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首页> 外文期刊>Journal of materials in civil engineering >Role of Fly Ash Pozzolanic Reactions in Controlling Fluoride Release from Phosphogypsum
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Role of Fly Ash Pozzolanic Reactions in Controlling Fluoride Release from Phosphogypsum

机译:粉煤灰火山灰反应在控制磷从石膏中释放的作用

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Phosphogypsum is added to building materials to accelerate fly ash pozzolanic reaction and contributes to early strength development of concrete. The release of unacceptable fluoride levels by phoshogypsum on contact with water is a major impediment in its usage to manufacture building products because excess fluoride consumption causes dental and skeletal fluorosis. This paper examines the efficacy of fly ash pozzolanic reactions in controlling fluoride release by phosphogypsum. Fly ash (FA), sand (S), lime (L), and phosphogypsum (G) (FA-S-L-G) slurries are cured for various periods, and the fluoride released by the mix is monitored as a function of time. A substantial reduction in fluoride release was observed and is attributed to entrapment of phosphogypsum particles in a cementious matrix formed by fly ash-lime pozzolanic reactions coupled with consumption of fluoride in formation of insoluble compounds. The compressive strength developed by compacted FA-S-L-G specimens with time was observed to be a three-stage process; maximum strength mobilization occurred during 14 and 28 days of curing at room temperature. Exposure of the compacted FA-S-L-G specimens to acidic and alkaline environments for 9 days did not impact their compressive strengths.
机译:磷石膏被添加到建筑材料中,以加速粉煤灰火山灰反应,并有助于混凝土的早期强度发展。磷石膏与水接触释放出不可接受的氟化物水平是其用于制造建筑产品的主要障碍,因为过量的氟化物消耗会导致牙齿和骨骼氟中毒。本文研究了粉煤灰火山灰反应在控制磷石膏释放氟化物中的功效。粉煤灰(FA),沙(S),石灰(L)和磷石膏(G)(FA-S-L-G)浆液经过不同时间的固化,混合物释放的氟化物随时间变化而受到监控。观察到氟化物释放的大量减少,这归因于磷石膏颗粒截留在由粉煤灰-石灰火山灰反应形成的胶结基质中,以及在形成不溶性化合物时消耗了氟化物。压缩的FA-S-L-G试样随时间变化产生的抗压强度被认为是一个三阶段过程。最大强度动员发生在室温下固化14天和28天期间。将压实的FA-S-L-G标本在酸性和碱性环境中暴露9天不会影响其抗压强度。

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