open-file report 363: coal-bearing formations and … san juan basin on the chaco canyon, chacra...

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western San Juan Basin on the Chaco Canyon, Chacra Mesa, Coal-Bearing formations and available Coal Data in the Farmington, Gallup, Grants, Toadlena, and Zuni 1:100,000 quadrangles Gretchen X. Hoffman Agreement No. 14-08-0001-A0676 New Mexico Bureau of Nines and Mineral Resources New Mexico Institute of Mining and Technology, Year-end Report for Computerization of Point-Source Coal Data for New Mexico Year X

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western San Juan Basin on the Chaco Canyon, Chacra Mesa, Coal-Bearing formations and available Coal Data in the

Farmington, Gallup, Grants, Toadlena, and Zuni 1:100,000 quadrangles

Gretchen X. Hoffman

Agreement No. 14-08-0001-A0676

New Mexico Bureau of Nines and Mineral Resources New Mexico Institute of Mining and Technology,

Year-end Report for Computerization of Point-Source Coal Data for New Mexico Year X

Intr on oducti

Table of Contents

Method of Work

Conclusion

References for 1:100,000 quadrangle compilations of coal-bearing formations and coal data, west side of San Juan Basin

Key to the coal data files for the 1:100,000 quadrangles

List of 1:100,000 Quadrangle Maps

Appendix A:

by formations plotted. Data printouts for each 1:100,000 qadrangle map,

Introduction:

Part of the New Mexico Bureau of Mines and Mineral Resources

Data System (NCRDS) is to supply information on the outcrops of contract with the U.S. Geological .Survey National Coal Resource

New Mexico are lenticular and therefore plotting individual coal the coal bearing formations in New Mexico. Most of the coals in

bed outcrops, although it has been done in some areas, is not feasible for most of the states coal fields. Instead, the outcrops of the coal-bearing formations have been compiled from many sources onto 1:100,000 quadrangle base maps. The seven maps included represent the western half of the San Juan Basin.

locations of the individual data points in the data bases. By These base maps also provided the opportunity to check the

plotting the point-source data on the 1:100,000 maps the locations could be cross checked graphically. Errors in the

were corrected in the data base and replotted. These data point latitude, longitude, Township, Range or Section and duplications

plots are in separate graphics files from the base maps to facilitate updates and allow for other parameters than those shown on the enclosed maps to be quickly created.

the San Juan Basin and other coal fields in New Mexico will It is hoped these maps and subsequent maps for the rest of

allow the public greater access to the coal data files by giving them a visual representation of what information is available in the computerized data bases.

Method of Work:

available (see References) coal-bearing formations were plotted Using the most accurate and/or the most recent geologic maps

by hand on 1:100,000 scale topographic maps. Active or permitted coal mine areas were also put on these work maps. This

create an ASCII file of the digitizied points. The ASCII file information was digitized using a Rockware program (Digitize) to

was compiled using Rockware programs into a Binary Graphic file

points look graphically. Any editing of the points was done on (BGF) . This file allows the compiler to see how the digitized

the ASCII file and then recompiled into a BGF. The program

which facilitates the labeling of township and range, mines, allows the user to create a text file after the BGF is displayed,

county boundaries, etc. This ASCII text file was converted to a BGF file and combined with the base map BGF.

formations were searched for the non-confidential points within Computerized data base files of all the coal-bearing

the maximum and minimum latitude and longitude of each 1:100,000 quadrangle. ASCII files were created from these searches and compiled for each quadrangle. enclosed. These printouts included data about the location,

Printouts of these files are

elevation, well name, source, formation, member, USTRAT number

the total coal thickness, maximum depth, and number of coal beds for the NCRDS, and the coal field. The printouts also contain

.

using Rockware's Point Map program to plot the maximum depth of for each data point. From these ASCII files BGF's were created

the coal and total coal thickness at the specified latitude and

were made over a plot of the base map using the. same dimensions longitude of each data point in the file. Plots of these points

for both plots. For each quadrangle the point locations were checked to ensure the latitude and longitudes coincided with the township, range and section information for each point.

plotted for each quadrangle. One set shows the maximum depth for Two final sets of base maps with point-source data were

the coal data points in one or more of the formations outcropping

may not represent the maxiumum depth of all coals within the on the particular 1:100,000 quadrangle. The maximum depth may or

drill hole or outcrop). The other set of maps has the total coal formation at the point, depending on the type of data, (i.e.

thickness data. The values on these maps represent the sum of all the coal bed thicknesses for each data point plotted. On

the Fruitland, Menefee, and Crevasse Canyon formations outcrop some of the quadrangles, such as the Chacra Mesa 1:100,000 where

and the number of data points is large, the Fruitland and Crevasse Canyon points are plotted on one map and the Menefee Formation points are plotted on a separate map to avoid overlap of data.

conclusion:

As a first attempt at presenting the data the maximum depth was selected to show the availability of both surface minable and deep coal data in the data bases. The total coal thickness data shows some geographic trends within a formation, and when combined with the information supplied on the number of beds, gives an average coal thickness.

The seven remaining 1:100,000 quadrangles on the east and south sides of the San Juan Basin, including the outlying Salt

vicinity of the Rio Grande are in progress, approximately 50-75% Lake, Datil Mountains, and smaller Mesaverde Group fields in the

complete. These maps will also be open-filed at the New Mexico Bureau of Mines. The Raton Basin is the next major area to compile and digitize.

points from the data bases within the different thickness and Future plans include the use of these base maps to plot

depth categories for coal resource evaluation. Along with these

plotted for use in evaluation of resources. data, the quality information such as Btu and sulfur will be

Plotting this information on maps aids in cross checking of the computerized data for location and duplication, and also facilitates the use of the data in a way that is more useful for the geologist and general public.

2

Key to the coal data files for the 1:100,000 quadrangles

to indicate the quadrangle and formation covered by the data. Each data file printout has a comment line at the beginning

The next comment line is the name of the data file that follows and refers to the data base where the data points are located. The format for the data file name is *-*-* .prt. The first * is the formation name abbreviated, the second * is the field name abbreviation, and the third * is the 1:100,000 quadrangle name abbreviation. There may be several of these .prt comments in one printout because the data bases are organized according to field and formation, and may overlap into several 1:100,000 quadrangles.

The next comment line contains the titles for each column of data. The following is a short explanation of each column.

x-coord. v-coord: The longitude and 1atitude:of the data point in decimal form for the computer plotting program.

Elev., Location, Sec. T.' R.: The elevation and geographic location of each data point.

Total Coal, Max Depth, # Seams: Total coal equals the sum of all the coal thickness for one data point and Max Depth is the depth

values are plotted on the quadrangle maps. The # Seams is the to the top of the deepest coal for a data point. Both these

total number of seams for a given data point. Each seam is entered separately into the data base.

Latitude, Lonaitude: The actual latitude and longitude in degrees, minutes and seconds for each data point.

Well Number: The name or number of the well given by the source of the data.

USTRAT: The identification number assigned to the data point when it was entered into the National Coal Resource Data system. Not all points listed are in the data system because some do not have enough stratigraphic data to warrant entry or have been (supposedly) entered by the original source (i.e. CROCDP project) .

the data is geographically located. Field, Fmtn, Member: vlFieldts is the designated coal field where

"Fmtn" is the geologic

applicable, that the coal is a within. formation of the coal, and ItMemberst is the geologic member, if

Source: The location, such as the NMBMMR Oil and Gas Library, or the published or unpublished source of the data point information. Most of the points represent information from geophysical logs, but some is from measured sections, or log descriptions.

3

indicating there is no data available or none has been entered Within the data itself there may be an "NA" or "ND"

into that field in the original. data base. All the information listed in the data file printouts is

non-confidential. Further information on the data or sources of data is available upon request.

