Browse the USGS Publication Warehouse
Publications for publication type Article and publication subtype Journal Article
- USGS annual mining review, 2024, Mining Engineering (76) - 5
- Annual review 2023: Critical minerals, 2024, Mining Engineering (76) - 5
- USGS Critical Minerals Review: 2021, 2022, Mining Engineering (74) - 5
- USGS 2020 critical minerals review, 2021, Mining Engineering (73) - 5
- USGS critical minerals review, 2019, Mining Engineering (71) - 5
- Wollastonite, 2018, Mining Engineering (70) - 7
- Mica, 2018, Mining Engineering (70) - 7
- Industrial garnet, 2018, Mining Engineering (70) - 7
- USGS critical minerals review, 2018, Mining Engineering (71) - 5
- North American net import reliance of mineral materials in 2014 for advanced technologies, 2018, Mining Engineering (70) - 7
- Gypsum, 2016, 2017, Mining Engineering (69) - 7
- Borates, 2016, 2017, Mining Engineering (69) - 7
- Global nonfuel mineral exploration trends 2001-2015, 2017, Mining Engineering (69) - 4
- USGS revision of global iron ore production data—Clarification of the reporting of iron ore production in China and application of a uniform comparison methodology (2000-2015), 2017, Mining Engineering (69) - 2
- Coastal deposits of heavy mineral sands; Global significance and US resources, 2016, Mining Engineering (68) - 10
- Exploration review, 2016, Mining Engineering
- Ball clay in 2015, 2016, Mining Engineering (68) - 7
- Titanium in 2015, 2016, Mining Engineering (68) - 7
- Gemstones in 2015, 2016, Mining Engineering (68) - 7
- Boron in 2015, 2016, Mining Engineering (68) - 7
- Pumice in 2015, 2016, Mining Engineering (68) - 7
- Mining Review in 2015, 2016, Mining Engineering (68) - 7
- Gypsum in 2015, 2016, Mining Engineering (68) - 7
- Diatomite in 2015, 2016, Mining Engineering (68) - 7
- Strontium in 2015, 2016, Mining Engineering (68) - 7
- Industrial Sand and Gravel in 2015, 2016, Mining Engineering (68) - 7
- Rare Earths, 2015, 2016, Mining Engineering (68) - 7
- Industrial Diamond in 2015, 2016, Mining Engineering (68) - 7
- Potash in 2015, 2016, Mining Engineering (68) - 7
- Industrial Garnet in 2015, 2016, Mining Engineering (68) - 7
- Nitrogen in 2015, 2016, Mining Engineering (68) - 7
- Zirconium in 2015, 2016, Mining Engineering (68) - 7
- Bauxite and alumina in 2015, 2016, Mining Engineering (68) - 7
- Fire clay in 2015, 2016, Mining Engineering (68) - 7
- Peat in 2015, 2016, Mining Engineering (68) - 7
- Kaolin in 2015, 2016, Mining Engineering (68) - 7
- Industrial Diamond, 2014, 2015, Mining Engineering
- Strontium, 2014, 2015, Mining Engineering (67) - 7
- Titanium, 2014, 2015, Mining Engineering (67) - 7
- Nitrogen-Ammonia, 2014, 2015, Mining Engineering (67) - 7
- Peat, 2014, 2015, Mining Engineering (67) - 7
- Potash, 2014, 2015, Mining Engineering (67) - 7
- Gemstones 2014, 2015, Mining Engineering (67) - 7
- Lithium 2014, 2015, Mining Engineering (67) - 7
- Rare Earths in 2014, 2015, Mining Engineering (67) - 7
- Exploration review, 2015, Mining Engineering
- Titanium 2013, 2014, Mining Engineering (66) - 7
- 2013 Industrial Minerals Review: Fire Clay, 2014, Mining Engineering (66) - 7
