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Three-R Mine (3R Mine), Three-R Mine group, Three-R Canyon, Palmetto Mining District, Patagonia Mountains, Santa Cruz County, Arizona, USAi
Regional Level Types
Three-R Mine (3R Mine)Mine
Three-R Mine group- not defined -
Three-R CanyonCanyon
Palmetto Mining DistrictMining District
Patagonia MountainsMountain Range
Santa Cruz CountyCounty
ArizonaState
USACountry

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Latitude & Longitude (WGS84):
31° North , 110° West (est.)
Estimate based on other nearby localities or region boundaries.
Margin of Error:
~1km
Type:
Mindat Locality ID:
42615
Long-form identifier:
mindat:1:2:42615:9
GUID (UUID V4):
0


‡Ref.: Schrader, F.C. (1913), Alunite in Patagonia, Arizona, and Bovard, Nevada, Economic Geology: 8: 752-767.

Probert, F.R. (1914), The Three R mine, Patagonia district, Arizona: Mining and Scientific Press: 109(5): 176.

Schrader, F.C. (1914), Alunite in granite porphyry near Patagonia, Arizona, USGS Bull. 540: 347-350.

Schrader & Hill (1915), Mineral deposits of the Santa Rita and Patagonia Mountains, Arizona, USGS Bull. 582: 282-287.

Schrader, F.C. (1917), The geologic distribution and genesis of the metals in the Santa Rita-Patagonia Mountains, Arizona, Economic Geology: 12: 237-269.

Tenney, J.B. (1928), The Mineral Industries of Arizona, Arizona Bureau of Mines Bull. 125: 75.

Wilson, E.D. (1944), Arizona nonmetallics: A summary of past production and present operations, Arizona Bureau of Mines Bull. 152.

Galbraith, F.W. (1947), Minerals of Arizona, Arizona Bureau of Mines Bull. 153: 23.

Wilson, E.D. & G.H. Roseveare (1949), Arizona Nonmetallics, A Summary of Past Production and Present Operations, 2nd. Edition (revised), Arizona Bureau of Mines Bull. 155: 8.

Galbraith, F.W. & Brennan (1959), Minerals of Arizona: 64.

Anthony, J.W., et al (1995), Mineralogy of Arizona, 3rd. ed.: 107, 164, 186, 191, 341.

A copper mine located on 30 or more claims on the eastern border of the district, 4½ miles south of Patagonia. It is in the upper west slope of the Patagonia Mountains near the axis of the range, mostly between elevations of 5,100 and 5,500 feet. Discovered in 1897. Bonded to W.R. Green, of Cananea circa 1899-1907; later the Lewisohn people, through H.S. McKay, took an option on it for about 4 months only; and, owned by the Three R Syndicate (circa 1909); R.R. Richardson was a leading owner in 1911; by April, 1912, it was bonded to N.L. Amster of Boston, MA.

This mine is in the upfaulted block of the Patagonia Mountains. The country rock is mainly the granite porphyry. It is composed of quartz and orthoclase in large aggregates with rarely a little biotite. It is much weathered, altered, pyritic, and iron-stained, and is vertically sliced by two systems of sheeting, of which the dominant system trends about north-south, parallel with the Colossus lode, and the other about N.75ºE. Mineralized shear zones occur in both systems, some of them being marked by ledges with enormous croppings, such as that of the Blue Rock No. 8, southeast of the Three R Mine, belonging to the east-west system. The rock, especially in the vicinity of the north-south shear zones, has also been pressed and sheared to a high degree, so that it weathers like a schist, which it locally resembles. It is cut by dikes of rhyolite and a younger granite porphyry, but these rocks seem to be only sparingly present.

Mineralization is ore deposits that occur in a north-south shear zone about parallel with the axis of the range, traversing the granite porphyry country rock, which is heavily impregnated with pyrite, apparently cupriferous, and a little chalcopyrite. Along the shear zones there is a concentration of these minerals, forming crude stockworks and veins. Alum and copper sulphates coat the workings.

At and in the mine the shear zone has a width of 40 to 100 feet or more, and is variously traversed by parallel stringers, seams, and bands of ferruginous rock or hematite. One of these bands is about 1 foot (30 cm) in width, is partly honeycombed, and in part has a laminated or platy structure, being apparently pseudomorphous after calcite or some othe spar mineral. This band is said to carry some copper and gold, and father up the mountain side it contains lead minerals as well.

The Colossus tunnel, driven in the shear zone, largely follows a slip or fault plane, which dips 75ºW., and is associated with a ½ to 1½ inch (1.25 to 3.75 cm) band of hematite or reddish-brown ferruginous rock, on the footwall side of which occurs from 1 to 3 feet of crushed and partly mineralized reddish-brown, iron-stained granite porphyry. The zone also contains seams, stringers, veins, and lenses of rich copper ore, consisting of malachite and chalcopyrite with pyrite, bornite, and chalcocite, of which the largest observed is a band about 2 inches (5 cm) wide, composed of pure chalcocite, enclosed in slickensided porphyry and whitish gouge, showing that more or less profound movement has taken place sinc ethe chalcocite was deposited. Native copper occurs, apparently derived from chalcocite.

As a rule the sulphides begin at or very near the surface, about the only exception being the Mayflower opening (tunnel), at the top of the hill, where, owing to leaching, much carbonate is encountered.
Workings comprised several thousand feet of work consisting of tunnels and drifts distributed through a vertical range of about 400 feet. In 1909 there were three tunnels, located, respectively, at elevations of about 5,200, 5,300, and 5,500 feet, with lengths of about 200 to 300 feet. The Colossus, or main tunnel working, contained about 70 feet of crosscut to the east, and as much more to the west, and a 70 foot deep winze. There was also a 375 foot deep, double-compartment shaft. A new 600 foot lower tunnel was driven circa 1915. It contains 500 feet of drift on the vein and a 90 foot winze with drifts at 60 feet below the tunnel level.