4

References for 1:100,000 quadrangle compilations of coal-bearing formations and coal data,

west side of San Juan Basin

Chacra Hesa 1:100,000

Dane, C.H., 1936, Geology and fuel resources of the southern part of the San Juan Basin, New Mexico, Part 3. The La Ventana- Chacra Mesa coal field: U.S. Geological Survey Bulletin 860- C, plate 39.

Hunt, C.B., 1936, Geology and fuel resources of the southern part of the San Juan Basin, New Mexico, Part 2. The Mount Taylor coal field: U.S. Geological Survey Bulletin 860-B plates 18 and 19.

Speer, W.R., Beaumont, E.C., and Shomaker, J.W., 1977, Coal resources of the San Juan Basin, New Mexico: New Mexico Bureau of Mines and Mineral.' Resources Open-File Report 84, lease map.

Tabet, D.E., and Frost, S.J., 1979, Coal geology of Torreon Wash area, southeast San Juan Basin, New Mexico: New Mexico

plates. Bureau of Mines and Mineral Resources Geologic Map 39, 3

Chaco Canyon 1:100,000

Mytton, J. W., 1983, Geologic map of Chaco Canyon 30x60

Juan, Rio Arriba and Sandoval Counties, New Mexico: U. S . quadrangle, showing coal zones of Fruitland, Formation, San

Geological Survey Coal Investigations map C-92A.

Farmington 1:100,000

Hayes, P.T., and Zapp, A.D;, 1955, Geology and fuel resources of the upper Cretaceous rocks of the Barker Dome-Fruitland

Oil and Gas Investigations Map OM-144. area, San Juan County, New Mexico: U.S. Geological Survey

O'Sullivan, R.B., and Beaumont, E.C., 1957, Preliminary geologic map of western San Juan Basin, San Juan and McKinley Counties, New Mexico: U.S. Geological Survey Oil and Gas Investigations Map OM-190.

O'Sullivan, R.B., and Beikman, H.M., 1963, Geology, Structure and Uranium deposits of the Shiprock Quadrangle, New Mexico and Arizona, U.S. Geological Survey Investigations map 1-345.

5

Gallup 1:100,000

Hackman, R.J., and Olson, A.B., 1977, Geology, Structure and uranium deposits of the Gallup 1x2 quadrangle, New Mexico and Arizona: U.S. Geological Survey Investigations Map I- 345.

O'Sullivan, R.B., and Beaumont, E.C.! 1957, Preliminary geologic map of western San Juan Basln, San Juan and McKinley Counties, New Mexico: U.S. Geological Survey Oil and Gas Investigations Map OM-190.

Sears, J.D., 1925, Geology and coal resources of the Gallup-Zuni Basin, New Mexico: U.S. Geological Survey Bulletin 767.

Sears, J.D., 1936, Geology and fuel resources of the southern part of the San Juan Basin, New Mexico, Part 1. The coal

measured section of pre-Dakota (?) rocks near Navajo Church: field from Gallup eastward toward Mount Taylor, with a

U. S . Geological Survey Bulletin 860-A, plate 1.

Grants 1:100,000

Dillinger, J.K., 1989, Coal resource maps of the Grants 30x60 quadrangle, west-central New Mexico: U.S. Geological Survey Coal Investigations Map C-118-B, 3 plates.

Hunt, C.B., 1936, Geology and fuel resources of the southern part of the San Juan Basin, New Mexico, Part 2. The Mount Taylor coal field: U.S. Geological Survey Bulletin 860-B plates 18 and 19.

Toadlena 1:100,000

O'Sullivan, R.B., and Beaumont, E.C.! 1957, Preliminary geologic map of western San Juan Basin, San Juan and McKinley Counties, New Mexico: U.S. Geological Survey Oil and Gas Investigations Map OM-190.

OISullivan, R.B., and Beikman, H.M., 1963, Geology, Structure and Uranium deposits of the Shiprock Quadrangle, New Mexico and Arizona, U.S. Geological Survey Investigations map 1-345.

Zuni 1:100,000

Hackman, R.J., and Olson, A.B., 1977, Geology, structure and uranium deposits of the Gallup 1x2 quadrangle, New Mexico and Arizona: U.S. Geological Survey Investigations Map I- 345.

6

Maxwell, C.H., 1977, Preliminary geologic map of the McCartys quadrangle, Valencia County, New Mexico: U.S. Geological Survey Open-File Report 77-380.

Maxwell, C.H., 1977, Preliminary geologic map of the Cubero quadrangle, Valencia County, New Mexico: U.S. Geological Survey Open-File Report 77-241.

Sears, J.D., 1925, Geology and coal resources of the Gallup-Zuni Basin, New Mexico: U.S. Geological Survey Bulletin 767.

7

L

L i s t of 1:100,000 Quadrangle Maps

Canyon 1:100,000 Quadrangle, Fruitland Formation, Total Coal 1.) Coal-bearing formations and available coal data, Chaco

Thickness.

2.)

3 . ) Coal-bearing formations and available coal data, Chaco

Canyon 1:100,000 Quadrangle, Fruitland Formation, Maximum Depth. Coal-bearing formations and available coal data, Chaco

Thickness. Canyon 1:100,000 Quadrangle, Menefee Formation, Total Coal

4.) Coal-bearing formations and available coal data, Chaco Canyon 1:100,000 Quadrangle, Menefee Formation, Maximum Depth.

5.) Coal-bearing formations and available coal data, Chaco Mesa 1:100,000 Quadrangle, Fruitland and Crevasse Canyon Formations, Total Coal Thickness.

6.) Coal-bearing formations and available coal data, Chaco Mesa 1:100,000 Quadrangle, Fruitland and Crevasse Canyon Formations, Maximum Depth.

7.) Coal-bearing formations and available coal data, Chaco Mesa 1:100,000 Quadrangle, Menefee Formation, Total Coal Thickness.

8.) Coal-bearing formations and available coal data, Chaco Mesa 1:100,000 Quadrangle, Menefee Formation, Maximum Depth.

9 . ) Coal-bearing formations and available coal data, Farmington 1:100,000 Quadrangle, Fruitland Formation, Total Coal Thickness.

10.) Coal-bearing formations and available coal data, Farmington 1:100,000 Quadrangle, Fruitland Formation, Maximum Depth.

11.) Coal-bearing formations and available coal data, Farmington 1:100,000 Quadrangle, Menefee Formation, Total Coal Thickness.

12.) Coal-bearing formations and available coal data, Farmington 1:100,000 Quadrangle, Menefee Formation, Maximum Depth.

13.) Coal-bearing formations and available coal data, Gallup 1:100,000 Quadrangle, Menefee Formation, Total Coal Thickness.

14.) Coal-bearing formations and available coal data, Gallup 1:100,000 Quadrangle, Menefee Formation, Maximum Depth.

15.) Coal-bearing formations and available coal data, Gallup

Sandstone, Total Coal Thickness. 1:100,000 Quadrangle, Crevasse Canyon Formation and Gallup

8

16.) Coal-bearing formations and available coal data, Gallup

Sandstone, Maximum Depth. 1:100,000 Quadrangle, Crevasse Canyon Formation and Gallup

17.) Coal-bearing formations and available coal data, Grants 1:100,000 Quadrangle, Total Coal Thickness.

18.) Coal-bearing formations and available coal data, Grants 1:100,000 Quadrangle, Maximum Depth.

19.) Coal-bearing formations and available coal data, Toadlena 1:100,000 Quadrangle, Fruitland Formation, Total Coal Thickness.

20.) Coal-bearing formations and available coal data, Toadlena 1:100,000 Quadrangle, Fruitland Formation, Maximum Depth.

21.) Coal-bearing formations and available coal data, Toadlena 1:100,000 Quadrangle, Menefee Formation, Total Coal Thickness.

2 2 . ) Coal-bearing formations and available coal data, Toadlena 1:100,000 Quadrangle, Menefee Formation, Maximum Depth.

23.) Coal-bearing formations and available coal data, Zuni 1:100,000 Quadrangle, Total Coal Thickness.