- Pumice and Pumicite in 2013, 2014, Mining Engineering (66) - 7
- Rare Earths in 2013, 2014, Mining Engineering (66) - 7
- Zirconium, 2013, 2014, Mining Engineering (66) - 7
- Potash, 2013, 2014, Mining Engineering (66) - 7
- Gypsum, 2013, 2014, Mining Engineering (66) - 7
- Borates, 2013, 2014, Mining Engineering (66) - 7
- Ball clay, 2013, 2014, Mining Engineering (66) - 7
- Industrial Garnet in 2013, 2014, Mining Engineering (66) - 7
- Gemstones in 2013, 2014, Mining Engineering (66) - 7
- Industrial diamond in 2013, 2014, Mining Engineering (66) - 7
- Peat in 2013, 2014, Mining Engineering (66) - 7
- Diatomite in 2013, 2014, Mining Engineering (66) - 7
- Common clay and shale in 2013, 2014, Mining Engineering (66) - 7
- Strontium in 2013, 2014, Mining Engineering (66) - 7
- Lithium in 2013, 2014, Mining Engineering (66) - 7
- Bromine in 2013, 2014, Mining Engineering (66) - 7
- 2013 Industrial Minerals Review: Ball Clay, 2014, Mining Engineering (66) - 7
- 2013 Industrial Minerals Review: Kaolin, 2014, Mining Engineering (66) - 7
- Bauxite and alumina in 2013, 2014, Mining Engineering (66) - 7
- Kaolin, 2014, Mining Engineering (62) - 6
- Zirconium, 2013, Mining Engineering (2013) - July
- Titanium, 2013, Mining Engineering (2013) - July
- Strontium, 2013, Mining Engineering (2013) - July
- Rare earths, 2013, Mining Engineering (2013) - July
- Pumice and pumicite, 2013, Mining Engineering (2013) - July
- Potash, 2013, Mining Engineering (2013) - July
- Perlite, 2013, Mining Engineering (2013) - July
- Peat, 2013, Mining Engineering (2013) - 7/12/13
- Nitrogen, 2013, Mining Engineering (2013) - July
- Lithium in 2012, 2013, Mining Engineering (65) - 7
- Kaolin, 2013, Mining Engineering (2013) - July
- Industrial sand and gravel, 2013, Mining Engineering (2013) - July
- Industrial garnet, 2013, Mining Engineering (2013) - July
- Industrial diamond, 2013, Mining Engineering (2013) - July
- Gypsum, 2013, Mining Engineering (2013) - July
- Gemstones, 2013, Mining Engineering (2013) - July
- Fluorspar, 2013, Mining Engineering (2013) - July
- Fire clay, 2013, Mining Engineering (2013) - July
- Diatomite, 2013, Mining Engineering (2013) - July
- Common clay and shale, 2013, Mining Engineering (2013) - July
- Bromine, 2013, Mining Engineering (2013) - July
- Borates, 2013, Mining Engineering (2013) - July
- Bauxite and alumina, 2013, Mining Engineering (2013) - July
- Barite, 2013, Mining Engineering (2013) - July
- Ball clay, 2013, Mining Engineering (2013) - July
- Nitrogen, 2013, Mining Engineering (65) - 7
- Peat, 2013, Mining Engineering (65) - 7
- Strontium in 2012, 2013, Mining Engineering (65) - 7
- Perlite, 2012, 2013, Mining Engineering (65) - 7
- Mining Review, 2013, Mining Engineering (65) - 5
- Exploration Review, 2013, Mining Engineering (65) - 5
- Industrial garnet, 2012, Mining Engineering (64) - 6
- Perlite, 2012, Mining Engineering (64) - 6
- Exploration review, 2012, Mining Engineering (64) - 5
- Rare earths, the lanthanides, yttrium and scandium, 2012, Mining Engineering (64) - 6
- Strontium, 2012, Mining Engineering (64) - 6
- Borates, 2012, Mining Engineering (64) - 6
- Gypsum, 2012, Mining Engineering (64) - 6
- Lithium, 2012, Mining Engineering (64) - 6
