Observational analysis reveals high fluorine and manganese levels in pegmatite minerals, indicating unique conditions for elbaite formation.
The Emmons pegmatite on Uncle Tom Mountain, Greenwood, Oxford Co., Maine, is the most mineral species-rich pegmatite in Maine, with 227 confirmed species. Even though the Greenwood area is not a prolific elbaite-producing region, the Emmons pegmatite does produce colorful elbaite/fluor-elbaite. Two distinct zones produce elbaite and are different from those in other pegmatites in the Oxford Pegmatite Field: (1) A small amount of colored elbaite occurs in miarolitic cavities in the core and core margin zones. (2) A second zone of miarolitic cavities occurs in the lower footwall intermediate zone immediately above the upper schorl/garnet layer, a zone where cavities are generally not expected. There are two schorl-garnet layers and between them is an unusually high abundance of löllingite in lath-shaped crystals up to 10 cm in length. Arsenopyrite occurs in some areas and columbite-(Fe) is common. The elbaite is F-rich, and fluor-elbaite is abundant. Fluor-elbaite and elbaite from the Emmons pegmatite contain the highest Mn concentration of any elbaite in the Oxford Pegmatite Field, with up to 6.9 wt.% MnO. The pegmatite is Mn-rich and contains lithiophilite and many secondary Mn phosphates. Muscovite makes up approximately 8% by volume of the pegmatite and is the main site where Li and F occur. In addition, montebrasite, lithiophilite, cookeite, polylithionite–trilithionite, and spodumene are present and add to the Li amount. Fluorine is present in muscovite as well as polylithionite–trilithionite.
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Falster et al. (2025) studied this question.
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