2 4 . ) 1:100,000 Quadrangle, Maximum Depth.

Coal-bearing formations and available coal data, Zuni

9

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7.5 2 i m 12 939 4 1580.5

15 2716

10 1167 32056

5.5 1130 8 1681 3 1837 8 1501

14 1985 6 lrn

12 mn 8 976 9 1451 9 1630

..

..

2 1 3 2 1 1 1 I 3 I 1 1

3 1

3 5 5 5 8 2 3 7 7 2

10 10 2 6 I 3 3 3 3 4 1 3

3 1

2 1

3 1

6 3 6 3

3 1

1 0 7 a 107- l o m a

1074117 1074106 I o m 107135j 107224l 1072341 10739s1 107227 1075801 107546 107534 107- 1073507 1072807 l07ZiU7 1075935 1071(123 10732's 1073235 10EW 107mDj 1072745 307311) 1071309 1072938 1 0 m 1 o m l o r n

1074104

"tlDRIRSTRTE m

-107.4125 -107.2983 -107 .m -107.4619 -107.9394 -107.7444 -107.9706 -107.5B7a -107.9850 -307.9703 -107.9342 -107.9969 -107.9964 -107.9767 -107.9486 -107.9435 -107.9872 -107.?93 -107.9497 -107.4236 -107.3G -107.4681 -1oi.5139 -107.4619 -107.3767 -107.5444 -107.6592 -107.6433 -107.5444 -107.5378 -107 .w -107.3% -107.3214 -107.w -107.9522 -107.9419 -107.9453 -107.9256 -107.5494 -107.5711 -107.5417 -107.3994

36.2019 36.0817 36.2367 36.1419 36.m 36.2358 36.3856 35.- 36.4794 35.- 36.* 36.4219 36.4319 36.3757 36.3772 36.5919 35.37a 36.5% 36.4333 36.14-E 36.0894 36.1036 36.1669 36.2444 36.- 36.m 36.0869 36.0758 35.0131 36.2113 36.3383 36.0869 36.043 36.3983 36.4142 36. ai67 36. QQ

36.m 36.4247 36.2Q2 35.2300 36.1572

6413 t i 3 G

6926 HesE mssaptl 6605Mpl l 648 WE31

673.4 9.34 o w

6587.6 SESE 6715.1 Hpu

25 m6y 9 r n N 10 22l 6Y 30 291lou 12 rn% 23 251 11u 27 261( 11U 22 26H 11u

6 Ed 1W 11 m L1U

3 251 11Y 10 251 11Y

25 m 11Y 26 m 11Y

19 25H 1W

34 26N 11u 15 251 I1Y

1 291 11Y

35 m5u 12 m&l 28 m 6 U 31 2 3 6U 10 23nW

36 21N N 14 291 11U

2 21N Pi4 2 21N 8y 36 21N 7y 23 m a 24 EN 11W 32 224%

17 291 1Dy 12 EN 11Y 18 254 lrm 7 EN 1W 8 m lW

9 m7U 11 m a 14 23% 8 m5u

7 21n ay

13 2111 5u

6 I923

8.5 2146 3 1749

7.5 1836 12 1451 29 123

5 1437 6 1367

6 1985 9 1 3 1

8.5 1 2 3 4 1715

16 l3Z 6 12%

12 1439 7 1506 7 1231

3 1614 6 1296

6 1899 8 1631

13 2126 9 1304

6 1845 ' 10 1278 20.5 s5.3 23.7 666.6 26.8 527.3 15.9 59.6

12 1336 7 a72 7 1663

2.5 1511 5 1438 9 14?3 8 1481 5 1452 4 1637 92026 9 2173 92045 7 1 w

2

3 1

3

8 1

2 1

3 1

3 1

3 1 1 1 1 I

3 1

3 3 5 2 3 1 1 1

3 1

3 2

2 1

4 3

2 1

3 3 3 3

m m m m

1073416 YRL R. &S 11-%%VI m

17.5883 l7.7136 li.6iZ 07.6417 07.7269 07.9903 07.5989 37.4519 37.7242 l7.713 37.3351 17.6978 17.693 17.7292 0 7 . m 07.7111 07.7036 07.6919 07.6828 n 7 . m

07.4606 07.6347 0 7 . m 07.6i.B

07.7189

36.m 36.0473 36.m11

36.0636 36.0119

36.0125 25.0172 36.1125 36.m 36.m 36.o411 3 6 . ~ 1 4 36.0178 36.0350 36.m 35.0361 36.w 36.0367 36.0361 s.0272 36. m78 35.1m 36.0352 36.0678 36.1103

33 21N iU 17 21N 8y 22 21N 8y 36 21N Bu 7 21N 8y

26 21N iU 27 m a 19 21N 8y 19 2lN 8y a 21H 8y 20 21N 8y 26 2lN 8y 19 21N 8y

a 21N 6U 19 21N Bu

ill 21N By 21 21N By 21 21N By 30 21N 8y 30 21N 6U 10 m a 24 21N W 6 21N Bu

27 tw8il

2 2 1 ~ sy

27.85 176.75 23.6 254.05

31.1 345.6

15.85 2i7.35 14.9 135.75

2990 2 367.5

38.5 192 2 143.5

194 43253

19.3 55.5 24.5 112

31 275.5

24.6 156.2 41.5 2L3 31.5 E6 38.5 Ian

34 2 6

40 162 16.1 527 13.3 430.7

2sn

~~

26 312 25 720

2 3 1 2 2 1 1

8 1

6 8 6 2 5

10 7

8 7 4 5 IO 4 3 2 2

107318 2 1 m 1074245 21WU17.1 107920 2 1 W . 1 1073830 2 1 w 1074337 2 1 W . 1 1072925 DRVIS OIL 1l-R K M L o x 1 0 7 3 B FILDH w1. 11 )RIRTD 26 1072iU7 KI& DLRDRRTIM I1 BRRopT(I rmolRL 107G27 N-28 1074250 FA) 3074222 N-EU 1074152 11-34 1073930 fplsn 11 107438 P-261) 1074315 P-28

1074213 P-32 107441 P-A)

107468 p-36 1074131 P-34 ~ ~~~

1074342 R-26 1074308 R-280 107272738 %-lo-I lOi33X ms I

-107.7214 -107.7086

-107.6694 -107.5389 -107.5381 -108.3611 -107.6775 -107.m1 -107.7125 -107.7472 -107.6056 -107.7m5 -107.7081 -107.6319 -107.7350 -107.3689 -107.7658 -107.5989 -107.7994 -107.7247 -107.7606 -107.8011 -107.6844 -107.6850 -107.5653 -108.0692 -107.6633 -107.3742

-107.am

36.0464 36.0136 36.!4i3 36.1564 36.0581 36.1417 36.7214 36. m 36.m 36.0464 36. 0797 36.0425 36.0431 36.m 36.3478 36.0614 36.m 36.193 36.0172 36.2444 36.17Q 36.2300 36.1489 36.2144 36.i228 36.0753 36.3092 36.1553 x.0019

65E3tm

6819 w 6551 mu 65)841si 6648s 6574 M

32 21H 8U 18 21N 8U

17 2 4 % 10 msw 14 2111 711 14 mil4

27 21N 8u 13 ZN 1%

17 21N 8y 17 21N 8U

20 21N N 1 21N %

13 21N 811 17 21N 8U

33 21N SU 12 2lN 9U

26 m9u 26 2lN N 8 2% 9u 6 m a 14 ?.%a 9 m 9u 21 m8u

3 21N N 16 m(SH

13 2m 12y 10 m 8U 33 2lN SU

m ZIN au

14 2324 11 2226 26 2 i w 12 2362 20 2993 11 2964 7 1948

11 1890.5 8 1934

2 1207 8 1513

10 2866

23 2450 8 14a

10.5 2625 18 2x3 5 2315

18 27Ca.5 423%

13 2779 11.5 2797

14 2727 24.5 2732

4 2772 9.5 2941 18 2221 26 1865 32868 202990

..

