Hasselt University, CMK, Nuclear Technological Centre, Agoralaan, Gebouw H, 3590 Diepenbeek, Belgium.
Nuclear Engineering Teaching Lab, University of Texas at Austin, Pickle Research Campus, Austin, TX 78712, USA.
Sci Total Environ. 2019 Apr 10;660:1098-1107. doi: 10.1016/j.scitotenv.2019.01.089. Epub 2019 Jan 10.
Alkali-activated materials (AAMs) based on ground granulated blast furnace slag (GGBFS) and phosphogypsum (PG) were investigated in order to quantify leaching of naturally occurring radionuclides (NOR) and inorganic non-radiological elements according to an up-flow percolation column test as described in CEN/TS 16637-3. Gamma spectroscopy and neutron activation analysis (NAA) were applied for radiological characterization, inductively coupled plasma optical emission spectrometry (ICP-OES) and ion-chromatography (IC) for chemical characterization. Upon leaching, U, Ra, Pb, and Ra were retained very well. Both for Th and K, a decrease in activity concentration was observed due to leaching and their release was influenced by the use of different alkali activators, which was also the case for the leaching of non-radiological elements. Only a small amount of Al (0.5-0.8%), Ca (0.1-0.2%) and Si (0.1-0.3%) was mobilized, while highest release was observed for K (56-94%), Na (49-88%) and S (71-87%). At first glance, drinking water is not endangered by leaching of NOR following the requirements of the European Drinking Water Directive. From the results for porosity, obtained with mercury intrusion porosimetry (MIP), it was concluded that both the porosity and formation of multiple leachable and non-leachable complexes are determining factors for the release of elements from AAMs.
基于矿渣粉(GGBFS)和磷石膏(PG)的碱激发材料(AAMs),通过 CEN/TS 16637-3 中描述的上向渗滤柱试验,定量研究了天然放射性核素(NOR)和无机非放射性元素的浸出情况。伽马光谱和中子活化分析(NAA)用于放射性特征分析,电感耦合等离子体发射光谱(ICP-OES)和离子色谱(IC)用于化学特征分析。浸出后,U、Ra、Pb 和 Ra 被很好地保留下来。由于浸出,Th 和 K 的活度浓度均有所下降,它们的释放受到不同碱激发剂的影响,非放射性元素的浸出也是如此。只有少量的 Al(0.5-0.8%)、Ca(0.1-0.2%)和 Si(0.1-0.3%)被迁移,而 K(56-94%)、Na(49-88%)和 S(71-87%)的释放量最高。乍一看,根据《欧洲饮用水指令》的要求,NOR 的浸出不会对饮用水造成危害。从汞压入孔隙度法(MIP)得到的孔隙度结果可以得出结论,孔隙度和可浸出和不可浸出的多种配合物的形成是元素从 AAMs 中释放的决定因素。