Chandrasekharan Muraleedharan

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Gasification can be employed to convert dilute biomass energy source in to gaseous products holding concentrated form of energy. A practical design of a pilot scale fluidized bed gasifier was developed in order to exploit the energy values of rice husk. The chemical composition, heating value, mean particle diameter, solid and bulk densities were obtained(More)
This work investigates the potential of coconut shell for air-steam gasification using thermodynamic equilibrium model. A thermodynamic equilibrium model considering tar and realistic char conversion was developed using MATLAB software to predict the product gas composition. After comparing it with experimental results the prediction capability of the model(More)
Attainment of a sustainable and self-replenishing source of energy is one of the primary aims of mankind. In this light a lot of researches are being performed on various energy sources. The objective of this work is to simulate a fluidized bed air-steam gasification using thermodynamic equilibrium model with rubber seed shell as the feedstock. A(More)
Biomass, the largely available renewable energy source, will be a future viable solution for world's energy crisis. A stoichiometric thermodynamic equilibrium model of air-steam gasification of saw dust in fluidized bed is developed in the present work. The model considers both char conversion and tar formation and predicts the product gas composition, and(More)
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