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3 1

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11 3

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10

3 1

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69LYLOI-

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:MIS FILE COHTRIHS TEE DRTR POINTS Fa THE ClW3 ESf l l:IoD,a)O CUW" :FRuIRRHI FOR)HTIDN.

=, :Fi-ST-CN.pRT

e l w LDcation SpC. T. R. Total Coal& Depth t Lat L w Lkll Nubw LKIEJT Field Fatn nRber bvtp

-107.3m -107.4531 -107.4764 -107.2725 -107.433 -107.4464 -107.9364 -107.9642 -107.4772 -107.2567 -107.1886 -107.2297 -107.m -107.3418 -107.3931 -107.5169 -107.1892 -107.1764

-107.1836 -107.1m

-107.2025 -107.16i5

-107.2189 -307.2442 -107.m -107.4111 -107.572 -107.3564 -107.5172 -107.5078 -107.875 -107.4667 -107.44% -107.5181 -107.5078 -107.5347 -107.5272 -107.5267 -107.14a -107.3767 -107.4142 -107.3823 -107.3475

35.4983 35. gP 35.9350 35.8989 35.9175 35.9311 35.35s 35.Yz69 35.9544 35.8983 35.9325 35.8861

35.9103 35.9097 35.9544 35.m 35.832 35.8958 35.8997 35.9119 35.8858 35.9094 35.8983 35.9132 35.m 35.9164 35.9681 35.9% 35.9511 35.9514 35.9367 35.w 35.3772

35.9322 35.9786 35.9758 5.9133 35.9286 35.3150 35.9194 35.9217

3.91rn

3 5 . ~ 7

6611.3 K9pbl 6612.3 DWE

""

6721.3 - 6703 E95E

6685.3 KNE

"- n m91

za m6y 34 m 6U

$5 ms6Y 9 1% -BI

26 m 6U 26 mal 34 m a 21 mal 9 1% 4l 6 1% 3U 11 1% 44 3 1% 91 3 1% 91 5 1% 91 19 m 6U 6 19N 3U 8 19N 3 8 1% 3U 8 19N ili 8 1% 3y 1 1% 44

3 1% a 11 1% 4y

7 1% 4l 31 zDn91 33 m91 34 msu 18 ZOH 6Y 18 m 6U 22 m6U 22 m a 26 m a 7 m a 7 m 6U 12 m a 12 m a 34 m3U 12 m a 23 m5y 31 Z N 91 32 m5y 34 mal

2464

24.6 123.8 15.6 106.4

9.6 W 20 172.25

10.2 168.7 6.5 168.6

16.8 1%

10.4 72.7 12 208

3.5 55 1.5 45 935

12 rm 7 Q

17.8 132.4 3.5 53.5 2.8 43.6 4.1 112.6 3.4 67.7 3.2 67.5 4.1 a5.95 2.4 34.8 7.35 184.8

16 240 249

13.5 225 10.3 121 15.5 236

9.5 mz 12 163

1s 223 .~ ~~~

6 211.5 21 313 22 373.5

24.5 394 n 243

17 270 3.2 67.5

24.9 192.15 9.5 m.05

17.9 292.65 15.9 124.4

1 4 8 2 8 3 2 3

4 1

1

1 1

3 3 3 1 1 1 1 1 I 1 1

5 1

5 1

3 2 2 3 3 1 3 1 2 2

2 1

4 3 1

1072024 11

1072835 128 11372711 126

1071621 15

1072751 179 1072611 171

1 0 m 182 i071n4 is 1071119 19-3-60 1071347 19-+118 1072127 1933-1

1071121 19MU6 ~

1071035 1&-1 1071015 19Mu8-2 1071101 1 9 W - 3 1071003 19Hiys.l

1071m I*-1

lmlm 20-6-18-1

Inn657 206-268

1073138 20-7-12-2 1073136 20-7-12-3 107ZS34 mn3u34.1 10722-36 twN28.1 107251 2DH5K31 1072249 2(REIsz-2 1072051

m MERSY a. 5 n m FILES

e-z c

-107.3247 -107 .m -107.1858 -107.5583 -107.€Q-?2 -107.661 -107.4xJ6 -107.4328 -107.4890 -107.4764 -107.4731 -107.414 -107.453 -107.675 -107.4461 -107.432 -107.- -107.4472 -107.459 -107 .m -107.443 -107.- -107.805 -107.4383 -107.m -107.4372 -107.2925 -107.a31 -107.a81 -107.5314 -107.5489 - 1 0 7 . W -107.6BZ -107.6339 -107.6aO -107.6639 -107.54Tj -107.4144 -107.3786

-107.3464 -107.3569

-107 .m - 1 0 7 . S -107.W -107.3644 -107.4911 -107.4947 -107.4994

35.9186 35.m 35.9367 35.9m 35.9839 35.486 35.988 35.966 35.m 35.9'737 35.9308 35.5317 35.m 35.9253 35.909 35.92-72 35.9186 35.9169 35.8961 35.9953 35.9136 5.9111 35.8947 35.9503 35.m 35.9075 35.8881 35.M 35.9681 35.9691 35.9691 35.9647 35.m 35.9972 35.9967 35.9992 35.9728 35.8581 35.m

35.9125 35.9136

35.9119 35.9578 35.9575 35.9597 35.9394 35.336 35.952

6.7 65.5 9.1 163.3

15.9 90.8

20.5 199.2 22.1 m5

m.7 184.2

33.6 m.4 22 218

29.35 190.5 3 . 8 299.6

. . . . " . .

30.7 149 t8.9 216.1 16.5 264.9 34 170.7 22 191.9

25.5 nn.1 m.4 176.1 8.9 139.3 0 0 ~~

6.2 15.2

11.3 3 . 1 16 132

2.9 19.7 26.6 184.3 20.1 91.3 17.1 104.6

9 47.5 21.5 108.75

30.6 219.2 14.2 191.3

~ ~~~

24.7 145.8 ~ ~ ~~~

25.8 192.4 13.2 138.1 18.7 143.9 5.6 316 6.6 47.7 21 209 30 101.2

29.2 58.6 23.2 I 3 0

29.4 158.7 19.5 113.2

14.6 212.2 25 168

26.4 182.4 3 661.5

16 118.8

.~. ~~~

18.8 72.6

2 1 2 3 2 4 4 7 7 5 8

5 9 6 8 6 3 1

3 1

1

4 1

3 3 2 4 4 8 4

4 5

5

2 1

5 3 2

3 4

3 3 5

6 I

4 3

a

.. . . ..

35507 10719Z 236!435 35573 1073112 2oH6Ul8.1 E 6 1 2 1072909 zNwa.1

l o r n 1 1Dm27 1OZG7 l o w lDTRm l o r n 107zSz 1072614 3071733 lam11 1079Zs 1023153 l o r n

l0737B 1073224

10738m 1 m 1 8 1023950 1-1

lome l a m

1072047 1072125

1072jm 1073121 107224 l o n l n l o r n 1 m 1 1072958

a B-6

c-11 8 5 .

~~ . .

