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Synergistic effect of humic and fulvic acids on Ni removal by the calcined Mg/Al layered double hydroxide

机译:腐殖酸和黄腐酸对煅烧的Mg / Al层状双氢氧化物去除Ni的协同作用

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Discharge of Ni(II) containing wastewater to terrestrial environment can lead to serious pollution issues. This study presents a facile, cost-effective and highly efficient method to rapidly remove Ni(II) from wastewater using a calcined Mg/Al layered double hydroxide (LDH), which is a pioneering investigation of using the calcined LDH to remove the positively charged Ni(II) ions. The kinetic studies showed that the removal of Ni(II) was very rapid with a pseudo first order k of up to 3.6 + 0.5 h(-1), and maximum removal of Ni(II) was up to 204.2 +/- 10.6 mg g(-1). In addition, our results reveal that both humic (HA) and fulvic acids (FA) can strongly bind to the surface of the LDH, which demonstrates that the calcined LDH can effectively remove both cationic and anionic pollutants in a single process. With the increase of pH up to 7.5, the removal of Ni, HA and FA by the calcined LDH are all drastically enhanced. Our study also demonstrated a strong synergetic effect of FA and HA on the Ni(II) removal by the calcined LDH, with a maximum Ni(II) removal of 290.6 +/- 16.4 mg g(-1) and 480.4 +/- 21.3 mg g(-1) at pH 7, respectively. The possible mechanism of the Ni(II) removal can be due to the incorporation of Ni into the layered structure by replacing the leached Mg in the layers of the LDH during the process of rehydration of the calcined LDH. The HA or FA bound on the surface of the rehydrated LDH can induce an additional Ni(II)-HA or -FA complexation consequently leading to the enhancement of the Ni removal. The trial of treating a high Ni-containing wastewater in practice indicates that the calcined LDH is a promising material for metal containing wastewater treatment.
机译:将含Ni(II)的废水排放到陆地环境会导致严重的污染问题。这项研究提出了一种使用煅烧的Mg / Al层状双氢氧化物(LDH)从废水中快速去除Ni(II)的简便,经济高效的方法,这是使用煅烧的LDH去除带正电荷的开创性研究。 Ni(II)离子。动力学研究表明,Ni(II)的去除非常快,假一阶k可达3.6 + 0.5 h(-1),Ni(II)的最大去除率高达204.2 +/- 10.6 mg g(-1)。此外,我们的结果表明,腐殖酸(HA)和富里酸(FA)均可与LDH的表面牢固结合,这表明煅烧的LDH可在一个过程中有效去除阳离子和阴离子污染物。随着pH值增加到7.5,大大提高了煅烧LDH对Ni,HA和FA的去除。我们的研究还证明了FA和HA对煅烧的LDH去除Ni(II)有很强的协同作用,最大去除Ni(II)为290.6 +/- 16.4 mg g(-1)和480.4 +/- 21.3分别在pH 7下为g g(-1)。除去Ni(II)的可能机理可能是由于在煅烧的LDH的水合过程中,通过取代LDH层中的浸出的Mg而将Ni掺入到层状结构中。结合在再水化LDH表面的HA或FA可以诱导额外的Ni(II)-HA或-FA络合,从而导致Ni去除率的提高。在实践中处理高含镍废水的试验表明,煅烧的LDH是用于处理含金属废水的有前途的材料。

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