首页> 外文期刊>Journal of Hazardous Materials >Zero-valent iron-manganese bimetallic nanocomposites catalyze hypochlorite for enhanced thallium(I) oxidation and removal from wastewater: Materials characterization, process optimization and removal mechanisms
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Zero-valent iron-manganese bimetallic nanocomposites catalyze hypochlorite for enhanced thallium(I) oxidation and removal from wastewater: Materials characterization, process optimization and removal mechanisms

机译:零价铁锰双金属纳米复合材料催化次氯酸盐增强enhanced(I)的氧化和从废水中去除:材料表征,工艺优化和去除机理

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摘要

Nano zero-valent metals adsorption coupled with advanced oxidation for environmental pollutants removal has been gaining attention recently. In this study, zero-valent iron-manganese (nZVIM) bimetallic nanocomposites were prepared via one-pot borohydride reduction and coupled with hypochlorite (ClO-) oxidation for enhanced thallium (Tl) removal from wastewater. Amorphous nZVIM nanoparticles were successfully synthesized, with a specific surface area of 106.89 m(2)/g, and a saturation magnetization of 65.16 emu/g. In comparison with the nZVIM adsorption or ClO- oxidation alone, the hybrid nZVIM/ClO- process achieved much faster Tl(I) removal rate over a wide pH range from 6 to 10. Maximum Tl(1) removal capacity was as high as 990.0 mg/g. The oxidation-induced adsorption for Tl(I) removal well followed the pseudo-first kinetic order model. Stable and effective adsorbent regeneration was achieved during the cyclic adsorption-desorption tests. This process also had high resistance to the interference of external cations, can act as an effective pretreatment for Tl(I) removal from the actual saline industrial wastewater. The main mechanisms for Tl(I) removal were found to be oxidation, surface precipitation, pore retention, and surface complexation. The nZVIM coupled with ClO- approach has great potential for Tl(I) removal from wastewater, and its application in other fields is highly anticipated.
机译:纳米零价金属吸附与高级氧化相结合以去除环境污染物最近受到了关注。在这项研究中,零价铁锰(nZVIM)双金属纳米复合材料是通过一锅硼氢化物还原并结合次氯酸盐(ClO-)氧化制备的,以提高废水中的((Tl)去除率。非晶nZVIM纳米粒子已成功合成,比表面积为106.89 m(2)/ g,饱和磁化强度为65.16 emu / g。与单独的nZVIM吸附或ClO-氧化相比,nZVIM / ClO-混合工艺在6至10的宽pH范围内实现了更快的Tl(I)去除速率。最大Tl(1)去除能力高达990.0。毫克/克氧化诱导的对Tl(I)去除的吸附遵循伪一级动力学顺序模型。在循环吸附-解吸试验中,获得了稳定有效的吸附剂再生。该方法还具有较高的抗外部阳离子干扰的能力,可以作为从实际盐工业废水中去除Tl(I)的有效预处理。发现去除T1(I)的主要机理是氧化,表面沉淀,孔保留和表面络合。结合ClO-方法的nZVIM具有从废水中去除Tl(I)的巨大潜力,并且其在其他领域的应用也备受期待。

著录项

  • 来源
    《Journal of Hazardous Materials》 |2020年第15期|121900.1-121900.12|共12页
  • 作者

  • 作者单位

    Guangzhou Univ Sch Chem & Chem Engn Guangzhou 510006 Peoples R China;

    Guangzhou Univ Minist Educ Inst Environm Res Greater Bay Area Key Lab Water Qual & Conservat Pearl River Delta Guangzhou 510006 Peoples R China;

    Chongqing Univ Key Lab Three Gorges Reservoir Reg Ecoenvironm MO Chongqing 400045 Peoples R China;

    Guangzhou Univ Sch Environm Sci & Engn Guangzhou 510006 Peoples R China;

  • 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

    Thallium; Zero-valent iron; Zero-valent manganese; Adsorption; Hypochlorite;

    机译:铊;零价铁零价锰吸附;次氯酸盐;

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