New Mexico Bureau of Geology and Mineral Resources

New Mexico Bureau of Geology and Mineral Resources From the very beginning the bureau has worked cooperatively with other state and federal agencies, including the U.S.

On March 14, 1927, the New Mexico State legislature approved an act establishing the New Mexico Bureau of Mines and Mineral Resources, assigning it the responsibility for applied research into the geology and mineral resources of the state. Geological Survey, the Bureau of Indian Affairs, the Atomic Energy Commission, the Bureau of Land Management, and the National Aeronautics and Space Administra

tion (NASA). As a division of the New Mexico Institute of Mining and Technology (New Mexico Tech), the bureau has a long tradition of working closely with undergraduate and graduate students from New Mexico Tech and other universities throughout the state, teaching and providing cooperative and financial support. In recent years the director has served as state geologist. We are head quartered on the campus of New Mexico Tech in Socorro, with satellite offices in Albuquerque and Carlsbad. In 2001 our name was changed to the New Mexico Bureau of Geology and Natural Resources. The bureau is a service and research division of New Mexico Institute of Mining and Technology. It acts as the geologic survey of New Mexico with these main goals:

To conduct research and interact with state, local, and federal agencies and industry to facilitate prudent exploitation of the state's geologic resources. To distribute accurate information to scientists, decision makers, and the New Mexico public regarding the state's geologic infrastructure, mineral and energy resources, and geohydrology (including water quantity and quality). To provide timely information of potential geologic hazards, including earthquakes, volcanic events, soils- and subsidence-related problems, and flooding. To create accurate, up-to-date (digital and GIS-based) maps of the state's geology and resource potential. To act as a repository for cores, well cutting, and a wide variety of geological data. To provide convenient physical and internet access for New Mexicans to such resources. To provide public education and outreach through college teaching and advising, the Mineral Museum, and teacher- and student-training programs.

Postcard from the FieldPalomas Basin Geomorphology—Dan Koning and Becca GoughnourIt is always exciting when a field geol...
09/05/2026

Postcard from the Field
Palomas Basin Geomorphology
—Dan Koning and Becca Goughnour

It is always exciting when a field geologist comes across an outcrop that yields a lot of information, especially when it pertains to the area’s geologic history. Becca Goughnour and I encountered a pair of such outcrops last June while mapping along the western margin of the Palomas Basin, about 15-20 miles southwest of Truth or Consequences. The outcrops are part of a large exposure at the top of a steep slope, as shown in the first image (an annotated jpeg exported from Google Earth). The two outcrops are marked by the yellow rectangles. In this area, two early Pliocene basalts are present at two different geomorphic levels, separated vertically by 40-50 feet. Underlying the basalts, the bulk of the exposure is of the Miocene-age Santa Fe Group (ancient alluvial fan sediment of the Rincon Valley Formation, which Dan Koning wrote about in aprevious postcard).

Of interest here is not so much the Miocene strata but the early Pliocene features that give clues to the geologic history here at 5–4 million years ago (Ma). The lower basalt has been dated at 4.6 Ma (rounding up from an 40 Ar/ 39 Ar age of 4.55 ± 0.03 Ma) and the upper basalt appears to correlate to 4.9 Ma basalts 0.5 mile to the southeast. The fact that there is Pliocene sediment deposited under, over, and alongside these basalts allows one to construct a story of paleodrainage and paleogeomorphic activity at this location in the early Pliocene.

Photos 2 offers a view of the northwest exposure and Photo 3 is a close-up of this view. Note how the 4.9 Ma basalt fills a 20-25 ft-deep paleovalley on the right. Sandwiched between the gravelly, Miocene-age Rincon Valley Formation and the 4.9 Ma basalt is a thin deposit of Pliocene sediment. This Pliocene sediment consists of ~2 ft of colluvium overlain by 3–5 ft-thick bouldery debris flow sediment that pinches out to the south (photo 3). The restricted lateral extent of this sequence of rocks (i.e. colluvium, bouldery sediment, and basalt flow) suggests that just before 4.9 Ma, erosion of the landscape here created a paleovalley and a thin, pebbly colluvium formed on the south wall of this paleovalley. Then, a brief period of gravelly aggradation (up to ~5 ft thickness) only partly filled this paleovalley. We can tell that this aggradation coincided with the onset of basaltic volcanism in the area because of the abundant basaltic boulders and cobbles found in the deposit (photo 3). Finally, the 4.9 Ma basalt flow filled in the bulk of the paleovalley and spilled out southwards onto a flat geomorphic surface (labele“spillover” in Photo 2).