K19 Ll8

OWJI amsl m.

c-3 c

-107.4586 -107.6ml -107.5022 -107.W -107.4803 -107.4169 - 1 0 7 . a -107.4239

-107.W -107.3617 -107.4239 -107.4153 -107.4775 -107.692 -107.611 -107 .m -107.4197 -107.4283 -107.4153 -107.m -107.697 -107.4583 -107.4239 -107.-%73 -107.4W -107.4oj -107.4oj -107.3661

-107.5553 -107.3686

-107.45.14 -107.4153

-107.4558 -l07.-%ll

- 1 0 7 . a -107.-%73 -107.3525 -107.901 -107.- -107.4419

-107.41m

35.9286 35.9131 35.937 35.9333 35.9253 35.9214 35.924

35.925 35.9217

35.9208 35.9286 35.9175 35.9181 35.9142 35.9142 35.913 35.913 35.913 35.9106 35.9la3 55.9108 35.9018 35.9018 35.9075 35.9728 35.9250 35.%7 35.9264 35.9147 35.9258 35.9217

35.w 35.9036 35.9011 35.6397 35.8997 35.m 35.m 35.m 35.9850 35.a961

33 m a 30 m a 8 miU 30 me4 33 mw 33 mw 36 m6y 36 axl6U 36 m6y 34 m6y 28 m?u 36 m6y 36 m a 33 m a 34 m a 3 19N 1 1% a 1 1% 6y 1 1% 6y 1 19N 6y 3 1% 6U 3 19ti 64 3 1% 6U 1 1% 6y

3 m?u 10 axl 6U

6 1% 5y

33 m91 3 m5y 33 m91 34 m% 3 1% 64

2 1% a 1 1% 6y

3 1% w 1 1% 6y 3 1% 6y 15 Z W 5 y 23 m a 12 m x 11 1% 6U

4.1 92.3

3.5 6.2 23

6 6.2 18.3 60 25.5 59.8 13.7 215.5

m.2 243.1 18.8 186

18.2 104.8 19.5 385 15.9 ~ . 6 25.3 220.1 21.2 n.2

21.6 104.5 20 73.8

26.2 179.9 16 203.4

18.1 129.2 31 148.1

26.7 69.8 15.6 50.8

31.6 58.6 25.9 112.4

1.2 212 6.5 260

12 ga 6 165

7 114 7.5 314

M.2 51.8 9 188

22.3 104.8 22.9 61.3

13.7 6 . 2 9.1 37.7

24 33.2 2s

22.3 m.2 2222

11.5 M

2 1 2 2 4 5 3

5 5

4 2 5 5 5 4 4 5 4 5

4 5

5 4 7

2 1

2 1 3 3

5 I

5 5 3 2 4

1 1

3 1

m m m

m m m m m

m m

m m

m w m

MI

fa

m314

m12

K( m15

mLKE mm

o m aw61 a. fF I r n

SrtX I% ST% LKE mLKE

355517 IOnSn 0-23 SIIRLKE

67% psis

STtX LKE mLKE

rn flR m

mm

6iUl

mm mm fF 1249

"

LEXf lT

407.'EZ? -107.1231 -107.513 -107.5653

-107.B -l07.16x

-I07.S78 -!07.72% -107.3036 -107.713 -107.7378 -107.21792 -107.2158 -107.2%9

-107.143 -107.3'25

-107. :%2 -107.1S21

-107. I S ¶ -107.1639

-107.1393 -107.1392 -107.Z9 -107.M -107.2792 -107.3997 -107.3)92 -107.3225 -107.378 -107.3114 -107.24x -107.1181 -107.Iia6 -107.1078 -107.1417 -107.175 -107.!=0 -107.24% -107.Z-51 -107.373 -107.14x -107.127'5 -107.+?31 -107.5E7

35.781

35.8442 35.87;5

35.7242 %.Xi4 35.m 35.7917 35.m 35.7985 35.7% 35.i511 35.m 35.6986 35.6572 3.m 3.7997 35.733 i5.;8:4 3 . 2 6 9 35.7% 35.82% 35.m 35.8175

35.i981 35.7717 35.73 35.7%

35. :Qiz 35.7583 35.m 35.m 35.7551 i5.m 35.7828 3.7356 35. A42 35.m 35.3683 3.m 35.3258 35.8672 35.8600 35.6547 3.6767

6918 W

3 l W 3 :

22 Iffla 11 1ffl311 23 1mXI 24 1ffl N 34 1% I 5 lAI 21 I f f l a 22 1 8 4 4 27 1ffl 'Y 5 lan N

5.5 627

25 2i9

10.55 3m.3 4 155.6

13 1665

m,ES 447.1 15.2 yd.55 3.65 254.6

1.3 181.1 6.5 106

11.75 367.65 z.75 3l.E 11.3 m.35

16.65 289.3 5 162.3

1.3 177.5 4.2 242.2

2443 4 liz

20.5 1497 16.5 1113 25 13)9

8.5 lm9.2 14.5 1 w 9 7.3 790

38 IF% 6 761

4 8 3 2 2 2 5 5 7 5

IO 6

4 2 6 4

I3 6

4 I

3

4 5

6 2 1 2 I 2 6 5

3 9

6 3 5 6 5

14 2

I2

5 5

2

1071512

l(375355 IOiU741

l m lmo96 l o r n I O i Z m 107G-8 1071813 107- 1074416 107164 107157 1071713 l o r n 10XX36 10Wi5 Ioio311 1 o m o 1071m Ioio118

I071413 l o r n 1

1071216 107166 107659 1071833 107157 l a m 1071841 1071426 L m m G s 1071043 IOiE.22 lOiC#J 1071052 lorn18 1071426 1071410 l o r n 6 lOXS5

1 0 7 n 1 IOiUij9

103447

Field Fmtn fk&w "

0-t I

b p c e

tm? OIL h &G LIES

m OIL h 6Rs LIES

h 6Rs LlBld

h 65 LIrn

-107.7153 -107.7194 -107.5% -107.3267 -107.7122 -107.6133 -107.6115 -107.956 -107.437 -107.6581 -107.G83 -107.m5 -I07.1(136 -107.1800 -107.2931 -107.1m -107.m -107.1386 -107.4717 -107.6933 -107.6611 -107.1Xa -107.6742 -107.632 -107.294L -107.7333 -107.m -107.1286 -107.1428

-107.1a -107.1600

-107.m -107.6836 -107.6917 -107.6841 -107.EES -107.4681

-107.2364 -107.6592

-107.t378 -107.Z47

-107.1m -107.1m -107.1281 -107.6375 -107.1414 -107.2183 -107.1944

3.7014 35.m 35.m 35.m 35.8939 35.8414 35.5258 35.7836 35.7606 35.&3 35.i317 35.R69 35.7814 35.m 35.m 35.6811 35.6911 35.5617 35.7742 35.9867 35.5672 35.8669 35.9111 35.8561 35.7614 35.7644 35. 7744 35.7808 35.8250 Si917 35.7i69 35.5.7631 35.7417 35.9353 35.m 35.6700 35.m 5.w 35.6623 35.6617 35.a 35.6586 35.6644 35.9597 35.6767

35.8478 35.6931 35.6644

6591 Krmy

17 I i N Bu 19 17N Bu 22 19N 5U

8 1% sy 26 19N 5y

3 19N N 6 184 ?! 19 1m 5y 30 LEN 5U zs 1mw 6 17N 8U I 1iN sy

24 18N 3U m I 8 N 3

23 17N3 18 18N 4

z7 17H4 13 19N N 21 18N 6y 09 msy I I m au 13 I ~ N au n mau 24 1% 8w 3 18N.M 30 1mY 20 1 m 4

3 1m 3U 23 l e 4 3

16 18N 3U 22 1 m a 30 1w3U a 1maU 28 mal 28 msy 23 1M7u a 19Nffl 35 1nSu 35 17N" 34 l M 4 l 35 I n 4 32 17N3 32 17n3U t6 17113

27 19H 3Y 13 B N S Y

23 In4 71 1iN 3

10 418

m.5 1835

2.5 34.6 2.6 23.5 4.2 18.3 2.3 4.9 3.7 14

aw 45 1921.5

19 739.5 I 1 bjT 19 266 5.2 132.7 22 154.8 2.8 119.8

9.1 171.5 7 221.3

4 1249 6 1332 9 2 a p

11.5 m1 3 655.6

2.3 0 'M m49

1.5 0 2.5 0 2.7 2.6 1.5 0

3.3 0 1.7 0

1.5 2.5 1.5 0 I1 562.5 6 1767

4.2 144.2 5 I 4 3 3

24 774 8.5 J80 2.1 0 2.8 0 1.8 1.1 5.1 23.6

2 0 3 0

19.5 I 7 5 8 1984.5

12.9 a3.9 7.5 83.7

.-

.. . ..