- Pumice and pumicite, 2012, Mining Engineering (64) - 6
- Fire clay, 2012, Mining Engineering (64) - 6
- Sulfur, 2012, Mining Engineering (64) - 6
- Magnesium compounds, 2012, Mining Engineering (64) - 6
- Peat, 2012, Mining Engineering (64) - 6
- Common clay and shale, 2012, Mining Engineering (64) - 6
- Nitrogen, 2012, Mining Engineering (64) - 6
- Diatomite, 2012, Mining Engineering (64) - 6
- Gemstones, 2012, Mining Engineering (64) - 6
- Industrial diamond, 2012, Mining Engineering (64) - 6
- Bromine, 2012, Mining Engineering (64) - 6
- Potash, 2012, Mining Engineering (64) - 6
- Alaska's rare earth deposits and resource potential, 2012, Mining Engineering (64) - 1
- Industrial sand and gravel, 2012, Mining Engineering (64) - 6
- Ball clay, 2012, Mining Engineering (64) - 6
- Bauxite and alumina, 2012, Mining Engineering (64) - 6
- Kaolin, 2012, Mining Engineering (64) - 6
- Fluorspar, 2012, Mining Engineering (64) - 6
- Perlite, 2011, 2012, Mining Engineering (64) - 6
- US nonfuel mineral exploration: Selected findings for 1995-2009 from the USGS, 2012, Mining Engineering
- Pumice, pumicite review, 2011, Mining Engineering (63) - 8
- Magnesium compounds, 2011, Mining Engineering (63) - 6
- Bromine, 2011, Mining Engineering (63) - 6
- Industrial sand and gravel, 2011, Mining Engineering (63) - 6
- Gemstones, 2011, Mining Engineering (63) - 6
- Kaolin, 2011, Mining Engineering (63) - 4
- Peat, 2011, Mining Engineering (63) - 6
- Borates, 2011, Mining Engineering (63) - 6
- Strontium, 2011, Mining Engineering (63) - 6
- Perlite, 2011, Mining Engineering (63) - 6
- Lithium, 2011, Mining Engineering (63) - 6
- Potash, 2011, Mining Engineering (63) - 6
- Common clay and shale, 2011, Mining Engineering (63) - 6
- Fluorspar, 2011, Mining Engineering (63) - 6
- Ball clay, 2011, Mining Engineering (63) - 6
- Bauxite and alumina, 2011, Mining Engineering (63) - 6
- Diatomite, 2011, Mining Engineering (63) - 6
- Nitrogen, 2011, Mining Engineering (63) - 6
- Fire clay, 2011, Mining Engineering (63) - 6
- Industrial garnet, 2011, Mining Engineering (63) - 6
- Barite, 2011, Mining Engineering (63) - 6
- Industrial diamond, 2011, Mining Engineering (63) - 6
- Exploration review, 2011, Mining Engineering (63) - 4
- Nitrogen, 2010, Mining Engineering (62) - 6
- Industrial diamond, 2010, Mining Engineering (62) - 6
- Industrial sand and gravel, 2010, Mining Engineering (62) - 6
- Bromine, 2010, Mining Engineering (62) - 6
- Lithium, 2010, Mining Engineering (62) - 6
- Exploration review, 2010, Mining Engineering (62) - 5
- Fire clay, 2010, Mining Engineering (62) - 6
- Kaolin, 2010, Mining Engineering (62) - 6
- Strontium, 2010, Mining Engineering (62) - 6
- Diatomite, 2010, Mining Engineering (62) - 6
- Ball clay, 2010, Mining Engineering (62) - 6
- Bauxite and alumina, 2010, Mining Engineering (62) - 6
- Perlite, 2010, Mining Engineering (62) - 6
- Magnesium compounds, 2010, Mining Engineering (62) - 6
- Potash, 2010, Mining Engineering (62) - 6
- Fluorspar, 2010, Mining Engineering (62) - 6
- Peat, 2010, Mining Engineering (62) - 6
- Gemstones, 2010, Mining Engineering (62) - 6
- Industrial garnet, 2010, Mining Engineering (62) - 6
