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Principles Of Comminution-Size And Surface DistributionBy A. M. Gaudin, R. T. Hukki
PREVIOUS work on the principles of comminution has shown: (I) that the surface produced is proportional to work input (Rittinger law, 1a-3); (2) that there is regularity to the weight distribution of
Jan 1, 1944
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Principles Of Comminution-Size And Surface Distribution (4478a0b9-a8a8-4343-a174-964a5ab8ff5c)By S. Suphi Yavasca, A. M. Gaudin
THIS paper is intended as a contribution to our knowledge of the mechanism of comminution and of the work of crushing. In a previous paper' it was shown that with quartz comminution proceeds as
Jan 1, 1945
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Principles of Copper DepositsBy F. E. Calkins
THE following presentation of the more important accumulated facts and probabilities involved in copper ore deposition is based on my experience in examination work and study of the extensive litera
Jan 10, 1923
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Principles of DewateringBy Surendra K. Mishra
The principles of dewatering fine coal has been examined in terms of solid- liquid separation. It is noted that the physical and physico-chemical properties of the particle-liquid system influence the
Jan 1, 1988
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Principles Of Dispersion And Aggregation Of Mineral FinesBy Thomas W. Healy
Particles present in mineral processing systems that are termed ultrafine are those that are small enough to be unaffected by gravity or the flow conditions imposed on the pulp. As such, their interac
Jan 1, 1979
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Principles Of DrillingBy Howard L. Hartman
6.1-1. Introduction. Of necessity, the first of the unit operations conducted during the exploitation phase in surface mining is production drilling. It precedes blasting, with which it is associated
Jan 1, 1968
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Principles Of Evaluation Of Lateritic OresBy Robert M. Dreyer
Although lateritic ore deposits are relatively flat-lying, surficial ore bodies, the evaluation of lateritic bauxite and nickel deposits is among the most difficult problems confronting an economic ge
Jan 8, 1978
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Principles Of Evaluation Of Lateritic Ores (3199d6d1-7cf1-4c6c-a019-26bc964cdd33)By Robert M. Dreyer
The first time that a geologist is confronted with the necessity of evaluating a lateritic ore deposit, he may feel that nothing could be easier. Why should there be any problems in making an economic
Jan 1, 1977
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Principles Of Evaluation Of Lateritic Ores (f7166000-4860-4163-bccf-4c686d1227e9)By Robert M. Dreyer
Although lateritic ore deposits are relatively flat-lying, surficial ore bodies, the evaluation of lateritic bauxite and nickel deposits is among the most difficult problems confronting an economic ge
Jan 1, 1979
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Principles Of Flocculation, Dispersion, And Selective FlocculationBy P. Somasundaran
Processing of fine particles in suspension is markedly affected by their state of dispersion/aggregation. In addition, tendency for a given component of the system to undergo selective aggregation or
Jan 1, 1980
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Principles of Flotation, 11.-An Experimental Study of the Influence of Cyanide, Alkalis and Copper Sulfate on the Effect of Potassium Ethyl Xanthate at Mineral SurfacesBy Ian Wark
IN an earlier paper1 measurements of contact angles due to the effect of xanthates on mineral surfaces were reported. The solutions in which these measurements were made differed widely from those of
Jan 1, 1933
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Principles Of Flotation, 111.-An Experimental Study Of The Influence Of Cyanide, Alkalis And Copper Sulfate On The Effect Of Sulfur-Bearing Collectors At Mineral SurfacesBy I. W. Wark
AN attempt has been made to compare the influences of the two most widely used depressants-alkalis and sodium cyanide-and the most widely used activator-copper sulfate-on the air-mineral contact induc
Jan 1, 1934
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Principles of Flotation, IV-An Experimental Study of Influence of Sodium Sulfide, Alkalis and Copper Sulfate on Effect of Xanthates at Mineral SurfacesBy Ian Wark
SODIUM sulfide is used extensively to increase the recovery of oxidized copper and lead minerals by flotation, particularly when using xanthates as collectors. It is generally assumed that the sodium
Jan 1, 1936
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Principles Of Flotation, IX-Influence Of The Anion On Air- Mineral Contact In Presence Of Collectors Of Xanthate Type And Its Consequent Influence On Differential Flotation (5a00040e-c15b-4ed3-bcf5-d57328adbd57)By Ian W. Wark, Keith L. Sutherland
IT has been shown' that in the absence of heavy metal salts, the nature of the alkali used to promote differential flotation-whether caustic soda, lime or sodium carbonate-is unimportant. The hyd
Jan 1, 1939
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Principles Of Flotation, IX-Influence Of The Anion On Air-Mineral Contact In Presence Of Collectors Of Xanthate Type And Its Consequent Influence On Differential FlotationBy Ian Wark
IT has been shown1 that in the absence of heavy metal salts, the nature of the alkali used to promote differential flotation-whether caustic soda, lime or sodium carbonate-is unimportant. The hydroxyl
Jan 1, 1939
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Principles of Flotation, V-Conception of Adsorption Applied to Flotation ReagentsBy Ian Wark
IN defending the chemical theory of flotation, Taggart, del Giudice and Ziehl have criticized1 the views of those who prefer to attribute the effects of certain flotation agents to adsorption. Perhaps
Jan 1, 1936
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Principles of Flotation, VI - Influence of Temperature on Effect of Copper Sulphate, Alkalies and Sodium Cyanide on Adsorption of Xanthates at Mineral SurfaceBy Ian William Wark
DIFFERENT parts of the world in which mineral separation by flotation is practiced experience vastly different natural temperatures, and in some districts there is a big difference between summer and
Jan 1, 1938
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Principles Of Flotation, VI- Influence Of Temperature On Effect Of Copper Sulphate, Alkalise And Sodium Cyanide On Adsorption Of Xanthatse At Mineral SurfacesBy William Ian Wark, Alwyn Birchmore Cox
DIFFERENT parts of the world in which mineral separation by flotation is practiced experience vastly different natural temperatures, and in some districts there is a big difference between summer and
Jan 1, 1938
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Principles of Flotation, VII-Mercaptobenzthiazole as a Flotation AgentBy Ian Wark
MERCAPTOBENZTHIAZOLE and its sodium salt are marketed under the trade names Flotagen and Flotagen S respectively, for use as collectors for cerussite and other minerals. The structural formulas for so
Jan 1, 1939
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Principles Of Flotation, VII-Mercaptobenzthiazole As A Flotation Agent (8e157720-7109-44d2-803d-0cf477b58391)By Ian William Wark, Keith Leonard Sutherland
MERCAPTOBENZTHIAZOLE and its sodium salt are marketed under the trade names Flotagen and Flotagen S respectively, for use as collectors for cerussite and other minerals. The structural formulas for so
Jan 1, 1939