5 3

16 8

1 1 1 I I 8 3 5 2 4 2 4 4 2

4 1

5 I 9 I I I 1 I 1 I I 1

3 5

2 2 9 3 I 1

3 I

1

4 1

5 4 2

107- 1074310 10?21m 107;012 1074244 1oR6.18 1 O n i W lone0 1072433

Ionam 1074117

107- loiDsI3 l07lWB 107175 1071021 1071422 1074419 1072818 1074136 l m j g Q 1omSm 1074127

5 1 m 6467 7152 7154 86m c-I c-2 c-3 c-4

E-26 a-25 cc-3 U-4 cc-6 E-9

m OIL 6 GRS L I W OIL k 6ffi LlBRRpl

tmEn OIL h E65 L I m InEn OIL h 6Rs LIBRIdly

OIL h 6F5 L I W v565BuL86a m a= Irn

B W I X

-1m.GZ3 -107.m67 -107.@3?2 -IW.OlSz -107.m

-107.07&1 -107.11Q

-107.U3iZ -107.m9 -107.0914 -107.0825

-107.0472 -107.0797

-107.0416 -107.m22

-107.023 -107.0272

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7.65 156 4.5 s.65

1.7 0 2392 3 6.3

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2.5 0 5299

12.2 54.9 5.9 57.4

3 8 5 6 126 5 144

3 246 6392

4 325 9 41

23.6 91.5 23 157.9

14.5 64 10.5 433.5

5.9 2 4 1

4.85 188.25

3 6 6 5 4 2

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n d n d n d 19 1QI N

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31 1% €4 31 laC S4

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-108.al78 -108.2175

-108.2392 -108.2164

-10.1775 -108.m -108.18.a -108.1g39

-108.2347 -108.2433

-108.1919 -108.1983 -1LS.tm3 -108.2292 -108.2119 -108. 1389 -108.134 -108. I r n -108.0186 -108.Wl1 -1m.cax

-m.m

. . . . . . . . -108.2125

-108.1944 -108.1839

-1CS.2092 -108.z397 -108.1625

. . . . -. . -

-108.1547

36.m 36.329 36.2528 36.2522 36.2897 36.2744 36.B 36.2767 36.2761

36.2597 36.2544

36.2886 36.2544 36.2603 36.2583 36.259 36.2536 36.2439 36.2825 36.2509 36.2433 36.2822 36.2889 36.m 36.2383 36.m 36.2375 36.2383 36.2350 36.2494 36.2597 36.2737 36.2011

36.1853 36.m 36. 1942 36.1997 36.2022 36.2039 36.2461 36.2433

-108.1436 36.24472 -108.1444 36.2467

5 m 12U 5 m 1 2 6 2-34 1% 6 29112 29 24N 1%

31 241 1 3 31 XI 134

31 241 1% 24 2 4 134

29 2413y 3 m 1% 3 m 1 3 3 m 1 a 3 m 1 3 12 m 1% 29 2 4 1 % 1 m 134

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361419 361418

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361418 361406 361458 3 6 1 5 3 5 3 6 1 6 4 7 36lm4 361212 361107

361159 361139

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4.6 0 1 360713 1081714 9

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11.6 362

9 5 4 4 2 1

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1084410 104 1084410 ID9 1 m 1218-14-1 1@?4m 1218-9-1

35.303 35.4853 35.4925 35.4828 35.2778 35.2825 35.5% 35.3347 35.3058 35.4967 35.4856 35.- 35.m 35.4914 35.4944 35.4853 35.w 35.3181 35.338 35.4997 35.4925 35.4519 35.4275 35.4992 35.4878 35.43 35.4606 35.m 35.4603 35.886 35.4981 35.3219 35.3075 35.3094 35.3069 35.4867 35.4947 35.697 35.m 3.4764 35.4% 35.4681 35. E64 35.4186

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2.8 I m 1.5 140 2.4 105

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T25N I

TZ4N

3779.0

2727.0

3941.0

2772. 0

2558.0

T23N XPLANATION

~~

Kf-Frultland Formation

Kmfu-Menefee Formation, upper c nember 2704.0

f l 3 2 . 0

fl42.0

627'

y?803.0 2758.0

T22N .o

13.0 22651.0

.j2420 0 g866.0

7 a26.0 J2743.5

T21N

COAL-BEARING FORMATIONS AND AVAILABLE COAL DATA, CHACO CANYON 1 : 100,000 QUADRANGLE

MENEFEE FORMATION

MAXIMUM DEPTH

R l l W R8W R7W R6W

T24N

J3.0

J4.0

A.0

T23N

XPLANATION

Kf-Fruitland Formation

Kmfu-Menefee Formation, upper I I member

d1.0

8 . 5 J5.0

J5

T22N c ;t

L". "-f c18 0

20.0 I

324.0

Jl.0 87.0 44 .~2 .0

2 3 . 4 8.0

J8.0

T21N

COAL-BEARING FORMATIONS AND AVAILABLE COAL DATA, CHACO CANYON 111 00,000 QUADRANGLE

MENEFEE FORMATION

TOTAL COAL THICKNESS

" . c ,

R11h RlOW R7E1 R4EI R3N RZW

T26N

I

I

T25N

I

TZ3N 6 2 7 0 lXPLANATlON 370.8 a82 5

i Kf-Fruitland Formation

1.2

.2

Kmfu-Menefee Formation, upper c iember i96.6

$88.3

J43.5 4720.0

3

2312 0 m . 3 p58.0

228.0

a67.5 &SO 0

,354.0

COAL-BEARING FORMATIONS AND AVAILABLE COAL DATA, CHACO CANYON 1: 100,000 QUADRANGLE ~ ~~

FRUITLAND FORMATION

MAXIMUM DEPTH

. .

R7W RllW RlOW R9W R8W R6W R5M

T25N

T24N

d33 6

EXPLANATION

Kf-Fruitland Formation

Kmfu-Menefee Formation, upper

Q16.1 437 7 20.7

4 8 2 Zg.O A0 1

p6.1

member 27.8

425.4 c"-----v

T22N cz ci 26.0

15.8

8.0

2 3 . 6 T21N

COAL-BEARING FORMATIONS AND AVAILABLE COAL DATA, CHACO CANYON 1: 100,000 QUADRANGLE

FRUITLAND FORMATION ". ..

TOTAL COAL THICKNESS

. .. .

RlON \ R5W v R7W

P

Star Lake Mine L

"-.. i P r o j ected KmFu bou

Kclv \$ \

I

\ Projected KmFc bounda

\\ I 6.Ql2 3

\ d2.5

i dZ 5 Sou th

- EXPLANATION

Kf-Fruitland Formation

Kmfu-Menefee Formation, upper cc

Kmfa-Menefee Formation, Allison h

Kmfc-Menefee Formation, Cleary (

Kcc-Crevasse Canyon Formation

, J.

., - ? - member

nber

31 Member

d7 0

d29 0 Kcc 0

Lee Ranch M ~ n e I

\

T16N

f I

\

2..

d21.6

) Kcc I / f

P ~ COAL-BEARING FORMATION§ AND AVAILABLE COAL DATA, CHACO MESA 111 00,000 QUADRANGLE

~. .

FRUITLAND AND CREVASSE CANYON FORMATIONS

TOTAL COAL THICKNESS

-y R8W R4W R3W R6W 6 0 d.4: .8

RlOW \ RZW R7W R9W

L 13Q d.55:

6 3 . 0

A 6 4 0

S t a r Lake M ~ n e I

6205 0 J333.0

41327 0 6343 0

".

