Production of dairy cow pellets from pineapple leaf waste

Pineapple leaf waste is a by-product generated after pruning activity at farm sites. Usually, the waste is thrown away and left at the farm sites until it decomposes naturally. One of the possible solutions in handling the pineapple leaf waste is by converting it into animal feeds. Interestingly, fe...

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Bibliographic Details
Main Authors: Rohana, Abu, N., Buliah, S. B., Jamek, A., Azilah
Format: Conference or Workshop Item
Language:English
English
Published: Universiti Malaysia Pahang 2018
Subjects:
Online Access:http://umpir.ump.edu.my/id/eprint/24123/
http://umpir.ump.edu.my/id/eprint/24123/1/5.%20Production%20of%20dairy%20cow%20pellets%20from%20pineapple.pdf
http://umpir.ump.edu.my/id/eprint/24123/2/5.1%20Production%20of%20dairy%20cow%20pellets%20from%20pineapple.pdf
Description
Summary:Pineapple leaf waste is a by-product generated after pruning activity at farm sites. Usually, the waste is thrown away and left at the farm sites until it decomposes naturally. One of the possible solutions in handling the pineapple leaf waste is by converting it into animal feeds. Interestingly, feeding dairy cows with pineapple waste significantly increase the production of milk due to its fiber content. Hence, the objective of this project was to convert the pineapple leaf waste into feed pellets for dairy cows. The pineapple leaf waste was collected from Pekan Pina Sdn. Bhd in Pekan, Pahang. The waste was analyzed for its nutritional values (protein, fiber, carbohydrate, fat and sugar) using standard AOAC methods before converting into pellets by densification process. The physical properties of pellets such as friability, bulk density, true density, hardness and porosity were determined. From the analysis, the pineapple leaf waste has high fibre content which may help increasing the milk production in dairy cows. The ranges of pellet’s friability, bulk density, true density, hardness and porosity were between 0.711.51 %, 300.56343.33 kg/m3, 1474.331513.67 kg/m3, 1.053.9 kg/cm3 and 76.7180.14%, respectively.