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Bementite from
Mukaiyama mine, Kyoto Prefecture, Japan


Locality type:Mine
Classification
Species:Bementite
Formula:Mn7Si6O15(OH)8
Confirmation
Validity:Believed Valid
Data
Mineral Data:Click here to view Bementite data
Locality Data:Click here to view Mukaiyama mine, Kyoto Prefecture, Japan
Data Identifiers
Mindat Occurrence Record ID:483004
Long-form Identifier:1:3:483004:7
GUID (UUID V4):41383cb1-c6ff-4937-8776-78050b915a8f
References
Reference Search (possible matching items)
Journal (article/letter/editorial)
Science,Universityof Tokyo,Bunkyo-ku,Hongo,Tokyo113, Japan Abstract The assemblage and mode of occurrenceof...suggestthat the fco• for vein-type mineralizationin Japan is controlled by alteration mineralscommonlyoccurringin...hostrocksfor Neogenevein-typemineralizationdistrictsin Japan,it was found that many Cu-Pb-Zn-richvein-type depositsoccurin...similaritiesbetween epithermal type deposits in Japan have been carried out in vein-type depositsand active...(24) (25) (26) (27) (28) (29) (30) (31) (32) (33) Mine name Motokura Hokurhu Sanru Numanoue Kohnomai Kitami
Journal (issue)
Minerals from Metamorphosed Manganese Deposits in Japan and Their Relationship to the Franklin-Sterling...On July 31, 2008, Fred Lubbers was digging on the Mine Run Dump at Sterling Hill when he noticed an unusually...Willemite is rare at Sterling Hill, rare on the Mine Run Dump, and unique in a dump-collected specimen...Fred Lubbers on July 31, 2008 at Sterling Hill’s Mine Run Dump Description: radiating white willemite...Hill Mining Museum. Collecting permitted on the Mine Run Dump and in the Fill quarry, Passaic pit, and
Book (volume)
deposits (of the Taishu Metallogenetic Province, Japan), the richer their contents of Fe and some minor...with ~9% Mn coexisting with alabandite of the Sätra mine, see p. 69; and with 5.6% Mn coexisting with niningerite...as components of the Pb-Zn ores of the Huanzala mine, 250 km north of Lima, Peru, where Fe-Mn sphalerite...distribution for both sphalerite types within the mine [36]. Mn-containing sphalerite (with 19.8 to 1.8...sections) from the Nebazawa mine epithermal Au-Ag ores, Gumma Prefecture, Japan, the MnS (12.6 to 0.1 mol
Report (issue)
is continental or transitional Skarn Cu (2.6) Mine Vlejs Los Guayabas (Tollma) Cranates (Hulla) Also...Cty, CA Santa Helena, Antioquia, Colombia Co to Mine, Luzan, P.I. References Wells, F. G. et al 1946...Geochemical Signature: Examples Daiquiri, Cuba Shinyana, Japan Fe, Cu, Co, Au, possibly Sn References Lindgren...Bailadores (Venezuela) Kldd Creek (Canada) Hanaoka (Japan) Macuchi, Equador References 3.2 (continued) Carlson...Rhodochrosite, Mn-calcite, braunite, hausmannite, bementite, neotocite, alleghenyite, spessartine, rhodonite
Report (volume)
and Yukio Togashi of the Geological Survey of Japan. Among the many geologists from private industry...based on considerations that extend far beyond the mine itself, in some instances relating to the overall...subject, as in a scale model of the workings of a mine, to a unifying concept that explains or describes...government believed might someday be economic ta mine. Stratiform deposits of large areal extent, such...EXAMPLES High Plateau, Del Norte Cty, USCA Coto Mine, Luzon, PLPN (Wells and others, 1946) (LeBlanc
Report (issue)
Geosciences and Mineral Resources, Geological Survey of Japan/AIST, and Jilin University Metallogenesis and Tectonics...subduction zone terranes; (5) the active Izu-Bonin, Japan, and Kuril-Kamchatka continental margin volcanic...Transbaikalia, Northern China, Mongolia, South Korea, and Japan) . ...............................................metallogenic-tectonic model, golia, northern China, South Korea, Japan, and adjacent greatly benefits other mineral resource...and Mineral Resources; the Geological Survey of Japan/ 4 AIST; the University of Texas, Arlington; and
Report (issue)
Geosciences and Mineral Resources, Geological Survey of Japan/AIST, and Jilin University Metallogenesis and Tectonics...subduction zone terranes; (5) the active Izu-Bonin, Japan, and Kuril-Kamchatka continental margin volcanic...Transbaikalia, Northern China, Mongolia, South Korea, and Japan) . ...............................................metallogenic-tectonic model, golia, northern China, South Korea, Japan, and adjacent greatly benefits other mineral resource...and Mineral Resources; the Geological Survey of Japan/ 4 AIST; the University of Texas, Arlington; and
Report (issue)
Geosciences and Mineral Resources, Geological Survey of Japan/AIST, and Jilin University Metallogenesis and Tectonics...subduction zone terranes; (5) the active Izu-Bonin, Japan, and Kuril-Kamchatka continental margin volcanic...Transbaikalia, Northern China, Mongolia, South Korea, and Japan) . ...............................................metallogenic-tectonic model, golia, northern China, South Korea, Japan, and adjacent greatly benefits other mineral resource...and Mineral Resources; the Geological Survey of Japan/ 4 AIST; the University of Texas, Arlington; and
Report (issue)
