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起始植物材料对Ni@C型复合材料特性的影响。

The Influence of Starting Plant Material on Ni@C-Type Composites' Characteristics.

作者信息

Dudek Kamil, Małecki Stanisław, Kornaus Kamil, Żabiński Piotr

机构信息

Faculty of Non-Ferrous Metals, AGH University of Krakow Mickiewicz Avenue 30, 30-059 Cracow, Poland.

Faculty of Material Engineering and Ceramics, AGH University of Krakow, Mickiewicz Avenue 30, 30-059 Cracow, Poland.

出版信息

Materials (Basel). 2025 Aug 12;18(16):3784. doi: 10.3390/ma18163784.

Abstract

This study describes the development and characterization of materials based on activated carbon (AC). Pellets composed of dried biomass of willow, knotweed, and maple were formed and pyrolyzed to obtain different types of AC. Nickel (Ni) nanoparticles were synthesized on these materials using a bottom-up strategy by impregnating the carbons with a nickel nitrate solution. To characterize the surface and structure of these materials, SEM, MP-AES, and DSC-TGA techniques were employed. The ash content was analyzed to determine the input of mineral components in the carbons. The DSC-TGA results showed good thermal stability for each of the carbons, even at a temperature of 800 °C. BET analysis was also conducted, and the isotherms revealed well-developed surfaces for most of the specimens. The high efficiency of the impregnation process was confirmed by the MP-AES results: 165 mg of Ni was deposited on 1 g of carbon derived from maple leaves. The adsorbed Ni was well distributed across the carbon surfaces, as demonstrated in micrographs taken with the SEM-EDS apparatus. A comparison with similar materials reported in other studies was also performed.

摘要

本研究描述了基于活性炭(AC)的材料的开发与表征。由柳树、虎杖和枫树的干燥生物质制成的颗粒经成型和热解以获得不同类型的活性炭。采用自下而上的策略,通过用硝酸镍溶液浸渍碳,在这些材料上合成了镍(Ni)纳米颗粒。为了表征这些材料的表面和结构,采用了扫描电子显微镜(SEM)、多模式原子发射光谱仪(MP - AES)和差示扫描量热 - 热重联用仪(DSC - TGA)技术。分析了灰分含量以确定碳中矿物成分的输入量。DSC - TGA结果表明,即使在800℃的温度下,每种碳都具有良好的热稳定性。还进行了BET分析,等温线显示大多数样品的表面发育良好。MP - AES结果证实了浸渍过程的高效率:1克源自枫叶的碳上沉积了165毫克镍。如扫描电子显微镜 - 能谱仪(SEM - EDS)拍摄的显微照片所示,吸附的镍在碳表面分布均匀。还与其他研究报道的类似材料进行了比较。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c4a/12387519/3b2add7207ba/materials-18-03784-g001.jpg

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