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Mechanical and Environmental Suitability of Recycled Concrete Aggregate as a Highway Base Material

机译:再生混凝土骨料作为公路基础材料的机械和环境适应性

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摘要

The use of recycled concrete aggregate (RCA) materials in highway constructions is economically viable and reduces virgin natural resource demands on the environment. To evaluate their potential use in highway construction, two different RCA materials and four virgin granular aggregate base (GAB) materials and their select mixtures were tested in the laboratory for strength, resilient modulus, permanent deformation, and durability. Laboratory water leach tests and pH-dependent leaching tests were conducted to determine the environmental suitability of the RCA materials. The leaching behavior of Ca, Cr, Cu, Fe, and Zn and the effects of pH, curing time, liquid-to-solid (L:S) ratio, and particle size on metal leaching from the RCAs were investigated. Summary resilient moduli (SM_R) of the RCAs were up to 2.6 times higher than that of the GAB materials. Their stiffness also increased when subjected to freezing and thawing cycles. Consistent trends could not be observed with percent RCA addition and strength or SM_R; however, the RCAs generally yielded higher permanent deformations compared with the GABs. Prolonged curing caused rehydration of cement particles and, in general, yielded a decrease in pH and leached metal concentrations. Increasing the L:S ratio decreased leaching of elements significantly because of the dilution of leached elements in the aqueous solutions. pH excursions yielded cationic leaching patterns for Ca and amphoteric leaching patterns for Cr, Cu, Zn, and Fe.
机译:在公路建设中使用再生混凝土骨料(RCA)材料在经济上可行,并减少了对环境的原始自然资源需求。为了评估其在高速公路建设中的潜在用途,在实验室中测试了两种不同的RCA材料和四种原始粒状骨料基(GAB)材料及其选择的混合物的强度,弹性模量,永久变形和耐久性。进行了实验室水浸测试和pH依赖的浸出测试,以确定RCA材料的环境适用性。研究了Ca,Cr,Cu,Fe和Zn的浸出行为以及pH,固化时间,液固比(L:S)和粒度对RCA中金属浸出的影响。 RCA的摘要弹性模量(SM_R)比GAB材料高2.6倍。当经受冷冻和解冻循环时,它们的刚度也增加。 RCA添加百分比和强度或SM_R观察不到一致的趋势;但是,RCA通常比GAB产生更高的永久变形。长时间的固化会导致水泥颗粒重新水化,并且通常会导致pH值降低和浸出的金属浓度降低。 L∶S比的增加显着降低了元素的浸出,因为浸出元素在水溶液中被稀释。 pH值偏移产生了Ca的阳离子浸出模式和Cr,Cu,Zn和Fe的两性浸出模式。

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