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American Mineralogist, Volume 98, pages 2007–2029, 2013 Clay mineral evolution Robert M. Hazen1,2,*, Dimitri A. Sverjensky1,3, David Azzolini3, David L. Bish4, Stephen C. Elmore2, Linda Hinnov3 and Ralph E. Milliken5
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Document Date: 2014-12-01 10:15:35


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City

Washington / D.C. / Hazen et / Bloomington / Guggenheim / Providence / Fairfax / London / Baltimore / /

Company

Ralph E. Milliken5 1 Geophysical Laboratory / Palygorskite / Laterite / Smectites / Ames / Illite / All / Alpharma Inc. / /

Country

United States / /

Currency

USD / VND / /

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Event

FDA Phase / Environmental Issue / /

Facility

Brown University / George Mason University / Indiana University / University Drive / Johns Hopkins University / /

IndustryTerm

metal / mineral systems / hydrothermal systems / dozen chemical elements / vermiculite / web databases / sepiolite / alteration products / variable chemical substitutions / kaolinite / technological systems / deep circumferential hydrothermal systems / chlorite / chemical and physical factors / /

NaturalFeature

Hadean Ocean / /

Organization

Department of Earth and Planetary Sciences / Carnegie Institution of Washington / Brown University / George Mason University / Johns Hopkins University / International Mineralogical Association / Indiana University / Department of Geological Sciences / /

Person

Volume / CLAY MINERAL / /

Position

Archer / Singer / Mineralogist / Major / General / /

Product

Mg 3Si / Na0 / /

ProvinceOrState

Virginia / Rhode Island / Maryland / Indiana / Georgia / /

Region

southern U.S. / /

Technology

crystallization / /

URL

http /

SocialTag