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A Double Barrier Technique with Hydrotalcites for Pb Immobilisation from Electric Arc Furnace Dust

机译:具有水滑石的双阻挡技术,用于电弧炉灰尘的PB固定

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摘要

A new line of mortars incorporating hydrotalcites was developed. This research article shows the results of a study of a double barrier technique (DBT) for Pb immobilisation from electric arc furnace dust (EAFD) in mortars with the addition of three different hydrotalcites (H1, H2, and H3). Electric arc furnace dust (EAFD) is a hazardous waste due to its heavy metal leachability. The aim was to obtain a mortar in which, due to its chemical composition, heavy metal leaching satisfied environmental criteria. Previously, a physical and chemical characterisation of mortar material components was carried out. The leaching behaviour of Pb from EAFD in double barrier (DB) mortars with different hydrotalcites was analysed for compressive strength to determine treatment effectiveness. DB mortars could be considered monoliths because their compressive strengths were higher than 1 MPa but exhibited a decrease due to hydrotalcite incorporation. The mortar EAFD25_H2 (with ethylenediaminetetraacetate (EDTA) in the interlayer of the hydrotalcite) showed one minor reduction in compressive strength with respect to the reference mortar because formation of Portlandite was observed, which is a characteristic of cement hydration. The conventional immobilisation mortar (EAFD25) did not achieve Pb immobilisation. However, DB mortars with dimercaptosuccinate (DMSA) in the interlayer of the hydrotalcite reduced Pb release by ~50%, from 20.29 mg kg−1 (EAFD25) to 9.88 mg kg−1 (EAFD25_H3). In addition, EAFD25_H3 included the lowest hydrotalcite content, thereby improving the immobilisation ratio. The results of this study contribute to better Pb immobilisation, thus satisfying environmental criteria.
机译:结合水滑石迫击炮的新生产线的开发。本研究文章示出了用于与另外的三个不同的水滑石(H1,H2,和H3)砂浆从电炉粉尘(EAFD)铅固定化一个双阻挡技术(DBT)的研究的结果。电炉粉尘(EAFD)是一种危险废物,由于其重金属浸出。目的是得到在研钵中,由于其化学成分,重金属浸出满足的环境标准。此前,砂浆材料成分的物理和化学特性进行。分析铅从EAFD与水滑石不同的双阻挡(DB)砂浆的浸出行为抗压强度以确定治疗的有效性。 DB迫击炮可以考虑巨石,因为他们的抗压强度均高于1兆帕,但展出的减少是由于水滑石结合。砂浆EAFD25_H2(具有在水滑石的层间乙二胺(EDTA))显示在抗压强度一个微小降低相对于基准灰浆,因为没有观察形成钙石的,这是水泥水化的特性。传统的固定化砂浆(EAFD25)未达到铅固定化。然而,DB砂浆与水滑石的层间二巯基丁二(DMSA)降低铅释放由〜50%,从20.29毫克KG-1(EAFD25)至9.88毫克KG-1(EAFD25_H3)。此外,EAFD25_H3包括最低的水滑石的含量,从而提高了固定化比率。这项研究结果有助于更好地铅固定化,从而满足环境标准。

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