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Adsorptive removal of eriochrome black T (EBT) dye by using surface active low cost zinc oxide nanoparticles: A comparative overview

机译:使用表面活性低成本氧化锌纳米粒子对埃里欧体黑T(EBT)染料的吸附性:比较概述

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摘要

The ecological toxicity imparted by non-biodegradable organic dyes has been considered as a major risk to handle in front of mankind. In this view, the low-cost zinc oxide nanoparticles (ZnO-NPs) were facially synthesized by coating the surface with surfactant (CTAB) and ionic liquid (BMTF) molecules for the effective removal of Eriochrome Black T (EBT) from aqueous media. Various advanced characterization techniques have given insight into the morphological features, crystalline structure and physio-chemical properties of as-synthesized ZnO-NPs. The systematic analysis of the adsorption isotherms and kinetics models specifies that the adsorption of EBT follow Freundlich model and pseudo-second-order kinetics. The intraparticle diffusion model displayed a linear relationship (R-2 = 0.98, 0.97 and 0.94 for BMTF@ZnO, CTAB@ZnO and bare ZnO-NPs), which shows that pore diffusion rate is affected by surface modification and effects the overall EBT adsorption process. Furthermore, after the removal of 87% and 84% of EBT dye by BMTF@ZnO-NPs and CTAB@ZnO-NPs, the fabricated nanoadsorbents of ZnO were successfully regenerated and reused after the treatments up to four times. The adsorption aptitude of ZnO-NPs towards EBT dye was systematically explored in real wastewater samples and interference study of inorganic metallic salts was also performed. The toxicity estimations of the treated dye solutions were made using floral and fungal activities, to ascertain their non-toxic nature before releasing into the environment. These outcomes have supported the immense potential of ZnO-NPs towards the removal of EBT in a cost effective manner. (C) 2021 Elsevier Ltd. All rights reserved.
机译:不可生物降解的有机染料赋予的生态毒性已被认为是人类前面处理的主要风险。在该视图中,通过用表面活性剂(CTAB)和离子液体(BMTF)分子涂覆表面来大规则地合成低成本的氧化锌纳米颗粒(ZnO-NPS),以便从水性介质中有效地除去埃里克罗姆黑T(EBT)。各种先进的表征技术已经深入了解了和合成的ZnO-NPS的形态特征,晶体结构和物理化学性质。吸附等温线和动力学模型的系统分析规定,EBT的吸附跟随Freundlich模型和伪二阶动力学。显示的粒状漫射模型显示线性关系(R-2 = 0.98,0.97和0.94,用于BMTF @ ZnO,CTAB @ ZnO和裸ZnO-NPS),表明孔隙扩散速率受到表面改性的影响,并影响总体EBT吸附过程。此外,在通过BMTF @ ZnO-NPS和CTAB ZnO-NPS除去87%和84%的EBT染料后,在治疗后成功再生ZnO的ZnO的纳米碳泡剂并在高达四次后重复使用。在真正的废水样本中系统地探索了ZnO-NPS朝向EBT染料的吸附能力,还进行了无机金属盐的干扰研究。使用花卉和真菌活动进行处理过的染料溶液的毒性估计,以确定其在释放到环境之前的无毒性。这些结果支持以成本效益的方式对ZnO-NPS的巨大潜力朝向消除EBT。 (c)2021 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Chemosphere》 |2021年第9期|130366.1-130366.13|共13页
  • 作者单位

    Panjab Univ Dept Chem Chandigarh 160014 India|Panjab Univ Ctr Adv Studies Chem Chandigarh 160014 India;

    Panjab Univ Dept Chem Chandigarh 160014 India|Panjab Univ Ctr Adv Studies Chem Chandigarh 160014 India|Panjab Univ Dept Environm Studies Chandigarh 160014 India;

    Panjab Univ Dept Environm Studies Chandigarh 160014 India;

    Panjab Univ Dept Chem Chandigarh 160014 India|Panjab Univ Ctr Adv Studies Chem Chandigarh 160014 India;

    Panjab Univ Dept Chem Chandigarh 160014 India|Panjab Univ Ctr Adv Studies Chem Chandigarh 160014 India;

  • 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

    CTAB; BMTF; Adsorption isotherm; Kinetic model; Regeneration; Toxicity estimations;

    机译:CTAB;BMTF;吸附等温线;动力学模型;再生;毒性估算;

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