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掺杂二次铝工业副产品的地质聚合物泡沫(GFs)的力学和热性能

Mechanical and Thermal Properties of Geopolymer Foams (GFs) Doped with By-Products of the Secondary Aluminum Industry.

作者信息

Ercoli Roberto, Laskowska Dorota, Nguyen Van Vu, Le Van Su, Louda Petr, Łoś Piotr, Ciemnicka Justyna, Prałat Karol, Renzulli Alberto, Paris Eleonora, Basilici Matteo, Rapiejko Cezary, Buczkowska Katarzyna Ewa

机构信息

Department of Pure and Applied Sciences, University of Urbino Carlo Bo, Via Ca' Le Suore 2/4, 61029 Urbino, Italy.

Department of Mechanical Engineering, Koszalin University of Technology, Śniadeckich 2, 75-453 Koszalin, Poland.

出版信息

Polymers (Basel). 2022 Feb 11;14(4):703. doi: 10.3390/polym14040703.

Abstract

The article deals with the investigation of geopolymer foams (GFs) synthesized using by-products coming from the (i) screening-, (iv) pyrolysis-, (iii) dust abatement- and (iv) fusion-processes of the secondary aluminum industry. Based on principles of the circular economy to produce new technological materials, the experimental study involves industrial by-products management through the recovery, chemical neutralization, and incorporation of these relatively hazardous waste into the GFs. The geopolymeric matrix, consisting of metakaolin (MK) and silica sand (SA) with a 1:1 wt.% ratio, and chopped carbon fibers (CFs, 1 wt.% MK), was doped with the addition of different aluminum-rich industrial by-products with a percentage from 1 to 10 wt.% MK. The gas (mainly hydrogen) produced during the chemical neutralization of the by-products represents the foaming agents trapped in the geopolymeric structure. Several experimental tests were carried out to characterize the mechanical (flexural, compressive, and Charpy impact strengths) and thermal properties (thermal conductivity, and diffusivity, and specific heat) of the GFs. Results identify GFs with good mechanical and thermal insulation properties, encouraging future researchers to find the best combination (for types and proportions) of the different by-products of the secondary aluminum industry to produce lightweight geopolymer foams. The reuse of these industrial by-products, which according to European Regulations cannot be disposed of in the landfill, also brings together environmental sustainability and safe management of hazardous material in workplaces addressed to the development of new materials.

摘要

本文研究了利用二次铝工业(i)筛选、(iv)热解、(iii)除尘和(iv)熔炼过程产生的副产品合成的地质聚合物泡沫(GFs)。基于循环经济生产新技术材料的原则,该实验研究涉及通过回收、化学中和以及将这些相对危险的废物掺入GFs中来管理工业副产品。由偏高岭土(MK)和硅砂(SA)按1:1重量比组成的地质聚合物基体,以及短切碳纤维(CFs,1重量%MK),添加了1至10重量%MK的不同富铝工业副产品。副产品化学中和过程中产生的气体(主要是氢气)代表被困在地质聚合物结构中的发泡剂。进行了多项实验测试以表征GFs的机械性能(弯曲、压缩和夏比冲击强度)和热性能(热导率、扩散率和比热)。结果表明GFs具有良好的机械和隔热性能,这鼓励未来的研究人员找到二次铝工业不同副产品的最佳组合(类型和比例)以生产轻质地质聚合物泡沫。这些工业副产品根据欧洲法规不能填埋处理,其再利用还将环境可持续性与工作场所危险材料的安全管理结合起来,以促进新材料的开发。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b36d/8878777/4e817cfcd05f/polymers-14-00703-g001.jpg

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