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用于能源可持续吸附技术的铝基定制SAPO-34/石墨吸附剂复合涂层

Tailored SAPO-34/Graphite Adsorbent Composite Coatings on Aluminum Substrate for Energy Sustainable Sorption Technologies.

作者信息

Palamara Davide, Proverbio Edoardo, Frazzica Andrea, Calabrese Luigi

机构信息

Department of Engineering, University of Messina, Contrada di Dio Sant'Agata, 98166 Messina, Italy.

CNR-ITAE "Nicola Giordano", Via Salita S. Lucia sopra Contesse 5, 98126 Messina, Italy.

出版信息

Polymers (Basel). 2025 Jan 21;17(3):260. doi: 10.3390/polym17030260.

Abstract

This paper explores a novel composite adsorbent coating applied to an aluminum support. This coating incorporates SAPO-34 and exfoliated graphite fillers within a sulfonate polyether ether ketone (S-PEEK) matrix, offering a promising avenue for energy-efficient adsorption technologies. Composite coatings, containing SAPO-34 zeolite as the primary adsorbent (80-95 wt.%) and exfoliated graphite as a conductive additive (5 wt.%) were produced. A drop-casting technique was employed to deposit the composite mixtures onto aluminum substrates. The coatings exhibited excellent adhesion to the metal substrate, as proved by a pull-off strength higher than 1.0 MPa. The morphological characterization revealed a uniform dispersion of both additives within the host material. To evaluate their adsorption/desorption behavior, equilibrium water vapor adsorption isobars were determined at a constant pressure of 11 mbar across a 30-120 °C temperature range. The adsorption/desorption tests showed the composite coatings reached 26-30% water uptake, indicating that the matrix did not obstruct the water vapor mass transfer, and the zeolite exhibited active participation in the adsorption/desorption process. These results suggest that this material may be a promising candidate for energy saving systems.

摘要

本文探索了一种应用于铝载体的新型复合吸附剂涂层。该涂层在磺化聚醚醚酮(S-PEEK)基体中加入了SAPO-34和膨胀石墨填料,为节能吸附技术提供了一条有前景的途径。制备了以SAPO-34沸石作为主要吸附剂(80-95 wt.%)和膨胀石墨作为导电添加剂(5 wt.%)的复合涂层。采用滴铸技术将复合混合物沉积在铝基板上。涂层对金属基板表现出优异的附着力,其拉拔强度高于1.0 MPa证明了这一点。形态表征显示两种添加剂在主体材料中均匀分散。为了评估它们的吸附/解吸行为,在11 mbar的恒定压力下,在30-120°C的温度范围内测定了平衡水蒸气吸附等压线。吸附/解吸测试表明复合涂层的吸水量达到26-30%,这表明基体没有阻碍水蒸气的传质,并且沸石在吸附/解吸过程中表现出积极参与。这些结果表明这种材料可能是节能系统的一个有前景的候选材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d57/11819961/30351cf2e346/polymers-17-00260-g001.jpg

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