2006Unpublished venueRequires access

Study on industrial application of tar cracking in biomass gasification

Wu Zhengshun

Open publisher page 1 citations

Abstract

The industrial application was studied for tar cracking in biomass gasification by using high temperature and carbon double-efficacy catalysis,and the effects of operating parameters on tar cracking were investigated.The experimental results indicate that there is evident tar cracking in fuel gas when operating temperature is above 800 ℃ in cracking furnace,and fly ash entrained in fuel gas is filtered by cracking bed,which can reduce the load of down stream and improve the carbon conversion efficiency of the system.A wide prospect is provided for biomass energy application.

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What this paper is about

The industrial application was studied for tar cracking in biomass gasification by using high temperature and carbon double-efficacy catalysis,and the effects of operating parameters on tar cracking were investigated.The experimental results indicate that there is evident tar cracking in fuel gas when operating temperature is above 800 ℃ in cracking furnace,and fly ash entrained in fuel gas is filtered by cracking bed,which can reduce the load of down stream and improve the carbon conversion efficiency of the system.A wide prospect is provided for biomass energy application.

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Available abstract

The industrial application was studied for tar cracking in biomass gasification by using high temperature and carbon double-efficacy catalysis,and the effects of operating parameters on tar cracking were investigated.The experimental results indicate that there is evident tar cracking in fuel gas when operating temperature is above 800 ℃ in cracking furnace,and fly ash entrained in fuel gas is filtered by cracking bed,which can reduce the load of down stream and improve the carbon conversion efficiency of the system.A wide prospect is provided for biomass energy application.

Key concepts: tar (computing), Cracking, Biomass gasification, Biomass (ecology), Fluid catalytic cracking, Waste management, Carbon fibers, Environmental science

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