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The effect of activated carbon support surface modification on characteristics of carbon nanospheres prepared by deposition precipitation of Fe-catalyst

机译:活性炭载体表面改性对Fe催化剂沉积沉淀制备的碳纳米球特性的影响

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In this study the effect of activated carbon support modification to synthesis of CNSs was observed. Modification of activated carbon was done by using nitric acid. The effect of modification was analyzed from its FTIR spectra. The Fe catalysts were deposited on to the support by using urea deposition precipitation method at various initial catalysts concentration. CNSs was synthesized by utilizing cooking palm oil as renewable carbon source, and pyrolized at 700°C for 1 hour under nitrogen atmosphere. The products obtained then analyzed using SEM-EDS, TEM, XRD, and Raman spectroscopy. The modification of activated carbon support had increased the oxygen functional group. This increase resulted on increase of metal catalysts deposited on activated carbon surface. Peak of C (100) was observed, while ID/IG of samples were obtained around 0.9, which is commonly obtained for CNSs. High catalysts loading on modified activated carbon support caused decomposition of CNSs and formation carbon onion.
机译:在这项研究中,观察了活性炭支持改性对CNS的合成的影响。通过使用硝酸来改变活性炭。从其FTIR光谱分析了修饰的效果。通过在各种初始催化剂浓度下使用尿素沉积沉淀法将Fe催化剂沉积在载体上。通过利用烹饪棕榈油作为可再生碳源合成CNSS,在氮气氛下在700℃下在700℃下蒸煮1小时。然后使用SEM-EDS,TEM,XRD和拉曼光谱分析所获得的产品。活性炭载体的改性增加了氧官能团。这种增加导致沉积在活性炭表面上的金属催化剂的增加。观察到C(100)的峰,同时获得样品的ID / Ig约0.9,其通常用于CNSS。改性活性炭载体上的高催化剂负载引起CNSS和地层洋葱的分解。

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