Development of waterjet-assisted cassava peeler

Author:

Sumaria Raymond1,Tan Daniel Leslie2

Affiliation:

1. Department of Agricultural Engineering, College of Engineering, Visayas State University, Visca, Baybay City, Leyte, Philippines

2. Philippine Root Crop Research Training Center (PhilRootcrops), Visayas State University, Visca, Baybay City, Leyte, Philippines

Abstract

The study aimed to develop a water jet-assisted cassava peeler and evaluate its technical performance in terms of peeling capacity, peeling efficiency, and tuber loss during peeling. Performance evaluation of the developed peeler included treatments which were the combinations of the three methods of peeling (use of circular nozzle, use of flat nozzle, and the manual peeling using a knife) and three diameter ranges of cassava roots (35 ± 5mm; 45 ± 5mm;55 ± 5mm). Results showed that the peeling capacity of the water jet-assisted peeler with circular nozzle was significantly higher than manual peeling but not significantly different to the water jet-assisted peeler with flat nozzle. The diameter of cassava roots used also significantly affected the peeling capacity of the different peeling methods; lower capacity for smaller diameter cassava roots and higher capacity for bigger diameter cassava roots.

Publisher

Annals of Tropical Medicine, Visayas State University

Reference7 articles.

1. Adetan DA, Adekoya LO & Aluko OB. 20037Characterisation of some properties of cassava root tubers". Journal of Food Engineering, 59:349-353

2. Food and Agricultural Organisation. 1991. Production Yearbook for 1990.Food and Agricultural Organisation of the United Nations, Rome, Italy

3. Hassan AB. 2012. Design and Fabrication of a Cassava Peeling Machine. Journal of Engineering, 2:01-08

4. Hillocks RJ. 2002. Cassava in Africa. In Cassava: Biology, Production and Utilization. Eds. CAB International, Wallingford

5. IITA. 1997. Cassava in Africa: past, present and future. International Institute of Tropical Agriculture, Ibadan Nigeria

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