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Drying Technology
An International Journal
Volume 30, 2012 - Issue 14
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Original Articles

Investigation of Relationship between Surface Tension of Feed Solution Containing Various Proteins and Surface Composition and Morphology of Powder Particles

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Pages 1548-1562 | Published online: 13 Nov 2012

REFERENCES

  • Biswas , S.C. ; Dubreil , L. ; Marion , D. Interfacial behavior of wheat puroindolines: Study of adsorption at the air–water interface from surface tension measurement using Wilhelmy plate method . Journal of Colloid and Interface Science 2001 , 244 , 245 – 253 .
  • Chobert , J.-M. ; Bertrand-Harb , C. ; Nicolas , M.-G. Solubility and emulsifying properties of caseins and whey proteins modified enzymatically by trypsin . Journal of Agricultural and Food Chemistry 1988 , 36 , 883 – 892 .
  • Idris , W.H. ; Babiker , E.E. ; El Tinay , A.H. Fractionation, solubility and functional properties of wheat bran proteins as influenced by pH and/or salt concentration . Food/Nahrung 2003 , 47 ( 6 ), 425 – 429 .
  • Kinsella , J.E. ; Whitehead , D.M. Proteins in whey: Chemical, physical and functional properties . Advances in Food and Nutrition Research 1989 , 33 , 343 – 438 .
  • Machado , F.F. ; Coimbra , J.S.R. ; Garcia Rojas , E.E. ; Minim , L.A. ; Oliveira , F.C. ; Sousa , R.C. Solubility and density of egg white proteins: Effect of pH and saline concentration . Lebensmittel-Wissenschaft und Technologie 2007 , 40 , 1304 – 1307 .
  • Roehl , D. ; Jelen , P. Surface tension of whey and whey derivatives . Journal of Dairy Science 1988 , 71 , 3167 – 3172 .
  • Sorgentini , D.A. ; Wagner , J.R. ; Anon , M.C. Effects of thermal treatment on soy protein isolate on the characteristics and structure–function relationship of soluble and insoluble fractions . Journal of Agricultural and Food Chemistry 1995 , 43 , 2471 – 2479 .
  • Wilde , P.J. Interfaces: Their role in foam and emulsion behaviour . Current Opinion in Colloid & Interface Science 2000 , 5 ( 3–4 ), 176 – 181 .
  • Patino , J.M.R. ; Sanchez , C.C. ; Ortiz , S.E.M. ; Nino , M.R.R. ; Anon , M.C. Adsorption of soy globulin films at the air–water interface . Industrial and Engineering Chemistry Research 2004 , 43 , 1681 – 1689 .
  • Landstrom , K. ; Bergenstahl , B. ; Alsins , J. ; Almgren , M. A fluorescence method for quantitative measurements of specific protein at powder surfaces . Colloids and Surfaces B: Biointerfaces 1999 , 12 , 429 – 440 .
  • Shrestha , L.K. ; Matsumoto , Y. ; Ihara , K. ; Aramaki , K. Dynamic surface tension and surface dilatational elasticity properties of mixed surfactant/protein systems . Journal of Oleo Science 2008 , 57 ( 9 ), 485 – 494 .
  • Bos , M.A. ; van Vliet , T. Interfacial rheological properties of adsorbed protein layers and surfactants: A review . Advances in Colloid and Interface Science 2001 , 91 , 437 – 471 .
  • Kitabatake , N. ; Doi , E. Surface tension and foaming of protein solutions . Journal of Food Science 1982 , 47 , 1218 – 1221 .
  • Elizalde , B.E. ; Pilosof , A.M.R. ; Bartholomai , G.B. Relationship of absorptive and interfacial behavior of some food proteins to their emulsifying properties . Journal of Food Science 1991 , 56 , 253 – 254 .
  • Faldt , P. ; Bergenstahl , B. ; Carlsson , G. The surface coverage of fat on food powders analyzed by ESCA (electron spectroscopy for chemical analysis) . Food Structure 1993 , 12 , 225 – 234 .
  • Graham , D.E. ; Philips , M.C. The conformation of proteins at the air–water interface and their role in stabilizing foams . In Foams ; Akers , R.J. , Ed.; Academic Press : New York 1976 .
  • Matsumura , Y. ; Mitsui , S. ; Dickinson , E. ; Mori , T. Competitive adsorption of α-lactalbumin in the molten globule state . Food Hydrocolloids 1994 , 8 ( 6 ), 555 – 566 .
