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首页> 外文期刊>Chemosphere >Enhanced adsorption of As(Ⅴ) and Mn(Ⅶ) from industrial wastewater using multi-walled carbon nanotubes and carboxylated multi-walled carbon nanotubes
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Enhanced adsorption of As(Ⅴ) and Mn(Ⅶ) from industrial wastewater using multi-walled carbon nanotubes and carboxylated multi-walled carbon nanotubes

机译:使用多壁碳纳米管和羧化多壁碳纳米管增强了工业废水的(Ⅵ)和Mn(Ⅵ)的吸附

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摘要

The presence of As(V) and Mn(VII) in water beyond the permissible concentration allowed by World Health Organization (WHO) standard affects human beings, animals and the environment adversely. Hence, there is need for an efficient material to remove these potentially toxic elements from wastewater prior to discharge into water bodies. This research focused on the application of response surface method (RSM) assisted optimization of Fe-Ni/Activated carbon (AC) catalyst for the synthesis of MWCNTs. Also, the MWCNTs was carboxylated and the adsorption behaviors of both nano-adsorbents in the removal of As(V) and Mn(VII) from industrial wastewater was investigated through experimental and computational techniques. The prepared Fe-Ni/AC, MWCNTs and MWCNTs-OCH2CO2H were characterized using BET, TGA, FTIR, HRSEM, HRTEM, XRD and XPS. The result showed the BET surface area of Fe-Ni/AC, MWCNTs and MWCNTs-OCH2CO2H were obtained as 1100, 1250 and 1172 m(2)/g, respectively. Due to the enhanced impact of carboxylation, the adsorption capacity of As(V) and Mn(VII) removal increased from 200 to 192 mg/g for MWCNTs to 250 and 298 mg/g for MWCNTs-OCH2CO2H. The isotherm and kinetic models were best fitted by Langmuir and pseudo-second order kinetics, while the thermodynamic investigation found that the adsorption process was endothermic, spontaneous and chemisorptions controlled. The regeneration potential of MWCNTs and MWCNTs-OCH2CO2H after six repeated applications revealed good stability of adsorption efficiency. The study demonstrated optimization importance of Fe-Ni/AC catalyst design for MWCNTs adsorbents and the potentials of utilizing both MWCNTs and MWCNTs-OCH2CO2H in the removal of selected heavy metals from water and soil. (C) 2020 Elsevier Ltd. All rights reserved.
机译:在水中存在(v)和mn(vii)的存在超出世界卫生组织(世卫组织)标准允许的允许浓度影响人类,动物和环境的不利影响。因此,需要一种有效的材料,以在排出水体之前从废水中除去这些潜在的有毒元素。本研究专注于响应面法(RSM)的应用辅助优化Fe-Ni /活性炭(AC)催化剂的合成MWCNT。此外,通过实验和计算技术研究了MWCNTS是羧化的,并且通过实验和计算技术研究了从工业废水中除去的纳米吸附剂的吸附行为。使用BET,TGA,FTIR,HRSEM,HRTEM,XRD和XPS表征制备的Fe-Ni / Ac,MWCNT和MWCNTS-OCH2CO2H。结果显示,作为1100,1250和1172m(2)/ g,得到Fe-Ni / Ac,MWCNT和MWCNTS-OCH2CO2H的BET表面积。由于羧化的增强,AS(V)和Mn(VII)的吸附容量从200至192mg / g增加到MWCNTS-OCH2CO2H的250和298mg / g。等温和动力学模型最适合由Langmuir和Pseudo-二阶动力学装配,而热力学调查发现吸附过程是吸热的,自发性和化学物质控制。六次重复应用后MWCNT和MWCNTS-OCH2CO2H的再生电位显示出良好的吸附效率稳定性。该研究证明了Fe-Ni / AC催化剂设计对MWCNTS吸附剂的优化重要性以及利用MWCNT和MWCNTS-OCH2CO2H在从水和土壤中除去选定的重金属中的潜力。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2020年第9期|126780.1-126780.17|共17页
  • 作者单位

    Fed Univ Technol Dept Chem Engn PMB 65 Minna Niger State Nigeria|Chukwuemeka Odumegwu Ojukwu Univ Dept Chem Engn PMB 02 Uli Anambra State Nigeria|Fed Univ Technol Africa Ctr Excellence Mycotoxin & Food Safety Nanotechnol Res Grp PMB 65 Minna Niger State Nigeria;

    Fed Univ Technol Dept Chem Engn PMB 65 Minna Niger State Nigeria|Fed Univ Technol Africa Ctr Excellence Mycotoxin & Food Safety Nanotechnol Res Grp PMB 65 Minna Niger State Nigeria;

    Fed Univ Technol Dept Chem Engn PMB 65 Minna Niger State Nigeria|Fed Univ Technol Africa Ctr Excellence Mycotoxin & Food Safety Nanotechnol Res Grp PMB 65 Minna Niger State Nigeria;

    Fed Univ Technol Dept Chem Engn PMB 65 Minna Niger State Nigeria;

    Fed Univ Technol Dept Chem PMB 65 Minna Niger State Nigeria|Fed Univ Technol Africa Ctr Excellence Mycotoxin & Food Safety Nanotechnol Res Grp PMB 65 Minna Niger State Nigeria;

    Univ Free State Dept Phys POB 339 ZA-9300 Bloemfontein South Africa;

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

    Activated carbon; Carbon nanotubes; Carboxylation; Adsorption; Arsenic; Manganese;

    机译:活性炭;碳纳米管;羧化;吸附;砷;锰;

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