Pereira Valdir M, Baldusco Raphael, Silva Patricia B, Quarcioni Valdecir A, Motta Rosângela S, Suzuki Seiiti, Angulo Sergio C
National Institute on Advanced Eco-Efficient Cement-Based Technologies, Brazil. Escola Politecnica, University of São Paulo, São Paulo, Brazil.
Institute for Technological Research, São Paulo, Brazil.
Waste Manag Res. 2025 Jan;43(1):121-132. doi: 10.1177/0734242X241227370. Epub 2024 Feb 21.
Construction and demolition waste (CDW) worldwide generation accounts 10 billion tonnes yearly. The major fraction is landfilled requiring innovative recycling methods to reduce the associated environmental impacts and to increase its circularity. Our study demonstrated the feasibility of using different CDW fines to develop recycled cements and optimized the content of CDW recycled cements with well-graded crushed stone (WGCS) for use as pavement base layer. We scaled up the study obtaining CDW cement and aggregates from a local recycling plant, as well as pilot pavement sections designed, constructed and field deflections measured. As results, the CDW cement pastes exhibited accumulated heat values of up to 111 J g and achieved a compressive strength of approximately 16 MPa. The unconfined compressive strength and resilient modulus (RM) achieved using CDW cement and WGCS were 2-3 and >3000 MPa, respectively. The sections constructed using CDW cement exhibited intermediate behaviour compared to those obtained using reference materials (6% Portland cement-WGCS and a conventional granular base made using WGCS). The deflection decreased over time owing to the pozzolanic reaction.
全球范围内,建筑和拆除废物(CDW)的年产生量达100亿吨。其中大部分被填埋,需要创新的回收方法来减少相关的环境影响并提高其循环利用率。我们的研究证明了使用不同的CDW细料来开发再生水泥的可行性,并优化了CDW再生水泥与级配良好的碎石(WGCS)作为路面基层的用量。我们扩大了研究规模,从当地回收厂获取CDW水泥和骨料,并设计、建造了试验路面段并测量了现场弯沉。结果表明,CDW水泥浆体的累积热值高达111 J/g,抗压强度约为16 MPa。使用CDW水泥和WGCS获得的无侧限抗压强度和回弹模量(RM)分别为2-3 MPa和>3000 MPa。与使用参考材料(6%波特兰水泥-WGCS和使用WGCS制成的传统粒料基层)获得的路面段相比,使用CDW水泥建造的路面段表现出中间性能。由于火山灰反应,弯沉随时间减小。