Literatura académica sobre el tema "Mineralogic analysis"

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Artículos de revistas sobre el tema "Mineralogic analysis"

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Yernault, JC, G. Kuhn, P. Dumortier, P. Rocmans, P. Ketelbant, and P. De Vuyst. ""Solid" mediastinal bronchogenic cyst: mineralogic analysis." American Journal of Roentgenology 146, no. 1 (1986): 73–74. http://dx.doi.org/10.2214/ajr.146.1.73.

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Halley, Scott. "Mapping Magmatic and Hydrothermal Processes from Routine Exploration Geochemical Analyses." Economic Geology 115, no. 3 (2020): 489–503. http://dx.doi.org/10.5382/econgeo.4722.

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Abstract Analytical methods used by commercial assay laboratories have improved enormously in recent years. Inductively coupled plasma-atomic emission spectroscopy and inductively coupled plasma-mass spectrometry methods now report analyses for half of the periodic table with exceptional detection limits and precision. It is becoming commonplace for mining companies to use such methods routinely for the analysis of drill samples throughout mineral deposits. Improvements in software and computing power now allow rapid interrogation of upward of 100,000 assay samples. Geochemical analyses are qu
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Graham, Shaun, and Nynke Keulen. "Nanoscale Automated Quantitative Mineralogy: A 200-nm Quantitative Mineralogy Assessment of Fault Gouge Using Mineralogic." Minerals 9, no. 11 (2019): 665. http://dx.doi.org/10.3390/min9110665.

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Effective energy-dispersive X-ray spectroscopy analysis (EDX) with a scanning electron microscope of fine-grained materials (submicrometer scale) is hampered by the interaction volume of the primary electron beam, whose diameter usually is larger than the size of the grains to be analyzed. Therefore, mixed signals of the chemistry of individual grains are expected, and EDX is commonly not applied to such fine-grained material. However, by applying a low primary beam acceleration voltage, combined with a large aperture, and a dedicated mineral classification in the mineral library employed by t
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Rey, F., C. Boutin, J. R. Viallat, et al. "Environmental Asbestotic Pleural Plaques in Northeast Corsica: Correlations with Airborne and Pleural Mineralogic Analysis." Environmental Health Perspectives 102 (October 1994): 251. http://dx.doi.org/10.2307/3432097.

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Rey, F., C. Boutin, J. R. Viallat, et al. "Environmental Asbestotic Pleural Plaques in Northeast Corsica: Correlations with Airborne and Pleural Mineralogic Analysis." Environmental Health Perspectives 102, suppl 5 (1994): 251–52. http://dx.doi.org/10.1289/ehp.94102s5251.

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Cui, Tao. "Research Progress of Bauxite in WZD Area, Northern Guizhou, China." Advanced Materials Research 989-994 (July 2014): 1392–95. http://dx.doi.org/10.4028/www.scientific.net/amr.989-994.1392.

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This paper has a comprehensive analysis on the bauxite in Wuchuan-Zheng, an-Daozhen (WZD) area, northern Guizhou, China through synthesize former research. The understanding of mineralogic, petrologic and geochemical characteristics is deep, and sedimentary environment, parent rock and mineralization process have been defined. Main questions need further research as follow: minerogenetic epoch; migration mechanism of elements; genesis of rare earth mineral.
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Torres-Ceron, Darwin Augusto, Carlos Daniel Acosta-Medina, and Elisabeth Restrepo-Parra. "Geothermal and Mineralogic Analysis of Hot Springs in the Puracé-La Mina Sector in Cauca, Colombia." Geofluids 2019 (February 27, 2019): 1–20. http://dx.doi.org/10.1155/2019/3191454.

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Thermal waters are natural resources of great value to geothermal sciences, the tourism industry, and health. In this work, geochemical classification of physicochemical results of 17 sources at the Puracé-La Mina (Cauca, Colombia) sector was implemented in order to strengthen and determine their potential applications and enhance the continental tourism in Colombia. The analyzed parameters were developed following the Standard Methods 22nd edition, at Universidad Nacional de Colombia-Manizales. According to the results obtained by means of a geochemical classification, it was found that most
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Utami, Dwi Amanda, Lars Reuning, Maximillian Hallenberger, and Sri Yudawati Cahyarini. "The mineralogic and isotopic fingerprint of equatorial carbonates: Kepulauan Seribu, Indonesia." International Journal of Earth Sciences 110, no. 2 (2021): 513–34. http://dx.doi.org/10.1007/s00531-020-01968-9.

