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Removal of Heavy Metal Ions by Ferrihydrite: an Opportunity to the Treatment of Acid Mine Drainage

机译:水铁矿去除重金属离子:酸性矿山排水的机会

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Ferrihydrite is often an initial precipitate resulting from the neutralization of Fe(III) solution, and it seems to be one of the products of acid mine drainage forming reactions. Since having the adsorption properties, ferrihydrite can be effective for the remediation of acid mine drainage. This study prepared fresh ferrihydrite by the rapid hydrolysis of Fe(III) ions and investigates its adsorptive behaviours toward Pb(II), Cu(II), and Zn(II). When the sorption data were presented in plot of percent sorbed versus pH, it was found that sorption is strongly dependent on the solution pH and increasing as expected at higher pH for all metal ions investigated. All the observed metal cation sorption began at pH values below zero point charge (ZPC) of ferrihydrite (pH = 7.8-8.0), and almost all removal are achieved at pH values lower than that related metal hydroxide obtained. Enhanced removal of metal ions, as the pH of the solution and initial metal ion concentration are increased, was attributed to surface precipitation of metal hydroxide. The existence of fen-ihydrite and adsorption of metal ions onto surfaces are favouring surface precipitation of metal ions at lower pH values than that for metal ion only. Depending on the pH of the solution and initial metal ion concentration, more than one mechanism such as adsorption by complexation and surface precipitation was responsible for the removal.
机译:水铁矿通常是中和Fe(III)溶液的初始沉淀,似乎是酸性矿山排水形成反应的产物之一。由于具有吸附性能,三水铁矿可以有效地补救酸性矿山的排水问题。本研究通过Fe(III)离子的快速水解制备了新鲜的亚铁水合物,并研究了其对Pb(II),Cu(II)和Zn(II)的吸附行为。当以吸附百分比与pH的关系图表示吸附数据时,发现吸附强烈依赖于溶液的pH值,并且对于所有研究的金属离子来说,在较高的pH值下吸附均按预期增加。所有观察到的金属阳离子吸附均始于低于亚铁酸盐的零点电荷(ZPC)(pH = 7.8-8.0)的pH值,并且几乎所有去除都在低于所获得的相关金属氢氧化物的pH值下实现。随着溶液的pH值和初始金属离子浓度的增加,金属离子的去除增强,归因于金属氢氧化物的表面沉淀。苯磺酸亚铁盐的存在和金属离子在表面上的吸附有利于在比仅金属离子低的pH值下金属离子的表面沉淀。取决于溶液的pH值和初始金属离子浓度,多于一种机理(例如通过络合吸附和表面沉淀引起)的去除。

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