Coronado Mine, Coronado vein, Copper Plate Gulch, Greenlee County, Arizona, USAi
| Regional Level Types | |
|---|---|
| Coronado Mine | Mine |
| Coronado vein | Vein |
| Copper Plate Gulch | Gulch |
| Greenlee County | County |
| Arizona | State |
| USA | Country |
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Latitude & Longitude (WGS84):
33° 6' 20'' North , 109° 24' 5'' West
Latitude & Longitude (decimal):
Type:
Köppen climate type:
Other/historical names associated with this locality:
Coronado Mining Co. property; Arizona Copper Co. group [in part]
A former surface and underground Cu-Zn-Pb-Mn mine located on 3 patented claims adjacent to the Dover Copper group, in the E½ sec. 6, T4S, R29E, on the West end of the Coronado vein, 2.0 miles west of Metcalf, on private land. Discovered in 1874 by Julius Freudenthal (Horseshoe Mine) and Morris Leszynsky (Coronado Mine). Owners included the Coronado Mining Co.; and, the Arizona Copper Co., Ltd. Produced 1913-1918. Owned and operated by the Phelps Dodge Corp., Morenci Branch. Location coordinates describe the main workings of the Coronado Mine; the Horseshoe shaft, and extension of the mine is located about 3500 feet to the west.
Mineralization is a tabular ore body 3218.6 meters long, 60.96 meters wide, with a depth to bottom of 182.88 meters, striking E-W and dipping 75S. Associated rock units are the Precambrian granite-granodiorite complex and the Coronado Quartzite. Ore control was an E-W-trending fault fissure between granite on the north and quartzite on the south. Ore concentration was surface oxidation and secondary enrichment. Secondary copper minerals (malachite and chrysocolla) occur as replacement seams in altered material along the fault. Alteration is sericitic, accompanied by quartz cementation occurring within friction breccia, diabase and crushed material of the fault. Libethenite occurs as small crystals in cavities and seams in a quartzitic gangue.
Croppings contain copper carbonates that are repalced at slight depths by chalcocite, which is in turn replaced at greater depths by pyrite and chalcopyrite. The diabase dike has a maximum width of 70 feet. Vein formation is believed to be connected with the intrusion of diabase dikes which are slightly older than the porphyry dikes throughout the district. The value of the ore depreciates rapidly with depth. The oxidized zone reaches below the 400 foot level while depth of chalcocite ore ranges from 300 to 600 feet.
Area structures include diabase and porphyry dikes connected by a fissure vein system, of which the Coronado vein is the most important. The fissure is followed in places by a diabase dike that shows evidence of crushing and movement on the vein. The Horseshoe lode consists of altered granite and contact breccia.
Tectonic component is the Coronado Granite Massif surrounded by peripheral faults. The Coronado Fault Fissure has a vertical throw of about 1200 feet.
Workings total 2865.12 meters in length and 335.28 meters in depth. Developments included the 3200 foot long Coronado incline connected to a one mile long tramway ending at the Coronado Mine (incline starts at Chase Creek). One open cut located one mile to the W of the main shafts and in Horseshoe Gulch (connected to mines by an aerial tramway); several winzes and stopes to depths of 300 feet; 200 foot deep Horseshoe shaft located to the W of the main workings; 2 other shafts, one with a depth of 1100 feet; and a 900 foot long adit. Production data prior to 1913 and after 1918 might be included in the Arizona Copper Co. Ltd. production statistics (see Longfellow Metcalf). Additional production data might be included under the Longfellow-Metcalf Mine. The Longfellow-Metcalf also includes the other Arizona Copper Co. mine data of the Detroit, Longfellow, Metcalf, Yavapai, Humboldt, Mammoth, and Joy Mines. 1905 assay values averaged 11.17 and 21.95% Cu; 67 and 48.9% Si; and, 6.91 and 9.41% Fe.
Select Mineral List Type
Standard Detailed Gallery Strunz Chemical ElementsMineral List
Mineral list contains entries from the region specified including sub-localities8 valid minerals. 1 (TL) - type locality of valid minerals.