  • Nidjam , J.J. ; Langrish , T.A.G. The effect of surface composition on the functional properties of milk powders . Journal of Food Engineering 2006 , 77 , 919 – 925 .
  • Severin , S. ; Xia , W.S. Enzymatic hydrolysis of whey proteins by two different proteases and their effect on the functional properties of resulting protein hydrolysates . Journal of Food Biochemistry 2006 , 30 ( 1 ), 77 – 97 .
  • Waniska , R.D. ; Kinsella , J.E. Surface properties of β-lactoglobulin: Adsorption and rearrangement during film formation . Journal of Agricultural and Food Chemistry 1985 , 33 , 1143 – 1148 .
  • Graham , D.E. ; Philips , M.C. Proteins at liquid interfaces: Parts I, II, III . Journal of Colloid and Interface Science 1979 , 75 ( 403 ), 15 – 27 .
  • Patino , J.M.R. ; Ortiz , S.E.M. ; Sanchez , C.C. ; Nino , M.R.R. ; Anon , M.C. Dynamic properties of soy globulin adsorbed films at the air–water interface . Journal of Colloid and Interface Science 2003 , 268 , 50 – 57 .
  • Subirade , M. ; Gueguen , J. ; Schwenke , K.D. Effect of dissociation and conformational changes on the surface behavior of pea legumin . Journal of Colloid and Interface Science 1991 , 152 ( 2 ), 442 – 454 .
  • Tsoukala , A. ; Papalamprou , E. ; Makri , E. ; Doxastakis , G. ; Braudo , E.E. Adsorption at the air–water interface and emulsification properties of grain legume protein derivatives from pea and broad bean . Colloids and Surfaces B: Biointerfaces 2006 , 53 , 203 – 208 .
  • Zhang , T. ; Jiang , B. ; Mu , W. ; Wang , Z. Emulsifying properties of chickpea protein isolates: Influence of pH and NaCl . Food Hydrocolloids 2009 , 23 , 146 – 152 .
  • Foegeding , E.A. ; Davis , J.P. ; Doucet , D. ; McGuffey , M.K. Advances in modifying and understanding whey protein functionality . Trends in Food Science & Technology 2002 , 13 , 151 – 159 .
  • Gauthier , S.F. ; Paquin , P. ; Pouliot , Y. ; Turgeon , S. Surface activity and related functional properties of peptides obtained from whey proteins . Journal of Dairy Science 1993 , 76 , 321 – 328 .
  • Haque , Z.U. Influence of milk peptides in determining the functionality of milk proteins: A review . Journal of Dairy Science 1993 , 76 , 311 – 320 .
  • Brucik , E.J. The rate of surface tension lowering and its role in foaming. Journal of Colloid Science 1950, 5, 421–436.
  • Faldt , P. ; Bergenstahl , B. Changes in surface composition of spray-dried food powders due to lactose crystallization . Lebensmittel-Wissenschaft und-Technologie 1996 , 29 , 438 – 446 .
  • Kim , E.H.J. ; Chen , X.D. ; Pearce , D. Surface characterization of four industrial spray-dried dairy powders . Colloids and Surfaces B: Biointerfaces 2002 , 42 , 1 – 8 .
  • Kim , E.H.J. ; Chen , X.D. ; Pearce , D. On the mechanisms of surface formation and the surface compositions of industrial milk powders . Drying Technology 2003 , 21 ( 2 ), 265 – 278 .
  • Vega , C. ; Goff , H.D. ; Roos , Y.H. Spray drying of high sucrose dairy emulsion. Feasibility and physicochemical properties . Journal of Food Science 2005 , 30 , 244 – 251 .
  • Vega , C. ; Roos , Y.H. Spray-dried dairy and dairy-like emulsions—Compositional considerations . Journal of Dairy Science 2006 , 89 , 383 – 401 .
  • Jayasundera , M. ; Adhikari , B. ; Howes , T. ; Aldred , P. Surface protein coverage and its implications on spray-drying of model sugar-rich foods: Solubility, powder production and characterisation . Food Chemistry 2011 , 128 , 1003 – 1016 .
  • Sunder , A. ; Scherze , I. ; Muschiolik , G. Physico-chemical characteristics of oil-in-water emulsions based on whey protein–phospholipid mixtures . Colloids and Surfaces B: Biointerfaces 2001 , 21 , 75 – 85 .
