Fluorescence in the assessment of the share of a key component in the mixing of feed

Author:

Matuszek Dominika Barbara1

Affiliation:

1. Department of Biosystems Engineering, Faculty of Production Engineering and Logistics, Opole University of Technology, ul. Mikolajczyka 5, PL-45-271, Opole, Poland

Abstract

AbstractThis paper presents the results of the mixing of a multicomponent feed for cattle. Three types of mixtures with different proportions of individual components and granulometric composition were selected. After the mixing process, the fraction of the key component (tracer) was determined. Tracer consisted of crushed grains of yellow maize, which was wet treated with a 0.01% solution of Rhodamine B. A tracer with two different average particle sizes d1 = 2.0 mm and d2 = 1.25 mm was introduced into the mixture. Then, the sample was illuminated with UV light, and the content of the tracer in the sample was evaluated using the computer image analysis. In addition, the tracer was separated to determine its fraction using a laboratory scale. From the obtained results, the high reliability of the fluorescence optical method for the evaluation of the homogeneity of granular multicomponent mixtures was proved. It was also observed that slightly better results were obtained for a tracer with a larger average particle size (d = 2.0 mm), although the comparative analysis did not indicate a significant statistical difference in the results in each series of tests.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,General Chemistry

Reference78 articles.

1. Fundamental powder mixing mechanisms;Powder Technol,1976

2. Real time and noninvasive monitoring of dry powder blend homogeneity;AIChE J,2001

3. The analysis of mixing degree of granular products with the use of microtracers;TEKA Kom Mot i Energ Roln – OL PAN,2011

4. Mixing of granular materials, part II: effect of particle size under periodic shear;Powder Technol,2010

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