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首页> 外文期刊>Diamond and Related Materials >Step-by-step conversion of water hyacinth waste to carbon nanohorns by a combination of hydrothermal treatment, carbonization and arc in water processes
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Step-by-step conversion of water hyacinth waste to carbon nanohorns by a combination of hydrothermal treatment, carbonization and arc in water processes

机译:水液处理,碳化和水过程中的组合通过水热处理,碳化和弧的组合逐步转换碳纳米醇

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摘要

Water hyacinth is an invasive plant with excessive population which results in water pollution due to obstruction of oxygen transferring from air to water. This work firstly presents a step-by-step conversion of water hyacinth into carbon nanohorns through hydrothermal treatment, carbonization and arc in water. As the first step, the hydrothermal treatment at 220 degrees C could convert the dried water hyacinth with carbon content of 39% to hydro char with carbon content of 57%. Graphitic rods were prepared by compression of the hydro-char which was carbonized at 900 degrees C under nitrogen atmosphere. With the arc in water step, carbon nanohorns with an average size of 39 nm could be produced as confirmed by TEM analyses. Therefore, the usage of water hyacinth waste as renewable source for producing high value-added carbon nanohorns via the step-by-step process would be another promising technology for biomass utilization.
机译:水葫芦是一种入侵性植物,其种群过多,阻碍了氧气从空气中向水中的转移,造成水污染。本工作首次提出了水葫芦通过水热处理、碳化和水中电弧逐步转化为碳纳米角的方法。作为第一步,220℃的水热处理可以将碳含量为39%的干燥水葫芦转化为碳含量为57%的水硬炭。石墨棒是通过在900℃氮气气氛下炭化的氢焦的压缩制备的。TEM分析证实,在水弧阶段,可以制备出平均尺寸为39 nm的碳纳米喇叭。因此,利用水葫芦废弃物作为可再生资源,通过分步工艺生产高附加值的碳纳米喇叭,将是另一种有前途的生物质利用技术。

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