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New insights into the interaction between heavy metals and struvite: Struvite as platform for heterogeneous nucleation of heavy metal hydroxide

机译:重质金属和斯特鲁维特之间相互作用的新见解:Struvite作为重金属氢氧化物异质成核的平台

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During the struvite (MgNH4PO4 center dot 6H(2)O) recovery from agricultural or industrial wastewater, the extensive existence of heavy metals would pose great threats to the planting and environment. This work revealed the association of kinds of heavy metals, as possible substances in the wastewater, with the struvite. The struvite has been synthesized in situ and employed to contact with both high and low concentration heavy metal (including Cu, Ni, Pb, Zn, Mn, Cr(III)) wastewater. The heavy metal precipitation rates under different pH values from 6.0 to 10.0, and under a series of struvite addition amount have been investigated. The precipitation of heavy metals without addition of struvite is functioned as control experiments. The struvite's presence can enhance the heavy metal precipitation rate under all pH values. The Ni and Mn have relatively lower precipitation rate compared with other metals. For extremely low heavy metal concentration the precipitation rate is 99.1%, 97.9%, 99.9%, 98.9%, 96.9%, and 98.3%, which is much higher than that of control group (10.5%, 8.7%, 13.2%, 14.1%, 6.7%, and 10.5%). Through XPS and TEM & EDS analysis, the heavy metal hydroxides is found to be precipitated on the struvite surface. Based on TEM observations, it has been found the copper hydroxides had nucleation and growth on the struvite's surface. The heterogeneous nucleation mechanism has been proposed, which provides relationship model of sorption, nucleation, and precipitation of heavy metals in the form of hydroxides on struvite surfaces. It has been calculated that the Delta G(i) value that thermodynamic activation energy barrier constraints on the metal hydroxide formation can be intensively abated through heterogeneous nucleation on struvite.
机译:在Struvite(MgNH4PO4中心点6H(2)o)从农业或工业废水中恢复,重金属的广泛存在会对种植和环境构成巨大威胁。这项工作揭示了各种重金属的关联,作为废水中可能的物质,斯特鲁维特。 STRUVITE已经原位合成并用于与高浓度和低浓度重金属(包括Cu,Ni,Pb,Zn,Mn,Cr(III))废水接触。研究了6.0至10.0的不同pH值下的重金属沉淀速率,并进行了一系列稳定添加量。在不添加斯特拉石的重金属的沉淀是用作对照实验的作用。 STRUVITE的存在可以在所有pH值下提高重金属沉淀速率。与其他金属相比,Ni和Mn具有相对较低的沉淀速率。对于极低的重金属浓度,沉淀率为99.1%,97.9%,99.9%,98.9%,96.9%和98.3%,远高于对照组(10.5%,8.7%,13.2%,14.1% ,6.7%和10.5%)。通过XPS和TEM和EDS分析,发现重金属氢氧化物在Struvite表面上沉淀。基于TEM观察,已经发现氢氧化铜对Struvite表面的成核和生长。已经提出了非均相成核机理,其提供了在Struvite表面上氢氧化物形式的吸附,成核和重金属沉淀的关系模型。已经计算出ΔG(i)值,即在金属氢氧化物形成上的热力学激活能量屏障约束可以通过对斯特鲁维特的非均相成核来集中地消退。

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