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April 19, 2026Geological Society London Special Publications0 citations

Early Devonian tectonic evolution of the Ganderia domain in the Chaleur Bay Synclinorium of northern New Brunswick: evidence from felsic volcanic rocks of the Dalhousie Group

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JDJaroslav DostalRWR. A. Wilson

Key Points

  • Examine the early Devonian tectonics of the Ganderia domain through volcanic rock analysis.
  • Analyzed Lower Devonian volcanic rocks from the Dalhousie Group.
  • Assessed isotopic composition (ɛ Nd(t) values) of rhyolites and basalts.
  • Interpreted model mantle ages for volcanic rocks.
  • Rhyolites showed positive ɛ Nd(t) values (+3.45 to +4.7) similar to basalts (+3.9 to +4.2).
  • Model mantle ages for rhyolites (∼610 to ∼770 Ma) aligned with those of basalts (∼700 to ∼790 Ma), indicating Neoproterozoic enrichment.
  • The volcanic origins linked to post-Salinic relaxation and the transition to the Acadian orogenic cycle.

Abstract

Lower Devonian (ca. 418–407 Ma) volcanic rocks of the Dalhousie Group of the Gander Zone from the northern mainland Appalachians of northern New Brunswick are part of an overstep unit (the Middle Paleozoic Matapedia cover sequence) deposited across the accreted vestiges of the early Paleozoic Iapetus Ocean (proto-Atlantic Ocean). These shallow marine to subaerial mainly bimodal volcanic rocks were deposited in a post-collisional extensional setting. The felsic melts were generated by anhydrous melting of associated basalts in the lower continental crust with melting initiated by heat from rising underplated mafic magma. The ɛ Nd (t) values of rhyolites are positive (+ 3.45 – + 4.7) and similar to those of associated basalts (+3.9 - + 4.2). Likewise, their depleted model mantle ages ranging from ∼610 to ∼770 Ma are similar to those of basalts (∼700–790 Ma) and interpreted to represent enrichment ages associated with ancient Neoproterozoic subduction. The origin of the volcanic rocks of the Dalhousie Group is probably related to post-Salinic relaxation, extension, and breakoff of the Acadian Seaway slab and marks the transition to the Acadian orogenic cycle.

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Cite This Study

Dostal et al. (2026) studied this question.

synapsesocial.com/papers/69e47250010ef96374d8e69ehttps://doi.org/10.1144/gslspecpub2025-88
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