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将城市生活垃圾焚烧炉渣和飞灰作为低碱度碱性水泥的前体进行回收利用。

Recycling municipal solid waste incineration slag and fly ash as precursors in low-range alkaline cements.

机构信息

CQ-VR, Department of Engineering, University of Trás-os-Montes e Alto Douro, 5000-801 Vila Real, Portugal.

Department of Engineering, University of Trás-os-Montes e Alto Douro, 5000-801 Vila Real, Portugal.

出版信息

Waste Manag. 2020 Mar 1;104:60-73. doi: 10.1016/j.wasman.2020.01.013. Epub 2020 Jan 18.

DOI:10.1016/j.wasman.2020.01.013
PMID:31962218
Abstract

Application of municipal solid waste incineration (MSWI) products - fly ash (MSW-FA) and bottom ash (MSW-BA), is increasingly popular, mostly due to the need to reintroduce it in the industrial chain, but also because its technical performance is constantly enhanced by a growing research effort. This paper deals with the less popular application of these wastes without the addition of a more competent precursor. Several pastes based on MSW-FA, MSW-BA or MSW-FA+MSW-BA were prepared, using sodium silicate or sodium hydroxide. Their overall performance was then assessed through mechanical (uniaxial compressive strength - UCS and seismic wave velocity), environmental (leaching) and durability tests (freeze-thaw and wetting-drying). Cement stabilised MSW-BA pastes were also tested, for reference. Results showed that a preliminary mechanical activation, achieved by milling, is fundamental; the activation with silicate is more effective than with hydroxide, especially in the case of the MSW-BA pastes, when the UCS values are more than triplicated (3-10 MPa); the MSW-BA is a more competent precursor than the MSW-FA and the durability and leachability of the alkali activated pastes is similar to that obtained with cement. The most performing paste, in terms of UCS, was obtained with BA activated exclusively with sodium silicate, with an activator/precursor weight ratio of 0.5. In general, the low-cost solidification/stabilisation proposed in this study showed competitive with the alternative use of up to 30% cement and should be regarded as a valid alternative for simple storage or low-range applications, in substitution of Portland cement.

摘要

城市固体废物焚烧(MSWI)产物的应用-飞灰(MSW-FA)和底灰(MSW-BA),由于需要将其重新引入产业链,以及其技术性能因不断增加的研究工作而不断提高,因此越来越受欢迎。本文涉及这些废物的不太受欢迎的应用,而没有添加更合适的前体。使用硅酸钠或氢氧化钠制备了几种基于 MSW-FA、MSW-BA 或 MSW-FA+MSW-BA 的糊剂。然后通过机械(单轴抗压强度-UCS 和地震波速度)、环境(浸出)和耐久性测试(冻融和干湿)评估其整体性能。还测试了水泥稳定的 MSW-BA 糊剂,以供参考。结果表明,初步的机械活化(通过研磨实现)是基础;与氢氧化物相比,硅酸盐的活化更有效,尤其是在 MSW-BA 糊剂的情况下,UCS 值增加了三倍以上(3-10 MPa);MSW-BA 比 MSW-FA 更适合作为前体,并且碱激活糊剂的耐久性和浸出率与使用水泥获得的相似。就 UCS 而言,最具性能的糊剂是仅用硅酸钠激活的 BA 制成的糊剂,其活化剂/前体重量比为 0.5。总的来说,与替代使用高达 30%水泥相比,本研究提出的低成本固化/稳定化方法具有竞争力,应被视为替代波特兰水泥的简单存储或低范围应用的有效替代品。

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