Erosion occurred between 4.9 and 4.6 Ma, dropping base level by ~45 ft (Photo 1). Photo 4 illustrates the southeast exposure from a distance. Here, you have a younger lower paleovalley cut into the Miocene sediment and backfilled by Pliocene gravel interfingering with the 4.6 Ma basalt. This Pliocene gravel and the basalt is overlain by sandy colluvium and slopewash (about 20–25 ft thick and annotated in the lower-left corner of Photo 1). On top of the sandy sediment and extending up the slope to the 4.9 Ma basalt flow (annotated in Photo 1 and by the blue line in Photo 4), is a strong calcic soil (stage IV carbonate morphology, the stage where you get CaCO 3 laminations at the top of the calcic horizon).

A close-up shot of the southeast outcrop (Photo 5) indicates that the Pliocene gravel (Npg) in the lower paleovalley can be subdivided into three units: Npg1 fills the lower several meters of the paleovalley. Npg2 is about 1 m thick and has a reddish matrix and extends immediately beneath the 4.6 Ma basalt. However, the bouldery Npg3 extends over the basalt. These interfingering relationships show that this lower paleovalley experienced gravelly aggradation just before 4.6 Ma (Ngp1 and Ngp2), the 4.6 Ma basalt flowed down the paleovalley and over these units, and then erosion occurred to produce a third paleovalley that was ~15 ft deep. This third paleovally was then backfilled by unit Npg3. After Npg3 deposition, fluvial activity moved elsewhere (probably south) and enough time passed (during a period of geomorphic stability) to produce a stage III+ carbonate soil horizon in the upper part of unit Ngp3. Then ~20–25 ft of sandy sediment accumulated. Becca and I did not look at this sandy sediment closely but its geomorphic position between the two basalt flows suggests the sediment was deposited by slopewash and colluvium. Then a prolonged period of geomorphic stability occurred (at least locally, elsewhere the larger Black Mountain-derived canyons were probably incising) and a strongly developed calcic soil formed at the top of the sandy sediment.

From these outcrops we can conclude that the western margin of the Palomas Basin was characterized by net erosion and episodic incision of shallow paleovalleys between 5 and 4 million years ago. But this erosion was sometimes interrupted by brief(?) paleovalley sedimentation and basalt-flow emplacement, and there was local geomorphic stability when paleodrainages shifted elsewhere. In contrast, geologic mapping in the middle of the Palomas Basin suggests relatively constant sedimentation of the distal alluvial fans and Rio Grande during 5 to 4 million years ago (e.g., Elephant Butte geologic map by Koning et al, 2026, GM-84). This contrast illustrates how, in a given moment in time, different parts of a basin can behave differently in terms of being in an erosional vs. aggradational state. Read more Postcards from the Field here: https://geoinfo.nmt.edu/geoscience/research/postcards/home.cfml

Each year, as required by the NM Water Data Act (NMSA 1978, § 72-4B), we prepare a Water Data Plan to submit to the Gove...
09/04/2026

Each year, as required by the NM Water Data Act (NMSA 1978, § 72-4B), we prepare a Water Data Plan to submit to the Governor’s Office and the appropriate legislative committees by September 1. Over the past several months, the Water Data team at NMBGMR has worked with the directing agencies of the Water Data Initiative to compile this year’s plan. The document provides a review of last year’s efforts and outlines goals, targets, metrics, and budget needs for the coming years.

If you’d like to learn more about Water Data priorities at NMBGMR and across our partner agencies, you can read the full plan here: https://newmexicowaterdata.org/resources/

Last Saturday, the Aquifer Mapping and Monitoring Program (AMMP) tabled next to the New Mexico Water Department (NMED) a...
09/02/2026

Last Saturday, the Aquifer Mapping and Monitoring Program (AMMP) tabled next to the New Mexico Water Department (NMED) at the Sunflower Festival in Mountainair. While getting their well water samples tested for water quality by NMED, well owners were able to sign up to have their well water levels measured by AMMP for free as part of the Healy Collaborative Groundwater Monitoring Network.

Many festival goers stopped by the AMMP booth to ask questions about groundwater level measurements, aquifer composition, and what New Mexico is doing to map and monitor groundwater.

Aquifer models were on hand to provide a visual of the complicated underground system that AMMP is working to map and kids were able to create their own "aquifer in a bottle" to take home by layering various sand colors in a bottle to represent different aquifer layers.

09/01/2026
What are you up to today? New Mexico Bureau of Geology Hydrologists Laila Sturgis, Alison Elder, and Monica Rakovan (lef...
08/29/2026

What are you up to today? New Mexico Bureau of Geology Hydrologists Laila Sturgis, Alison Elder, and Monica Rakovan (left to right in photo), are at the Mountainair Sunflower Festival in beautiful Mountainair, New Mexico until 4:00 pm today, to answer your water questions! Say "Hi!", and learn about aquifers and the New Mexico Bureau of Geology Aquifer Mapping Program.

