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生物源氧化锰与锰氧化微藻联合工艺提高双氯芬酸去除性能:两种不同的协同效应

Combined Process of Biogenic Manganese Oxide and Manganese-Oxidizing Microalgae for Improved Diclofenac Removal Performance: Two Different Kinds of Synergistic Effects.

作者信息

Wang Quanfeng, Liao Cenhui, Zhao Jujiao, Zeng Guoming, Liu Wenbo, Gao Pei, Sun Da, Du Juan

机构信息

School of Civil Engineering and Architecture, Chongqing University of Science and Technology, Chongqing 401331, China.

College of Environment and Ecology, Chongqing University, Chongqing 400045, China.

出版信息

Toxics. 2022 Apr 30;10(5):230. doi: 10.3390/toxics10050230.

Abstract

Biogenic manganese oxides (Bio-MnOx) have attracted considerable attention for removing pharmaceutical contaminants (PhCs) due to their high oxidation capacity and environmental friendliness. Mn-oxidizing microalgae (MnOMs) generate Bio-MnOx with low energy and organic nutrients input and degrade PhCs. The combined process of MnOMs and Bio-MnOx exhibits good prospects for PhCs removal. However, the synergistic effects of MnOMs and Bio-MnOx in PhCs removal are still unclear. The performance of MnOMs/Bio-MnOx towards diclofenac (DCF) removal was evaluated, and the mechanism was revealed. Our results showed that the Bio-MnOx produced by MnOMs were amorphous nanoparticles, and these MnOMs have a good Mn tolerance and oxidation efficiency (80-90%) when the Mn concentration is below 1.00 mmol/L. MnOMs/Bio-MnOx significantly promotes DCF (1 mg/L) removal rate between 0.167 ± 0.008 mg/L·d (by MnOMs alone) and 0.125 ± 0.024 mg/L·d (by Bio-MnOx alone) to 0.250 ± 0.016 mg/L·d. The superior performance of MnOMs/Bio-MnOx could be attributed to the continuous Bio-MnOx regeneration and the sharing of DCF degradation intermediates between Bio-MnOx and MnOMs. Additionally, the pathways of DCF degradation by Bio-MnOx and MnOMs were proposed. This work could shed light on the synergistic effects of MnOMs and Bio-MnOx in PhCs removal and guide the development of MnOMs/Bio-MnOx processes for removing DCF or other PhCs from wastewater.

摘要

生物源锰氧化物(Bio-MnOx)因其高氧化能力和环境友好性,在去除药物污染物(PhCs)方面引起了广泛关注。锰氧化微藻(MnOMs)以低能量和有机营养物投入生成Bio-MnOx并降解PhCs。MnOMs和Bio-MnOx的联合过程在去除PhCs方面展现出良好前景。然而,MnOMs和Bio-MnOx在去除PhCs中的协同作用仍不明确。评估了MnOMs/Bio-MnOx对双氯芬酸(DCF)的去除性能,并揭示了其机制。我们的结果表明,MnOMs产生的Bio-MnOx为无定形纳米颗粒,当锰浓度低于1.00 mmol/L时,这些MnOMs具有良好的锰耐受性和氧化效率(80-90%)。MnOMs/Bio-MnOx显著提高了DCF(1 mg/L)的去除率,从单独MnOMs的0.167±0.008 mg/L·d和单独Bio-MnOx的0.125±0.024 mg/L·d提高到0.250±0.016 mg/L·d。MnOMs/Bio-MnOx的优异性能可归因于Bio-MnOx的持续再生以及Bio-MnOx和MnOMs之间DCF降解中间体的共享。此外,还提出了Bio-MnOx和MnOMs降解DCF的途径。这项工作有助于阐明MnOMs和Bio-MnOx在去除PhCs中的协同作用,并指导开发用于从废水中去除DCF或其他PhCs的MnOMs/Bio-MnOx工艺。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2270/9147876/c05c3326ddaf/toxics-10-00230-g001.jpg

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