ANALISA KARAKTERISTIK BAHAN BAKAR ALTERNATIF BIOPELET DARI SERBUK KAYU DAN SEKAM PADI TERHADAP LAMA WAKTU PEMBAKARAN
Main Author: | Girsang, Muhammad Ari Prima |
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Format: | Thesis NonPeerReviewed Book |
Bahasa: | eng |
Terbitan: |
, 2019
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Subjects: | |
Online Access: |
http://eprints.umm.ac.id/46220/1/PENDAHULUAN.pdf http://eprints.umm.ac.id/46220/2/BAB%20I.pdf http://eprints.umm.ac.id/46220/3/BAB%20II.pdf http://eprints.umm.ac.id/46220/4/BAB%20III.pdf http://eprints.umm.ac.id/46220/5/BAB%20IV.pdf http://eprints.umm.ac.id/46220/6/BAB%20V.pdf http://eprints.umm.ac.id/46220/7/LAMPIRAN.pdf http://eprints.umm.ac.id/46220/8/POSTER.pdf http://eprints.umm.ac.id/46220/ |
Daftar Isi:
- Indonesia it self is one of the producers of wood waste which is widely produced as a mabel material. whereas rice husk is widely produced throughout the world as food. high rice consumption will result in higher rice production to meet domestic needs. high rice production will produce high husk waste as well. wood powder and rice husk is an industrial waste that can be used to make alternative fuels such as Bio-pelet. both of these materials can be one solution to overcome the energy crisis in Indonesia. The purpose of this study was to identify the drying temperature and the percentage of adhesive on rice husk pellets and wood powder to determine the optimal combination of rice husk pellets. In this study, an experimental method was used to combine husks with variations in the percentage of adhesive 10%, 15%, and 20%, then the husks and adhesives which had been mixed into dough were printed using a vertical type pellet molding machine. After that the pellets are dried using an oven with a temperature of 900C, 1000C, and 1100C. The results of this study indicate that the smaller the percentage of adhesive given, the longer the combustion time will be and the higher the drying temperature will make the rice husk pellets burn faster because the water content in the pellets will be lower. While the most optimal combination is pellets using 10% adhesive percentage and dried at 1100C