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低水固比振动压制碱激发城市固体废弃物焚烧底灰混凝土性能研究

Investigation of the Properties of Low Water-to-Solid Ratio Vibro-Press-Formed Alkali-Activated Municipal Solid Waste Incineration Bottom-Ash Concrete.

作者信息

Tamošaitis Gintautas, Vaičiukynienė Danutė, Bajare Diana

机构信息

Faculty of Architecture and Civil Engineering, Kaunas University of Technology, Studentų st. 48, 51367 Kaunas, Lithuania.

Institute of Sustainable Building Materials and Engineering Systems, Faculty of Civil and Mechanical Engineering, Riga Technical University, 6A Kipsalas, LV-1048 Riga, Latvia.

出版信息

Materials (Basel). 2025 Jun 20;18(13):2926. doi: 10.3390/ma18132926.

Abstract

This work focuses on the use of municipal waste incineration bottom ash (MSWI) for the development and production of products suitable for use as construction products. The generation of these ashes is increasing every year due to the incineration of municipal waste. There are currently three incineration plants operating in major cities in Lithuania. The non-hazardous bottom ash remaining from the incineration process is stored in dedicated sorting and aging sites until it is used as an inert form of aggregate for the installation of road foundations. However, it has been observed that these ashes have a tendency to bind and cement when exposed to atmospheric precipitation at the storage site. Based on this characteristic, it was decided in this study to use alkaline activation of the ash to accelerate the bonding process and to create a dense, non-porous composite concrete structure. This activation method is known to create another problem during ash bonding, where the presence of metallic aluminum particles in the ash leads to the release of hydrogen gas and makes the structure of the cured samples porous. For the purposes of the study, it was decided to create a completely different mixture structure and not to use additional water in the mixtures tested. A very low water/solids ratio (W/S) of <0.08 was used for the alkaline activation of the mixtures. All the water required for ash activation was obtained from sodium silicate and sodium hydroxide solution. Metakaolin waste (MKW) was used to adjust the SiO/NaO/AlO ratio of the mixtures. Vibro-pressing was used to form and increase the density of the samples. And for the formation of the concrete structure, 0/4 fraction sand was used as aggregate. The final alkali-activated sample obtained had properties similar to those of the very widely used vibro-pressed cementitious paving tiles and did not exhibit hydrogen evolution during alkali activation due to the very low W/S ratio. The best results were achieved by samples with a highest compressive strength of 40.0 MPa and a tensile strength of 5.60 MPa, as well as a density of 1950 kg/m. It is believed that this alkaline activation and vibro-pressing method can expand the use of MSWI ash in the development of building products.

摘要

这项工作聚焦于利用城市垃圾焚烧底灰(MSWI)来开发和生产适合用作建筑产品的材料。由于城市垃圾焚烧量的增加,这些灰烬的产生量逐年上升。立陶宛的主要城市目前有三座垃圾焚烧厂在运营。焚烧过程中产生的无害底灰被储存在专门的分拣和陈化场地,直至用作道路基础铺设的惰性骨料。然而,据观察,这些灰烬在储存场地暴露于大气降水时会有粘结和胶凝的趋势。基于这一特性,本研究决定对灰烬进行碱激发,以加速粘结过程,并形成致密、无孔的复合混凝土结构。已知这种激发方法在灰烬粘结过程中会引发另一个问题,即灰烬中金属铝颗粒的存在会导致氢气释放,使固化样品的结构出现孔隙。出于研究目的,决定创建一种完全不同的混合料结构,且在所测试的混合料中不额外加水。混合料碱激发采用极低的水/固体比(W/S)<0.08。灰烬激发所需的所有水分均来自硅酸钠和氢氧化钠溶液。偏高岭土废料(MKW)用于调整混合料的SiO/NaO/AlO比例。采用振动压制来成型并提高样品密度。对于混凝土结构的成型,使用0/4级配砂作为骨料。最终得到的碱激发样品具有与广泛使用的振动压制水泥铺路砖相似的性能,并且由于极低的W/S比,在碱激发过程中未出现氢气逸出。抗压强度最高达40.0MPa、抗拉强度为5.60MPa且密度为1950kg/m的样品取得了最佳结果。据信,这种碱激发和振动压制方法能够扩大城市垃圾焚烧底灰在建筑产品开发中的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5390/12250654/f53cd8bf3c8f/materials-18-02926-g001.jpg

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