School of Material Science and Engineering, Chongqing Jiaotong University, Chongqing, 400074, China.
Chongqing Haopan Energy Saving Technology Co. Ltd, Chongqing, 401329, China.
Environ Sci Pollut Res Int. 2022 Dec;29(58):88369-88382. doi: 10.1007/s11356-022-23860-6. Epub 2022 Nov 5.
The resource disposal of electrolytic manganese residue can effectively solve the problem of environmental pollution caused by it, among which the problem of heavy metal pollution is the most prominent. In this study, a new type of eco-friendly brick mixed with electrolytic manganese residue was designed. The influence of the content of electrolytic manganese residue on its macroscopic properties, microscopic properties, and leaching characteristics was analyzed by test methods such as compressive strength test, radioactivity test, XRF, XRD, FTIR, and ICP test of bricks. The results showed that the manganese content in the EMR leachate was 8120 mg/L, which exceeded the Chinese standard. The leaching experiment of ordinary aqueous solution of sintered bricks mixed with 20% EMR showed that the content of heavy metals was far lower than the Chinese national standard. There was no non-carcinogenic risk of heavy metals in the strong acid leaching solution of sintered bricks mixed with 20% EMR. Only the carcinogenic risk values of Cr for adults and children were 4.21 × 10 and 9.82 × 10 respectively, both exceeding the USEPA limit, but the application scene of sintered bricks was difficult to achieve strong acidity, so it was judged that it had no carcinogenic risk to the human body. Characteristic heavy metals such as Mn, Cr, and As existed stably in sintered bricks through substitution and encapsulation. In addition, the compressive strength and radioactivity of EMR sintered bricks met the requirements of the Chinese national standard "Fired Ordinary Bricks." This product can be used as national standard MU20 grade brick. This study provided an efficient method for the safe and environmentally friendly disposal of EMR in a sustainable control system.
电解锰渣的资源处置可以有效解决其带来的环境污染问题,其中重金属污染问题最为突出。本研究设计了一种新型环保砖,混合了电解锰渣。通过抗压强度试验、放射性试验、XRF、XRD、FTIR 和砖体 ICP 测试等方法,分析了电解锰渣含量对其宏观性能、微观性能和浸出特性的影响。结果表明,浸出液中锰的含量为 8120mg/L,超过了中国标准。混合 20%电解锰渣的烧结砖普通水溶液浸出实验表明,重金属含量远低于中国国家标准。混合 20%电解锰渣的烧结砖强酸浸出液中不存在重金属的非致癌风险。只有混合 20%电解锰渣的烧结砖中 Cr 对成人和儿童的致癌风险值分别为 4.21×10 和 9.82×10,均超过了 USEPA 限值,但烧结砖的应用场景很难达到强酸,因此判断其对人体没有致癌风险。Mn、Cr 和 As 等特征重金属通过取代和封装在烧结砖中稳定存在。此外,电解锰渣烧结砖的抗压强度和放射性均符合中国国家标准“烧结普通砖”的要求。该产品可作为国家标准 MU20 级砖使用。本研究为在可持续控制系统中安全环保地处理电解锰渣提供了一种高效的方法。