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Devolopment of a mechanical dryer for drying coco peat to use growing media

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dc.contributor.advisor Punchihewa, HKG
dc.contributor.advisor Manthilaka, MMID
dc.contributor.author Adikari, AJL
dc.date.accessioned 2019-03-28T08:12:49Z
dc.date.available 2019-03-28T08:12:49Z
dc.identifier.uri http://dl.lib.mrt.ac.lk/handle/123/14114
dc.description.abstract Coir peat which is a by-product of extracting fibre from coconut husk is considered an excellent growing media in horticulture industry. The basic features of coco peat is having good water holding capacity, ability to control PH and EC (electric conductivity) and good air porosity. Demand for the coco peat is increased continuously due to the above reasons. In addition, use of sphagnum peat moss and rock wool is replaced by coco peat very easily due to scarcity and environment issues ofthose growing media. In the present Sri Lankan context, sun drying is widely using to dry the wet coco peat up to the required moisture level before it is compressed. Since coco peat is having a low density (0.1 kg/L), it is needed to be compress before transportation. However sun drying is totally depending on the weather pattern and it is not advisable to depend on sun shine due to the present demand and reliability' on the industry. Therefore possibility to look at thermal drying is important while retaining the relevant properties of coco peat. Studies were carried out to evaluate the performance of combining both rotary drum dryer and flash dryer which are used in similar industries. Four key factors were taken into the study are moisture level, temperature, feed rate and residence time. A set of combinations of the above factors were tested and studied. More than two hundred samples were taken under different settings and corresponding output moisture percentages were measured. Compressed coco pellets were made out of dried samples and then expansion height of each sample was also measured for verification ofthe expansion quality of dry material. The low moisture levels of feeding material affected the temperature of the system and feed rate. The frequency didn’t play a major role. However feed material with high moisture, temperature and rotating frequency positively affected the output moisture while feeding rate was negatively affected. According to the research and considered input variable, this system shows coco peat can be dried when input material moisture is around 60% and temperature 90 -100° C and feed rate around 15 1/min and output material will be comply the requirement to use as growing media. Coco peat with low moisture contents should be exposed to heat at low temperature with higher feed rates, but, material with high moisture content should be exposed to high temperatures and low feed rates as seen with this research. However, it is advisable to take more measurements with very close steps to fine tune the model parameters before implemented on the field. en_US
dc.language.iso en en_US
dc.subject Coir peat en_US
dc.subject Rotary drum dryer en_US
dc.subject Flash dryer en_US
dc.subject Expansion property en_US
dc.subject Moisture en_US
dc.title Devolopment of a mechanical dryer for drying coco peat to use growing media en_US
dc.type Thesis-Full-text en_US
dc.identifier.faculty Engineering en_US
dc.identifier.degree MEng. in Manufacturing Systems Engineering en_US
dc.identifier.department Department of Mechanical Engineering en_US
dc.date.accept 2016-11
dc.identifier.accno TH3370 en_US


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