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HANDBOOK ON THE PHYSICS AND CHEMISTRY OF RARE EARTHS

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HANDBOOK ON THE PHYSICS AND CHEMISTRY OF RARE EARTHS ( handbook-onphysics-and-chemistry-rare-earths )

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Nepheline syenite South Gobi, Mongolia Mushgai Khudag Fluoroapatite Bastnasite, 13.33– perrierite, 33.9 parisite, synchysite, 1.54– 18.55 19,154– 923– 16.4– 375– 122,929 3011 82.4 689 8.1– 460 23– 420 Elsner et al. (2011) and Sanematsu (unpublished data) IOA mineralizationc associated with felsic magma Kiruna area of northern Sweden Kiirunavaara, Rektron, Henry, Malmberget, Grängesberg Fluoroapatite Monazite, – allanite 1760– 469– 1.4– 46.7– 5627 2530d 4.2 278 – – Frietsch and Perdahl (1995) and Harlov et al. (2002) IOA mineralization associated with felsic magma Central Andean Cordillera in the Antogagasta province of northern Chile EL Laco Fluoroapatite – 8806– 431– 20.1– 105 9033d 438e 20.9 – – Rhodes et al. (1999) IOA mineralization associated with anorogenic rhyolites 95 km southwest of st. Louis, the Pea Ridge Deposit is part of the southeast Missouri Iron Metallogenic Province Pea Ridge Fluoroapatite Monazite, 29.06f xenotime 15.73 23,442 1261 18.5 354 129 20.3 Samson and Wood (2005), Whitten and Yancey (1990), and Watanabe (unpublished data) IOA mineralization associated with gabbro intrution Approximately 50 km northeast of Bathurst, New Brunswick in Canada Benjamin River Fluoroapatite Allanite 8.48– 15.88 12.37– 17.44 2052– 916– 2.5– 96.7– 6734 2442 3.1 275 32– 76.2 4.66– 9.45 Hoshino et al. (submitted, unpublished data) monazite Continued

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