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AbstractKepulauan Seribu is an isolated patch reef complex situated in the Java Sea (Indonesia) and is a typical example for a humid, equatorial carbonate system. We investigate the mineralogical and isotopic fingerprint of Panggang, one of the reef platforms of Kepulauan Seribu, to evaluate differences to other carbonate systems, using isotope in combination with XRD and SEM analysis. A characteristic property of shallow water (< 20 m) sediments from Kepulauan Seribu is their increased LMC content (~ 10%) derived from some genera of rotaliid foraminifers and bivalves. The relative abundanc
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Torres-Ceron, Darwin Augusto, Carlos Daniel Acosta-Medina, and Elisabeth Restrepo-Parra. "Physical-Chemical Characterization and Mineralogic Analysis of Hydrothermal Systems Located in the Coconuco and the San Juan Sectors in Cauca, Colombia." Geofluids 2019 (May 12, 2019): 1–19. http://dx.doi.org/10.1155/2019/9176925.

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Hot springs of the volcanic zones are characterized for having high sulfur content in the form of sulphate and other ions resulting from chemical reactions. Sources with these types of elements are of great interest for the tourism and geothermal industry because of their highlighted properties which include therapeutic treatments, relaxation baths, agricultural applications, and preservation of flora and fauna among others. For these reasons, research oriented to carry out the characterization of these factors is of great importance to determine the availability of places with such characteri
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Fortey, N. J. "Image analysis in mineralogy and petrology." Mineralogical Magazine 59, no. 395 (1995): 177–78. http://dx.doi.org/10.1180/minmag.1995.059.395.01.

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“Image analysis” refers to the general family of computational techniques which are concerned with the extracting of quantitative information from images captured in digital form. Such techniques have been in use for several years in areas such as biology and metallurgy, but have been slow to find wide use in the microscopic areas of Earth Sciences. Notable exceptions have included applications in the areas of mineral processing and sedimentary petrography.The impetus for the meeting held jointly by the Applied Mineralogy Group of the Mineralogical Society and the Geological Information Group
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Tesis sobre el tema "Mineralogic analysis"

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Dias, Luiz Gustavo da Silveira. "Caracteriza??o geol?gica, geoqu?mica e geocronol?gica da su?te plut?nica enoproteroz?ica da regi?o de Serrinha, por??o centro-leste do maci?o S?o Jos? de Campestre, sudeste do RN." Universidade Federal do Rio Grande do Norte, 2006. http://repositorio.ufrn.br:8080/jspui/handle/123456789/18839.

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Made available in DSpace on 2015-03-13T17:08:39Z (GMT). No. of bitstreams: 1 LuizGSD_ate_cap6.pdf: 3498562 bytes, checksum: 2d2d95d878c0320cd578c1fd98d02cfe (MD5) Previous issue date: 2006-08-31<br>Coordena??o de Aperfei?oamento de Pessoal de N?vel Superior<br>The of Serrinha plutonic suite, northeastern portion of the Borborema Province (NE Brazil), is characterized by a voluminous and diversified magmatism of Neoproterozoic age, intrusive in the Archean to Paleoproterozoic gneissic-migmatitic basement of the S?o Jos? de Campestre massif. Field relations and petrographic and geochemical
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Martinello, Polyana. "Obtenção de caulinta intercalada com acetato de potássio via processos mecanoquímicos e imersão em solução." Universidade Tecnológica Federal do Paraná, 2014. http://repositorio.utfpr.edu.br/jspui/handle/1/1122.

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Complexos de caulinita intercalada com acetato de potássio estão em destaque em diversos estudos devido a sua variada aplicação na indústria. A facilidade com que ocorre o processo de intercalação do acetato de potássio na matriz da caulinita corrobora na utilização do material em muitas outras reações e produtos. Duas metodologias de intercalação foram comparadas nesse trabalho, processos mecanoquímico e por imersão. Técnicas de caracterização como Difração de Raios X de pó (DRX), Infravermelho com Transformada de Fourier (IVTF), Espectroscopia Eletrônica por Reflectância Difusa em amostras s
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Sandmann, Dirk. "Method development in automated mineralogy." Doctoral thesis, Technische Universitaet Bergakademie Freiberg Universitaetsbibliothek "Georgius Agricola", 2015. http://nbn-resolving.de/urn:nbn:de:bsz:105-qucosa-187215.

