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Removal of toxic heavy metals from river water samples using a porous silica surface modified with a new β-ketoenolic host

机译:使用具有新的β-酮酚宿主的多孔二氧化硅表面从河水样品中除去有毒重金属

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摘要

A new hybrid adsorbent material for the efficient removal of heavy metals from natural real water solutions (Moroccan river water samples) was prepared by the immobilization of a new conjugated β-ketoenol–pyridine–furan ligand onto a silica matrix. The thermodynamical properties including pH, adsorption isotherms, competitive adsorption, selectivity and regeneration were studied to investigate the effect of ketoenol–pyridine–furan–silica (SiNL) on the removal of Zn(II), Pb(II), Cd(II) and Cu(II) from aqueous solutions. An increase in adsorption as a function of pH and fast adsorption was reached within 25 min. The maximum sorption capacities for Zn(II), Pb(II), Cd(II) and Cu(II) were 96.17, 47.07, 48.30 and 32.15 mg·g−1, respectively. Furthermore, the material proved to be very stable – its adsorption capacity remained greater than 98% even after five cycles of adsorption/desorption. Compared to literature results, this material can be considered a high-performing remediation adsorbent for the extraction of Zn(II) from natural real water solution.
机译:为有效地除去从自然真实水溶液重金属(摩洛哥河水样品)的一种新的混合吸附剂材料是由一种新的共轭β-酮 - 烯醇 - 吡啶呋喃配体的固定化制备到二氧化硅基质。热力学性质,包括pH值,吸附等温线,竞争吸附,选择性和再生进行了研究以调查酮 - 烯醇 - 吡啶 - 呋喃二氧化硅的对去除锌(II),铅(II),镉的效果(SiNL)(II)和Cu(II)从水溶液中。如pH和快速吸附的函数的吸附增加了25分钟内达到。对于锌(II),铅(II),镉(II)和Cu(II)的最大吸附能力·分别G-1分别为96.17,47.07,48.30和32.15毫克。此外,该材料被证明是非常稳定 - 它的吸附容量吸附/解吸的五个周期后保持大于98%的均匀。相比文献的结果,该材料可以被认为是锌(II)的从天然真水溶液提取一个高性能的补救吸附剂。

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