Scouring of Sheep Wool Using an Acoustic Ultrasound Wave

Author:

Czaplicki Zdzisław1,Matyjas-Zgondek Edyta2,Strzelecki Stanisław3

Affiliation:

1. Poland, Łódź, Association of Polish Textile

2. Poland, Łódź, Lodz University of Technology, Faculty of Material Technologies and Textile Design, Department of Mechanical Engineering, Informatics and Chemistry of Polymer Materials

3. Poland, Łódź, Polish Committee for Standarization, Textile Machinery Section

Abstract

The paper describes a method of scouring sheep wool using ultrasound.The inspiration to start work on the use of ultrasound in the process of scouring sheep wool was positive results that had already been achieved for alpaca wool. Due to the fact that sheep wool has many more impurites than alpaca wool, the scouring process is divided into two stages. The first involves the removal of faeces from the wool, which may be up to about 35% of the impurities of sheep wool, while the second stage involves the scouring cycle, wherein the remaining impurities are removed. The ultrasonic scouring process uses domestic merino wool heavily clad, particularly, by faeces. In this study, detergent solutions, alkali soap and sodium carbonate were used. The scouring of wool was carried out with a special apparatus equipped with an ultrasonic generator, at a frequency of 40 kHz. To determine the optimal conditions for scouring sheep wool that could affect the amount of impurities removed, the following parameters were examined: the effect of the scouring time, the concentration of detergents, and the scouring bath ratio. The study resulted in achieving optimal scouring parameters that ensured a satisfactory level of the removal of wool impurities.

Publisher

Walter de Gruyter GmbH

Subject

Industrial and Manufacturing Engineering,General Environmental Science,Materials Science (miscellaneous),Business and International Management

Reference28 articles.

1. Braniša J, Cvik M, Porubská M. Sheep Wool Can Be Scoured Sufficiently without AnyChemicals. Fibres and Textiles 2019; 26(2): 3-8.

2. Stewart RG. Woolscouring and Allied Technology. New Zealand: WRONZ (WoolResearch Organization of New Zealand); 1988.

3. Harafi T, Montazer M. A Review on Textile Sonoprocessing: A Special Focus onSonosynthesis of Nanomaterials on Textile Substrates. Ultrasonics Sonochemistry 2015;23:1-10.

4. Vaibhav VV, Hule AA. Ultrasonic Assisted Wet Processing. J. Basic Appl. Eng. Res.2015; 2(1): 79-82.

5. Brennen CE. Cavitation and Bubble Dynamics. New York: Oxford University Press;1995.

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