  • Fang , Z. ; Bhandari , B. Effect of spray drying and storage on the stability of bayberry polyphenols . Food Chemistry 2011 , 129 ( 3 ), 1139 – 1147 .
  • Ferrari , C.C. ; Germer , S.P.M. ; de Aguirre , J.M. Effects of spray-drying conditions on the physicochemical properties of blackberry powder . Drying Technology 2012 , 30 ( 2 ), 154 – 163 .
  • Islam , M.I.U. ; Sherrell , R. ; Langrish , T.A.G. An investigation of the relationship between glass transition temperatures and crystallinity of spray-dried powders . Drying Technology 2010 , 28 ( 3 ), 361 – 368 .
  • Jin , Y. ; Chen , X.D. Numerical study of the drying process of different sized particles in an industrial-scale spray dryer . Drying Technology 2009 , 27 ( 3 ), 371 – 381 .
  • Wang , S. ; Konkol , E. ; Langrish , T.A.G. Spray drying of fruit juice using proteins as additives . Drying Technology 2011 , 29 ( 16 ), 1868 – 1875 .
  • Muscle Brand ; Breukelaar , J. MyoPure product data sheet ; 2012 . Available from: http://www.myopure.com.au.
  • Adhikari , B. ; Howes , T. ; Shrestha , A. ; Bhandari , B.R. Effect of surface tension and viscosity on the surface stickiness of carbohydrate and protein solutions . Journal of Food Engineering 2007 , 79 , 1136 – 1143 .
  • Bora , P.S. ; Brekke , C.J. ; Powders , J.R. Heat-induced gelation of pea (Pisum sativum) mixed globulins, vicilin and legumin . Journal of Food Science 1994 , 59 , 594 – 596 .
  • Paulsson , M. ; Dejmek , P. Thermal denaturation of whey proteins in mixtures with caseins studies by differential scanning calorimetry . Journal of Dairy Science 1990 , 73 , 590 – 600 .
  • Shand , P.J. ; Ya , H. ; Pietrasik , Z. ; Wanasundara , P.K.J.P.D. Physicochemical and textural properties of heat-induced pea protein isolate gels . Food Chemistry 2007 , 102 , 1119 – 1130 .
  • Hayashi , A. ; Oh , S.C. Gelation of gelatin solution . Agricultural and Biological Chemistry 1983 , 47 ( 8 ), 1711 – 1716 .
  • Kamath , S. ; Wulandewi , A. ; Deeth , H. Relationship beween surface tension, free fatty acid concentration and foaming properties of milk . Food Research International 2008 , 41 , 623 – 629 .
  • Adhikari , B. ; Howes , T. ; Wood , B.J. ; Bhandari , B.R. The effect of low molecular weight surfactants and proteins on surface stickiness of sucrose during powder formation through spray drying . Journal of Food Engineering 2009 , 94 , 135 – 143 .
  • Dickinson , E. An Introduction to Food Colloids ; Oxford University Press : Oxford , 1992 .
  • Haynes , C.A. ; Norde , W. Globular proteins at solid/liquid interfaces . Colloids and Surfaces B: Biointerfaces 1994 , 2 , 517 – 566 .
  • Kim , S.H. ; Kinsella , J.E. Surface activity of food proteins: Relationships between surface development, viscoelasticity of interfacial films and foam stability of BSA . Journal of Food Science 1985 , 50 , 1526 – 1530 .
  • Domenek , S. ; Petit , E. ; Ducept , F. ; Mezdour , S. ; Brambati , N. ; Ridoux , C. ; Guedj , S. ; Michon , C. Influence of concentration and ionic strength on the adsoprtion kinetics of gelatin at the air/water interface . Colloids and Surfaces A: Physicochemical and Engineering Aspects 2008 , 331 , 48 – 55 .
  • Lin , S.Y. ; Wu , T.F. ; Tsao , H.K. Interfacial dynamics of a gelatin solution with surfactant . Macromolecules 2003 , 36 , 8786 – 8795 .
  • Sato , H. ; Ueberreiter , K. Surface tension of aqueous gelatin solutions, 1. Concentration dependence . Macromolecular Chemistry 1979 , 180 , 829 – 835 .
  • Blank , M. ; Lee , B.B. ; Britten , J.S. Adsorption kinetics and ovalbumin monolayers . Journal of Colloid and Interface Science 1975 , 50 , 215 – 222 .
