2012Journal of Agricultural Engineering (India)Requires access

Feasibility Study of Maize Cobs as Throatless Gasifier Feedstock

Sangeeta Chopra, Akshay Jain, Devinder Dhingra

Open publisher page 0 citations

Abstract

Fuel properties of maize cob and its gasification feasibility in throatless downdraft gasifier were investigated.Performance of the throatless gasifier using producer gas from maize cobs was evaluated in terms of fuel consumptionrate, heating value of producer gas and gasification efficiency at different gas flow rates. Gasification efficiencyincreased with increasing gas flow rate, and was maximum (67.37 %) at specific gasification rate (SGR) of 169.95kg.h-1.m-2 and gas flow of 33.02 Nm3.h-1. Further increase in gas flow rate reduced gasification efficiency. Energybalance for the run had maximum efficiency. Each unit of energy input to the gasifier in the form of maize cobs wasconverted to 67.18 % chemical energy of producer gas and 16.82 % char residue, respectively. Sensible energy ofgas and char residue was 6.51 % and 0.11 %, respectively. The unaccounted losses were 9.38 per cent. Maize cobscould thus be successfully used as feedstock for throatless gasifier.

About this research paper

What this paper is about

Fuel properties of maize cob and its gasification feasibility in throatless downdraft gasifier were investigated.Performance of the throatless gasifier using producer gas from maize cobs was evaluated in terms of fuel consumptionrate, heating value of producer gas and gasification efficiency at different gas flow rates. Gasification efficiencyincreased with increasing gas flow rate, and was maximum (67.37 %) at specific gasification rate (SGR) of 169.95kg.h-1.m-2 and gas flow of 33.02 Nm3.h-1. Further increase in gas flow rate reduced gasification efficiency. Energybalance for the run had maximum efficiency. Each unit of energy input to the gasifier in the form of maize cobs wasconverted to 67.18 % chemical energy of producer gas and 16.82 % char residue, respectively. Sensible energy ofgas and char residue was 6.51 % and 0.11 %, respectively. The unaccounted losses were 9.38 per cent. Maize cobscould thus be successfully used as feedstock for throatless gasifier.

Why it matters

A significance statement is not available in the OpenAlex record.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

Fuel properties of maize cob and its gasification feasibility in throatless downdraft gasifier were investigated.Performance of the throatless gasifier using producer gas from maize cobs was evaluated in terms of fuel consumptionrate, heating value of producer gas and gasification efficiency at different gas flow rates. Gasification efficiencyincreased with increasing gas flow rate, and was maximum (67.37 %) at specific gasification rate (SGR) of 169.95kg.h-1.m-2 and gas flow of 33.02 Nm3.h-1. Further increase in gas flow rate reduced gasification efficiency. Energybalance for the run had maximum efficiency. Each unit of energy input to the gasifier in the form of maize cobs wasconverted to 67.18 % chemical energy of producer gas and 16.82 % char residue, respectively. Sensible energy ofgas and char residue was 6.51 % and 0.11 %, respectively. The unaccounted losses were 9.38 per cent. Maize cobscould thus be successfully used as feedstock for throatless gasifier.

Key concepts: Raw material, Wood gas generator, Engineering, Biotechnology, Mathematics, Pulp and paper industry, Waste management, Veterinary medicine

Related papers

Back to paper searchBrowse research topicsOriginal source
Feasibility Study of Maize Cobs as Throatless Gasifier Feedstock — Research Paper | ScholarLens