Strewn field, mineralogy, and petrology of Al Haggounia 001: A unique enstatite chondrite

Author:

Leili M. H.1ORCID,Chennaoui Aoudjehane H.1ORCID,Devouard B.2ORCID,Rochette P.2ORCID,Gattacceca J.2ORCID,Folco L.3ORCID,Gemelli M.3ORCID,Baziotis I.4ORCID

Affiliation:

1. GAIA Laboratory, Faculty of Sciences Ain Chock Hassan II University of Casablanca Casablanca Morocco

2. France Aix Marseille University, CNRS, Coll France, IRD, INRAE, CEREGE Aix‐en‐Provence France

3. Dipartimento di Scienze della Terra, Università di Pisa Pisa Italy

4. Laboratory of Mineralogy and Geology, Department of Natural Resources Management and Agricultural Engineering Agricultural University of Athens Athens Greece

Abstract

AbstractIn this work, we investigate macroscopic characteristics, magnetic susceptibility, mineralogy, and mineral composition of Al Haggounia 001. The samples were collected during eight field missions in the period between 2015 and 2019. In the strewn field of about 65 km in length, the specimens are found either on the surface or shallowly buried in loose sediments, which rules out the previous suggestions that this meteorite is a fossil meteorite. Macroscopically, the samples exhibit three major lithologies with various colors, porosities, and distributions of oxidized veins. The data obtained using transmitted and reflected light microscopy, scanning electron microscopy, and electron microprobe analysis confirm the macroscopic observations and show a heterogenous distribution of silicates and metal sulfides. Al Haggounia 001 is composed of enstatite, plagioclase, kamacite, taenite, schreibersite, daubreelite, troilite, graphite, sinoite, and silica polymorphs. We identified a new type of chondrules that are flattened and composed of rods of albite and enstatite, as well as elongated nodules of metal and sulfides, in addition to compression fractures in the form of subparallel veinlets. These features presumably reflect the deformation caused by shock. The magnetic susceptibility of Al Haggounia 001 (4.39 ± 0.20) is much lower than that of usual EH (5.48 ± 0.16) and EL (5.46 ± 0.04) chondrites but is in the range of E finds (5.05 ± 0.43). The thermomagnetic and hysteresis measurements are controlled by type, size, distribution of metal‐sulfide nodules, arrangement of oxyhydroxide veins, and weathering. Al Haggounia 001 is an anomalous meteorite with a polymict nature. It records multiple events revealing its unique origin which expends the groups of enstatite chondrites and provides insights into the complex formation and evolution history of their parent body.

Publisher

Wiley

Subject

Space and Planetary Science,Geophysics

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