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Innovative composite material for efficient and highly selective Pb(II) ion capturing from wastewater

机译:用于高效且高度选择性PB(II)离子捕获废水的创新复合材料

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In the present study, highly porous composite material (PCM) was fabricated by novel ligand immobilization onto the silica monolith for Pb(II) ion detection and adsorption from wastewater by the solid-liquid separation method. The material was systematically characterized to know the material morphology and functional group. In addition, the Pb(II) capturing performance of PCM toward Pb(II) in aqueous media was explored. The PCM was enhanced the color upon addition of different concentration Pb(II) ion. The low-level limit detection was determined, and the value was 0.33 mu g/L, which was lower than the permissible limit of Pb(II) ion in water. Factors affecting the adsorption of Pb(II) ion such as solution acidity, reaction time, initial Pb(II) concentration, competing ion and regeneration were investigated systematically in batch mode by the PCM. The solution pH was played the key role both in the detection and adsorption of Pb(II) ion. The pH dependent was exhibited due to the complexation bonding ability. The kinetic performance was rapid as the Pb(II) ion adsorption was equilibrated within short time, and this was confirmed the chemisorption process. The adsorption isotherm of Pb(II) onto PCM was well fitted to the Langmuir isotherm models as expected from the material homogeneity. In addition, the maximum monolayer adsorption capacity was 204.34 mg/g. The competing ions were not affected the Pb(II) detection or adsorption, and this were evident to the high selectivity toward the Pb(II) ion at the optimum condition. The adsorbed Pb(II) from PCM was desorbed with 0.15 M HCl and then simultaneously regenerated for next Pb(II) capturing process. Therefore, the proposed PCM can be considered as a potential material for Pb(II) ion detection and adsorption from the wastewater sample. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本研究中,通过新的配体固定在二氧化硅整料上,通过固液分离法从废水中吸附的二氧化硅整料上,通过新的配体固定物制造高多孔的复合材料(PCM)。该材料被系统地表征,以了解物质形态和官能团。此外,探讨了PB(II)捕获PCM朝向含水介质中PB(II)的PB(II)的性能。添加不同浓度Pb(II)离子后,PCM增强了颜色。测定低水平限制检测,该值为0.33μg/ L,其低于水中Pb(II)离子的允许极限。通过PCM系统地通过批量模式系统地研究了影响溶液酸度,反应时间,初始PB(II)浓度,竞争离子和再生的溶液酸度,反应时间,初始PB(II)浓度,竞争离子和再生的因素。在PB(II)离子的检测和吸附中,在PB(II)离子的检测和吸附中发挥了关键作用的关键作用。由于络合键合能力而呈现pH依赖性。随着Pb(II)离子吸附在短时间内平衡的Pb(II)离子吸附,动力学性能快,这证实了化学吸附过程。 PB(II)的吸附等温线在PCM上良好地拟合到Langmuir等温线模型,从而预期的材料均匀性。此外,最大的单层吸附能力为204.34mg / g。竞争离子不影响PB(II)检测或吸附,并且这对Pb(II)离子的高选择性处于最佳条件下显而易见。来自PCM的吸附性Pb(II)用0.15M HCl解吸,然后同时再生于下一个PB(II)捕获过程。因此,所提出的PCM可以被认为是PB(II)离子检测和废水样品吸附的潜在材料。 (c)2019 Elsevier B.v.保留所有权利。

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