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一种新型胺功能化多孔地质聚合物球体,由城市固体废物焚烧飞灰制备,用于 CO2 捕获。

A novel amine functionalized porous geopolymer spheres from municipal solid waste incineration fly ash for CO capture.

机构信息

School of Energy & Environmental Engineering, Hebei University of Technology, Tianjin, 300401, China.

College of Environmental Science and Engineering, Ministry of Education Key Laboratory of Pollution Processes and Environmental Criteria, Nankai University, Tianjin, 300350, China.

出版信息

J Environ Manage. 2024 Jan 1;349:119540. doi: 10.1016/j.jenvman.2023.119540. Epub 2023 Nov 15.

Abstract

Municipal solid waste (MSW) incineration fly ash (FA) is classified as hazardous waste, and strategies for recycling FA have attracted attention. In this study, the porous geopolymer spheres (PGS) were prepared from FA by the foaming-suspension-solidification method, and then the PGS were functionalized with tetraethylenepentamine (TEPA) to capture CO. The results showed that washing pretreatment and the addition of HO foaming agent enhanced the pore volume and specific surface area of PGS. The CO adsorption capacity of amine-functionalized PGS exhibited a trend of increasing and then decreasing in the range of 35-80 °C. The maximum adsorption capacity of TEPA-WPGS3 was 2.55 mmol/g at 65 °C higher than expected for the average of TEPA and PGS. This was because PGS improved the dispersion of TEPA, thus exposing more active sites of TEPA and making it more likely to interact with CO. The adsorption efficiency of amine-functionalized PGS decreased by only 2.4% after 10 cycles, indicating that it has excellent regeneration performance. In addition, amine-functionalized PGS, which showed excellent CO adsorption capacity, had a significant ability to selectively adsorb CO and the adsorption capacity of the rapid stage accounted for approximately 80% of the saturated adsorption capacity. This study shows that FA-derived geopolymers have excellent CO adsorption properties and provides a new method for the resource utilization of FA.

摘要

城市固体废物(MSW)焚烧飞灰(FA)被归类为危险废物,因此回收 FA 的策略引起了人们的关注。在本研究中,通过发泡-悬浮-固化法从 FA 制备了多孔地质聚合物球(PGS),然后用四乙烯五胺(TEPA)对 PGS 进行功能化以捕获 CO。结果表明,洗涤预处理和添加 HO 发泡剂提高了 PGS 的孔体积和比表面积。胺功能化 PGS 的 CO 吸附容量在 35-80°C 的范围内呈现出先增加后减少的趋势。TEPA-WPGS3 在 65°C 时的最大吸附容量为 2.55mmol/g,高于 TEPA 和 PGS 的平均预期值。这是因为 PGS 改善了 TEPA 的分散性,从而暴露出更多的 TEPA 活性位,使其更有可能与 CO 相互作用。胺功能化 PGS 在 10 次循环后仅下降了 2.4%的吸附效率,表明其具有出色的再生性能。此外,胺功能化 PGS 对 CO 具有出色的吸附能力,具有显著的选择性吸附 CO 的能力,快速阶段的吸附容量约占饱和吸附容量的 80%。这项研究表明,FA 衍生的地质聚合物具有出色的 CO 吸附性能,为 FA 的资源利用提供了一种新方法。

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