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Waste-Based Pervious Concrete for Climate-Resilient Pavements

机译:耐气候路面的基于废物的渗透混凝土

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摘要

For the sake of environmental protection and circular economy, cement reduction and cement substitutes have become popular research topics, and the application of green materials has become an important issue in the development of building materials. This study developed green pervious concrete using water-quenched blast-furnace slag (BFS) and co-fired fly ash (CFFA) to replace cement. The objectives of this study were to gauge the feasibility of using a non-cement binder in pervious concrete and identify the optimal binder mix design in terms of compressive strength, permeability, and durability. For filled percentage of voids by cement paste (FPVs) of 70%, 80%, and 90%, which mixed with CFFA and BFS as the binder (40 + 60%, 50 + 50%, and 60 + 40%) to create pervious concrete with no cement. The results indicate that the complete (100%) replacement of cement with CFFA and BFS with no alkaline activator could induce hydration, setting, and hardening. After a curing period of 28 days, the compressive strength with different FPVs could reach approximately 90% that of the control cement specimens. The cementless pervious concrete specimens with BFS:CFFA = 7:3 and FPV = 90% presented better engineering properties and permeability.
机译:为了环境保护和循环经济,水泥减量和水泥替代品已成为流行的研究课题,绿色材料的应用已成为建筑材料发展中的重要问题。这项研究使用水淬高炉渣(BFS)和共烧粉煤灰(CFFA)替代水泥来开发绿色透水混凝土。这项研究的目的是评估在透水混凝土中使用非水泥粘结剂的可行性,并从抗压强度,渗透性和耐久性方面确定最佳的粘结剂组合设计。水泥浆(FPV)填充的空隙的百分比为70%,80%和90%,将其与CFFA和BFS混合作为粘合剂(40 + 60%,50 + 50%和60 + 40%)以产生没有水泥的透水混凝土。结果表明,在不使用碱活化剂的情况下,用CFFA和BFS完全替代(100%)水泥可以诱导水合作用,凝固和硬化。在固化28天后,使用不同FPV的抗压强度可达到对照水泥样品的约90%。 BFS:CFFA = 7:3和FPV = 90%的非水泥渗透混凝土试样具有更好的工程性能和渗透性。

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