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Preparation of whey protein concentrate from salted whey and its use in yogurt

Published online by Cambridge University Press:  01 June 2009

Mohamed H. Abd El-Salam
Affiliation:
Department of Food Technology and Dairying, National Research Centre, Cairo, Egypt
Safinaz El-Shibiny
Affiliation:
Department of Food Technology and Dairying, National Research Centre, Cairo, Egypt
Mohamed B. Mahfouz
Affiliation:
Department of Food Technology and Dairying, National Research Centre, Cairo, Egypt
Hala F. El-Dein
Affiliation:
Department of Food Technology and Dairying, National Research Centre, Cairo, Egypt
Hossein M. El-Atriby
Affiliation:
Department of Food Technology and Dairying, National Research Centre, Cairo, Egypt
Veijo Antila
Affiliation:
Food Research Institute, Jokioinen, Finland

Summary

Salted whey (7–8% NaCl) was concentrated by ultrafiltration by a factor of 20. Sweet whey equal to the retentate volume was added and ultrafiltration was continued to a concentration factor of 20. Addition of sweet whey and ultrafiltration was repeated twice more for almost complete removal of salt from whey protein concentrate (WPC). The protein content of WPC was adjusted to 3·5% using sweet whey and the mixture was heated to 65°C for 30 min. This was mixed with buffalo milk at the rate of 0, 10, 20 or 30% and then heated at 80°C for 1, 5 or 20 min before use for yogurt manufacture. The chemical, rheological and organoleptic properties of the yogurt were investigated. WPC could be added to buffalo milk at up to 20% without affecting the quality of the yogurt produced. On the contrary, it improved the texture, mouthfeel and wheying-off of yogurt from buffalo milk. Yogurt with 30% WPC had an unacceptably weak body and texture for a set product. Heating at 80°C for 5 min was sufficient to produce good quality yogurt from buffalo milk containing WPC.

Type
Original Articles
Copyright
Copyright © Proprietors of Journal of Dairy Research 1991

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References

REFERENCES

Abd El-Salam, M. H. 1987 Domiati and Feta type cheeses. In Cheese: Chemistry, Physics and Microbiology Vol. 2 pp. 277309 (Ed. Fox, P. F.). London: Elsevier Applied Science PublishersGoogle Scholar
Abd Rabo, F. H. R., Partridge, J. A. & Fortado, M. N. 1988 Production of yogurt utilizing ultrafiltration retentates of salted whey as a partial substitution for milk. Egyptian Journal of Dairy Science 16 319329Google Scholar
Broome, M. C., Willman, N., Roginski, H. & Hickey, M. W. 1982 The use of cheese whey protein concentrate in the manufacture of skim milk yogurt. Australian Journal of Dairy Technology, 37 139142Google Scholar
Chandrasekhara, M. R., Bhagawan, R. K., Swaminathan, M. & Subrahmanyan, V. 1957 The use of mammalian milk and processed milk foods in the feeding of infants. Indian Journal of Child Health 6 701710Google Scholar
Dannenberg, F. & Kessler, H. G. 1988 a Effect of denaturation of β-lactoglobulin on texture properties of set-style nonfat yogurt. 1. Syneresis. Milchwissenschaft 43 632635Google Scholar
Dannenberg, F. & Kessler, H. G. 1988 b Effect of denaturation of β-lactoglobulin on texture properties of set style nonfat yogurt. 2. Firmness and flow properties. Milchwissenschaft 43 700704Google Scholar
El-Hofi, M. 1984 [Use of ultrafiltration in the manufacture of Domiati cheese and for salt-containing wheys.] PhD Thesis, Justus Liebig University, Giessen, Federal Republic of GermanyGoogle Scholar
Garnoutte, C. A., Amundson, C. H. & Ernstrom, C. A. 1985 Residual milk coagulants in whey their inactivation and effects on ultrafiltration flux and nitrogen yields. Journal of Dairy Science 68 817821CrossRefGoogle Scholar
Harwalkar, V. R. & Kalab, M. 1983 Susceptibility of yoghurt to syneresis. Comparison of centrifugation and drainage methods. Milchwissenschaft 38 517522Google Scholar
Jelen, P., Buchheim, W. & Peters, K.-H. 1987 Heat stability and use of milk with modified casein: whey protein content in yogurt and cultured milk products. Milchwissenschaft 42 418421Google Scholar
Jelen, P. & Horbal, H. 1974 Utilization of cottage cheese whey in yoghurt manufacture. Journal of Dairy Science 57 584Google Scholar
Jelen, P. & Patocka, J. 1988 Heat stability of milk with increased whey protein content. In Milk Proteins pp. 158161 (Eds Barth, C. A. and Schlimme, E.). New York: Springer VerlagGoogle Scholar
Joseph, M. S. B. & Mangino, M. E. 1988 The effects of milk fat globule membrane protein on the foaming and gelation properties of β-lactoglobulin solutions and whey protein concentrates. Australian Journal of Dairy Technology 43 911Google Scholar
Kalab, M., Allan-Wojtas, P. & Phipps-Todd, B. E. 1983 Development of microstructure in set-style nonfat yoghurt—a review. Food Microstructure 2 5166Google Scholar
Ling, E. R. 1944 A Text Book of Dairy Chemistry, 2nd edn, Vol. 2. Practical, pp. 198. London: Chapman & HallGoogle Scholar
Mahfouz, M. B., Zaghlol, A. H., Pahkala, E., Abd El-Salam, M. H. & Antila, V. 1990 Ultrafiltration of salted whey. Egyptian Journal of Dairy Science 18 207216Google Scholar
Marshall, V. M., Cole, W. M. & Vega, J. R. 1982 A yoghurt-like product made by fermenting ultrafiltered milk containing elevated whey proteins with Lactobacillus acidophilus. Journal of Dairy Research 49 665670CrossRefGoogle Scholar
Mulvihill, D. M. & Fox, P. F. 1989 Physico-chemical and functional properties of milk proteins. In Developments in Dairy Chemistry—4. Functional Milk Proteins pp 131172 (Ed. Fox, P. F.). London: Elsevier Applied Science PublishersGoogle Scholar