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Friday, July 24, 2020 | History

2 edition of Thermodynamic data for mineral technology found in the catalog.

Thermodynamic data for mineral technology

L. B. Pankratz

Thermodynamic data for mineral technology

by L. B. Pankratz

  • 354 Want to read
  • 22 Currently reading

Published by U.S. Dept. of the Interior, Bureau of Mines, For sale by the Supt. of Docs., U.S. G.P.O. in [Avondale, Md.], Washington, DC .
Written in English

    Subjects:
  • Mineralogy -- Thermal properties.,
  • Phase rule and equilibrium.,
  • Mineral industries.

  • Edition Notes

    Bibliography: p. 353-355.

    Statementby L.B. Pankratz, J.M. Stuve, and N.A. Gokcen.
    SeriesBulletin ;, 677, Bulletin (United States. Bureau of Mines) ;, 677.
    ContributionsStuve, J. M., Gokcen, N. A.
    Classifications
    LC ClassificationsQE364 .P285 1984
    The Physical Object
    Paginationiv, 355 p. ;
    Number of Pages355
    ID Numbers
    Open LibraryOL2998722M
    LC Control Number84600195

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Thermodynamic data for mineral technology by L. B. Pankratz Download PDF EPUB FB2

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Abstract. Earth scientists in search of thermodynamic data are faced with questions as to the quality and reliability of their finds. Analysis of the currently available thermodynamic data bases for minerals reveals discrepancies of form and of contents, both of which complicate the quality differences render comparisons of properties among different data bases cumbersome at Cited by: The single pyrrhotite experiment suggests an overestimation of its solubility in all three databases containing data for this mineral (, coredat, ), whereas data in for mackinawite and ferrous sulfide are in good agreement with the experimental by: Abstract.

Thermodynamic data are critical as input to models that attempt to interpret the geochemistry of environmentally important elements such as arsenic. Unfortunately, the thermodynamic data for mineral phases of arsenic and their solubilities have been highly discrepant and inadequately evaluated.

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The introductory section discusses thermodynamic theory and applications concisely and explains how best to use the tables; it has also. Thermodynamic properties of minerals and fluids Experiment in Geosciences Volume 22 N 1 39 properties of gases and liquids, 3d edition, McGrawHill Book Company, New York, p.

Yokokawa H. Tables of thermodynamic properties of inorganic compounds. Journal of the national chemical laboratory for industry,Tsukuba. thermodynamic properties of minerals and principal mineral-forming substances, including aqueous spe-cies, in large temperature and pressure ranges.

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Thermodynamic data for mineral technology Call Number: TNB85 No. [Gallagher and Online] Thermodynamic properties of elements, halides, carbides, nitrides or oxides (various volumes).

Thermodynamic Properties of Minerals and Related Substances at °K (°C) and One Atmosphere ( Bars) Pressure and at Higher Temperatures By RICHARD A. ROBIE ajid DAVID R.

WALDBAUM GEOLOGICAL SURVEY BULLETIN A summary of the thermodynamic data for minerals at °K together with calculated. These all Thermodynamics Pdf Free Download here provide also useful for the study other state and India level exams like SSC Jen, BSNL Je And JTO Exams, Railways Jen And Section Engineers, DRDO, DMRC, Metro, many other state level and India level engineering exams.

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WOOD Department of Geological Sciences, McGill University, University St., Montreal, Quebec, Canada, H3A 2A7. The new thermodynamic dataset reproduces all available fluid-mineral phase equilibria and mineral solubility data in the system Ca-Mg-Na-K-Al-Si-O-H-C-Cl with good accuracy over wide ranges in.

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texts All Books All Texts latest This Just In t-z/foT USE OF TABULATED THERMOCHEMICAL DATA FOR PURE COMPOUNDS Nathan S. Jacobson NASA John H. Glenn Research Center Cleveland, OH Abstract databases. Bureau of Mines: Washington, D. C, 4e. Pankratz, L. B., Stuve, J. M., and Gokcen, N.

Thermodynamic Data for Mineral Technology. The DFT-derived thermodynamic data are also accurate enough for computing the P–T positions of reactions that are characterized by relatively large reaction enthalpies (> kJ/mol), i.e.

Thermochemical Database (TDB) Project. The purpose of the Thermochemical Database Project is to make available a comprehensive, internally consistent, quality-assured and internationally recognised chemical thermodynamic database of selected chemical elements in order to meet the specialised modelling requirements for safety assessments of radioactive waste disposal systems.

Strong sorption of planar nonionic organic chemicals by clay minerals has been observed for important classes of organic contaminants including polyaromatic hydrocarbons (PAHs), polychlorinated biphenyls (PCBs), and dioxins, and such affinity was hypothesized to relate to the interlayer hydrophobicity of smectite clays.

In batch sorption experiments of two trichlorobiphenyls on homoionic Na. Selenium compounds are relatively rare as minerals; there are presently only known mineral species. This work is intended to codify and systematize the data of mineral systems and the thermodynamics of selenium minerals, which are unstable (selenides) or formed in near-surface environments (selenites), where the behavior of selenium is controlled by variations of the redox .Aluminum ΔH o f (kJ/mol) ΔG o f (kJ/mol) S o (J/mol K); Al (s) 0.

Abstract. Thermodynamic data are critical as input to models that attempt to interpret the geochemistry of environmentally important elements such as arsenic. Unfortunately, the thermodynamic data for mineral phases of arsenic and their solubilities have been highly discrepant and inadequately evaluated.

This paper presents the results of a simultaneous non-linear weighted least-squares multiple regression on more than 75 thermochemical measurements .