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The underlying research that resulted in this doctoral dissertation was performed at the Division of Economic Geology and Petrology of the Department of Mineralogy, TU Bergakademie Freiberg between 2011 and 2014. It was the primary aim of this thesis to develop and test novel applications for the technology of ‘Automated Mineralogy’ in the field of economic geology and geometallurgy. A “Mineral Liberation Analyser” (MLA) instrument of FEI Company was used to conduct most analytical studies. This automated system is an image analysis system based on scanning electron microscopy (SEM) image acqu
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Lin, David. "The production of a standard material for liberation analysis /." Thesis, McGill University, 1991. http://digitool.Library.McGill.CA:80/R/?func=dbin-jump-full&object_id=60572.

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In mineral processing, the liberation distribution of the mineral phases in an ore is an important factor. Unfortunately, liberation distribution is very difficult to measure accurately. One problem is the stereological effect associated with a microscopic liberation analysis.<br>Many methods have been proposed to correct for the stereological effect, but they remain essentially untested, in part due to the lack of a standard or reference material. In this work, a method was established to create an artificial standard material.<br>Silica grains were placed in an epoxy resin to create a block
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Klichowicz, Michael. "Modeling of realistic microstructures on the basis of quantitative mineralogical analyses." OpenD, 2020. https://tubaf.qucosa.de/id/qucosa%3A72835.

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Diese Forschung zielt darauf ab, den Einsatz realistischer Mineralmikrostrukturen in Mineralverarbeitungssimulationen Simulationen von Aufbereitungsprozessen zu ermöglichen. Insbesondere Zerkleinerungsprozesse, wie z.B. das Brechen und Mahlen von mineralischen Rohmaterialien, werden stark von der mineralischen Mikrostruktur beeinflusst, da die Textur und die Struktur der vielen Körner und ihre mikromechanischen Eigenschaften das makroskopische Bruchverhalten bestimmen. Ein Beispiel: Stellen wir uns vor, wir haben ein mineralisches Material, das im Wesentlichen aus Körnern zweier verschiedener
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Jones, Michael Bryan. "Correlative Analysis of the Gravity and Megnetic Anomalies of Ohio and their Geologic Significance." The Ohio State University, 1988. http://rave.ohiolink.edu/etdc/view?acc_num=osu1392823447.

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Bosch, Gordon L. "The mineralogy and chemistry of pulverised fuel ash produced by three South African coal-burning power stations." Master's thesis, University of Cape Town, 1990. http://hdl.handle.net/11427/22044.

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Bibliography: pages 161-166.<br>The chemical and mineral compositions are presented for 63 pulverized fuel ash (PFA) and 16 input coal samples collected from Lethabo, Duvha and Matla power stations over the period 1987-1988. Bulk chemical composition was determined by X-ray fluorescence spectrometry. The mineral concentrations were determined by semi-quantitative X-ray diffraction based on integrated counts over peak areas, with silicon used as an internal standard. The particle size distributions were determined for two sample sets from each power station with a Malvern Instruments Particle S
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Chatterton, Logan. "Spectral analysis of petroleum reservoir rock using fourier transform infrared (FTIR) spectroscopy." Thesis, Oklahoma State University, 2016. http://pqdtopen.proquest.com/#viewpdf?dispub=10140532.

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<p> Compositional analysis of reservoir rock is a vital aspect of oil exploration and production activities. In a broad sense, knowing the mineral composition of a reservoir can help with characterization and interpretation of depositional environments. On a smaller scale, identifying mineralogy helps calibrate well logs, identify formations, design drilling and completion programs, and screen for intervals with potential problem minerals, such as swelling clays. The petroleum industry utilizes two main methods to find compositional mineralogy, x-ray diffraction (XRD) and thin section analysis
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Bernardes, Eduardo Silveira. "Diagênese da Formação Corumbataí na Mina Partezani, Rio Claro - SP /." Rio Claro : [s.n.], 2005. http://hdl.handle.net/11449/102981.

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Resumo: A Formação Corumbataí (Permiano) foi estudada em suas variações verticais, em duas frentes de lavra nas proximidades de Rio Claro, enfocando as relações entre os componentes mineralógicos e as propriedades cerâmicas. A análise petrográfica das amostras coletadas nessas minas, por meio de microscópio óptico, juntamente com Microscopia Eletrônica de Varredura (MEV) dos minerais do cimento e Difração de Raios-X (DRX) com a fração argila, revelou uma assembléia mineralógica complexa com quartzo e feldspato na dimensão silte, matriz constituída por illita, esmectita-clorita, chamosita, bert
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Forsyth, Jeffrey. "Characterisation of minerals using evolved gas analysis and infrared spectroscopy." Thesis, Sheffield Hallam University, 2001. http://shura.shu.ac.uk/19680/.

