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铅铝酸盐陶瓷的形成:模拟铅污泥固化中的反应机制

Formation of lead-aluminate ceramics: Reaction mechanisms in immobilizing the simulated lead sludge.

作者信息

Lu Xingwen, Shih Kaimin

机构信息

Department of Civil Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong.

Department of Civil Engineering, The University of Hong Kong, Pokfulam Road, Hong Kong.

出版信息

Chemosphere. 2015 Nov;138:156-63. doi: 10.1016/j.chemosphere.2015.05.090. Epub 2015 Jun 8.

DOI:10.1016/j.chemosphere.2015.05.090
PMID:26066084
Abstract

We investigated a strategy of blending lead-laden sludge and an aluminum-rich precursor to reduce the release of hazardous lead from the stabilized end products. To quantify lead transformation and determine its incorporation behavior, PbO was used to simulate the lead-laden sludge fired with γ-Al2O3 by Pb/Al molar ratios of 1/2 and 1/12 at 600-1000 °C for 0.25-10 h. The sintered products were identified and quantified using Rietveld refinement analysis of X-ray diffraction data from the products generated under different conditions. The results indicated that the different crystallochemical incorporations of hazardous lead occurred through the formation of PbAl2O4 and PbAl12O19 in systems with Pb/Al ratios of 1/2 and 1/12, respectively. PbAl2O4 was observed as the only product phase at temperature of 950 °C for 3h heating in Pb/Al of 1/2 system. For Pb/Al of 1/12 system, significant growth of the PbAl12O19 phase clearly occurred at 1000 °C for 3 h sintering. Different product microstructures were found in the sintered products between the systems with the Pb/Al ratios 1/2 and 1/12. The leaching performances of the PbO, Pb9Al8O21, PbAl2O4 and PbAl12O19 phases were compared using a constant pH 4.9 leaching test over 92 h. The leachability data indicated that the incorporation of lead into PbAl12O19 crystal is a preferred stabilization mechanism in aluminate-ceramics.

摘要

我们研究了一种将含铅污泥与富铝前驱体混合的策略,以减少稳定化最终产品中有害铅的释放。为了量化铅的转化并确定其掺入行为,使用PbO模拟含铅污泥与γ-Al2O3在600-1000°C下以Pb/Al摩尔比1/2和1/12煅烧0.25-10小时的情况。利用Rietveld精修分析对不同条件下生成的产物的X射线衍射数据进行鉴定和定量分析烧结产物。结果表明,在Pb/Al比分别为1/2和1/12的体系中,通过形成PbAl2O4和PbAl12O19发生了有害铅的不同晶体化学掺入。在Pb/Al为1/2的体系中,950°C加热3小时时,观察到PbAl2O4是唯一的产物相。对于Pb/Al为1/12的体系,在1000°C烧结3小时时,PbAl12O19相明显显著生长。在Pb/Al比为1/2和1/12的体系之间的烧结产物中发现了不同的产物微观结构。使用恒定pH 4.9的浸出试验在92小时内比较了PbO、Pb9Al8O21、PbAl2O4和PbAl12O19相的浸出性能。浸出性数据表明,将铅掺入PbAl12O19晶体是铝酸盐陶瓷中一种优选的稳定机制。

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