HANDBOOK ON THE PHYSICS AND CHEMISTRY OF RARE EARTHS

PDF Publication Title:

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

Previous Page View | Next Page View | Return to Search List

Text from PDF Page: 316

280 Handbook on the Physics and Chemistry of Rare Earths Minerals and Geoscience Department Malaysia, 2012. Malaysian Minerals Yearbook 2011. Ministry of Natural Resources and Environment Malaysia, Kuala Lumpur, 114p. Minowa, T., 2008. Rare earth magnets: conservation of energy and the environment. Resour. Geol. 58, 414–422. Mitra, A., Elderfield, H., Greaves, M.J., 1994. Rare earth elements in submarine hydrothermal fluids and plumes from the Mid-Atlantic Ridge. Mar. Geol. 46, 217–235. Miyashiro, A., 1978. Nature of alkali volcanic rock series. Contrib. Mineral. Petrol. 66, 91–104. Miyawaki, R., Nakai, I., 1996. Crystal chemical aspects of rare earthmineras. In: Jones, A.P., Wall, F., Williams, C.T. (Eds.), Rare Earth Minerals. The Mineralogical Society Series, vol. 7. Chapman and Hall, London, pp. 21–40. Miyawaki, R., Yokoyama, K., Matsubara, S., Tsutsumi, Y., Goto, A., 2008. Uedaite-(Ce), a new member of the epidote group with Mn at the A site, from Shodoshima, Kagawa Prefecture, Japan. Eur. J. Mineral. 20, 261–269. Mobbs, P., 2014. The Mineral Industry of Canada. 2012 Minerals Yearbook Canada [Advance Release]. U.S. Geological Survey, 20p. Moldoveanu, G.A., Papangelakis, V.G., 2012. Recovery of rare earth elements adsorbed on clay minerals: I. Desorption mechanism. Hydrometallurgy 117–118, 71–78. Moldoveanu, G.A., Papangelakis, V.G., 2013. Recovery of rare earth elements adsorbed on clay minerals: II. Leaching with ammonium sulfate. Hydrometallurgy 131–132, 158–166. Mongelli, G., 1993. REE and other trace elements in a granitic weathering profile from Serre, southern Italy. Chem. Geol. 103, 17–25. Mordberg, L.E., Stanley, C.J., Germann, K., 2000. Rare earth element anomalies in crandallite group minerals from the Schugorsk bauxite deposit, Timan, Russia. Eur. J. Mineral. 12, 1229–1243. Moriyama, T., Miyawaki, R., Yokoyama, K., Matsubara, S., Hirano, H., Murakami, H., Watanabe, Y., 2011. Wakefieldite-(Nd), a new neodymium vanadate mineral in the Arase stratiform ferromanganese deposit, Kochi Prefecture, Japan. Resour. Geol. 61, 101–110. Morogan, V., 1989. Mass transfer and REE mobility during fenitization at Aln€o, Sweden. Contrib. Mineral. Petrol. 103, 25–34. Morteani, G., Preinfalk, C., 1996. REE distribution and REE carriers in laterites formed on alka- line complexes of Araxa ́ and Catala ̃o (Brazil). In: Jones, A.P., Wall, F., Williams, C.T. (Eds.), Rare Earth Minerals: Chemistry, Origin and Ore Deposits. The Mineralogical Society Series, vol. 7. Chapman & Hall, London, pp. 227–255. Murakami, H., Ishihara, S., 2008. REE mineralization of weathered crust and clay sediment on granitic rocks in the Sanyo Belt, SW Japan and the southern Jiangxi Province, China. Resour. Geol. 58, 373–401. Murakami, H., Sato, H., Ishiyama, D., Ishihara, S., 2011. Comparison of analytical methods for acid-resistant high-grade REE ores: a case study of the Nolans Bore REE-P-U deposit, North- ern Territory, Australia. Shigenchishitsu 61, 129–137 (In Japanese with English abstract). Nabatian, G., Ghaderi, M., Corfu, F., Neubauer, F., Bernroider, M., Prokofiev, V., Honarmand, M., 2014. Geology, alteration, age, and origin of iron oxide-apatite deposits in Upper Eocene quartz monzonite, Zanjan district, NW Iran. Miner. Deposita 49, 217–234. Nagashima, M., Nishido-Hamane, D., Tomita, N., Minakawa, T., Inaba, S., 2013. Vanadoallanite- (La): a new epidote-supergroup mineral from Ise, Mie Prefecture, Japan. Mineral. Mag. 77, 2739–2752. Nakamura, K., Fujinaga, K., Yasukawa, K., Takaya, Y., Ohta, J., Machida, S., Haraguchi, S., Kato, Y. 2015. REY-rich mud: a deep-sea mineral resource for rare earths and yttrium. In:

PDF Image | HANDBOOK ON THE PHYSICS AND CHEMISTRY OF RARE EARTHS

PDF Search Title:

HANDBOOK ON THE PHYSICS AND CHEMISTRY OF RARE EARTHS

Original File Name Searched:

Chemistry-Rare-Earths-49.pdf

DIY PDF Search: Google It | Yahoo | Bing

Sulfur Deposition on Carbon Nanofibers using Supercritical CO2 Sulfur Deposition on Carbon Nanofibers using Supercritical CO2. Gamma sulfur also known as mother of pearl sulfur and nacreous sulfur... More Info

CO2 Organic Rankine Cycle Experimenter Platform The supercritical CO2 phase change system is both a heat pump and organic rankine cycle which can be used for those purposes and as a supercritical extractor for advanced subcritical and supercritical extraction technology. Uses include producing nanoparticles, precious metal CO2 extraction, lithium battery recycling, and other applications... More Info

CONTACT TEL: 608-238-6001 Email: greg@infinityturbine.com (Standard Web Page)