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Several methods have been used for the characterisation of minerals in powders and in rocks. Particular emphasis has been directed towards the use of chemical probes to elucidate the surface mineralogy in order to provide detection profiles suitable for both qualitative and quantitative chemometric analysis. The first probe evaluated was cyclohexylamine (CHA). Ni[2+]- and Al[2+]-exchanged montmorillonite (SWy-2 -Wyoming, USA), were exposed to cyclohexylamine vapour (CHA). The samples were characterised by X-ray diffraction (XRD), thermogravimetric analysis (TGA) and evolved gas analysis (EGA),
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Libros sobre el tema "Mineralogic analysis"

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Dickinson, Kendell A. A statistical analysis of chemical and mineralogic data from the Tertiary Kootznahoo Formation in southeastern Alaska, with emphasis of uranium and thorium. U.S. G.P.O., 1988.

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Dickinson, Kendell A. A statistical analysis of chemical and mineralogic data from the Tertiary Kootznahoo Formation in southeastern Alaska, with emphasis of uranium and thorium. Dept. of the Interior, 1989.

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Dickinson, Kendell A. A preliminary statistical analysis of some chemical and mineralogic data from lacustrine beds in the Oligocene White River Group in Dawes County, Nebraska. U.S. Dept. of the Interior, Geological Survey, 1988.

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Soller, D. R. Geology and tectonic history of the lower Cape Fear River Valley, southeastern North Carolina: A study of a major river valley on the outer Atlantic Coastal Plain, including mineralogic analysis of the deposits and geomorphic evidience for tectonic uplift. U.S. G.P.O., 1988.

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Starkey, Harry C. The routine mineralogical analysis of clay-bearing samples. U.S. Dept. of the Interior, U.S. Geological Survey, 1985.

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Harrington, Bernard J. Notes on a few dykes cutting Laurentian rocks, more especially with reference to their microscopic structure. s.n., 1987.

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Dieter, Heim. Tone und Tonminerale: Grundlagen der Sedimentologie und Mineralogie. F. Enke, 1990.

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Ulery, April L., and L. Richard Drees, eds. Methods of Soil Analysis Part 5-Mineralogical Methods. American Society of Agronomy and Soil Science Society of America, 2008. http://dx.doi.org/10.2136/sssabookser5.5.

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Johnson, Wesley M. Rock and mineral analysis. 2nd ed. R.E. Krieger, 1989.

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Spaargaren, W. T. Some research on mineralogy and physical properties of the Kalahari sands area. Soil Survey Unit, Research Branch, Dept. of Agriculture, 1987.

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Capítulos de libros sobre el tema "Mineralogic analysis"

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Kunze, G. W. "Pretreatment for Mineralogical Analysis." In Agronomy Monographs. American Society of Agronomy, Soil Science Society of America, 2015. http://dx.doi.org/10.2134/agronmonogr9.1.c44.

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Kunze, G. W., and J. B. Dixon. "Pretreatment for Mineralogical Analysis." In SSSA Book Series. Soil Science Society of America, American Society of Agronomy, 2018. http://dx.doi.org/10.2136/sssabookser5.1.2ed.c5.

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Drits, V. A., F. Liebau, Ch Prewitt, et al. "General Results of Crystal Structure Analysis of Minerals." In Advanced Mineralogy. Springer Berlin Heidelberg, 1994. http://dx.doi.org/10.1007/978-3-642-78523-8_4.

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Biscaye, Pierre E., David J. Demaster, and Ursula Ginster. "Mineralogy and Surface Properties." In Marine Particles: Analysis and Characterization. American Geophysical Union, 2013. http://dx.doi.org/10.1029/gm063p0325.

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Bradley, W. F. "Trends in Mineralogical Analyses." In SSSA Special Publications. Soil Science Society of America, Inc, 2015. http://dx.doi.org/10.2136/sssaspecpub3.c5.

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Dumortier, Pascal. "Mineralogical Analysis of Lung Samples." In Imaging of Occupational and Environmental Disorders of the Chest. Springer Berlin Heidelberg, 2006. http://dx.doi.org/10.1007/3-540-30903-9_8.

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Al-Dousari, Ali, and Muntha Bahbahani. "Mineralogy (XRD)." In Atlas of Fallen Dust in Kuwait. Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-66977-5_4.

