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A Novel Polymeric Approach by Utilizing Functionalised Poly(ether ether ketone) for Hydrogen Storage Applications

机译:利用官能化聚(醚醚酮)进行新型聚合物方法,用于储氢应用

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Hydrogen is a reliable energy vector and its storage is strongly connected to the costs, performance and level of safety of the storage system components. Several materials for physical and chemical hydrogen storage have been proposed, but few research works were devoted to polymers, that generally are low cost and weight materials, easy to be managed and manufactured. In this work, a functionalised Poly(ether ether ketone) (PEEK) polymer was studied and chosen as a base polymeric matrix with the aim to produce both a low cost and low weight hydrogen storage material. The polymer was in situ functionalised starting from a manganese oxide precursor. The obtained oxide, bonded to the polymer chain, allows the hydrogen storage. In this work, the functionalisation process and preliminary results of the hydrogen storage capability are reported. From Scanning Electron Microscopy (SEM) and surface area measurements (BET), it has been verified that the metallic compound introduction modifies the morphology of the material, supplies an increased surface area for hydrogen chemisorption, revealing a 1.2%wt/wt hydrogen adsorption capability at 77 K. Preliminary results by Gravimetric Hydrogen Absorption measurements show that by increasing the temperature, the hydrogen storage capability is reduced and a value of 0.3%wt/wt at 50°C and 80 absolute bar was obtained. The reversibility cycles of hydrogen adsorption-desorption seem to be confirmed. For this reason such approach has been considered as a promising pathway and deeper studies are in progress.
机译:氢气是一种可靠的能源载体,它的存储强烈连接到成本,性能和存储系统组件的安全水平。物理和化学储氢几种材料已经被提出,但很少有研究工作进行了专门的聚合物,通常是低的成本和重量的材料,易于管理和制造。在这项工作中,官能化聚(醚醚酮)(PEEK)聚合物进行了研究,并选择作为与目标基体聚合物基质以产生既有低成本和低重量的储氢材料。将聚合物在原位官能从氧化锰前体开始。所得到的氧化物,键合到聚合物链,使储氢。在这项工作中,报告的功能化进程和储氢能力的初步结果。从扫描电子显微镜(SEM)和表面积测量(BET),已经证实的是,金属化合物引入修改材料的形态,用品为氢化学吸附的表面积增加,揭示在1.2%wt / wt的氢吸附能力在77K的初步结果通过重力吸氢测量表明通过提高温度,储氢能力降低和0.3的值%重量/重量在50℃,得到80绝对巴。氢吸附 - 解吸的可逆性循环似乎证实。出于这个原因,这种做法一直被认为是一个有希望的途径和更深入的研究正在进行中。

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