Detailed Mineral List:
| ⓘ Chalcocite Formula: Cu2S |
| ⓘ Chrysocolla Formula: Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| ⓘ Coronadite (TL) Formula: Pb(Mn4+6Mn3+2)O16 Localities: |
| ⓘ Libethenite Formula: Cu2(PO4)(OH) Description: occurs as small crystals in cavities and seams in a quartzitic gangue. References: |
| ⓘ Malachite Formula: Cu2(CO3)(OH)2 References: |
| ⓘ Muscovite Formula: KAl2(AlSi3O10)(OH)2 |
| ⓘ Muscovite var. Sericite Formula: KAl2(AlSi3O10)(OH)2 |
| ⓘ Pyrite Formula: FeS2 |
| ⓘ Quartz Formula: SiO2 References: |
Gallery:
List of minerals arranged by Strunz 10th Edition classification
| Group 2 - Sulphides and Sulfosalts | |||
|---|---|---|---|
| ⓘ | Chalcocite | 2.BA.05 | Cu2S |
| ⓘ | Pyrite | 2.EB.05a | FeS2 |
| Group 4 - Oxides and Hydroxides | |||
| ⓘ | Quartz | 4.DA.05 | SiO2 |
| ⓘ | Coronadite (TL) | 4.DK.05a | Pb(Mn4+6Mn3+2)O16 |
| Group 5 - Nitrates and Carbonates | |||
| ⓘ | Malachite | 5.BA.10 | Cu2(CO3)(OH)2 |
| Group 8 - Phosphates, Arsenates and Vanadates | |||
| ⓘ | Libethenite | 8.BB.30 | Cu2(PO4)(OH) |
| Group 9 - Silicates | |||
| ⓘ | Muscovite | 9.EC.15 | KAl2(AlSi3O10)(OH)2 |
| ⓘ | var. Sericite | 9.EC.15 | KAl2(AlSi3O10)(OH)2 |
| ⓘ | Chrysocolla | 9.ED.20 | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
List of minerals for each chemical element
| H | Hydrogen | |
|---|---|---|
| H | ⓘ Chrysocolla | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| H | ⓘ Libethenite | Cu2(PO4)(OH) |
| H | ⓘ Malachite | Cu2(CO3)(OH)2 |
| H | ⓘ Muscovite | KAl2(AlSi3O10)(OH)2 |
| H | ⓘ Muscovite var. Sericite | KAl2(AlSi3O10)(OH)2 |
| C | Carbon | |
| C | ⓘ Malachite | Cu2(CO3)(OH)2 |
| O | Oxygen | |
| O | ⓘ Chrysocolla | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| O | ⓘ Coronadite | Pb(Mn64+Mn23+)O16 |
| O | ⓘ Libethenite | Cu2(PO4)(OH) |
| O | ⓘ Malachite | Cu2(CO3)(OH)2 |
| O | ⓘ Muscovite | KAl2(AlSi3O10)(OH)2 |
| O | ⓘ Quartz | SiO2 |
| O | ⓘ Muscovite var. Sericite | KAl2(AlSi3O10)(OH)2 |
| Al | Aluminium | |
| Al | ⓘ Chrysocolla | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| Al | ⓘ Muscovite | KAl2(AlSi3O10)(OH)2 |
| Al | ⓘ Muscovite var. Sericite | KAl2(AlSi3O10)(OH)2 |
| Si | Silicon | |
| Si | ⓘ Chrysocolla | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| Si | ⓘ Muscovite | KAl2(AlSi3O10)(OH)2 |
| Si | ⓘ Quartz | SiO2 |
| Si | ⓘ Muscovite var. Sericite | KAl2(AlSi3O10)(OH)2 |
| P | Phosphorus | |
| P | ⓘ Libethenite | Cu2(PO4)(OH) |
| S | Sulfur | |
| S | ⓘ Chalcocite | Cu2S |
| S | ⓘ Pyrite | FeS2 |
| K | Potassium | |
| K | ⓘ Muscovite | KAl2(AlSi3O10)(OH)2 |
| K | ⓘ Muscovite var. Sericite | KAl2(AlSi3O10)(OH)2 |
| Mn | Manganese | |
| Mn | ⓘ Coronadite | Pb(Mn64+Mn23+)O16 |
| Fe | Iron | |
| Fe | ⓘ Pyrite | FeS2 |
| Cu | Copper | |
| Cu | ⓘ Chalcocite | Cu2S |
| Cu | ⓘ Chrysocolla | Cu2-xAlx(H2-xSi2O5)(OH)4 · nH2O, x < 1 |
| Cu | ⓘ Libethenite | Cu2(PO4)(OH) |
| Cu | ⓘ Malachite | Cu2(CO3)(OH)2 |
| Pb | Lead | |
| Pb | ⓘ Coronadite | Pb(Mn64+Mn23+)O16 |
Other Databases
| Link to USGS MRDS: | 10109876 |
|---|
Localities in this Region
- Arizona
- Greenlee County
- Copper Plate Gulch
- Coronado vein
- Coronado Mine
- Coronado vein
- Copper Plate Gulch
- Greenlee County
Other Regions, Features and Areas containing this locality
North AmericaContinent
- Sonoran DesertDesert
North America PlateTectonic Plate
- Basin and Range BasinsBasin
- Mazatzal DomainDomain
- Southern Basin and RangeWide Rift
USA
- Arizona
- Greenlee County
- Copper Mountain Mining District (Clifton-Morenci Mining District)Mining District
- Shannon MountainsMountain Range
- Greenlee County
- Gila MountainsMountain Range
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References
(1911) A Manual of the Copper Industry of the World. The Copper Handbook Vol. 10. Horace J. Stevens pp.356-357 - Arizona Copper Co. Ltd
Weed, Walter Harvey (1918) International Edition - A Manual of the Mining Industry of the World. The Mines Handbook - an Enlargement of The Copper Handbook Vol. 13. W. H. Weed pp.470-471 - Arizona Copper Co. Ltd.
Fairbanks, E. E (1923) Notes and news--Mineragraphic notes on manganese minerals. American Mineralogist, 8 (11). 209-210
Frondel, Clifford, Heinrich, E. Wm. (1942) New data on hetaerolite, hydrohetaerolite, coronadite and hollandite. American Mineralogist, 27 (1) 48-56