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Abstract The two main particle size components of the dust samples were subjected to mineralogical analysis to identify the mineral constituents and determine their frequency percentage in each textural class; the fine sand (particle size between 0.125 and 0.063 mm) and Mud (less than 0.063 mm). The average percentage of minerals was mapped out for each season i.e. March, June, September and December 2010 showing the high and low mineral concentration in areas in Kuwait covering the mineral concentrations of Calcite, Carbonate, clay minerals, dolomite, feldspars, and quartz.
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Soukup, D. A., L. R. Drees, and W. C. Lynn. "Sampling Soils for Mineralogical Analyses." In Methods of Soil Analysis Part 5-Mineralogical Methods. American Society of Agronomy and Soil Science Society of America, 2015. http://dx.doi.org/10.2136/sssabookser5.5.c1.

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Soukup, D. A., B. J. Buck, and W. Harris. "Preparing Soils for Mineralogical Analyses." In Methods of Soil Analysis Part 5-Mineralogical Methods. American Society of Agronomy and Soil Science Society of America, 2015. http://dx.doi.org/10.2136/sssabookser5.5.c2.

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Bain, D. C., and B. F. L. Smith. "Chemical analysis." In Clay Mineralogy: Spectroscopic and Chemical Determinative Methods. Springer Netherlands, 1994. http://dx.doi.org/10.1007/978-94-011-0727-3_8.

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Actas de conferencias sobre el tema "Mineralogic analysis"

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Sarver, E., C. Keles, H. Lowers, et al. "Mineralogic Analysis of Respirable Dust from 24 Underground Coal Mines in Four Geographic Regions of the United States." In American Thoracic Society 2020 International Conference, May 15-20, 2020 - Philadelphia, PA. American Thoracic Society, 2020. http://dx.doi.org/10.1164/ajrccm-conference.2020.201.1_meetingabstracts.a2635.

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Go, L., H. A. Lowers, S. Sanyal, et al. "Mineralogic Analysis of Lung Tissue from a Former Coal Miner with Rapidly Progressive Pneumoconiosis and Progressive Massive Fibrosis." In American Thoracic Society 2019 International Conference, May 17-22, 2019 - Dallas, TX. American Thoracic Society, 2019. http://dx.doi.org/10.1164/ajrccm-conference.2019.199.1_meetingabstracts.a1820.

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Go, L., J. L. Abraham, H. Lowers, et al. "Mineralogic Analysis of Lung Tissue from Us Coal Miners Demonstrates Greater Silica Burden in Modern Cases of Progressive Massive Fibrosis." In American Thoracic Society 2020 International Conference, May 15-20, 2020 - Philadelphia, PA. American Thoracic Society, 2020. http://dx.doi.org/10.1164/ajrccm-conference.2020.201.1_meetingabstracts.a2631.

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Segura, Jose M., Miguel A. Caja, Laura García, et al. "An Integrated Numerical and Mineralogical Study of a High Pressure High Temperature Well." In ASME 2018 37th International Conference on Ocean, Offshore and Arctic Engineering. American Society of Mechanical Engineers, 2018. http://dx.doi.org/10.1115/omae2018-78152.

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Predicting drilling risks in advance is a major challenge in areas that lack drilling experience, and even when information from offset wells is available. Large overpressure was found at TD of an offshore exploratory well drilled mainly through shale. None of the other two previously drilled offset wells in the area had shown any sign of such a high overpressure. This study presents two complementary approaches to gain insight on the overpressure generation mechanisms. The effect of chemical compaction is first evaluated in terms of well cuttings analysis, including sample washing, high-resol
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null. "Mineralogy and composition of interplanetary dust." In Analysis of interplanetary dust: NASA/LPI workshop. AIP, 1994. http://dx.doi.org/10.1063/1.46522.

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Klöck, W., and F. J. Stadermann. "Mineralogical and chemical relationships of interplanetary dust particles, micrometeorites, and meteorites." In Analysis of interplanetary dust: NASA/LPI workshop. AIP, 1994. http://dx.doi.org/10.1063/1.46523.

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Flynn, G. J. "Changes to the composition and mineralogy of interplanetary dust particles by terrestrial encounters." In Analysis of interplanetary dust: NASA/LPI workshop. AIP, 1994. http://dx.doi.org/10.1063/1.46529.

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Светова, Евгения, and Светлана Шанина. "Analysis of fluid inclusions in vein quartz of the Fenkina-Lampi deposit by gas chromatography." In Mineralogical and technological appraisal of new types of mineral products. Karelian Research Center of RAS, 2019. http://dx.doi.org/10.17076/tm13_14.