- Diatomite, 2009, 2010, Mining Engineering (62) - 6
- Geologie study off gravels of the Agua Fria River, Phoenix, AZ, 2010, Mining Engineering (62) - 2
- Common clay and shale: a look at 2009 activity, 2010, Mining Engineering (62) - 10
- Exploration review, 2009, Mining Engineering (61) - 5
- Bauxite and alumina, 2009, Mining Engineering (61) - 6
- Industrial diamond, 2009, Mining Engineering (61) - 6
- Accelerated weathering of limestone for CO2 mitigation: Opportunities for the stone and cement industries, 2009, Mining Engineering (61) - 2
- Exploration review, 2008, Mining Engineering (60) - 5
- Industrial garnet, 2008, Mining Engineering
- Industrial diamond, 2008, Mining Engineering (60) - 6
- Exploration review, 2007, Mining Engineering (59) - 5
- Ball clay, 2007, Mining Engineering (59) - 6
- Fluorspar, 2007, Mining Engineering (59) - 6
- Magnesium compounds, 2007, Mining Engineering (59) - 6
- Industrial garnet, 2007, Mining Engineering (59) - 6
- Kaolin, 2007, Mining Engineering (59) - 6
- Nitrogen, 2007, Mining Engineering (59) - 6
- Construction aggregates, 2007, Mining Engineering (59) - 6
- Gemstones, 2007, Mining Engineering (59) - 6
- Industrial diamond, 2007, Mining Engineering (59) - 6
- Iron Hill (Powderhorn) carbonatite complex, Gunnison County, CO - A potential source of several uncommon mineral resources, 2007, Mining Engineering (59) - 10
- Nanotechnology - An emerging technology, 2007, Mining Engineering (59) - 12
- Exploration review, 2006, Mining Engineering (58) - 5
- State summaries: Idaho, 2006, Mining Engineering (58) - 5
- Fluorspar, 2006, Mining Engineering (58) - 6
- Wollastonite, 2006, Mining Engineering (58) - 6
- Strontium, 2006, Mining Engineering (58) - 6
- Peat, 2006, Mining Engineering (58) - 6
- Ball clay, 2006, Mining Engineering (58) - 6
- State summaries: Utah, 2006, Mining Engineering (58) - 5
- Lithium, 2006, Mining Engineering (58) - 6
- Iodine, 2006, Mining Engineering (58) - 6
- State summaries: Indiana, 2006, Mining Engineering (58) - 5
- Industrial diamond, 2006, Mining Engineering (58) - 6
- State summaries: Ohio, 2006, Mining Engineering (58) - 5
- Gemstones, 2006, Mining Engineering (58) - 6
- State summaries: Illinois, 2006, Mining Engineering (58) - 5
- Kaolin, 2006, Mining Engineering (58) - 6
- Rare earths, the lanthanides, yttrium and scandium, 2006, Mining Engineering (58) - 6
- Geology-based planning and the aggregate industry - Perspectives from opposite sides of the globe, 2006, Mining Engineering (58) - 4
- Industrial sand and gravel, 2006, Mining Engineering (58) - 6
- State summaries: Oklahoma, 2006, Mining Engineering (58) - 5
- State summaries: Kentucky, 2006, Mining Engineering (58) - 5
- Lime, 2006, Mining Engineering (58) - 6
- Nitrogen, 2006, Mining Engineering (58) - 6
- Industrial garnet, 2006, Mining Engineering (58) - 6
- Common clay and shale, 2006, Mining Engineering (58) - 6
- Diatomite, 2006, Mining Engineering (58) - 6
- Magnesium compounds, 2006, Mining Engineering (58) - 6
- Effects of Chinese mineral strategies on the U.S. minerals industry, 2006, Mining Engineering (58) - 3
- State summaries: Colorado, 2006, Mining Engineering (58) - 5
