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Crusts, tufted aggregates, globular masses with a radial-fibrous structure.","2.306","2.254","Silky","If fibrous","Transparent","White","Pale rose pink to violet.",[57,58,59],"pink","purple","white",[59],"On {100}","Distinct\u002FGood","Biaxial","+","1.572","1.586","1.64","56","49","62",1.572,1.64,"very weak r>v","Water soluble","Weathering product in a pyrite mine","Natural History Museum, Budapest, Hungary. Type specimen destroyed 1956, topotypes remain.","For Kornel Hlavacsek (1835-1914), Hungarian mining engineer at the pyrite mines, Banska Stavnica, Slovakia.","2025-08-11 12:14:21",[],[],[],[],[84],{"id":85,"txt":86,"latitude":87,"longitude":88,"country":89},18395,"Smolník, Gelnica District, Košice Region, Slovakia",48.7394444,20.7641667,"Slovakia",24,[92,95,98,103,107,110,113,116,120,125,129,132,137,141,145,148,152,156,160],{"id":93,"year":26,"html":94,"doi":11},16114106,"Krenner, J. (1888) Huszonötödik akadémiai ülés. Magyar Tudományos Akadémia Értesítöje: 22: 131-131.",{"id":96,"year":26,"html":97,"doi":11},16114107,"Krenner, J. (1888) Természettudományi mozgalmak a hazaban. Természettudományi Közlöny: 20: 321-321.",{"id":99,"year":100,"html":101,"doi":102},1182898,1922,"Posnjak, E.; Merwin, H. E. (1922) The system, Fe2O3—SO3—H2O. \u003Ci>Journal Of The American Chemical Society\u003C\u002Fi>,  44 (9). 1965-1994 \u003Ca target='_blank' href='https:\u002F\u002Fdoi.org\u002F10.1021\u002Fja01430a016'>doi:10.1021\u002Fja01430a016\u003C\u002Fa>","10.1021\u002Fja01430a016",{"id":104,"year":105,"html":106,"doi":11},519489,1926,"Foshag, W.F. (1926) Redefinition of Species. \u003Ci>American Mineralogist\u003C\u002Fi>,  11 (9). 254 \u003Ca target='_blank' href='http:\u002F\u002Fwww.minsocam.org\u002Fammin\u002FAM11\u002FAM11_254.pdf' class='refpdflink'>\u003C\u002Fa>",{"id":108,"year":105,"html":109,"doi":11},16114109,"Krenner, J. (1926) Kornelite. Math és Termés. Ért.: 42: 1-3.",{"id":111,"year":105,"html":112,"doi":11},16114110,"Loczka, J. (1926) nlineral analyse. Math és Termés. Ért.: 42: 6-17.",{"id":114,"year":105,"html":115,"doi":11},16114111,"Loczka, J. (1926) nlineral analyse. Math és Termés. Ért.: 42: 20-21.",{"id":117,"year":118,"html":119,"doi":11},16114112,1931,"Schaller, W.T. (1931) The Crystallography of Kornelite. Proceedings of the eleventh annual meeting of the Mineralogical Society of America at Toronto, Canada. American Mineralogist: 16: 116-116.",{"id":121,"year":122,"html":123,"doi":124},653692,1934,"Larsen, E.S.; Berman, H. (1934) The microscopic determination of the nonopaque minerals. \u003Ci>Bulletin of the US Geological Survey\u003C\u002Fi> Vol. 848. US Geological Survey p.1-266. \u003Ca target='_blank' href='https:\u002F\u002Fdoi.org\u002F10.3133\u002Fb848'>doi:10.3133\u002Fb848\u003C\u002Fa> \u003Ca target='_blank' href='https:\u002F\u002Fpubs.usgs.gov\u002Fbul\u002F0848\u002Freport.pdf?reftype=.pdf' class='refpdflink'>\u003C\u002Fa>","10.3133\u002Fb848",{"id":126,"year":127,"html":128,"doi":11},520613,1937,"Merwin, H. E., F.Posnjak, (1937) Sulphate incrustations in the Copper Queen Mine, Bisbee, Arizona. \u003Ci>American Mineralogist\u003C\u002Fi>,  22 (5) 567-571 \u003Ca target='_blank' href='http:\u002F\u002Fwww.minsocam.org\u002Fammin\u002FAM22\u002FAM22_567.pdf' class='refpdflink'>\u003C\u002Fa>",{"id":130,"year":127,"html":131,"doi":11},16114115,"Wells, W.C. (1937) Analyses of rocks and minerals from the laboratory of the United States Geological Survey. United States Geological Survey, Bulletin 878: 134 pgs (123-123).",{"id":133,"year":134,"html":135,"doi":136},401402,1964,"Cesbron, Fabien (1964) Contribution à la Minéralogie des sulfates de fer hydratés. \u003Ci>Bulletin de Minéralogie\u003C\u002Fi>,  87 (2) 125-143 \u003Ca