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The composition and content of fluid inclusions in the main structural and technological types of vein quartz of the Fenkina-Lampi deposit were studied by gas chromatography. It is shown that H2O dominates (90–99%) in the gases composition released from quartz under heating to 1000°C, CO2, CO, N2 and hydrocarbon compounds contents are much less. Quartz is characterized by high gassing in the high-temperature region (600–1000°C) comparable to gassing in the low-temperature interval (100–600°C), which is a negative indicator of the quality of quartz as a raw material for high-quality glass melti
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Kelk, Rachel M., Dori J. Farthing, and Maria L. Leonard. "MINERALOGICAL ANALYSIS OF IRON SLAG FROM STANDISH, NY." In Joint 69th Annual Southeastern / 55th Annual Northeastern GSA Section Meeting - 2020. Geological Society of America, 2020. http://dx.doi.org/10.1130/abs/2020se-345144.

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Borges, Yan Araujo, and Jorge Leonardo Martins. "Mineralogical analysis for a well in the Namorado Reservoir." In 12th International Congress of the Brazilian Geophysical Society & EXPOGEF, Rio de Janeiro, Brazil, 15-18 August 2011. Society of Exploration Geophysicists and Brazilian Geophysical Society, 2011. http://dx.doi.org/10.1190/sbgf2011-020.

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Informes sobre el tema "Mineralogic analysis"

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C. Lum. Mineralogic Model (MM3.0) Analysis Model Report. Office of Scientific and Technical Information (OSTI), 2002. http://dx.doi.org/10.2172/837104.

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Hein, F. J. Evaluation of Petrographic and Mineralogic Analysis For Marine Placer Sediments. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1989. http://dx.doi.org/10.4095/130792.

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de Caritat, Patrice, Brent McInnes, and Stephen Rowins. Towards a heavy mineral map of the Australian continent: a feasibility study. Geoscience Australia, 2020. http://dx.doi.org/10.11636/record.2020.031.

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Heavy minerals (HMs) are minerals with a specific gravity greater than 2.9 g/cm3. They are commonly highly resistant to physical and chemical weathering, and therefore persist in sediments as lasting indicators of the (former) presence of the rocks they formed in. The presence/absence of certain HMs, their associations with other HMs, their concentration levels, and the geochemical patterns they form in maps or 3D models can be indicative of geological processes that contributed to their formation. Furthermore trace element and isotopic analyses of HMs have been used to vector to mineralisatio
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Percival, J. B., T. Jensen, K. Wasyliuk, et al. EXTECH IV mineralogical database: XRD, infrared and TEM analyses. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 2012. http://dx.doi.org/10.4095/292112.

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Bégin, N. J., R. E. Beiersdorfer, and E. D. Ghent. Mineralogical and geochemical analyses of the Crowsnest Volcanics, southwest Alberta. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1995. http://dx.doi.org/10.4095/205184.

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Petruk, W., and R. G. Pinard. Mineralogical and image analysis study of artificially weathered tailings from the Midwest uranium ore in Saskatchewan. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1988. http://dx.doi.org/10.4095/307084.

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Bryan, C. R., M. D. Siegel, and J. L. Krumhansl. Mineralogical and Chemical Analysis of Fracture and Matrix Minerals in Selected Samples of the Culebra Dolomite. Office of Scientific and Technical Information (OSTI), 2001. http://dx.doi.org/10.2172/776347.

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Matheis, G., H. Ganz, D. Kuster, and A. Utke. Mobile field analysis for exploration and environmental geochemistry by AAS and IR: on-site evaluation of chemical and mineralogical properties. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1993. http://dx.doi.org/10.4095/193273.

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Chipera, S. J., D. T. Vaniman, D. L. Bish, and J. W. Carey. Mineralogic variation in drill holes USW NRG-6, NRG-7/7a, SD-7, SD-9, SD-12, and UZ{number_sign}14: New data from 1996--1997 analyses. Office of Scientific and Technical Information (OSTI), 1997. http://dx.doi.org/10.2172/353999.

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Thorleifson, L. H., and F. J. Kristjansson. Geochemical, Mineralogical, and Lithological Analyses of Glacial Sediments For Gold, Base Metal and Kimberlite Exploration, Beardmore-Geraldton area, District of Thunder Bay, northern Ontario. Natural Resources Canada/ESS/Scientific and Technical Publishing Services, 1990. http://dx.doi.org/10.4095/130915.

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