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Dominanted by {100} and modified by {111}.",7,7.5,"3.17","3.27","3.44","Translucent","Green, red, purple, brown, black",[55,56,57,58,59],"green","red","purple","brown","black","Biaxial","-","1.731","1.755",1.731,1.755,"r > v","none","Marine evaporite deposits.","Salt diapirs.","n.d.","Boracite Group. Boracite-Ericaite Series. The Fe2+ analogue of Boracite and Chambersite. The orthorhombic dimorph of Congolite.","From the flower known in English as heather, for its typical reddish color.","2025-08-11 12:14:20",[],[76,84,92,100],{"id":77,"name":78,"entrytype":9,"csystem":38,"ima_formula":79,"mindat_formula":80,"hmin":47,"hmax":48,"dmeas":81,"dcalc":82,"primary_image_id":83},721,"Boracite","Mg\u003Csub>3\u003C\u002Fsub>B\u003Csub>7\u003C\u002Fsub>O\u003Csub>13\u003C\u002Fsub>Cl","Mg\u003Csub>3\u003C\u002Fsub>(B\u003Csub>7\u003C\u002Fsub>O\u003Csub>13\u003C\u002Fsub>)Cl","2.91","2.97",3624,{"id":85,"name":86,"entrytype":9,"csystem":38,"ima_formula":87,"mindat_formula":88,"hmin":47,"hmax":47,"dmeas":89,"dcalc":90,"primary_image_id":91},966,"Chambersite","Mn\u003Csub>3\u003C\u002Fsub>B\u003Csub>7\u003C\u002Fsub>O\u003Csub>13\u003C\u002Fsub>Cl","Mn\u003Csup>2+\u003C\u002Fsup>\u003Csub>3\u003C\u002Fsub>(B\u003Csub>7\u003C\u002Fsub>O\u003Csub>13\u003C\u002Fsub>)Cl","3.49","3.48",5258,{"id":93,"name":94,"entrytype":9,"csystem":95,"ima_formula":16,"mindat_formula":16,"hmin":96,"hmax":48,"dmeas":97,"dcalc":98,"primary_image_id":99},1118,"Congolite","Trigonal",6.5,"3.58","3.52",6143,{"id":101,"name":102,"entrytype":9,"csystem":95,"ima_formula":79,"mindat_formula":79,"hmin":39,"hmax":103,"dmeas":104,"dcalc":105,"primary_image_id":11},4010,"Trembathite",8,"2.84","3.225",[],[108],{"id":93,"name":94,"entrytype":9,"csystem":95,"ima_formula":16,"mindat_formula":16,"hmin":96,"hmax":48,"dmeas":97,"dcalc":98,"primary_image_id":99},[110],{"id":111,"txt":112,"latitude":113,"longitude":114,"country":115},15641,"Riedel Potash Works, Hänigsen, Uetze, Hanover Region, Lower Saxony, Germany",52.491482,10.109899,"Germany",[117,120,124,127,131,136,141,145],{"id":118,"year":29,"html":119,"doi":11},16108556,"Werner, H. (1950) Das Boracit-Vorkommen im Salzstock von Wathlingen-Hänigsen. Aufschluss, 1, 24-26.",{"id":121,"year":122,"html":123,"doi":11},16108557,1955,"Heide, F. (1955) Über bemerkenswerte Borazitvorkommen in den Kalilagern des Südharzbezirkes. Chemie der Erde, 17, 211-216.",{"id":125,"year":122,"html":126,"doi":11},16108558,"Kühn, R., Schaacke, I. (1955) Vorkommen und Analyse der Boracit- und Ericaitkristalle aus dem Salzhorst von Wathlingen-Hänigsen. Kali und Steinsalz, 1, 33-42.",{"id":128,"year":129,"html":130,"doi":11},522786,1956,"Fleischer, M. (1956) New mineral names. \u003Ci>American Mineralogist\u003C\u002Fi>,  41 (3-4). 370-372 \u003Ca target='_blank' href='http:\u002F\u002Fwww.minsocam.org\u002Fammin\u002FAM41\u002FAM41_370.pdf?reftype=.pdf' class='refpdflink'>\u003C\u002Fa>",{"id":132,"year":133,"html":134,"doi":135},8889524,1974,"Nelmes, R. J. (1974) Structural studies of boracites. A review of the properties of boracites. \u003Ci>Journal of Physics C: Solid State Physics\u003C\u002Fi>,  7 (21) 3840-3854 \u003Ca target='_blank' href='https:\u002F\u002Fdoi.org\u002F10.1088\u002F0022-3719\u002F7\u002F21\u002F008'>doi:10.1088\u002F0022-3719\u002F7\u002F21\u002F008\u003C\u002Fa>","10.1088\u002F0022-3719\u002F7\u002F21\u002F008",{"id":137,"year":138,"html":139,"doi":140},13253562,1995,"Burns, Peter C. (1995) X-ray powder diffraction data for the identification of boracite-group minerals. \u003Ci>Powder Diffraction\u003C\u002Fi>,  10 (4). 250-260 \u003Ca target='_blank' href='https:\u002F\u002Fdoi.org\u002F10.1017\u002Fs0885715600014925'>doi:10.1017\u002Fs0885715600014925\u003C\u002Fa>","10.1017\u002Fs0885715600014925",{"id":142,"year":143,"html":144,"doi":11},15418311,1996,"Grew, Edward S.; Anovitz, Lawrence M. - \u003Ci>Eds.\u003C\u002Fi> (1996) Boron - Mineralogy, Petrology and Geochemistry. \u003Ci>Reviews in Mineralogy\u003C\u002Fi> Vol. 33. Mineralogical Society of America p.862",{"id":146,"year":147,"html":148,"doi":11},16964135,2005,"(2005) Ericaite. \u003Ci>Handbook of Mineralogy\u003C\u002Fi>. Mineralogical Society of America \u003Ca target='_blank' href='https:\u002F\u002Fwww.handbookofmineralogy.org\u002Fpdfs\u002Fericaite.pdf' class='refpdflink'>\u003C\u002Fa>",[150],{"id":151,"source_url":152,"license_code":153,"credit_html":154,"title":155,"description":156,"author":157,"original_width":158,"original_height":159},7951,"https:\u002F\u002Fcommons.wikimedia.org\u002F?curid=65747818","CC BY-SA 4.0","David Hospital, via \u003Ca href=\"https:\u002F\u002Fcommons.wikimedia.org\u002F?curid=65747818\" rel=\"noopener\">Wikimedia Commons\u003C\u002Fa>","Ericaite.jpg","Outstanding sharp crystals of the rare borate mineral ericaite from Alto Chapare District, Cochabamba Department, Bolivia.","David Hospital",733,667,[],[162],"Ericaiet",[164,168,172,176],{"lang":165,"names":166},"ca",[167],"ericaïta",{"lang":169,"names":170},"de",[171],"Ericait",{"lang":173,"names":174},"eu",[175],"Ericaita",{"lang":177,"names":178},"it",[7],"Q3731567",{"history":11,"applications":11}]