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首页> 外文期刊>Journal of Hazardous Materials >Synthesis of in-situ Al~(3+) -defected iron oxide nanoflakes from coal ash: A detailed study on the structure, evolution mechanism and application to water remediation
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Synthesis of in-situ Al~(3+) -defected iron oxide nanoflakes from coal ash: A detailed study on the structure, evolution mechanism and application to water remediation

机译:煤灰的原位α(3+)氧化铁纳米薄膜的合成:对水处理结构,进化机制及应用的详细研究

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摘要

The recovery of value-added materials from coal ash waste is of highly economic value and sustainable significance. However, researches on the synthesis of defect-engineering nanomaterials from coal ash are still blank. Herein, iron oxide (Fe1.72Al0.28O3 simplified as FAO) nanoflakes were successfully synthesized from a brown coal fly ash (BCFA) waste. The obtained FAO nanoflakes possess a round-shape morphology with a diameter of around 300 nm and 50 nm in thickness. With the progress of hydrothermal treatment, the impure Al3+ gradually replaced part of the Fe3+ in the alpha-Fe2O3 crystal. Specifically, Al3+ was preferentially adsorbed on the (001) facet, hindering the growth of Fe3+ on the [001] direction and thus causing the flattening of the resultant FAO. The introduced Al3+ also serves as the disordered defects on the hematite surface, leading to decreased crystal parameters for hematite, the formation of a compact first shell and a reduced periodical symmetry for the central cation Fe3+. The defects were also found to significantly improve the adsorption capacity of the resultant FAO for Cr(VI), As(V), As(III) and Congo red in waste water, with the maximum adsorption capacity of 68.3, 80.6, 61.1 and 213.8 mg g(-1), respectively. Cyclic tests also confirmed a relatively strong stability for the as-synthesised adsorbents.
机译:从煤灰废物中恢复增值材料具有高度经济价值和可持续性的重要性。然而,研究来自煤灰的缺陷工程纳米材料的合成仍然是空白的。这里,从棕色煤粉煤灰(BCFA)废物中成功地合成了氧化铁(简化为粮农组织的Fe1.72Al0.28O3)纳米薄片。获得的粮农组植物纳米薄片具有直径约为300nm和50nm的圆形形态。随着水热处理的进展,纯度Al3 +在α-Fe 2 O 3晶体中逐渐取代Fe3 +的一部分。具体地,优先吸附在(001)刻面上,在[001]方向上妨碍Fe3 +的生长,从而导致所得粮农组的趋势。介绍的Al3 +也用作赤铁矿表面的无序缺陷,导致赤铁矿的晶体参数降低,形成紧凑的第一壳体和中央阳离子Fe3 +的周期性对称性。还发现缺陷显着改善了废水中Cr(vi),As(v),As(v)和刚果红色的所得粮农组织的吸附能力,最大吸附能力为68.3,80.6,61.1和213.8分别mg g(-1)。循环试验还证实了AS合成的吸附剂的稳定性相对较强。

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  • 来源
    《Journal of Hazardous Materials》 |2020年第5期|122696.1-122696.10|共10页
  • 作者单位

    Monash Univ Dept Chem Engn Wellington Rd Clayton Vic 3800 Australia;

    Monash Univ Dept Chem Engn Wellington Rd Clayton Vic 3800 Australia;

    Monash Univ Dept Chem Engn Wellington Rd Clayton Vic 3800 Australia;

    Monash Univ Dept Chem Engn Wellington Rd Clayton Vic 3800 Australia;

    Monash Univ Dept Chem Engn Wellington Rd Clayton Vic 3800 Australia;

    Monash Univ Dept Chem Engn Wellington Rd Clayton Vic 3800 Australia;

    Monash Univ Dept Chem Engn Wellington Rd Clayton Vic 3800 Australia;

    Monash Univ Sch Earth Atmosphere & Environm Clayton Vic 3800 Australia;

    Monash Univ Dept Chem Engn Wellington Rd Clayton Vic 3800 Australia;

    Monash Univ Dept Chem Engn Wellington Rd Clayton Vic 3800 Australia;

    Monash Univ Dept Chem Engn Wellington Rd Clayton Vic 3800 Australia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Crystal growth; Defect engineering; Nanoflakes; Water chemistry; Waste recovery;

    机译:晶体生长;缺陷工程;纳米薄饼;水化学;废物恢复;

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