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以实验和计算模拟研究相结合的方法,从城市固体废物焚烧飞灰中制备功能地质聚合物。

Preparation of functional geopolymers from municipal solid waste incineration fly ash: An approach combining experimental and computational simulation studies.

机构信息

College of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming, Yunnan, 650500, China.

College of Environmental Science and Engineering, Kunming University of Science and Technology, Kunming, Yunnan, 650500, China.

出版信息

J Environ Manage. 2024 Mar;355:120226. doi: 10.1016/j.jenvman.2024.120226. Epub 2024 Mar 1.

DOI:10.1016/j.jenvman.2024.120226
PMID:38430876
Abstract

This study aims to evaluate the feasibility and safety of using municipal solid waste incineration fly ash (MSW-IFA) in the development of geopolymer-based solidification/stabilization (S/S) treatments. Geopolymers have garnered attention as a sustainable alternative to traditional cement, owing to their high strength, stability, and minimal CO emissions. In this study, a combination of experimental and simulation calculations was used to investigate the setting time, mechanical properties, environmental risks, hydration mechanisms and processes of municipal solid waste incineration fly ash-based polymeric functional cementitious materials (GFCM). The results demonstrate that the mechanical properties of GFCM are related to the changes in the mineral phases and the degree of compactness. Quantum chemical calculations indicate that the hydration products may be [Si(OH)], [Al(OH)(OH)] and [Al(OH)]. It is possible that the heavy metals are embedded in the hydrated silica-aluminate by electrostatic interaction or chemisorption. Heavy metals may be embedded in hydrated silica-aluminate by electrostatic action or chemisorption. This study provides a feasible method for resource utilization and heavy metal stabilization mechanism of MSW-IFA.

摘要

本研究旨在评估利用城市固体废物焚烧飞灰(MSW-IFA)开发基于地质聚合物的固化/稳定化(S/S)处理的可行性和安全性。由于地质聚合物具有高强度、稳定性和最小的 CO 排放,因此作为传统水泥的替代品引起了人们的关注。在这项研究中,使用实验和模拟计算相结合的方法来研究基于城市固体废物焚烧飞灰的聚合功能水泥基材料(GFCM)的凝结时间、力学性能、环境风险、水化机理和过程。结果表明,GFCM 的力学性能与矿物相的变化和密实度有关。量子化学计算表明,水化产物可能是[Si(OH)]、[Al(OH)(OH)]和[Al(OH)]。重金属可能通过静电相互作用或化学吸附嵌入水合硅铝酸盐中。重金属可能通过静电作用或化学吸附嵌入水合硅铝酸盐中。本研究为 MSW-IFA 的资源利用和重金属稳定化机制提供了一种可行的方法。

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引用本文的文献

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Materials (Basel). 2025 Mar 17;18(6):1319. doi: 10.3390/ma18061319.
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Utilization of Municipal Solid Waste Incineration (MSWIFA) in Geopolymer Concrete: A Study on Compressive Strength and Leaching Characteristics.城市固体废弃物焚烧灰在地质聚合物混凝土中的应用:抗压强度与浸出特性研究
Materials (Basel). 2024 Sep 20;17(18):4609. doi: 10.3390/ma17184609.