Projected KmFu bounl ' V

d750 0

8 3 .O

Pro] ected KmFc bounda

dl902 0

3 5 2 8 7 9

"I h

KmFa &30 0

Sou th Hospah Leas

EXPLANATION

Kf-Fruitland Formation

Kmfu-Menefee Formation, upper I

Kmfa-Menefee Formation, Allison

Kmfc-Menefee Formation, Cleary

Kcc-Crevasse Canyon Formation

11 member

!mber

)al Member 147 0

Lee Ranch Mine

T16N

"

Lee Ranch Mine

7 P

COAL-BEARING FORMATIONS AND AVAILABLE COAL DATA, CHACO MESA 1: 100,000 QUADRANGLE ~ " . . . -

FRUITLAND AND CREVASSE CANYON FORMATIONS

MAXIMUM DEPTH ~~ ~~

rl -T R8W \ R6W r51 R4W R3W

_/1

R2W 9 R71 R9W I

h1 d562 0 2

J888 0 J984

A997 0

J767 0

6204 5 i Sta r Lake Mine L

d509 5

2234 0

d l 2 4 5 ProJ ec ted KmFu bounl a947 0 d927 0

6830 0

J835 0

a921 5

d865 0

dl120 0

J097 0

*015 O do08

J745 0 + d774 0 0

d735 0 2066

42 0

3 3 4 0 PO2 0

d794 0 q7 O A324 0

d793 0

680 6 8 0 0 p0:

4739 5

3

E80 0 6 6 2 5

639 0 166 0 2 7 8 0 E45 0 6 2 7 0 d 5 3 5 0 4 0 &58 4

,218 0

I

6472 ~ KmFa 6 9 5 0

407 2

6418 0

31 0

Ath Hosgp 0 L e A 6 4 2 0

I A80 0

8 0 4 0 4308

4328 5 dl72 5

EXPLANATION

Kf-Frultland Forrnatlon

Kmfu-Menefee Forrnatlon, upper cc

Kmfa-Menefee Forrnatlon, Alllson h

Krnfc-Menefee Forrnatlon, Cleary C

Kcc-Crevasse Canyon Forrnatlon

6 7 477 4

member

nber

11 Member Kcc

Lee Ranch Mlne

A32 0 c, T16N

COAL-BEARING FORMATIONS AND AVAILABLE COAL DATA, CHACO MESA 1 : 100,000 QUADRANGLE

MENEFEE FORMATION

MAXIMUM DEPTH

3 d 3

'.; R4W R3W - R9 W RZW

d7 5

d33 0 n i " p o

Sta r Lake Mlne L

85 2 3 5

d35 0

6 5 0

Projected KmFu bour d20 5

6-6 0 65

6 9 5 BO d B 0

0

6 4 0

d7 0

2

3 7 I - 1 I -i

ected KmFc boundar 8 3 0

d3 4 43 0

dl 5

6434 &:L. 2

21 5

dR 0 64 9

d7 9 6 0

iXPLANATlON

Kf-Frultland Formation

Kmfu-Menefee Formation, upper cc

Kmfa-Menefee Formatlon, Allison 1

Kmfc-Menefee Formatlon, Cleary

Kcc-Crevasse Canyon Formation

I

"i member

nber

11 Member

I \

T16N

/L3 5

P ' COAL-BEARING FORMATIONS AND AVAILABLE COAL DATA, CHACO MESA 1~100,000 QUADRANGLE

MENEFEE FORMATION

TOTAL COAL THICKNESS

T

R15W

4

& 5

I R13W R12W R14W R16W

PO I

t I ary rocks

r 3 0

T19N

T18N

b-l

8 0

T U N 6

':7 1 I ne

:g6 5

COAL-BEARING FORMATIONS AND AVAILABLE COAL DATA, GALLUP 1 ' 1 00,000 QUADRANGLE

CREVASSE CANYON FORMATION, AND GALLUP SANDSTONE

TOTAL COAL THICKNESS

dl4 0

R13W R16W R15W R14W R12W R17W

T20N LE 5

Tert I ary rocks

T19N

A 0

4 . 8

J.4 5 T18N,

L KP ' T17N -

i,- 4

Kmf-Menefee Formatlon

Kmfc-Menefee Formation, Cleary Cc al Member

Kpl-Point Lookout Sandstone

Kh- Polnt Lookout Sandstone, Hos:a Tongue

Kcc-Crevasse Canyon Formation

Kcg-Crevasse Canyon Formation, Gibson Coal Member

Kmm-Mancos Shale, Mulatto Tong1 e

Kcd1,Kcdc-Crevasse Canyon Formatlon, Dilco Coal Member

? T16N Mentmore M I ne

/

COAL-BEARING FORMATIONS AND AVAILABLE COAL DATA, GALLUP 1: 100,000 QUADRANGLE

MENEFEE FORMATION

TOTAL COAL THICKNESS

T 232310 0

R13W R17W R16W R15W R14W R12W

T20N ,22243 0

L O

Tert I ary rocks d

6093 0

T19N

r760 0

T18N

L KP ' 506 0

i T17N 7 810 0 & psss 0 R19W 505 0

pa2 0 P'

I I EXPLANATION

Kmf-Menefee Formation

Kmfc-Menefee Formation, Cleary Cc

Kpl-Pomt Lookout Sandstone

Kh- Polnt Lookout Sandstone, Hosl

Kcc-Crevasse Canyon Formation

IL5 5 Mentmore M I ne 11 Member

Tongue

Kcg-Crevasse Canyon Formatlon, Coal Member

Kmm-Mancos Shale, Mulatto

Kcd1,Kcdc-Crevasse Canyon Coal Member

Kg-Gallup Sandstone

Kd-Dakota Sandstone

COAL-BEARING FORMATIONS AND AVAILABLE COAL DATA, GALLUP 111 00,000 QUADRANGLE CREVASSE CANYON FORMATION, AND GALLUP SANDSTONE

MAXIMUM DEPTH

. . . . .

3 G3 T

631 r I

6137 0

R 1 3 W R 1 6 W R 1 5 W R14W R 1 2 W

T 2 0 N ,118 0

6017 0

T e r t I ary rocks

8 4 9 0

T 1 9 N

$99 0

&O 6

6 4 0

PO \ 6 3

I I

/ A1.O

I

KP ' R 1 8 W

/

I

T 1 7 N

R19W

Kmf-Menefee Formation I Mentmore M I ne Kmfc-Menefee Forrnatlon, Cleary Cc al Member

KpCPolnt Lookout Sandstone

Kh- Point Lookout Sandstone, Hosta Tongue

Kcc-Crevasse Canvon Formatlon

Kcg-Crevasse Canyon Forrnatlon, C lbson Coal Member

Kmm-Mancos Shale, Mulatto Tongue

Ka.h,Kedc-Crevasse Canyon Forrnatlon, D~lco Coal Member

'Kg-Gallup Sandstone

Kd-Dakota Sandstone

2 ,

, . ... " .. .

