Cabrera Manuel, Galvin Adela P, Agrela Francisco, Beltran Manuel G, Ayuso Jesus
Area of Construction Engineering, University of Cordoba, Cordoba 14071, Spain.
Materials (Basel). 2016 Mar 24;9(4):228. doi: 10.3390/ma9040228.
This research is focused on analyzing the environmental pollution potential of biomass bottom ashes as individual materials, as mixtures manufactured with biomass bottom ashes and granular construction aggregates, and these mixtures treated with cement. For the environmental assessment of all of the samples and materials mentioned, the following leaching procedures have been performed: the compliance batch test of UNE-EN 12457-3:2003 for aggregates and bottom ashes; the column test according to NEN 7343:1994 for the mixtures prepared in the laboratory; and the tank test by EA NEN 7375:2004 for analyzing the behavior of mixtures after their solidification/stabilization with 5% cement. After the discussion of the data, the reduction of the pollution load of the most hazardous biomass bottom ashes after their combination with different aggregates can be confirmed, which implies their possible application in civil infrastructures, such as filler embankments and road construction layers, without negatively impacting the environment. In addition, the positive effect of the stabilization/solidification of the cement-treated mixtures with a reduction of the heavy metals that were released at the highest levels, namely As, Hg Cr, Ni, Cu, Se and Mo, was proven.
本研究聚焦于分析生物质底灰作为单一材料、与颗粒状建筑集料制成的混合物以及经水泥处理的这些混合物的环境污染潜力。为了对上述所有样品和材料进行环境评估,已执行以下浸出程序:针对集料和底灰的UNE-EN 12457-3:2003合规批量试验;针对实验室制备的混合物的NEN 7343:1994柱试验;以及针对用5%水泥固化/稳定后的混合物行为分析的EA NEN 7375:2004槽试验。在对数据进行讨论后,可以确认最危险的生物质底灰与不同集料混合后污染负荷的降低,这意味着它们有可能应用于土木基础设施,如填方路堤和道路结构层,而不会对环境产生负面影响。此外,还证明了水泥处理混合物的稳定化/固化对降低释放量最高的重金属(即砷、汞、铬、镍、铜、硒和钼)具有积极作用。