassic ( Smellie & Millar 1995 ; Riley et al . 2011 b ; Bradshaw et al . 2012 ); Latady Group and Mt Hill Fm, 185–140 Ma ( Meneilly et al . 1987 ; Hunter & Cantrill 2006 ); Larsen Basin, 167 Ma
Journal Article
Published: 07 January 2010
Geological Magazine (2010) 147 (4): 581–595.
... Group. The Trinity Peninsula Group succession is at least 3 km thick, and facies analysis indicates deposition as submarine fans along a continental margin (Smellie, Roberts & Hirons, 1996 ). The Trinity Peninsula Group is variably deformed, from gentle folding without cleavage development to tight...
Image
P–T diagram showing calculated P–T points and general metamorphic conditions (numbered symbols) as described in the literature for the entire Antarctic Peninsula region. Metamorphic conditions are grouped for the Antarctic Peninsula, the Trinity Peninsula and the western Peninsula region. Inset shows overview of general metamorphic facies.
Published: 23 June 2008
Figure 11. P–T diagram showing calculated P–T points and general metamorphic conditions (numbered symbols) as described in the literature for the entire Antarctic Peninsula region. Metamorphic conditions are grouped for the Antarctic Peninsula, the Trinity Peninsula and the western Peninsula
Journal Article
Journal: Palynology
Published: 01 March 2016
Palynology (2016) 40 (1): 66–82.
....) and Nothofagidites sp. ( brassii a). The source of these Permian (to Triassic?) specimens might possibly be some strata broadly included in the Trinity Peninsula Group exposed on Trinity Peninsula between Hope Bay and Paradise Harbour, and also on Livingston Island close to KGI and also part of the SSI...
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Journal Article
Published: 01 April 1989
Journal of the Geological Society (1989) 146 (2): 207–210.
... ) Method Lithology Reference 1 308 f 15 Rb-Sr W San Doming0 granitoid Brook et al. 1987 2 294 f 24 Rb-Sr WR Nahuelbuta granitoid Brook et al. 1987 3 332 f 15 Rb-Sr WR Navarette granodiorite Caminos & Parica 1985 4 322 + 7/-8 U-Pb zircon Trinity Peninsula Group Miller et al. 1987 5 323 f 11 Sm-Ndgarnet-WR...
Journal Article
Published: 04 August 2015
Journal of the Geological Society (2015) 172 (6): 822–835.
... Palaeozoic to Latest Permian ( Laudon 1991 ); Trinity Peninsula Group, Latest Carboniferous to Mid-Triassic ( Smellie & Millar 1995 ; Riley et al . 2011 b ; Bradshaw et al . 2012 ); Latady Group and Mt Hill Fm, 185–140 Ma ( Meneilly et al . 1987 ; Hunter & Cantrill 2006 ); Larsen Basin, 167 Ma...
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