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Adsorption of Hg(II) and Pb(II) ions by nanoscale zero valent iron supported on ostrich bone ash in a fixed-bed column system

机译:在固定床柱系统中纳米尺度零价铁通过纳米尺度零价铁的吸附HG(II)和Pb(II)离子

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In this research, ostrich bone ash (OBA) was modified with nanoscale zerovalent iron (nZVI) particles and applied as a novel composite adsorbent (OBA/nZVI) for dynamic adsorption/reduction of Hg(II) and Pb(II) ions in a fixed-bed column system. Entrapment of nZVI in OBA beads barricades the particles from oxidation and aggregation. The dynamic behavior of metal ions removal by OBA/nZVI was assessed as a function of inlet flow rates, bed height, initial pollutants concentration and pH. The synthesized OBA/nZVI composite was characterized by several physicochemical techniques. Increase in pH and bed height and decrease in flow rates and initial metal concentration resulted in delay of breakthrough time. OBA breakthrough profile is sharper than the OBA/nZVI breakthrough curve for both metal ions and the breakthrough times increase in the order OBA/nZVI-Hg(II) > OBA/nZVI-Pb(II) > OBA-Pb(II) > OBA-Hg(II). Based on the experiment results, redox reaction is expected to occur to a certain extent, as the standard reduction potentials of Hg(II) and Pb(II) are more than that of Fe(II). From a practical point of view, the OBA/nZVI could be applied as a material to remove Hg(II) and Pb(II) ions from natural surface and ground water with a pH value of 5-9.
机译:在该研究中,用纳米级零铁(NZVI)颗粒改性鸵鸟骨灰(OBA),并作为新型复合吸附剂(OBA / NZVI),用于动态吸附/减少HG(II)和Pb(II)离子固定床柱系统。在OBA珠子中的NZVI陷入珠偏氧化物和聚集的颗粒。通过OBA / NZVI去除金属离子的动态行为作为入口流速,床高,初始污染物浓度和pH的函数评估。合成的OBA / NZVI复合材料的特征在于几种物理化学技术。增加pH和床的高度并降低流速和初始金属浓度导致突破时间延迟。 OBA突破轮廓比金属离子的OBA / NZVI突破性曲线和订单OBA / NZVI-HG(ii)> OBA / NZVI-PB(II)> OBA-PB(II)> OBA的突破时间增加-hg(ii)。基于实验结果,预期氧化还原反应在一定程度上发生,因为HG(II)和Pb(II)的标准降低电位大于Fe(II)。从实际的角度来看,OBA / NZVI可以用作从天然表面和pH值的pH值为5-9的地面水中除去Hg(II)和Pb(II)离子的材料。

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