简介概要

Development of high volume rice husk ash alumino silicate composites

来源期刊:International Journal of Minerals Metallurgy and Materials2010年第5期

论文作者:Ubolluk Rattanasak Prinya Chindaprasirt Prasert Suwanvitaya

文章页码:654 - 659

摘    要:The development of high volume rice husk ash (RHA) alumino silicate composites (ASC) was studied. RHA was used as the source of silica and aluminium in the ASC. The mass ratios of RHA:Al(OH)3 of 70:30 to 99:1 were tested. The results indicate that the obtained ASC mortars are not stable and disintegrate in water. Boric acid was introduced to the mixture to overcome this problem. Stable ASC mortars with high RHA:Al(OH)3 mass ratios of 90:10 to 97.5:2.5 were obtained with the use of boric acid and 115oC curing. The compressive strength of the mortar of 20 MPa was gained. The immersion test indicates that high volume RHA ASC mortars show good resistance in 3vol% H2SO4 solution, but is slightly less durable in 5wt% MgSO4 solution.

详情信息展示

Development of high volume rice husk ash alumino silicate composites

Ubolluk Rattanasak1,Prinya Chindaprasirt2,Prasert Suwanvitaya3

1. Department of Chemistry and Center for Innovation in Chemistry, Faculty of Sciences, Burapha University2. Department of Civil Engineering, Faculty of Engineering, Khon Kaen University3. Department of Civil Engineering, Faculty of Engineering, Kasetsart University

摘 要:The development of high volume rice husk ash (RHA) alumino silicate composites (ASC) was studied. RHA was used as the source of silica and aluminium in the ASC. The mass ratios of RHA:Al(OH)3 of 70:30 to 99:1 were tested. The results indicate that the obtained ASC mortars are not stable and disintegrate in water. Boric acid was introduced to the mixture to overcome this problem. Stable ASC mortars with high RHA:Al(OH)3 mass ratios of 90:10 to 97.5:2.5 were obtained with the use of boric acid and 115oC curing. The compressive strength of the mortar of 20 MPa was gained. The immersion test indicates that high volume RHA ASC mortars show good resistance in 3vol% H2SO4 solution, but is slightly less durable in 5wt% MgSO4 solution.

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