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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Lignin-Derived Thin-Walled Graphitic Carbon-Encapsulated Iron Nanoparticles: Growth, Characterization, and Applications
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Lignin-Derived Thin-Walled Graphitic Carbon-Encapsulated Iron Nanoparticles: Growth, Characterization, and Applications

机译:木质素衍生的薄壁石墨碳封装的铁纳米粒子:生长,表征和应用

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src="http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/ascecg/2017/ascecg.2017.5.issue-2/acssuschemeng.6b02653/20170202/images/medium/sc-2016-026539_0008.gif">Biorenewable lignin has been used as a precursor to produce varieties of carbon materials. However, up to now, it has not been easy to obtain graphitic carbon-encapsulated metal materials without a high-temperature process. Here, we demonstrate an antiprogrammed temperature pyrolysis route for the fabrication of iron encapsulated in thin-walled graphitic layers with a low temperature. The industrially available lignin was used as a biorenewable carbon source, and ferric nitrates were used as metal sources. We found that the pyrolysis process during carbonization is a critical factor to obtain thin-walled graphitic carbon-encapsulated iron materials. When the pyrolysis process is adjusted, the size of iron particles is readily tunable, and more importantly, the iron particles are wrapped in one to four layers of graphitic carbon. The thin-walled graphitic carbon-encapsulated iron material from biorenewable lignin sources is a good candidate for Fischer–Tropsch synthesis to lower olefins catalyst.
机译:src =“http://pubs.acs.org/appl/literatum/publisher/achs/journals/content/ascecg/2017/ socececg.2017.5.issue-/cssuschemeng.6b0202/images/medium/sc -2016-026539_0008.gif“>生物治愈木质素被用作生产各种碳材料的前体。然而,到目前为止,它并不容易获得石墨碳封装的金属材料而没有高温工艺。这里,我们证明了一种用于在具有低温的薄壁石墨层中封装的铁的抗蠕动温度热解途径。工业上可获得的木质素用作生物愈性碳源,用硝酸盐用作金属来源。我们发现碳化期间的热解过程是获得薄壁石墨碳封装的铁材料的关键因素。当调节热解过程时,铁颗粒的尺寸易于调谐,更重要的是,铁颗粒以一到四层石墨碳包裹。来自生物治疗的薄壁的石墨碳封装的铁材料是Fischer-Tropsch合成至下烯烃催化剂的良好候选者。

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  • 作者单位

    Jiangsu Key Laboratory of E-Waste Recycling School of Chemistry and Environmental Engineering Jiangsu University of Technology No. 1801 Zhongwu Road Changzhou City 213001 China;

    Jiangsu Key Laboratory of E-Waste Recycling School of Chemistry and Environmental Engineering Jiangsu University of Technology No. 1801 Zhongwu Road Changzhou City 213001 China;

    Department of Environmental Science and Engineering Fudan University No.220 Handan Road YangPu District Shanghai 200433 China;

    Jiangsu Key Laboratory of E-Waste Recycling School of Chemistry and Environmental Engineering Jiangsu University of Technology No. 1801 Zhongwu Road Changzhou City 213001 China;

    Department of Environmental Science and Engineering Fudan University No.220 Handan Road YangPu District Shanghai 200433 China;

    Jiangsu Key Laboratory of E-Waste Recycling School of Chemistry and Environmental Engineering Jiangsu University of Technology No. 1801 Zhongwu Road Changzhou City 213001 China;

    Jiangsu Key Laboratory of E-Waste Recycling School of Chemistry and Environmental Engineering Jiangsu University of Technology No. 1801 Zhongwu Road Changzhou City 213001 China;

    Jiangsu Key Laboratory of E-Waste Recycling School of Chemistry and Environmental Engineering Jiangsu University of Technology No. 1801 Zhongwu Road Changzhou City 213001 China;

    Department of Environmental Science and Engineering Fudan University No.220 Handan Road YangPu District Shanghai 200433 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业 ;
  • 关键词

    Fischer?Tropsch; Graphitic carbon; Lignin; Lower olefins; Nanomaterials;

    机译:菲舍尔?托丘;石墨碳;木质素;下烯烃;纳米材料;

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