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游离亚硝酸辅助不对称交流电电化学(FNA-AACE)用于废活性污泥中多种重金属的净化

Free nitrous acid-assisted asymmetrical alternating current electrochemistry (FNA-AACE) for multi-heavy metals decontamination in waste activated sludge.

作者信息

Han Zhibo, Wang Yili, Zhang Daxin, Fan Xiaoyang, Zhang Shuting, Liu Meilin

机构信息

Beijing Key Lab for Source Control Technology of Water Pollution, College of Environmental Science and Engineering, Beijing Forestry University, Beijing 100083, China; Engineering Research Center for Water Pollution Source Control & Eco-remediation, College of Environmental Science and Engineering, Beijing Forestry University, Beijing 100083, China.

Beijing Key Lab for Source Control Technology of Water Pollution, College of Environmental Science and Engineering, Beijing Forestry University, Beijing 100083, China; Engineering Research Center for Water Pollution Source Control & Eco-remediation, College of Environmental Science and Engineering, Beijing Forestry University, Beijing 100083, China.

出版信息

Water Res. 2023 Aug 15;242:120259. doi: 10.1016/j.watres.2023.120259. Epub 2023 Jun 21.

Abstract

Heavy metal contamination of waste activated sludge (WAS) is a key factor limiting the land application of sludge for nutrients recovery. This study proposes a novel free nitrous acid (FNA)-assisted asymmetrical alternating current electrochemistry (FNA-AACE) process to achieve high-efficiency decontamination of multi-heavy metals (Cd, Pb, and Fe) in WAS. The optimal operating conditions, the heavy metal removal performance of FNA-AACE, and the related mechanisms for maintaining the high performance were systematically investigated. During the FNA-AACE process, FNA treatment was optimal with an exposure time of 13 h at a pH of 2.9 and an FNA concentration of 0.6 mg/g TSS. Then the sludge was washed with EDTA in a recirculating leaching system under asymmetrical alternating current electrochemistry (AACE). The 6-h working and the following electrode cleaning were defined as a working circle of AACE. After three cycles of working-cleaning periods in AACE treatment, the cumulative removal efficiency of the toxic metals Cd and Pb reached over 97% and 93%, respectively, whilst that of Fe was greater than 65%. This surpasses most previously reported efficiencies and possesses a shorter treatment duration and sustainable EDTA circulation. The mechanism analysis suggested that FNA pretreatment provoked the migration of heavy metals for leaching enhancement, as well as reduced the demand for EDTA eluent concentration and increased conductivity, which can improve the AACE efficiency. Meanwhile, the AACE process absorbed the anionic chelates of heavy metals and reduced them to zero-valent particles on the electrode, regenerating the EDTA eluent and maintaining its high extraction efficiency for heavy metals. In addition, FNA-AACE could provide different electric field operation modes, allowing it to have flexibility for the real application processes. This proposed process is expected to be coupled with anaerobic digestion in wastewater treatment plants (WWTPs) for high efficiency of heavy metal decontamination, sludge reduction, and resource/energy recovery.

摘要

废弃活性污泥(WAS)中的重金属污染是限制污泥土地利用以回收养分的关键因素。本研究提出了一种新型的游离亚硝酸(FNA)辅助不对称交流电电化学(FNA-AACE)工艺,以实现对WAS中多种重金属(镉、铅和铁)的高效净化。系统研究了最佳操作条件、FNA-AACE对重金属的去除性能以及维持高性能的相关机制。在FNA-AACE过程中,FNA处理的最佳条件为:在pH值为2.9、FNA浓度为0.6 mg/g总悬浮固体(TSS)的情况下暴露13小时。然后在不对称交流电电化学(AACE)下的循环浸出系统中用乙二胺四乙酸(EDTA)洗涤污泥。AACE的6小时工作时间及随后的电极清洗被定义为一个工作循环。经过AACE处理三个工作-清洗周期后,有毒金属镉和铅的累积去除效率分别达到97%以上和93%以上,而铁的累积去除效率大于65%。这超过了大多数先前报道的效率,且处理时间更短,EDTA循环可持续。机理分析表明,FNA预处理促进了重金属的迁移以增强浸出效果,同时降低了对EDTA洗脱液浓度的需求并提高了电导率,从而提高了AACE效率。同时,AACE过程吸收了重金属的阴离子螯合物,并在电极上将其还原为零价颗粒,使EDTA洗脱液再生并保持其对重金属的高萃取效率。此外,FNA-AACE可以提供不同的电场操作模式,使其在实际应用过程中具有灵活性。该工艺有望与污水处理厂(WWTPs)的厌氧消化相结合,以实现高效的重金属净化、污泥减量以及资源/能源回收。

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