改变石墨化温度对棕榈仁壳生物石墨的影响

IF 1.6 Q3 ENGINEERING, INDUSTRIAL
R. Othman, Afiqah Samsul Kamal, N. Jabarullah
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引用次数: 3

摘要

摘要本文主要研究了热处理温度对非晶碳材料向高石墨化碳材料结构转变的影响。下面的报告讨论了一种简单的策略,通过简单的两步法将棕榈仁壳(PKS)转化为高结晶、高质量的石墨。生产过程包括浸渍催化剂,然后进行热处理。使用Ferum催化剂,XRD和Raman光谱可以观察到制备样品在1000 ~ 1400℃温度范围内的微观结构变化。从XRD图谱可以看出,随着石墨化温度的升高,石墨化程度也随之增加。在1400℃高温下制备的整体样品显示出更高的石墨化程度。经Ferum催化剂在1400℃下石墨化的PKS样品在2θ = 26.5°处有一个尖峰,反映了高结晶石墨结构的形成。拉曼光谱也显示了与XRD相似的结果,PKS-1400的(Id/Ig)比低于其他样品,显示出大量石墨结构的存在。HRTEM分析显示出清晰的晶格条纹,进一步证实了石墨碳结构由非晶态向高度有序结构转变。总体而言,利用PKS、Ferum催化剂和热处理方法,成功地合成了棕榈仁壳的优质石墨碳结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The effect of changing graphitization temperature toward bio-graphite from Palm Kernel Shell
Abstract This paper focuses on the relationship between heat treatment temperature toward structural transformation from amorphous carbon to highly graphitic carbon material during a production stage.The following report discusses a simple strategy to convert the palm kernel shell (PKS) into highly crystalline, high quality graphite via simple two-step process. The production involves impregnation of catalyst followed by thermal treatment. Both XRD and Raman spectroscopy allowed the observation of microstructural change of the prepared sample at temperature ranging from 1000°C to 1400°C using Ferum catalyst. From XRD pattern it can be observed that as graphitization temperature increased, the degree of graphitization also increased. Overall sample prepared at higher temperature 1400°C shows a higher degree of graphitization. PKS sample graphitized at 1400°C with the aid of Ferum catalyst shows a sharp intensified peak at 2θ = 26.5° reflecting formation of highly crystalline graphite structure. Raman spectrum also suggests similar results to XRD in which PKS-1400 shows the presence of large amount of graphitic structure as the value of (Id/Ig) ratio is lower than in other samples. HRTEM analysis visibly shows define lattice fringe, which further confirms the structural transformation from amorphous to highly ordered graphitic carbon structure. Overall, good quality graphitic carbon structure from Palm Kernel shell was succesfully synthesised via utilization of PKS, Ferum catalsyt and heat treatment method.
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来源期刊
Production Engineering Archives
Production Engineering Archives Engineering-Industrial and Manufacturing Engineering
CiteScore
6.10
自引率
13.00%
发文量
50
审稿时长
6 weeks
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