Morphology, Internal Architecture, Facies Model, and Emplacement Mechanisms of Lava Flows from the Central Atlantic Magmatic Province (CAMP) of the Hartford and Deerfield Basins (USA)

Author:

Moumou Abdelhak1,Youbi Nasrrddine234ORCID,El Hachimi Hind5,El Kadiri Khalil1,Madeira José3ORCID,Mata João3ORCID,Amri Isma1ORCID,Ait Baha Abdelkarim1ORCID

Affiliation:

1. Environmental Geology and Natural Resources Lab, FS, Abdelmalek Essaadi University, Tetouan 2117, Morocco

2. Department of Geology, Faculty of Sciences-Semlalia, Cadi Ayyad University, P.O. Box 239, Marrakech 40000, Morocco

3. Instituto Dom Luiz, Faculdade de Ciências, Universidade de Lisboa, 1749-016 Lisboa, Portugal

4. Faculty of Geology and Geography, Tomsk State University, Tomsk 634050, Russia

5. Department of Geology, Faculty of Sciences, Chouaib Doukkali University, El Jadida 24000, Morocco

Abstract

The morphology, internal architecture, and emplacement mechanisms of the Central Atlantic Magmatic Province (CAMP) lava flows of the Hartford and Deerfield basins (USA) are presented. The Talcott, Holyoke, and Hampden formations within the Hartford basin constitute distinct basaltic units, each exhibiting chemical, mineralogical, and structural differences corresponding to flow fields. Each flow field was the result of several sustained eruptions that produced both inflated pahoehoe flows and subaquatic extrusions: 1–5 eruptions in the Talcott formation and 1–2 in Holyoke and Hampden basalts, where simple flows are dominant. The Deerfield basin displays the Deerfield basalt unit, characterized by pillow lavas and sheet lobes, aligning chemically and mineralogically with the Holyoke basalt unit. Overall, the studied flow fields are composed of thick, simple pahoehoe flows that display the entire range of pahoehoe morphology, including inflated lobes. The three-partite structure of sheet lobes, vertical distribution of vesicles, and segregation structures are typical. The characteristics of the volcanic pile suggest slow emplacement during sustained eruptive episodes and are compatible with a continental basaltic succession facies model. The studied CAMP basalts of the eastern United States are correlated with the well-exposed examples on both sides of the Atlantic Ocean (Canada, Portugal, and Morocco).

Publisher

MDPI AG

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