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利用电解锰渣制备非烧结透水砖:环境和 NH-N 回收效益。

Preparation of non-sintered permeable bricks using electrolytic manganese residue: Environmental and NH-N recovery benefits.

机构信息

School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing 100083, China.

School of Metallurgical and Ecological Engineering, University of Science and Technology Beijing, Beijing 100083, China.

出版信息

J Hazard Mater. 2019 Oct 15;378:120768. doi: 10.1016/j.jhazmat.2019.120768. Epub 2019 Jun 12.

Abstract

The present study aims to prepare non-sintered permeable bricks using significant amount of electrolytic manganese residue (EMR), discharged by electrolytic metal manganese industry. Mechanical and environmental properties were investigated. The microstructure was analyzed by means of XRD, FTIR, TG-DSC and SEM-EDS. It was observed that the splitting tensile strength and permeability coefficient of the optimum proportion were 3.53 MPa and 3.2 × 10 cm/s respectively. The main hydration products were found to be ettringite, C-S-H, aluminosilicates and C-A-S-H. The leaching test showed that Mn, Pb, Cd, total Cr and NH-N in the non-sintered permeable bricks were solidified up to concentrations lower than groundwater standard. In addition to that, the NH-N produced during the process was transformed into ammonia water which was in turn recycled and reused in manganese electrolysis. Besides, non-sintered permeable bricks have been produced at large scale and applied successfully as pavement materials in Songtao, China. Therefore, the use of EMR to produce non-sintered permeable bricks possesses important environmental and economic significance because the process not only utilizes large quantities of EMR and saves EMR disposal cost, but also saves a lot of natural resources and improves the urban environment.

摘要

本研究旨在利用大量电解金属锰工业排放的电解锰渣(EMR)制备非烧结透水砖。研究了其力学和环境性能。通过 XRD、FTIR、TG-DSC 和 SEM-EDS 分析了微观结构。结果表明,最佳比例的劈裂抗拉强度和渗透率系数分别为 3.53 MPa 和 3.2×10-2cm/s。主要水化产物为钙矾石、C-S-H、铝硅酸盐和 C-A-S-H。浸出试验表明,非烧结透水砖中的 Mn、Pb、Cd、总 Cr 和 NH-N 被固化到低于地下水标准的浓度。此外,在该过程中产生的 NH-N 转化为氨水,氨水又被回收并再用于锰电解。此外,已大规模生产非烧结透水砖,并在中国松桃成功用作路面材料。因此,利用 EMR 生产非烧结透水砖具有重要的环境和经济意义,因为该工艺不仅利用了大量的 EMR 并节省了 EMR 处理成本,而且还节省了大量的自然资源并改善了城市环境。

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