Select Mineral List Type

Standard Detailed Gallery Strunz Chemical Elements

Mineral List


12 valid minerals.

Detailed Mineral List:

'Alum Group'
Formula: XAl(SO4)2 · 12H2O
Description: As coatings on mine workings.
Alunite
Formula: KAl3(SO4)2(OH)6
Description: An alteration product from aluminization of wall rocks. Disseminated in altered granitic porphyry.
References:
Azurite
Formula: Cu3(CO3)2(OH)2
Description: Very small amounts as films on the walls near the mouths of the lower tunnels.
Bornite
Formula: Cu5FeS4
Description: Envelopes the crystal faces of pyrite.
Chalcanthite
Formula: CuSO4 · 5H2O
Description: As coatings on mine workings.
Chalcocite
Formula: Cu2S
Description: As an extensive orebody of secondary origin.
Chalcopyrite
Formula: CuFeS2
Description: A widely scattered constituent of the ore as small, separated masses.
Covellite
Formula: CuS
Description: Occurs as films on other sulfides, especially pyrite.
Hematite
Formula: Fe2O3
Colour: Brownish-red
Description: Ocherous material.
Malachite
Formula: Cu2(CO3)(OH)2
Description: Very small amounts as films on the walls near the mouths of the lower tunnels.
Muscovite
Formula: KAl2(AlSi3O10)(OH)2
Muscovite var. Sericite
Formula: KAl2(AlSi3O10)(OH)2
Native Copper
Formula: Cu
Description: Apparently derived from chalcocite. Occurs as beads, films, or thin sheets, facing the sheeting or shear planes.
Pyrite
Formula: FeS2
Habit: Perfect, stubby octahedra 2 & 3 inches (5 & 7.5 cm) diameter.
Description: As striated & twinned crystals to 8 inches (20 cm) diameter and as large crystal aggregates; often coated or enveloped by bornite and covellite.

Gallery:

List of minerals arranged by Strunz 10th Edition classification

Group 1 - Elements
Native Copper1.AA.05Cu
Group 2 - Sulphides and Sulfosalts
Chalcocite2.BA.05Cu2S
Bornite2.BA.15Cu5FeS4
Covellite2.CA.05aCuS
Chalcopyrite2.CB.10aCuFeS2
Pyrite2.EB.05aFeS2
Group 4 - Oxides and Hydroxides
Hematite4.CB.05Fe2O3
Group 5 - Nitrates and Carbonates
Azurite5.BA.05Cu3(CO3)2(OH)2
Malachite5.BA.10Cu2(CO3)(OH)2
Group 7 - Sulphates, Chromates, Molybdates and Tungstates
Alunite7.BC.10KAl3(SO4)2(OH)6
Chalcanthite7.CB.20CuSO4 · 5H2O
Group 9 - Silicates
Muscovite9.EC.15KAl2(AlSi3O10)(OH)2
var. Sericite9.EC.15KAl2(AlSi3O10)(OH)2
Unclassified
'Alum Group'-XAl(SO4)2 · 12H2O

List of minerals for each chemical element

HHydrogen
H Alum GroupXAl(SO4)2 · 12H2O
H AluniteKAl3(SO4)2(OH)6
H AzuriteCu3(CO3)2(OH)2
H ChalcanthiteCuSO4 · 5H2O
H MalachiteCu2(CO3)(OH)2
H MuscoviteKAl2(AlSi3O10)(OH)2
H Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
CCarbon
C AzuriteCu3(CO3)2(OH)2
C MalachiteCu2(CO3)(OH)2
OOxygen
O Alum GroupXAl(SO4)2 · 12H2O
O AluniteKAl3(SO4)2(OH)6
O AzuriteCu3(CO3)2(OH)2
O ChalcanthiteCuSO4 · 5H2O
O HematiteFe2O3
O MalachiteCu2(CO3)(OH)2
O MuscoviteKAl2(AlSi3O10)(OH)2
O Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
AlAluminium
Al Alum GroupXAl(SO4)2 · 12H2O
Al AluniteKAl3(SO4)2(OH)6
Al MuscoviteKAl2(AlSi3O10)(OH)2
Al Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
SiSilicon
Si MuscoviteKAl2(AlSi3O10)(OH)2
Si Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
SSulfur
S Alum GroupXAl(SO4)2 · 12H2O
S AluniteKAl3(SO4)2(OH)6
S BorniteCu5FeS4
S ChalcopyriteCuFeS2
S ChalcanthiteCuSO4 · 5H2O
S ChalcociteCu2S
S CovelliteCuS
S PyriteFeS2
KPotassium
K AluniteKAl3(SO4)2(OH)6
K MuscoviteKAl2(AlSi3O10)(OH)2
K Muscovite var. SericiteKAl2(AlSi3O10)(OH)2
FeIron
Fe BorniteCu5FeS4
Fe ChalcopyriteCuFeS2
Fe HematiteFe2O3
Fe PyriteFeS2
CuCopper
Cu AzuriteCu3(CO3)2(OH)2
Cu BorniteCu5FeS4
Cu ChalcopyriteCuFeS2
Cu ChalcanthiteCuSO4 · 5H2O
Cu ChalcociteCu2S
Cu CovelliteCuS
Cu Native CopperCu
Cu MalachiteCu2(CO3)(OH)2

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