Geosciences and Mineral Resources, Geological Survey of Japan/AIST, and Jilin University Metallogenesis and Tectonics...subduction zone terranes; (5) the active Izu-Bonin, Japan, and Kuril-Kamchatka continental margin volcanic...Transbaikalia, Northern China, Mongolia, South Korea, and Japan) . ...............................................metallogenic-tectonic model, golia, northern China, South Korea, Japan, and adjacent greatly benefits other mineral resource...and Mineral Resources; the Geological Survey of Japan/ 4 AIST; the University of Texas, Arlington; and
Report (issue)
Geosciences and Mineral Resources, Geological Survey of Japan/AIST, and Jilin University Metallogenesis and Tectonics...subduction zone terranes; (5) the active Izu-Bonin, Japan, and Kuril-Kamchatka continental margin volcanic...Transbaikalia, Northern China, Mongolia, South Korea, and Japan) . ...............................................metallogenic-tectonic model, golia, northern China, South Korea, Japan, and adjacent greatly benefits other mineral resource...and Mineral Resources; the Geological Survey of Japan/ 4 AIST; the University of Texas, Arlington; and
Report (issue)
Geosciences and Mineral Resources, Geological Survey of Japan/AIST, and Jilin University Metallogenesis and Tectonics...subduction zone terranes; (5) the active Izu-Bonin, Japan, and Kuril-Kamchatka continental margin volcanic...Transbaikalia, Northern China, Mongolia, South Korea, and Japan) . ...............................................metallogenic-tectonic model, golia, northern China, South Korea, Japan, and adjacent greatly benefits other mineral resource...and Mineral Resources; the Geological Survey of Japan/ 4 AIST; the University of Texas, Arlington; and
Report (issue)
Geosciences and Mineral Resources, Geological Survey of Japan/AIST, and Jilin University Metallogenesis and Tectonics...subduction zone terranes; (5) the active Izu-Bonin, Japan, and Kuril-Kamchatka continental margin volcanic...Transbaikalia, Northern China, Mongolia, South Korea, and Japan) . ...............................................metallogenic-tectonic model, golia, northern China, South Korea, Japan, and adjacent greatly benefits other mineral resource...and Mineral Resources; the Geological Survey of Japan/ 4 AIST; the University of Texas, Arlington; and
Report (issue)
Geosciences and Mineral Resources, Geological Survey of Japan/AIST, and Jilin University Metallogenesis and Tectonics...subduction zone terranes; (5) the active Izu-Bonin, Japan, and Kuril-Kamchatka continental margin volcanic...Transbaikalia, Northern China, Mongolia, South Korea, and Japan) . ...............................................metallogenic-tectonic model, golia, northern China, South Korea, Japan, and adjacent greatly benefits other mineral resource...and Mineral Resources; the Geological Survey of Japan/ 4 AIST; the University of Texas, Arlington; and
Report (issue)
Geosciences and Mineral Resources, Geological Survey of Japan/AIST, and Jilin University Metallogenesis and Tectonics...subduction zone terranes; (5) the active Izu-Bonin, Japan, and Kuril-Kamchatka continental margin volcanic...Transbaikalia, Northern China, Mongolia, South Korea, and Japan) . ...............................................metallogenic-tectonic model, golia, northern China, South Korea, Japan, and adjacent greatly benefits other mineral resource...and Mineral Resources; the Geological Survey of Japan/ 4 AIST; the University of Texas, Arlington; and
Report (issue)
Geosciences and Mineral Resources, Geological Survey of Japan/AIST, and Jilin University Metallogenesis and Tectonics...subduction zone terranes; (5) the active Izu-Bonin, Japan, and Kuril-Kamchatka continental margin volcanic...Transbaikalia, Northern China, Mongolia, South Korea, and Japan) . ...............................................metallogenic-tectonic model, golia, northern China, South Korea, Japan, and adjacent greatly benefits other mineral resource...and Mineral Resources; the Geological Survey of Japan/ 4 AIST; the University of Texas, Arlington; and
Report (issue)
Geosciences and Mineral Resources, Geological Survey of Japan/AIST, and Jilin University Metallogenesis and Tectonics...subduction zone terranes; (5) the active Izu-Bonin, Japan, and Kuril-Kamchatka continental margin volcanic...Transbaikalia, Northern China, Mongolia, South Korea, and Japan) . ...............................................metallogenic-tectonic model, golia, northern China, South Korea, Japan, and adjacent greatly benefits other mineral resource...and Mineral Resources; the Geological Survey of Japan/ 4 AIST; the University of Texas, Arlington; and
Report (issue)
Geosciences and Mineral Resources, Geological Survey of Japan/AIST, and Jilin University Metallogenesis and Tectonics...subduction zone terranes; (5) the active Izu-Bonin, Japan, and Kuril-Kamchatka continental margin volcanic...Transbaikalia, Northern China, Mongolia, South Korea, and Japan) . ...............................................metallogenic-tectonic model, golia, northern China, South Korea, Japan, and adjacent greatly benefits other mineral resource...and Mineral Resources; the Geological Survey of Japan/ 4 AIST; the University of Texas, Arlington; and
 
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