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Analysis of Leaf Litter as Potential Renewable Energy Source for Cooking
A. Hartawan
, N. Aditya
,
N. G. Ratnasari
, W. Sujatmiko
,
Y. S. Nugroho
Department of Management
Department of Mechanical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
4
Citations (Scopus)
Overview
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Engineering
Biofuel
100%
Energy Source
100%
Forced Vortex
100%
Internal Transport
100%
Peak Heat Release Rate
100%
Rate of Heat Release
100%
Renewable Energy Source
100%
Solid Fuel
100%
Transport Process
100%
Vortex Flow
100%
Keyphrases
Biofuel
33%
Combustion Characteristics
33%
Cone Calorimetry
33%
Cookstoves
33%
Energy Release
33%
Energy Sources
33%
Filicium Decipiens
33%
Forced Vortex
33%
Fuel Bed
33%
Heat Release Rate
33%
Internal Transport
33%
Leaf Litter
100%
Leaf Starch
33%
Leaf Water
33%
Peak Heat Release Rate
33%
Reliable Energy
33%
Renewable Energy
100%
Solid Fuel
33%
Stove
66%
Transport Processes
33%
Updraft
33%
Vortex Flow
33%
Material Science
Biofuel
100%
Calorimetry
100%
Vortex
100%
Agricultural and Biological Sciences
Biofuel
33%
Calorimetry
33%
Fuel Bed
33%
Plant Litter
100%
Renewable Energy Source
100%
Chemical Engineering
Calorimetry
100%