  • Nino , M.R.R. ; Sanchez , C.C. ; Ruiz-Henestrosa , V.P. ; Patino , J.M.R. Milk and soy protein films at the air–water interface . Food Hydrocolloids 2005 , 19 , 417 – 428 .
  • Kinsella , J.E. Characteristics of protein ingredients—Functional properties of soy proteins . Journal of American Oil Chemists’ Society 1979 , 56 , 242 – 249 .
  • Kilara , A. ; Harwalkar , V.R. Denaturation . In Food Proteins Properties and Characterization ; Nakai , S. ; Modler , H.W. Eds. ; VCH Publishers : New York , 1996 , pp. 71 – 165 .
  • Kealley , C.S. ; Rout , M.K. ; Dezfouli , M.R. ; Strounina , E. ; Whittaker , A.K. ; Appelqvist , I.A.M. ; Lillford , P.J. ; Gilbert , G.P. ; Gidley , M.J. Structure and molecular mobility of soy glycinin in the solid state . Biomacromolecules 2008 , 9 , 2937 – 2946 .
  • Sorgentini , D.A. Comparative study of structural characteristics and thermal behavior of whey and isolate soybean proteins . Journal of Food Biochemistry 1999 , 23 , 489 – 507 .
  • Sorgentini , D.A. ; Wagner , J.R. Comparative study of foaming properties of whey and isolate soybean proteins . Food Research International 2002 , 35 , 721 – 729 .
  • Xu , Y.Y. ; Howes , T. ; Adhikari , B. ; Bhandari , B. Understanding the mechanism and factors affecting surface migration of food proteins during spray drying. Unpublished work; The University of Queensland , 2012 .
  • Dagorn-Scaviner , C. ; Gueguen , J. ; Lefebvre , J. A comparison of interfacial behaviours of pea (Pisum sativum L.) legumin and vicilin at the air/water interface . Die Nahrung 1986 , 30 ( 3–4 ), 337 – 347 .
  • Singh , A.M. ; Dalgleish , D.G. The emulsifying properties of hydrolyzates of whey proteins . Journal of Dairy Science 1998 , 81 , 918 – 924 .
  • Turgeon , S.L. ; Gauthier , S.F. ; Paquin , P. Interfacial and emulsifying properties of whey peptide fractions obtained with a 2-step ultrafiltration process . Journal of Agricultural and Food Chemistry 1991 , 39 , 673 – 676 .
  • Lin , L.H. ; Chen , K.M. Preparation and surface activity of modified soy protein . Journal of Applied Polymer Science 2006 , 102 , 3498 – 3503 .
  • Nakai , S. Structure–function relationships of food proteins with an emphasis on the importance of protein hydrophobicity . Journal of Agricultural and Food Chemistry 1983 , 31 , 676 – 683 .
  • Fox , P.F. Milk proteins as food ingredients . International Journal of Dairy Technology 2001 , 54 ( 1 ), 41 – 55 .
  • Mackie , A.R. ; Gunning , A.P. ; Ridout , M.J. ; Morris , V.J. Gelation of gelatin observation in the bulk and at the air–water interface . Biopolymers 1998 , 46 , 245 – 252 .
  • Ruiz-Henestrosa , V.P. ; Sanchez , C.C.R. ; Rodriguez Patino , J.M. Effect of sucrose on functional properties of soy globulins: Adsorption and foam characteristics. Journal of Agricultural and Food Chemistry 2008, 56, 2512–2521.
  • Guzey , D. ; McClements , D.J. ; Weiss , J. Adsorption kinetics of BSA at air–sugar solution interfaces as affected by sugar type and concentration . Food Research International 2003 , 36 , 649 – 660 .
  • Antipova , A.S. ; Semenova , M.G. ; Belyakova , L.E. Effect of sucrose on the thermodynamic properties of ovalbumin and sodium Casein ate in bulk solution and at air–water interface . Colloids and Surfaces B: Biointerfaces 1999 , 12 , 261 – 270 .
  • Rodriguez Nino , M.R. ; Rodriguez Patino , J.M. Surface tension of protein and insoluble lipids at the air–aqueous phase interface . Journal of the American Oil Chemists’ Society 1998 , 75 ( 10 ), 1233 – 1239 .
  • Faldt , P. ; Bergenstahl , B. The surface composition of spray-dried protein–lactose powders . Colloids and Surfaces A: Physicochemical and Engineering Aspects 1994 , 90 , 183 – 190 .
