2015•Energy Sources Part A Recovery Utilization and Environmental EffectsRequires access

A Thermogravimetric Analysis of Co-combustion Characteristics of Biomass and Coal in an O2/CO2Atmosphere

Huiwen Liu, Kuihua Han, Mengshi Liu, Shibo Niu, Chuanjuan Lü

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Abstract

Co-combustion characteristics of two coals and two biomass are investigated through thermogravimetric method in O2/CO2 atmosphere. Characteristic parameters of coal combustion deduced from TG-DTG curves show that, at the O2 concentration of 20%, substitution of CO2 for N2 brings about delay in ignition, exaltation in burnout, and drop in combustion integration parameter. To improve performances of coal combustion in O2/CO2 atmosphere, biomass is added to form co-combustion. The difficulty of coal combustion in O2/CO2 atmosphere can be effectively reduced at a co-combustion ratio of 20%. Activation energy during the coal combustion process is evidently reduced with the addition of biomass.

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Co-combustion characteristics of two coals and two biomass are investigated through thermogravimetric method in O2/CO2 atmosphere. Characteristic parameters of coal combustion deduced from TG-DTG curves show that, at the O2 concentration of 20%, substitution of CO2 for N2 brings about delay in ignition, exaltation in burnout, and drop in combustion integration parameter. To improve performances of coal combustion in O2/CO2 atmosphere, biomass is added to form co-combustion. The difficulty of coal combustion in O2/CO2 atmosphere can be effectively reduced at a co-combustion ratio of 20%. Activation energy during the coal combustion process is evidently reduced with the addition of biomass.

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Available abstract

Co-combustion characteristics of two coals and two biomass are investigated through thermogravimetric method in O2/CO2 atmosphere. Characteristic parameters of coal combustion deduced from TG-DTG curves show that, at the O2 concentration of 20%, substitution of CO2 for N2 brings about delay in ignition, exaltation in burnout, and drop in combustion integration parameter. To improve performances of coal combustion in O2/CO2 atmosphere, biomass is added to form co-combustion. The difficulty of coal combustion in O2/CO2 atmosphere can be effectively reduced at a co-combustion ratio of 20%. Activation energy during the coal combustion process is evidently reduced with the addition of biomass.

Key concepts: Combustion, Thermogravimetric analysis, Coal, Atmosphere (unit), Coal combustion products, Biomass (ecology), Autoignition temperature, Ignition system

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A Thermogravimetric Analysis of Co-combustion Characteristics of Biomass and Coal in an O2/CO2Atmosphere — Research Paper | ScholarLens