The public is invited to attend the Water and Natural Resources Committee Meeting on August 31 and September 1, 2026 at ...
08/29/2026

The public is invited to attend the Water and Natural Resources Committee Meeting on August 31 and September 1, 2026 at the Joseph A. Fidel Center Ballroom on the New Mexico Tech campus—Socorro, NM. Leading scientists and politicians will present the latest research and legislation information. Attendees are encouraged learn about and provide public comment on topics relating to New Mexico's water. Click on this linkhttps://www.nmlegis.gov/agendas/WNRageAug31.26.pdf for the agenda and to find out more.

Postcard from the FieldSampling Mine Tailings and Measuring In-situ Density at the Lordsburg Mine, New Mexico—Rebecca Bo...
08/24/2026

Postcard from the Field
Sampling Mine Tailings and Measuring In-situ Density at the Lordsburg Mine, New Mexico
—Rebecca Boakye, Research Associate, NMBGMR

Mining has been an important part of New Mexico’s history for more than a century, leaving behind several mine tailings that provide valuable information on historical mining practices and
mineral resources. Tailings are solid materials remaining after extraction of ore from physical processes (e.g. crushing, grinding) and chemical processes such as flotation, gravity and magnetic separation, cyanidation, and usually deposited in tailings storage facilities.

The Economic Geology Group at the NMBGMR is sampling mine wastes and tailings across New Mexico under the USGS Earth MRI funding critical minerals in mine waste program. As part of the ongoing mine wastes program, the Economic Geology team visited the Lordsburg Mine, Hidalgo County, in southwestern New Mexico to collect representative tailings samples and measure the in-situ density of the tailings deposit.

Representative composite samples were collected from several locations across the tailings pile using standard field sampling procedures. Each sampling location was documented by taking
GPS coordinates, and samples were properly labelled before being transported to NMBGMR Economic Geology laboratory for further analysis. In addition to sampling, in-situ density test was conducted using the sand cone method to determine the bulk density of the tailings under natural field conditions.

Laboratory characterization will include particle-size analysis, specific gravity, mineralogy and whole-rock geochemical analysis to determine the minerals, major and trace elements present in the tailings. The data will contribute to ongoing research at NMBGMR evaluating critical mineral potential of mine wastes. Find more Postcards from the Field here: https://geoinfo.nmt.edu/geoscience/research/postcards/home.cfml

Postcard from the Field: Geologic mapping in the Bell Mountain 7.5-minute quadrangle--Becca Goughnour, Field Geologist, ...
08/21/2026

Postcard from the Field: Geologic mapping in the Bell Mountain 7.5-minute quadrangle
--Becca Goughnour, Field Geologist, NMBGMR

Last spring, I mapped geology in the area just north of Hillsboro. The rocks in this area have been very exciting to map because they include ~1.6 billion year old basement rocks, ~500 to 300 million year old limestones and shales, ~70 million year old intrusions, 40 to 28 million year old volcanic rocks, ~20 to 5 million year old basin-fill deposits (Sante Fe Group), and terrace deposits that are up to 700,000 years old. Last time I was in the field, I noticed some really interesting basalt flows. These basalts are around 4.8 to 4.5 million years old and are related to Rio Grande rifting. Usually, these basalts form the tops of broad, flat mesas in this area; however, we noticed a place where the basalt seems to “dive down” and fill an old paleovalley. Check out this Postcard from the Field and more postcards here: https://geoinfo.nmt.edu/geoscience/research/postcards/home.cfml .

Thanks for the share Albuquerque Gem and Mineral Club!
08/19/2026

Thanks for the share Albuquerque Gem and Mineral Club!

The Old Ortiz Mine: New Mexico’s Forgotten Gold Rush and Thomas Edison’s Desert Gamble

Nearly two decades before the first nugget was pulled from California's American River, prospectors were already working a quiet range of hills south of Santa Fe. What began in 1828 as New Mexico's earliest documented gold rush grew, over the following century, into a district that saw Mexican land grants, territorial politicians with a financial stake in their own legislation, one of the first railroads built in the territory — and, eventually, a costly and unsuccessful experiment by Thomas Edison himself. Today the Ortiz Mountains sit largely quiet, but the old workings still hold traces of that history, from free gold to glowing scheelite.

Address

801 Leroy Place
Socorro, NM
87801

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Monday 8am - 5pm
Tuesday 8am - 5pm
Wednesday 8am - 5pm
Thursday 8am - 5pm
Friday 8am - 5pm

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+15758355490

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