  • Faldt , P. ; Bergenstahl , B. Spray-dried whey protein/lactose/soybean oil emulsions. 1. Surface composition and particle structure . Food Hydrocolloids 1996 , 10 ( 4 ), 421 – 429 .
  • Millqvist-Fureby , A. ; Burns , N. ; Landstrom , K. ; Faldt , P. ; Bergenstahl , B. , Eds. Surface Activity at the Air–Water Interface in Relation to Surface Composition of Spray-Dried Milk Protein-Stabilized Emulsions ; Royal Society of Chemistry : London , 1999 .
  • Davis , J.P. ; Foegeding , E.A. Comparisons of the foaming and interfacial properties of whey protein isolate and egg white proteins . Colloids and Surfaces B: Biointerfaces 2007 , 54 , 200 – 210 .
  • Tamm , F. ; Sauer , G. ; Scampicchio , M. ; Drusch , S. Pendant drop tensiometry for the evaluation of the foaming properties of milk-derived proteins . Food Hydrocolloids 2012 , 27 , 370 – 377 .
  • Sunder , A. ; Scherze , I. ; Muschiolik , G. Physico-chemical characteristics of oil-in-water emulsions based on whey protein–phospholipid mixtures . Colloids and Surfaces B: Biointerfaces 2001 , 21 , 75 – 85 .
  • Sathe , S.K. ; Deshpande , S.S. ; Reddy , N.R. ; Goll , D.E. ; Salunkhe , D.K. Effects of germination on proteins, raffinose oligosaccharides, and antinutritional factors in the Great Northern beans (Phaseolus vulgaris L.) . Journal of Food Science 1983 , 48 , 1796 – 1800 .
  • Hassan , H.M. ; Mumford , C.J. Mechanisms of drying of skin-forming materials.III. Droplets of natural products . Drying Technology 1993 , 11 ( 7 ), 1765 – 1782 .
  • Kentish , S. ; Davidson , M. ; Hassan , H. ; Bloore , C. Milk skin formation during drying . Chemical Engineering Science 2005 , 60 , 635 – 646 .
  • Sheu , T.Y. ; Rosenberg , M. Microstructure of microcapsules consisting of whey proteins and carbohydrates . Journal of Food Science 1998 , 63 ( 3 ), 491 – 494 .
  • Keith , A. Factors Governing the Morphology in Spray-Drying of Foods ; University of California : Berkeley , 1983 .
  • Thomas , M.E.C. ; Scher , J. ; Dsobry , S. Lactose/β-lactoglobulin interaction during storage of model whey powders . Journal of Dairy Science 2004 , 87 , 1158 – 1166 .
  • Buma , T.J. ; Henstra , S. Particle structure of spray-dried milk products as observed by a scanning electron microscope . Netherlands Milk and Dairy Journal 1971 , 25 , 75 – 80 .
  • Wolf , W.J. ; Baker , F.L. Scanning electron microscopy of soybeans, soy flours, protein concentrates and protein isolates . American Association of Cereal Chemists 1975 , 52 ( 3 ), 388 – 396 .
  • Mistry , V.V. ; Hassan , H.N. ; Robison , D.J. Effect of lactose and protein on the microstructure of dried milk . Food Structure 1992 , 11 , 73 – 82 .
  • Wang , S. ; Langrish , T.A.G. The use of surface active compounds as additives in spray drying . Drying Technology 2010 , 28 ( 3 ), 341 – 348 .
  • Al-Hakim , K. ; Stapley , A.G.F. Morphology of spray-dried and spray-freeze dried whey powders. In 14th International Drying Symposium (IDS 2004), São Paulo, Brazil, August 22–25, 2004.
  • Gaiani , C. ; Ehrhardt , J.J. ; Scher , J. ; Hardy , J. ; Desobry , S. ; Banon , S. Surface composition of dairy powders observed by X-ray photoelectron spectroscopy and effects on their rehydration properties . Colloids and Surfaces B: Biointerfaces 2006 , 49 , 71 – 78 .
  • Fyfe , K. ; Kravchuk , O. ; Nguyen , A.V. ; Deeth , H. ; Bhandari , B. Influence of dryer type on surface characteristics of milk powders . Drying Technology 2011 , 29 ( 7 ), 758 – 769 .
  • Rosenberg , M. ; Young , S.L. Whey proteins as microencapsulating agents. Microencapsulation of anhydrous milkfat—Structure evaluation . Food Structure 1993 , 2 , 31 – 42 .

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