G'/> A ligand anchored conjugate adsorbent for effective mercury(II) detection and removal from aqueous media
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A ligand anchored conjugate adsorbent for effective mercury(II) detection and removal from aqueous media

机译:锚定缀合物吸附剂的配体,用于有效汞(II)检测和从含水培养基中除去

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Graphical abstractDisplay OmittedHighlights?Ligand based meso-conjugate adsorbent (MCA) was fabricated for Hg(II) ions capturing.?The MCA was selectively detected and removed the Hg(II) ions efficiently.?The MCA was exhibited high adsorption capacity (172.61?mg/g) of Hg(II) ions.?The competing ions were not adversely affected for Hg(II) ions capturing.AbstractIn this study, a novel mesoporous conjugate adsorbent (MCA) was fabricated by directly anchoring the organic ligand of 2-hydroxyacetophenone-4N-pyrrolidine thiosemicarbazones (HAPT) onto highly ordered mesoporous ZSM-5 for efficient and selective mercury (Hg(II)) ions capturing from aqueous solution. The effect of solution pH, interference of foreign metal ions, contact time, initial Hg(II) ions concentration, and elution-regeneration of the MCA were evaluated in the case of detection and removal operations. The MCA was exhibited an obvious color change from colorless to yellow in the presence of Hg(II) ions at optimum pH conditions. In addition, the Hg(II) ions was detected and removed from water samples with naked-eye observations. The sensitive detection was determined under specific optimum conditions and the lower detection limit was determined by the MCA was 3.69 ?g/L of Hg(II) ions. The foreign ions effect was evaluated and the MCA was exhibited high selectivity towards the Hg(II) ions with optimum color formation and the Hg(II) ions can be detected easily on-site Hg(II) ions monitoring. The adsorption efficiency was determined in terms of initial Hg(II) ions concentration. The data well fitted with the Langmuir isotherm model, and the maximum adsorption capacity of Hg(II) ions was 172.61?mg/g by the MCA. Moreover, the adsorption results of the MCA were compared with the other forms of different materials. The effective eluent of 0.10?M thiourea-0.10?M HCl was used to elute the Hg(II) ions from the MCA, and the MCA was simultaneously regenerated into the initial form for next process without significant loss in its initial performance. The data clarified that the MCA is an efficient and eco-friendly for simultaneous detection and removal of Hg(II) ions from wastewater samples.]]>
机译:<![cdata [ 图形摘要 显示省略 突出显示 < CE:简单段ID =“SP0010”View =“全部”> 基于角化的eeso - 缀合物吸附剂(MCA)被用于hg(ii)离子捕获。 MCA被选择性地检测并删除HG(II)高效。 MCA被展现出高吸附容量(172.61μmg/ g)的Hg(ii)离子。 竞争离子对Hg(ii)离子捕获没有不利影响。 抽象 在本研究中,通过直接锚定2-羟基乙烯酮的有机配体 - 4 N-吡咯烷酮硫代蓟虫(HAPT)在高度有序的中孔ZSM-5上进行EF有意和选择性的汞(Hg(II))离子从水溶液中捕获。在检测和去除操作的情况下,评估溶液pH,外来金属离子的干扰,接触时间,初始Hg(II)离子浓度和洗脱再生的浓度。在最佳pH条件下,MCA在HG(II)离子存在下,在HG(II)离子存在下,显着的颜色变化。此外,检测Hg(II)离子并从水样中除去裸眼观察。在特定的最佳条件下测定敏感检测,并且通过MCA确定较低的检测限为3.69μlHG(II)离子。评估外离子效果,并且MCA对HG(II)离子具有高选择性,最佳颜色形成,HG(II)离子可以容易地检测在现场HG(II)离子监测中。在初始Hg(II)离子浓度方面确定吸附效率。适用于Langmuir等温模型的数据,HG(II)离子的最大吸附容量为MCA为172.61Ωmg/ g。此外,将MCA的吸附结果与其他形式的不同材料进行比较。用于0.10μS-0.10≤MHCl的有效洗脱液用于从MCA洗脱Hg(II)离子,并且将MCA同时再生成下一个过程的初始形式,而不在其初始性能下显着损失。该数据阐明了MCA是一种高效且生态的,可同时检测和除去来自废水样品的HG(II)离子。 ]]>

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