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Effects of Physical and Chemical States of Iron-Based Catalysts on Formation of Carbon-Encapsulated Iron Nanoparticles from Kraft Lignin

机译:铁基催化剂的物理化学状态对牛皮纸木质素形成碳包铁纳米粒子的影响

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摘要

Effects of physical and chemical states of iron-based catalysts on the formation of carbon-encapsulated iron nanoparticles (CEINs) synthesized thermally from kraft lignin were investigated. Experimental results indicated that if solution-based iron nitrate (FeN) was used as an iron source for the catalyst, CEINs observed were α-Fe and γ-Fe-based cores encapsulated by few layers graphitic-carbon (mostly 1–5 layers) and the majority of these CEINs were embedded in amorphous carbon matrix. The formation of graphitic-carbon shells is believed based on the dissolution and precipitation mechanism of amorphous carbon acting as the carbon source. If solid-based iron nanoparticles (FePs) were used as the catalyst, CEINs observed were α-Fe, γ-Fe, and Fe3C-based cores encapsulated with tangled graphitic-carbon nanoribbons and carbon tubules and the majority of these CEINs were found along the edge of amorphous carbon matrix. The growth of tangled graphitic-carbon nanoribbons and carbon tubules is based on a chemical vapor decomposition process, i.e., the carbonaceous gases from kraft lignin decomposition served as the carbon source.
机译:研究了铁基催化剂的物理和化学状态对由牛皮纸木质素热合成的碳包覆铁纳米颗粒(CEIN)形成的影响。实验结果表明,如果将溶液基硝酸铁(FeN)用作催化剂的铁源,则观察到的CEIN是由几层石墨碳(大多数为1-5层)包封的α-Fe和γ-Fe基核。这些CEIN中的大多数被嵌入无定形碳基质中。石墨碳壳的形成被认为是基于作为碳源的无定形碳的溶解和沉淀机理。如果将固态铁纳米颗粒(FePs)用作催化剂,则观察到的CEIN为包裹有缠结的石墨碳纳米带和碳管的α-Fe,γ-Fe和Fe3C基核,并且大多数CEIN沿非晶碳基质的边缘。纠缠的石墨碳纳米带和碳管的生长是基于化学气相分解过程,即,来自硫酸盐木质素分解的碳质气体用作碳源。

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