target='_blank' href='https:\u002F\u002Fdoi.org\u002F10.3406\u002Fbulmi.1964.5721'>doi:10.3406\u002Fbulmi.1964.5721\u003C\u002Fa>","10.3406\u002Fbulmi.1964.5721",{"id":138,"year":139,"html":140,"doi":11},526075,1973,"Robinson, Paul D., Fang, and Jen H. (1973) Crystal structures and mineral chemistry of hydrated ferric sulphates. III. The crystal structure of kornelite. \u003Ci>American Mineralogist\u003C\u002Fi>,  58 (5-6) 535-539 \u003Ca target='_blank' href='http:\u002F\u002Fwww.minsocam.org\u002Fammin\u002FAM58\u002FAM58_535.pdf' class='refpdflink'>\u003C\u002Fa>",{"id":142,"year":143,"html":144,"doi":11},16114117,2005,"Hasenmueller, E.A., Bish, D.L. (2005) The hydration and dehydration of hydrous ferric iron sulfates. In 36th Annual Lunar and Planetary Science Conference: 1164.",{"id":146,"year":143,"html":147,"doi":11},16965366,"(2005) Kornelite. \u003Ci>Handbook of Mineralogy\u003C\u002Fi>. Mineralogical Society of America \u003Ca target='_blank' href='https:\u002F\u002Fwww.handbookofmineralogy.org\u002Fpdfs\u002Fkornelite.pdf' class='refpdflink'>\u003C\u002Fa>",{"id":149,"year":150,"html":151,"doi":11},16114118,2008,"Wang, A., Ling, Z., Freeman, J.J. (2008) Ferric sulfates on Mars: Surface explorations and laboratory experiments. AGU Fall Meeting Abstracts: 2008: P44A-08.",{"id":153,"year":154,"html":155,"doi":11},16114120,2009,"Ling, Z.C., Wang, A., Li, C. (2009) Comparative spectroscopic study of three ferric sulfates: Kornelite, lausenite and pentahydrate. Lunar and Planetary Science Conference : 1867.",{"id":157,"year":154,"html":158,"doi":159},396175,"Ackermann, S., Lazic, B., Armbruster, T., Doyle, S., Grevel, K.-D., Majzlan, J. (2009) Thermodynamic and crystallographic properties of kornelite [Fe\u003Csub>2\u003C\u002Fsub>(SO\u003Csub>4\u003C\u002Fsub>)\u003Csub>3\u003C\u002Fsub>·~7.75H\u003Csub>2\u003C\u002Fsub>O] and paracoquimbite [Fe\u003Csub>2\u003C\u002Fsub>(SO\u003Csub>4\u003C\u002Fsub>)\u003Csub>3\u003C\u002Fsub>·9H\u003Csub>2\u003C\u002Fsub>O]. \u003Ci>American Mineralogist\u003C\u002Fi>,  94 (11) 1620-1628 \u003Ca target='_blank' href='https:\u002F\u002Fdoi.org\u002F10.2138\u002Fam.2009.3179'>doi:10.2138\u002Fam.2009.3179\u003C\u002Fa> \u003Ca target='_blank' href='https:\u002F\u002Frruff.info\u002Frruff_1.0\u002Fuploads\u002FAM94_1620.pdf' class='refpdflink'>\u003C\u002Fa>","10.2138\u002Fam.2009.3179",{"id":161,"year":162,"html":163,"doi":164},396934,2012,"Xu, W., Parise, J. B. (2012) Temperature and humidity effects on ferric sulfate stability and phase transformation. \u003Ci>American Mineralogist\u003C\u002Fi>,  97 (2) 378-383 \u003Ca target='_blank' href='https:\u002F\u002Fdoi.org\u002F10.2138\u002Fam.2012.3927'>doi:10.2138\u002Fam.2012.3927\u003C\u002Fa>","10.2138\u002Fam.2012.3927",[166],{"id":167,"source_url":168,"license_code":169,"credit_html":170,"title":171,"description":172,"author":173,"original_width":174,"original_height":175},13556,"https:\u002F\u002Fcommons.wikimedia.org\u002F?curid=118201012","CC BY-SA 2.0","Pacific Museum of Earth from Canada, via \u003Ca href=\"https:\u002F\u002Fcommons.wikimedia.org\u002F?curid=118201012\" rel=\"noopener\">Wikimedia Commons\u003C\u002Fa>","Kornelite with Copiapite (48140149168).jpg","\u003Cp>Inyo County\n\u003C\u002Fp>\nCalifornia, USA","Pacific Museum of Earth from Canada",4000,6000,[177,183],{"id":178,"url":179,"label":180,"formula":181,"spacegroup":182,"year":154},7240,"\u002Fcif\u002F7240.cif","Ackermann 2009","Fe2 S3 O19.76 H12","P 1 21\u002Fn 1",{"id":184,"url":185,"label":186,"formula":187,"spacegroup":182,"year":139},7241,"\u002Fcif\u002F7241.cif","Robinson 1973","Fe2 S3 O19.25 H14.5",[189],"Korneliet",[191,195,199,203,207,210],{"lang":192,"names":193},"ca",[194],"kornelita",{"lang":196,"names":197},"de",[198],"Kornelit",{"lang":200,"names":201},"eu",[202],"Kornelita",{"lang":204,"names":205},"fr",[206],"kornélite",{"lang":208,"names":209},"it",[7],{"lang":211,"names":212},"sk",[213],"kornelit","Q3816492",{"history":11,"applications":11}]