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Experimental Study on the Preparation of Recycled Admixtures by Using Construction and Demolition Waste

机译:利用建筑废料制备再生掺合料的试验研究

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摘要

The use of construction and demolition waste (CDW) to prepare recycled admixtures is of great significance for the complete resource reutilization of CDW. In this paper, different kinds of CDW were prepared into recycled powder (RP) with a specific particle size (0–45 µm or 0–75 µm). The fineness, water requirement ratio (WRR), fluidity, loss on ignition (LOI), strength activity index (SAI) and compatibility of cement and superplasticizer (CCS) were examined. The above test results were analyzed by advanced analysis tools, such as laser particle size analysis, XRD, XRF, DSC-TGA, SEM, and BET. The properties of different types of RPs varied greatly, which was closely related to the microstructure, particle morphology and chemical composition of the RP. The experimental results showed that all kinds of RPs after grinding had a high fineness and good particle size distribution, and the mineral composition was dominated by SiO2 with the content exceeding 50%. The WRR of various RPs was between 105% and 112%, and the SAI was between 68% and 78%, but the LOI varied greatly. Different types of RPs had a negative impact on the CCS, but the compatibility of cement and naphthalene-based superplasticizer was less affected. The content of recycled brick powder (RBP) in a hybrid recycled powder (HRP) was an important factor. When the content of RBP in HRP exceeded 50%, the HRP could meet the basic performance requirements of fly ash.
机译:利用建筑和拆迁废物(CDW)制备再生掺合料对于完全利用CDW进行资源利用具有重要意义。在本文中,将不同种类的CDW制成具有特定粒径(0-45 µm或0-75 µm)的回收粉(RP)。检查了水泥的细度,需水比(WRR),流动性,烧失量(LOI),强度活性指数(SAI)以及水泥与高效减水剂的相容性(CCS)。以上测试结果通过先进的分析工具进行了分析,例如激光粒度分析,XRD,XRF,DSC-TGA,SEM和BET。不同类型的RP的性能差异很大,这与RP的微观结构,颗粒形态和化学组成密切相关。实验结果表明,研磨后的各种RPs具有较高的细度和良好的粒度分布,其矿物成分以SiO2为主,含量超过50%。各种RP的WRR在105%至112%之间,SAI在68%至78%之间,但LOI差异很大。不同类型的RPs对CCS有负面影响,但水泥和萘基高效减水剂的相容性影响较小。混合再生粉(HRP)中再生砖粉(RBP)的含量是重要的因素。当HRP中的RBP含量超过50%时,HRP可以满足粉煤灰的基本性能要求。

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