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Minerals Beneficiation - Grinding Magnetic Taconite in, Rod Mills
By E. M. Furness, A. S. Henderson
ORIGINALLY the Babbitt experimental plant grinding circuit consisted of one rod mill 101/2 ft diam by 12 ft long in open circuit followed by two ball mills 101/2 ft diam* 12 ft long in parallel cir-
Jan 1, 1958
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Minerals Beneficiation - Grinding Mills as Conditioners in Sulphide Flotation
By C. G. McLachlan
ONE phase of the treatment in sulphide flotation, covered generally in a review of pulp pretreat-ment by S. A. Falconer,' is the matter of grinding mills as conditioners, a subject on which furth
Jan 1, 1952
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Minerals Beneficiation - Grinding Practice at Tennessee Copper Co.'s Isabella Mill (Discussion p. 1255)
By F. M. Lewis, J. E. Goodman
A larger, slow-speed, under-loaded ball mill and hydraulic classifier have almost doubled grinding efficiency at the lsabella mill. TENNESSEE Copper Co. operates two ore con-A centrators, the Londo
Jan 1, 1958
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Minerals Beneficiation - Handling and Drying of Wet Ambrosia Lake Ores
By R. J. Stoehr, F. Howell
Since the ore mined in the Grants-Ambrosia Lake uranium area is taken from a water-saturated sandstone formation, part of the milling operation includes a drying process. The authors discuss the meri
Jan 1, 1961
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Minerals Beneficiation - Handling Coarse Ore in a CCD Thickener Circuit at Uravan
By O. J. Malacarne, D. G. Millenbruch
The use of a series of thickeners for washing of the slime fraction of a leached ore is not uncommon in the uranium industry; however, few ore processing mills have used a thickener circuit for washin
Jan 1, 1962
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Minerals Beneficiation - Heat of Adsorption and Surface Reactions of Potassium Ethyl Xanthate on Galena
By Olav Mellgren
Part I. The interaction between potassium ethyl xanthate and lead salts has been studied thermo-chemically. It is shown that ethyl xanthate reacts with lead carbonate, basic carbonate, thiosulfate and
Jan 1, 1967
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Minerals Beneficiation - Heavy Liquid Cyclone Concentration of New Mexico Potash Ores
By R. B. Tippin, J. S. Browning
Inasmuch as the higher grade potash deposits are rapidly being depleted, it is important that economic beneficiation techniques be developed for recovering potassium compounds from lower grade sylvite
Jan 1, 1967
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Minerals Beneficiation - Heavy Liquid Recovery Systems in Mineral Beneficiation
By E. C. Tveter, R. B. Tippin
The separation of minerals by heavy liquids is a standard laboratory technique which goes back at least 50 years, but commercially economic application of this principal to ore concenfration has been
Jan 1, 1969
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Minerals Beneficiation - Heavy Liquid Separation of Halite and Sylvite
By W. B. Dancy, A. Adams
Laboratory test work on heavy liquid separation of sylvite from halite is reported. Numerous tests were run on sylvite ore sized in the ranges of 4x20 mesh, 10x65 mesh, 8x100 mesh, -8 mesh and -10 mes
Jan 1, 1963
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Minerals Beneficiation - High Temperature Testing of Burden Materials
By R. Wild, F. A. Wright
When a blast furnace has a certain defined burden and is operated under fixed conditions of blast temperature, etc., the fuel efficiency is determined by the extent to which the reducing gases can rem
Jan 1, 1964
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Minerals Beneficiation - High Velocity Impact in Comminution
By R. J. Charles
PREVIOUS study' of simple impact systems indicated that energy required for fracture and size reduction of brittle materials is greatly dependent on the type of loading that is employed. In this
Jan 1, 1957
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Minerals Beneficiation - High-Intensity Magnetic Separation of Iron Ores
By O. E. Palasvirta
Close examination of most so-called n.eu processes in mineral dressing reveals that they were conceived and developed a long time ago. High-intensity magnetic separation is no exception. Although its
Jan 1, 1960
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Minerals Beneficiation - High-Temperature Thin-Film Sulfidization of Hematite for Recovery by Flotation
By M. E. Wadsworth, T. D. Chatwin
The kinetics of sulfidization of hematite (Fe203) by H2S gas at various partial pressures have been determined over the temperature range of 170° to 500°C. The process was controlled by thin films of
Jan 1, 1969
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Minerals Beneficiation - Humphreys Spiral Concentration on Mesabi Range Ores
By Whitman E. Brown, Louis J. Erck
The installation in 1948 of a Hum-phrey~ spiral concentrator section at the Hill-Trumbull plant of The Cleve-land-Cliffs Iron Co. is the latest commercial method on the Mesabi Range being used for the
Jan 1, 1950
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Minerals Beneficiation - Humphreys Spiral Concentration on Mesabi Range Ores - Discussion
By Whitman E. Brown, Louis J. Erck
L. A. ROE*—This paper is one of great value to the iron ore industry. The Humphreys spiral is a relatively new tool and gives promise of being quite useful in solving certain problems of iron ore bene
Jan 1, 1950
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Minerals Beneficiation - Hydrocyclone Thickening with Flocculants
By L. R. Plitt, E. O. Lilge
Tests carried out with both kaolin and silica slurries show that flocculants of the polyacrylamide type can be used to improve the thickening performance of hydrocyclones. This thickening improvement
Jan 1, 1968
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Minerals Beneficiation - Hydrodynamics of Flotation Cells
By R. F. Yap, N. Arbiter, C. C. Harris
A fully-instrumented driving mechanism has been constructed to study the power, aerating and solid suspension characteristics of several laboratory flotation machines. Machines operating over norma
Jan 1, 1970
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Minerals Beneficiation - Hydrolytic and Ion Pair Absorption Models for Collectors in Flotation
By M. A. Cook
Sutherland used an ion-pair adsorption model to derive the author's hy-drolytic pee-acid) adsorption equation for the contact bubble curves of Wark and Cox. To do so it was necessary to postulat
Jan 1, 1961
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Minerals Beneficiation - Hydroxamate vs. Fatty Acid Flotation of Iron Oxide
By R. W. Harper, M. C. Fuerstenau, J. D. Miller
Data were obtained with hematite with octyl hydroxamate and oleate as collectors to determine the mechanism of collector adsorption and also to establish the roles that conditioning time and temperatu
Jan 1, 1971
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Minerals Beneficiation - Hysteresis of Contact Angles in the System Organic Liquid-Water-Rutile
By A. F. Witt, A. M. Gaudin, A. K. Biswas
Finite contact angles in the rutile-water-organic liquid system are traceable to contamination or are due to addition of a surface-active agent. Finite contact angles are invariably accompanied by hy
Jan 1, 1964