EXPERIMENTAL STUDY ON BRIQUETTING AND COMBUSTION OF OYSTER MUSHROOM SUBSTRATE WASTE
Oyster mushroom (Pleurotus ostreatus) is one of the most popular comodities in Indonesia that produces a lot of substrate (growth medium) waste. The proposed utilization method is to use the waste as a solid fuel that can be used in the sterillization of new substrates. However, the substrate was...
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Format: | Final Project |
Language: | Indonesia |
Online Access: | https://digilib.itb.ac.id/gdl/view/47132 |
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Institution: | Institut Teknologi Bandung |
Language: | Indonesia |
Summary: | Oyster mushroom (Pleurotus ostreatus) is one of the most popular comodities in
Indonesia that produces a lot of substrate (growth medium) waste. The proposed utilization
method is to use the waste as a solid fuel that can be used in the sterillization of new
substrates. However, the substrate waste could not be used directly due to its powdery shape
and high moisture content.
Briquetting process is used to increase density and uniformity of the product made
from substrate waste. Briquetting will provide easiness during storage, transportation, and the
product's utilization in a furnace. Briquetting and combustion test were done to investigate
the effect of briquetting parameters on the product's physical and combustion characteristics.
Experimental results showed that the highest product density of 976.14 kg/m
was
achieved by the briquette with a briquetting pressure of 1500 bar and moisture content of 7%.
Moreover, briquette strengths (represented by a Drop Shatter Index) for every parameters are
above 99%.
On the other hand, combustion experiments showed that briquette density affects its
ignition time and combustion rate. At a furnace temperature of 400?, the briquette produced
at a pressure of 500 bar required 610 s to ignite with an NBR (normalised burning rate) of0.129 s-1
while the briquette produced at a pressure of 1500 bar required 780 s to ignite withan NBR of 0.133 s-1.
From these results, it was concluded that an increase in briquetting pressure results in
density and ignition time increase. Nonetheless, a pressure of 1500 bar and a moisture content
of 7% was recommended due to the fact that density increase was more significant.
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