: C O A L - E A W FORMATIONS AND AVAILABLE COAL DATA, GALLUP 1.100,OOO QUADRANGLE

MENEFEE FORMATION

MAXIMUM DEPTH

Kcd

2 T14N

/

COUNTY

/ 1 Ked

/

TEN

\ BERNALILLO \

T U N I

EXPLANATION

Kmf-Menefee Formation

Kmfc-Menefee Formation, Cleary COa

Kcg-Crevasse Canyon Formation,Gibs

Kcd-Crevasse Canyon Formation, DllC

~

Ked i Member

n Coal Member

Coal Member TlON

-"

R7W R4W RlOW R6W RllW Kcd

COAL-BEARtNG FORMATIONS AND AVAILABLE COAL DATA, GRANTS 1 100,000 QUADRANGLE

TOTAL COAL THICKNESS

PO3 0 Kcd

\ T14N

\

T13N

/

COUNTY

Kcd I Kcd L

T12N Kcd \

O0 0

\ BERNALILLO \

TllN I

EXPLANATION

Kmf-Menefee Formatlon

Kmfc-Menefee Formation, Cleary C

Kcg-Crevasse Canyon Formation,G

Kcd-Crevasse Canyon Formation, I

11 Member

son Coal Member

co Coal Member TlON

RlOW I

R7W RllW R9W R6W Kcd

COAL-BEARING FORMATIONS AND AVAILABLE COAL DATA, GRANTS 1~100,000 QUADRANGLE

MAXIMUM DEPTH

. I .. -

3c53

a 6 5

T3ZN 65 0

0

PO

0

1

1

0

1

T31N 2 3 4 3 0

60

- 6 8 0 1 6 4 120 0 / 65 0 125 0 17 7

14 0 io 0

6 6 0

T30N

65 1 3 24gB

65 0 2 1 4 3 0

67 0 0 i

EXPLANATION

& 21.6. 0 132 Q31 0 Kf-Frultland Formation

Kmfu-Menefee Formation, upper coal r 6

6 2 0 6 3 0 nber

17 0 n 0 5

6 5 0 6 3 0

67 0 6 3 0 6 2 0

6 4 0

0 b 0 6 0 0

60 0

BO

!O

io

PO 80

A 0 60 0 60 0

PO 120 68 0 ' 1 t L -

0

c

60

PO PO

63 0

60 1 60 60 0

d A7 0

A 0 6 1 0 60

a 5 0

so 0 61 0 6 4 0 125 0

44 0

12 oa 0

&

A1 0 66 0

I 6 4 0 6 3 I

R17W R14W R20W

66 0

COAL-BEARING FORMATIONS AND AVAILABLE COAL DATA, FARMlNGTON 1; 100,000 QUADRANGLE

FRUITLAND FORMATION

TOTAL COAL THICKNESS

I & 3 3 P 3 / 1 v

TA HINE T32N

T31N

EXPLANATION

Kf-Frultland Forrnatlon

Kmfu-Menefee Forrnatlon, upper C( member

t

T28N

T27N

R18W R14W R13W R12W RllW

AVAILAKE COAL DATA, FARMWTON 1:SoQoK) QLlADRANGLE

MENEFEE FORMATION

TOTAL COAL THICKNESS

-L &O O a00 0

TA tlINE T32N

T31N

I r d969 0

EXPLANATION

Kf-Frultland Formation

Kmfu-Menefee Formation, upper coal iember

1992 0

T28N

T27N

R12W R13W R15W R14W R19W R20W R l l W

MENEFEE FORMATION

'MAXIMUM DEPTH

i

T26N

4 NAVAJO MINE

KF

go19 0 T25N

KMF

GATEWAY MINE

KF a93 0 !a30 0 I

T24N

BURNHAM MINE

/ DE-NA-ZIN MINE KMFA

KF

T23N \

\

XPLANATION

Kf-Fruitland Formation

Kmf-Menefee Formation

'ti Kmfu-Menefee Formation, upper cc

Kmfa-Menefee Formation, Allison N

Kpl-Polnt Lookout Sandstone

Kcc-Crevasse Canyon Formation

Kg-Gallup Sandstone

~~ ~

KMFU JSZ8 0

PO D O

3 P O

T22N 3.0 ' 0

61 3 '1

I

I

I

I

I 1

i34 0

KMFA d497 0

d486.0 KMFU

~ P L R19W R20W 115W 113W T21N

C O ~ ~ - ~ ~ ~ ~ ~ ~ ' ' F ~ R M A r I O N S AND AVAILABLE COAL DATA, TOADLENA 1.1 00,000 QUADRANGLE

MENEFEE FORMATION

MAXIMUM DEPTH

iu NAVAJO MINE

T25N

KMF

6 9 15 I GATEWAY MINE J213.3

fi5&t

KF

' / 7 T U N I .2 25-7 5

7571 . 4 0 % BURNHfUl MINE

/ DE-NA-ZIN MINE KMFA 209 5 0

KF \ T23N 471 0

U

iXPLANATlON

Kf-Fruitland Formation

Kmf-Menefee Formation

Kmfu-Menefee Formation, upper cc

Kmfa-Menefee Formation, Allison hr

KMFU

Kpl-Point Lookout Sandstone

Kcc-Crevasse Canyon Formatlon

Kg-Gallup Sandstone T22N

KMFA

KMFU

'CC

~ P L R19W 181.1 R20W KG "l R15W 113W R121.1 T21N 116W ;17W

COAL-BEPcR#NG FORMATIONS. AND AVAILABLE COAL DATA, TOADLENA 1.10~0,OO~O QUADRANGLE - .~~ - "_ ~~ . . " . ~

FRUITLAND FORMATION

MAXIMUM DEPTH

NAVAJO tUNE

dl3 Q

r;) GATEUAY MINE d8.

dl8 0 .e 0

T24N

/ BURNHAH MINE

6.3

r7 2 / DE-NA-ZIN HINE

KF \ T23N

42 O dl9 7 .o PO

EXPLANATION

Kf-Fruitland Formation

Kmf-Menefee Formation

Kmfu-Menefee Formation, upper (

Kmfa-Menefee Formation, Alllson

Kpl-Polnt Lookout Sandstone

Kcc-Crevasse Canyon Formation

Kg-Gallup Sandstone

i,/ T22N

KMFA

KMFU

~ F I - R19W l14W R13W 17W R20W KG

COAL-BEARING FaRMATIONS AND AVAILABLE COAL DATA, TOADLENA 1.100,OOO QUADRANGLE

FRUITLAND FORMATION

TOTAL COAL THICKNESS

KF

e L

GATEWAY MINE

KF 2 0

T24N

I I

BURNHAM MINE

/ DE-NA-ZW I I N E KHFA

KF

\ T23N U

EXPLANATION

Kf-Frultland Formation

Kmf-Menefee Formatlon

Kmfu-Menefee Formatron, upper ca

Kmfa-Menefee Formatlon, Alllson h,

Kpl-Point Lookout Sandstone

Kcc-Crevasse Canyon Formatlon

Kg-Gallup Sandstone

KMFU a 0

T22N a 0

A 4 11.0

KMFA

T21N 115W 114W R13W 17W KG

COAL-BEARING FORMATIONS AND AVAILABLE COAL DATA, TOADLENA 1:1.00,000 QUADRANGLE I

MENEFEE FORMATION

TOTAL COAL THICKNESS

b

R14W @ R13W R15W R12W

T14N

Kd 4 I R16W I

T13N

J.2

MCKINLEY CNTY

CIBOLA CNTY

Kcdc I

EXPLANATION.

Kmf-Menefee Formation

Kmfc-Menefee Formatlon, Ck

Kcdc-Crevasse Canyon, D~lcc

Kg-GaHup Sandstone

Kthc-Tres Hermanos Format1

Kd-Dakota Sandstone

4

:oal Member

.I Member T U N

iarthage Member

T l O N

Kd I

T9N

c U

Kd "-.--

Kthc

ct R17W R20W

1 GOAL-BEAR1WG FORMATIONS AND AVAILABLE COAL DATA, ZUNl l~J00,OOO QUADRANGLE '

TOTAL COAL THICKNESS

" @ R13W

do2 3 If I 2

R14W R15M

Kd

I

R16W

d90 0

MCKINLEY CNTY I c

CIBOLA CNTY

EXPLANATION

Kmf-Menefee Formatlon

Kmf-Menefee Formation, Cleary

Kcdc-Crevasse Canyon Formatlc

Kg-Gallup Sandstone

Kthc-Tres Hermanos Formatlon

Kd-Dakota Sandstone

:oal Member

, D k o Coal Member T l l N

2arthage Member

TlON

c

Kthc :. R17W RZOW

COAL BEARING FORMATIONS AND 'AVAILABLE COAL DATA, ZUNI 1: 100,000

MAXIMUM DEPTH