- Fire clay, 2006, Mining Engineering (58) - 6
- State summaries: West Virginia, 2006, Mining Engineering (58) - 5
- State summaries: California, 2006, Mining Engineering (58) - 5
- Exploration, 2005, Mining Engineering (57) - 5
- Material flows generated by pyromet copper smelting, 2005, Mining Engineering (57) - 8
- Fluorspar, 2004, Mining Engineering (56) - 6
- Industrial garnet, 2004, Mining Engineering (56) - 6
- Common clay and shale, 2004, Mining Engineering (56) - 6
- Fire clay, 2004, Mining Engineering (56) - 6
- Gemstones, 2004, Mining Engineering (56) - 6
- Industrial diamond, 2004, Mining Engineering (56) - 6
- Kaolin, 2004, Mining Engineering (56) - 6
- Magnesium compounds, 2004, Mining Engineering (56) - 6
- Nitrogen, 2004, Mining Engineering (56) - 6
- Trends in availability of aggregate, 2004, Mining Engineering (56) - 2
- Exploration review, 2004, Mining Engineering (56) - 5
- Quarry expansion - Sustainable management of natural aggregate, 2004, Mining Engineering (56) - 1
- Mining review, 2004, Mining Engineering (56) - 5
- Exploration, 2003, Mining Engineering (55) - 5
- Strontium, 2003, Mining Engineering (55) - 6
- Ball clay, 2003, Mining Engineering (55) - 6
- Common clay and shale, 2003, Mining Engineering (55) - 6
- Kaolin, 2003, Mining Engineering (55) - 6
- Bentonite, 2003, Mining Engineering (55) - 6
- Fluorspar, 2003, Mining Engineering (55) - 6
- Pumice and pumicite, 2003, Mining Engineering (55) - 6
- Peat, 2003, Mining Engineering (55) - 6
- Industrial diamond, 2003, Mining Engineering (55) - 6
- Industrial garnet, 2003, Mining Engineering (55) - 6
- Gemstones, 2003, Mining Engineering (55) - 6
- Dimension stone, 2003, Mining Engineering (55) - 6
- Magnesium compounds, 2003, Mining Engineering (55) - 6
- Nitrogen, 2003, Mining Engineering (55) - 6
- Tale of two pit lakes: initial results of a three-year study of the Main Zone and Waterline pit lakes near Houston, British Columbia, Canada, 2003, Mining Engineering (55) - 2
- U.S. Geological Survey resource assessment of selected Tertiary coal zones in Wyoming, Montana and North Dakota, 2003, Mining Engineering (55) - 1
- Gemstones, 2002, Mining Engineering (54) - 6
- Fluorspar, 2002, Mining Engineering (54) - 6
- Magnesium compounds, 2002, Mining Engineering (54) - 6
- The United States 2001, 2002, Mining Engineering (54) - 5
- Exploration, 2002, Mining Engineering (54) - 5
- Raw materials and technology fuel U.S. economic growth, 2002, Mining Engineering (54) - 12
- Nitrogen, 2001, Mining Engineering (53) - 6
- Common clay and shale, 2001, Mining Engineering (53) - 6
- Kaolin, 2001, Mining Engineering (53) - 6
- Magnesium compounds, 2001, Mining Engineering (53) - 6
- Gemstones, 2001, Mining Engineering (53) - 6
- Industrial garnet, 2001, Mining Engineering (53) - 6
- Industrial diamond, 2001, Mining Engineering (53) - 6
- Construction aggregates, 2001, Mining Engineering (53) - 6
- Ball clay, 2001, Mining Engineering (53) - 6
- Fluorspar, 2001, Mining Engineering (53) - 6
- Industrial minerals 2000, 2001, Mining Engineering (53) - 6
- The United States 2000, 2001, Mining Engineering (53) - 5
- Mining overview, 2001, Mining Engineering (53) - 5
