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Results 1 to 25 of 350

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Solution Chemistry of Sodium Silicate and Implications for Pyrite FlotationBO FENG; YIPING LU; QIMING FENG et al.Industrial & engineering chemistry research. 2012, Vol 51, Num 37, pp 12089-12094, issn 0888-5885, 6 p.Article

Experimental studies and numerical model validation of overflowing 2D foam to test flotation cell crowder designsCOLE, K. E; BRITO-PARADA, P. R; XU, C et al.Chemical engineering research & design. 2012, Vol 90, Num 12, pp 2196-2201, issn 0263-8762, 6 p.Article

Parameters of Deinking Efficiency in an Industrial Flotation BankHUBER, P; ROUSSET, X; ZENO, E et al.Industrial & engineering chemistry research. 2011, Vol 50, Num 7, pp 4021-4028, issn 0888-5885, 8 p.Article

Internal Treatment of Process Waters in Paper Production by Dissolved Air Flotation with Newly Developed Chemicals. 2. Field TrialsMIRANDA, Ruben; NEGRO, Carlos; BLANCO, Angeles et al.Industrial & engineering chemistry research. 2009, Vol 48, Num 7, pp 3672-3677, issn 0888-5885, 6 p.Article

Sphalerite Flotation Using an Arylhydroxamic Acid Collector: Improving Grade while Using a Reduced Amount of Copper Sulfate for ActivationHAMILTON, Daniel; NATARAJAN, Ramanathan; NIRDOSH, Inderjit et al.Industrial & engineering chemistry research. 2009, Vol 48, Num 12, pp 5584-5589, issn 0888-5885, 6 p.Article

Diesel oil removal from water by froth flotation under low interfacial tension and colloidal gas aphron conditionsWATCHARASING, Sunisa; ANGKATHUNYAKUL, Panita; CHAVADEJ, Sumaeth et al.Separation and purification technology. 2008, Vol 62, Num 1, pp 118-127, issn 1383-5866, 10 p.Article

Flotation of chromite and serpentineGALLIOS, G. P; DELIYANNI, E. A; PELEKA, E. N et al.Separation and purification technology. 2007, Vol 55, Num 2, pp 232-237, issn 1383-5866, 6 p.Article

Predicting flotation efficiency using neural networksLABIDI, J; PELACH, M. A; TURON, X et al.Chemical engineering and processing. 2007, Vol 46, Num 4, pp 314-322, issn 0255-2701, 9 p.Article

Mixing characteristics of industrial flotation equipmentYIANATOS, Juan B; BERGH, Luis G; DIAZ, Francisco et al.Chemical engineering science. 2005, Vol 60, Num 8-9, pp 2273-2282, issn 0009-2509, 10 p.Conference Paper

A study of the rejects recovery in a column flotationOLIVEIRA, M. S; CIOQUETA, D. R; SALLUM, M et al.Materials science forum. 2005, pp 278-284, issn 0255-5476, isbn 0-87849-984-9, 7 p.Conference Paper

Effect of temperature on the stability of froth formed in the recycle process water of oil sands extractionCHOUNG, Jaewon; WALKER, Justin; ZHENGHE XU et al.Canadian journal of chemical engineering. 2004, Vol 82, Num 4, pp 801-806, issn 0008-4034, 6 p.Article

Determining equivalent pore diameter for rigid porous spargersGOMEZ, Cesar O; ESCUDERO, Ramiro; FINCH, James A et al.Canadian journal of chemical engineering. 2000, Vol 78, Num 4, pp 785-792, issn 0008-4034Article

Dissolved air flotation (DAF) performance at low saturation pressures = Efficacité de la flottation à air dissous (DAF) à basses pressions de saturationFERIS, L. A; RUBIO, J.Filtration & separation. 1999, Vol 36, Num 9, pp 60-65, issn 0015-1882Article

The flotation rates of fine spherical particles under Brownian and convective motionRAMIREZ, J. A; ZINCHENKO, A; LOEWENBERG, M et al.Chemical engineering science. 1999, Vol 54, Num 2, pp 149-157, issn 0009-2509Article

A simplified method for assessing the saturation efficiency at full-scale dissolved air flotation plantsSTEINBACH, S; HAARHOFF, J.Water science and technology. 1998, pp 303-310, issn 0273-1223, isbn 0-08-043393-6Conference Paper

A study on a continuous column flotation of quartz particlesKUBOTA, K; SHIMAZAKI, S; NAKAGAWA, M et al.Journal of chemical engineering of Japan. 1997, Vol 30, Num 6, pp 999-1004, issn 0021-9592Conference Paper

SIMS and XPS study of the adsorption of sulfide collectors on pyroxene : a case for inadvert metal in activationNAGARAJ, D. R; BRINEN, J.S.Colloids and surfaces. A, Physicochemical and engineering aspects. 1996, Vol 116, Num 3, pp 241-249, issn 0927-7757Article

Effects of pH on electroflotation of sphaleriteLLERENA, C; HO, J. C. K; PIRON, D. L et al.Chemical engineering communications (Print). 1996, Vol 155, pp 217-228, issn 0098-6445Article

Flottation de fines particules et de précipités organométalliques en colonne: Physico-chimie, Modélisation et Extrapolation = Column flotation of fine mineral particles and organometallic precipitate: Physical chemistry, Modelling and ExtrapolationFilippov, Lev Odisséevitch; Blazy, P.1996, 338 p.Thesis

Kinematic model of bubble motion in a flotation frothMURPHY, D. G; ZIMMERMAN, W; WOODBURN, E. T et al.Powder technology. 1996, Vol 87, Num 1, pp 3-12, issn 0032-5910Conference Paper

Technisch-wirtschaftliche Gesichtspunkte zur Auslegung von Zellengrösse und Banklänge bei der Flotation. II = Aspects techniques et économiques du dimensionnement de cellules et de bancs de flottation. II = Aspectos técnico-económicos del dimensionamiento de la celdas y bancos en la flotación. II = Flotation-cell size and flotation-bank length calculation according to techno-economic principles. IISCHENA, G.Aufbereitungs-Technik. 1995, Vol 36, Num 10, pp 474-479, issn 0004-783XArticle

Hydrazides of carboxylic acids as collecting agents in potassium chloride flotation from potassium oresTETERINA, N. N; RADUSHEV, A. V; ADEEV, S. M et al.Russian journal of applied chemistry. 1995, Vol 68, Num 1, pp 1-5, issn 1070-4272, 1Article

Internal recirculation and mixing in flotation columnsMAVROS, P; DANIILIDOU, A; PAPATSIOTSOU, F et al.Chemical engineering research & design. 1995, Vol 73, Num 6, pp 733-738, issn 0263-8762Conference Paper

Kinetic studies in flotation columns: bubble size effectDIAZ-PENAFIEL, P; DOBBY, G. S.Minerals engineering. 1994, Vol 7, Num 4, pp 465-478, issn 0892-6875Article

A gas-liquid drift-flux model for flotation columnsZHOU, Z. A; EGIEBOR, N. O.Minerals engineering. 1993, Vol 6, Num 2, pp 199-205, issn 0892-6875Article

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