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Characteristics of Compressed Concrete Paving Units Produced from Washed Municipal Solid Waste Incinerator Bottom Ash
This study replaced natural aggregate with a fine aggregate of washed municipal solid waste incinerator bottom ash (WMSWIBA) in the production of compressed concrete paving units to increase the applications of WMSWIBA. The cement-aggregate ratios investigated were 0.1, 0.2, 0.3, 0.4 and 0.5, and the water-cement ratios were 0.20, 0.25 and 0.30. The results showed that the coefficient of permeability of the compressed concrete paving units was less than 2.66×10-5 cm/sec, the water absorption was 13.55∼4.75%, the porosity was 8.05∼1.62%, the compressive strength was 12.3∼48.5 MPa, the ultrasonic pulse velocity was 1521∼3059 m/sec, and the attrition volume loss was 117.7∼16.0 cm3/50 cm2. The results suggested that the compressive strength and ultrasonic pulse velocity increase with the cement-aggregate ratio, whereas the attrition loss decreases.
Characteristics of Compressed Concrete Paving Units Produced from Washed Municipal Solid Waste Incinerator Bottom Ash
This study replaced natural aggregate with a fine aggregate of washed municipal solid waste incinerator bottom ash (WMSWIBA) in the production of compressed concrete paving units to increase the applications of WMSWIBA. The cement-aggregate ratios investigated were 0.1, 0.2, 0.3, 0.4 and 0.5, and the water-cement ratios were 0.20, 0.25 and 0.30. The results showed that the coefficient of permeability of the compressed concrete paving units was less than 2.66×10-5 cm/sec, the water absorption was 13.55∼4.75%, the porosity was 8.05∼1.62%, the compressive strength was 12.3∼48.5 MPa, the ultrasonic pulse velocity was 1521∼3059 m/sec, and the attrition volume loss was 117.7∼16.0 cm3/50 cm2. The results suggested that the compressive strength and ultrasonic pulse velocity increase with the cement-aggregate ratio, whereas the attrition loss decreases.
Characteristics of Compressed Concrete Paving Units Produced from Washed Municipal Solid Waste Incinerator Bottom Ash
Kuo, Wen-Ten (Autor:in) / Liu, Chih-Chien (Autor:in) / Wang, Her-Yung (Autor:in) / Shu, Chun-Ya (Autor:in)
2013
6 Seiten
Aufsatz (Konferenz)
Englisch
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