DIOPMA Design and Optimization of Processes and Materials, Department of Materials Science and Physical Chemistry, University of Barcelona, Barcelona, Spain.
Department of Analytical Chemistry, University of Cadiz, Cadiz, Spain.
J Hazard Mater. 2021 Aug 15;416:125828. doi: 10.1016/j.jhazmat.2021.125828. Epub 2021 Apr 8.
Alkali-activated binders (AABs) stand out as a sustainable alternative to ordinary Portland cement (OPC) as they can be formulated using by-products or waste as raw materials. However, the presence of hazardous compounds in residues can lead to an increase in AABs' toxicity due to the highly alkaline media. Therefore, it is extremely important to evaluate their environmental risks to validate their use as building materials. This study environmentally assessed AABs prepared with two different fractions (0-30 mm and 8-30 mm) of weathered bottom ash (AA-WBA) from WtE plants. The potential leachate toxicity of AA-WBA was assessed using granular and monolithic leaching tests that simulated end-of-life and service life scenarios, respectively. Furthermore, an acute toxicity test with crustacean Daphnia magna as model organisms was conducted to determine the relationship between the leachate metal(loid) concentrations and the ecotoxicity of AA-WBA. The results showed higher metal(loid) concentrations in AA-WBA specimens prepared with the 0-30 mm fraction of WBA. The service life scenario revealed multiple metal(loid)-release mechanisms. The 48 h EC value (close to 10%; moderate toxicity) indicated that the use of the coarse fraction of WBA increased the immobilisation of the metal(loid)s. Finally, the correlation between the concentrations of some of the metal(loid)s and toxicity was demonstrated.
碱激活粘结剂(AAB)作为普通波特兰水泥(OPC)的可持续替代品脱颖而出,因为它们可以使用副产品或废物作为原料来配制。然而,由于高碱性介质,残渣中存在的危险化合物会导致 AAB 毒性增加。因此,评估其环境风险以验证其作为建筑材料的用途非常重要。本研究用两种不同的风化底灰(AA-WBA)级分(0-30mm 和 8-30mm)来环境评估 AAB。使用分别模拟使用寿命结束和使用寿命场景的颗粒状和整体浸出试验来评估 AA-WBA 的潜在浸出毒性。此外,还进行了甲壳类动物水蚤的急性毒性试验,以确定浸出液金属(类)浓度与 AA-WBA 的生态毒性之间的关系。结果表明,用 WBA 的 0-30mm 级分制备的 AA-WBA 标本中金属(类)浓度较高。使用寿命场景揭示了多种金属(类)释放机制。48hEC 值(接近 10%;中度毒性)表明使用 WBA 的粗级分会增加金属(类)的固定化。最后,证明了一些金属(类)的浓度与毒性之间的相关性。