- Exploration, 2001, Mining Engineering (53) - 5
- Kaolin, 2000, Mining Engineering (52) - 6
- Common clay and shale, 2000, Mining Engineering (52) - 6
- Gemstones, 2000, Mining Engineering (52) - 6
- Exploration, 2000, Mining Engineering (52) - 5
- Strontium, 2000, Mining Engineering (52) - 6
- Construction aggregates, 2000, Mining Engineering (52) - 6
- Industrial diamond, 2000, Mining Engineering (52) - 6
- Industrial garnet, 2000, Mining Engineering (52) - 6
- Ball clay, 2000, Mining Engineering (52) - 6
- Peat, 2000, Mining Engineering (52) - 6
- Industrial minerals 1999, 2000, Mining Engineering (52) - 6
- Exploration, 1999, Mining Engineering (51) - 5
- The United States 1998, 1999, Mining Engineering (51) - 5
- Digital assessment of northern and central Appalachian basin coals, 1999, Mining Engineering (51) - 10
- Seismic tomography as a tool for measuring stress in mines, 1999, Mining Engineering (51) - 1
- Asbestos, 1998, Mining Engineering (50) - 6
- Exploration, 1998, Mining Engineering (50) - 5
- Peat, 1998, Mining Engineering (50) - 6
- Fluorspar, 1998, Mining Engineering (50) - 6
- Clays, common, 1998, Mining Engineering (50) - 6
- Clays, specialty, 1998, Mining Engineering (50) - 6
- Lithium, 1998, Mining Engineering (50) - 6
- Geology of Wyoming's Powder River Basin coalfield, 1998, Mining Engineering (50) - 7
- Fluorspar, 1997, Mining Engineering (49) - 6
- Exploration, 1997, Mining Engineering (49) - 5
- Use of high-resolution ground-penetrating radar in kimberlite delineation, 1997, Mining Engineering (49) - 11
- Construction aggregates, 1996, Mining Engineering (48) -
- Strontium, 1996, Mining Engineering (48) -
- Fluorspar, 1996, Mining Engineering (48) - 6
- Changing imperatives of architecture affecting dimension stone use in world commerce, 1996, Mining Engineering (48) - 1
- Construction aggregates, 1995, Mining Engineering (47) -
- Fluorspar, 1995, Mining Engineering (47) - 6
- Strontium, 1995, Mining Engineering (47) -
- Fluorspar, 1994, Mining Engineering (46) - 6
- Construction aggregates, 1994, Mining Engineering (46) -
- Strontium, 1994, Mining Engineering (46) -
- Fluorspar, 1993, Mining Engineering (45) - 6
- Construction aggregates, 1993, Mining Engineering (45) -
- Strontium, 1993, Mining Engineering (45) -
- Economics of utilization of high sulfur coal resources - an integrated market approach, 1993, Mining Engineering (45) - 11
- Strontium, 1992, Mining Engineering (44) -
- Fluorspar, 1992, Mining Engineering (44) - 6
- Construction aggregates, 1991, Mining Engineering (43) -
- Strontium, 1991, Mining Engineering (43) -
- Strontium, 1990, Mining Engineering (42) -
- Strontium, 1989, Mining Engineering (41) -
- Magnesite, 1989, Mining Engineering (41) - 6
- Mineralization potential along the trend of the Keweenawan- age Central North American Rift System in Iowa, Nebraska, and Kansas, 1989, Mining Engineering (41) - 8
- In situ analysis of coal using a 252CF-Ge(Li) borehole sonde, 1978, Mining Engineering (30) - 6
- ERTS-A: a new apogee for mineral finding, 1971, Mining Engineering (23) -
- New York talcs, their geological features, mining, milling, and uses, 1949, Mining Engineering (1) - 9