Journal Article

·2014

Microbiological, steady, and dynamic rheological characterization of boza samples: temperature sweep tests and applicability of the Cox–Merz rule

Muhammet Arıcı YTU , Nevruz Berna Tatlısu YTU , Ömer Said Toker YTU , Mustafa Tahsin Yılmaz YTU , Hasan Cankurt , Muhammed Zeki Durak YTU , Osman Sağdıç YTU

TURKISH JOURNAL OF AGRICULTURE AND FORESTRY

Abstract

Boza is a beverage produced by lactic acid bacteria (LAB) and yeast, which affects rheological properties. In the present study, boza samples collected from a local market were characterized with reference to microbiological and rheological approaches. The boza samples were characterized with respect to their microbiological population, i.e. the numbers of LAB and yeast. The numbers of LAB and yeast were found to range from 2.88 × 10^6 to 2.06 × 10^{10} CFU/mL and from 3.71 × 10^3 to 9.40 × 10^5 CFU/mL, respectively. Their steady and dynamic rheological properties were investigated within the temperature range of 0-50 °C. Apparent viscosity values (\eta) of the boza samples decreased with shear rate, indicating that the samples behaved as a pseudoplastic fluid. The Ostwald-de Waele model satisfactorily described (R^2 > 0.99) the flow behavior of the samples at 5 and 20 °C. Storage modulus (G') values were higher than loss modulus (G''), indicating that boza samples had a solid-like structure. Temperature had a remarkable effect on the steady and dynamic properties of the samples; therefore, temperature sweep tests were also conducted to determine temperature dependency of the samples. The \eta_{50}, G', and G'' values decreased with increase in temperature. The Arrhenius equation could be satisfactorily used to describe changes in these parameters depending on temperature. A modified Cox-Merz rule with shift factors ranging from 1.0 to 2.2 was successfully applied to put forward a relationship between steady shear and dynamic shear viscosity data.

Keywords

Rheology Arrhenius equation Shear thinning Dynamic modulus Shear rate Shear modulus Viscosity Dynamic mechanical analysis Thermodynamics Materials science Chemistry Activation energy Composite material Physics Polymer

Subject Areas

Polysaccharides Composition and Applications ·Food Science ·Life Sciences
Food composition and properties ·Nutrition and Dietetics ·Health Sciences
Fermentation and Sensory Analysis ·Food Science ·Life Sciences

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