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首页> 外文期刊>South african journal of chemical engineering >The effect of iron-carbon ratio and on carbon nanotube synthesis using camphor and ferrocene as carbon sources in the gauze reactor
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The effect of iron-carbon ratio and on carbon nanotube synthesis using camphor and ferrocene as carbon sources in the gauze reactor

机译:铁 - 碳比和碳纳米管合成的影响使用樟脑和二茂铁作为纱布反应器中的碳源

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Maximizing the quantity and quality of the product is the main goal of optimizing the material manufacturing process. The use of ferrocene as a carbon source and a catalyst in carbon nanotube (CNT) synthesis results in a significant amount of impurities. The addition of camphor as an additional carbon source is a way to overcome the high Fe/C ratio in ferrocene. This study aims to add camphor carbon sources to ferrocene to obtain an optimal Fe/C ratio to reduce the product's impurities. The application of a more reliable surface response method has not been well explored in studies of optimization of CNT synthesis. In this study, the response surface method (RSM) helps exploration in the parametric study of CNT synthesis. Ferrocene (Fe(C5H5)2) has an iron-carbon (Fe/C) ratio of 46.5%. The method used is Floating Catalyst Chemical Vapor Deposition (FCCVD), using a gauze-type 316 stainless steel substrate. Variations in the ratio of Fe/C in CNT synthesis were 0%, 6.8%, and 46.5% to obtain CNT results with the best quality and quantity. The Fe/C ratio of 6.8% has the best quality and highest quantity. The results of SEM, EDS, and TEM characterization showed that CNT at the variation of the Fe/C ratio of 6.8% had a CNT outside diameter of 20–40?nm, and the percentage of carbon mass was 86.64%. The yield at this ratio is 1.608 gs from 4 gs of precursor (40.2%). The RSM analysis with the optimum conditions for CNT yield were 49?min reaction time and 16% Fe/C ratio.
机译:最大化产品的数量和质量是优化材料制造过程的主要目标。使用二茂铁作为碳源和碳纳米管(CNT)合成中的催化剂导致大量的杂质。作为额外碳源的加入樟脑是一种克服二茂钠的高Fe / C比的方法。本研究旨在将樟脑碳源加入二茂铁以获得最佳的Fe / C比率以降低产品的杂质。 CNT合成优化研究尚未探索更可靠的表面响应法的应用。在本研究中,响应面方法(RSM)有助于探索CNT合成的参数研究。二茂铁(Fe(C5H5)2)的铁 - 碳(Fe / C)比例为46.5%。使用纱布型316不锈钢基板浮动催化剂化学气相沉积(FCCVD)。 CNT合成中Fe / C比率的变化为0%,6.8%和46.5%,以获得最佳质量和数量的CNT结果。 Fe / C比率为6.8%具有最佳质量和最高数量。 SEM,EDS和TEM表征的结果表明,在Fe / C比的变化下的CNT为6.8%的CNT外径为20-40Ω·Nm,碳物质的百分比为86.64%。该比率的产率是4gs的前体的1.608g(40.2%)。 CNT产量最佳条件的RSM分析为49〜min反应时间和16%Fe / C比。

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