{"status":"ok","message-type":"work","message-version":"1.0.0","message":{"indexed":{"date-parts":[[2025,11,1]],"date-time":"2025-11-01T21:38:03Z","timestamp":1762033083859},"reference-count":28,"publisher":"FapUNIFESP (SciELO)","issue":"5","content-domain":{"domain":[],"crossmark-restriction":false},"short-container-title":["Ci\u00eanc. agrotec."],"published-print":{"date-parts":[[2012,10]]},"abstract":"<jats:p>In this study rice husk ash (RHA) and broiler bed ash from rice husk (BBA), two agricultural waste materials, have been assessed for use as partial cement replacement materials for application in lightweight concrete. Physical and chemical characteristics of RHA and BBA were first analyzed. Three similar types of lightweight concrete were produced, a control type in which the binder was just CEMI cement (CTL) and two other types with 10% cement replacement with, respectively, RHA and BBA. All types of similar lightweight concrete were prepared to present the same workability by adjusting the amount of superplasticizer. Properties of concrete investigated were compressive and flexural strength at different ages, absorption by capillarity, resistivity and resistance to chloride ion penetration (CTH method) and accelerated carbonation. Test results obtained for 10% cement replacement level in lightweight concrete indicate that although the addition of BBA conducted to lower performance in terms of the degradation indicative tests, RHA led to the enhancement of mechanical properties, especially early strength and also fast ageing related results, further contributing to sustainable construction with energy saver lightweight concrete.<\/jats:p>","DOI":"10.1590\/s1413-70542012000500010","type":"journal-article","created":{"date-parts":[[2012,10,17]],"date-time":"2012-10-17T08:56:12Z","timestamp":1350464172000},"page":"567-578","source":"Crossref","is-referenced-by-count":9,"title":["Rice husk derived waste materials as partial cement replacement in lightweight concrete"],"prefix":"10.1590","volume":"36","author":[{"given":"Celso Yoji","family":"Kawabata","sequence":"first","affiliation":[{"name":"Universidade Federal do Maranh\u00e3o,  Brasil"}]},{"given":"Holmer","family":"Savastano Junior","sequence":"additional","affiliation":[{"name":"Universidade de S\u00e3o Paulo,  Brasil"}]},{"given":"Joana","family":"Sousa-Coutinho","sequence":"additional","affiliation":[{"name":"University of Porto,  Portugal"}]}],"member":"530","reference":[{"key":"ref1","series-title":"C1202: Standard test method for electrical indication of concrete's ability to resist chloride ion penetration","year":"1997"},{"key":"ref2","series-title":"C230\/C230M: Standard Specification for Flow Table for Use in Tests of Hydraulic Cement","year":"2003"},{"key":"ref3","series-title":"C1437-01: Standard Test Method for Flow of Hydraulic Cement Mortar","year":"2001"},{"key":"ref4","series-title":"Concrete incorporating Rice-Husk Ash: Compressive strength and chloride-ion penetrability","author":"BOUZOUBA\u00c2 N.","year":"2001"},{"key":"ref5","series-title":"The use of rice husk in concrete: Waste materials used in concrete manufacturing","author":"CHANDRA 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