Wang Jie, Zhang Jiahua, Cheng Guofeng, Shangguan Yuyi, Yang Guanyi, Liu Xingguo
Fishery Machinery and Instrument Research Institute of Chinese Academy of Fishery Sciences, 63 Chifeng Road, Shanghai, 200092, China; Key Laboratory of Aquaculture Facilities Engineering, Ministry of Agriculture and Rural Affairs, 63 Chifeng Road, Shanghai, 200092, China.
Shanghai Key Lab for Urban Ecological Processes and Eco-Restoration, East China Normal University, 500 Dongchuan Road, Shanghai, 200241, China.
Chemosphere. 2024 Mar;352:141436. doi: 10.1016/j.chemosphere.2024.141436. Epub 2024 Feb 13.
Harmful cyanobacterial bloom is one of the serious environmental problems worldwide. Microcystis aeruginosa is a representative harmful alga in cyanobacteria bloom. It is of great significance to develop new technologies for the removal of Microcystis aeruginosa and microcystins. The feasibility and mechanism of removing microcystis aeruginosa and degrading microcystins by dielectric barrier discharge (DBD) plasma were studied. The suitable DBD parameters obtained in this study are DBD (41.5 W, 40 min) and DBD (41.5 W, 50 min), resulting in algae removal efficiency of 77.4% and 80.4%, respectively; scanning electron microscope and LIVE-DEATH analysis demonstrate that DBD treatment can disrupt cell structure and lead to cell death; analysis of elemental composition and chemical state indicated that there are traces of oxidation of organic nitrogen and organic carbon in microcystis aeruginosa; further intracellular ROS concentration and antioxidant enzyme activity analysis confirm that DBD damage microcystis aeruginosa through oxidation. Meanwhile, DBD can effectively degrade the microcystin-LR released after cell lysis, the extracellular microcystin-LR concentration in the DBD (41.5 W) group decreased by 88.7% at 60 min compared to the highest concentration at 20 min; further toxicity analysis of degradation intermediates indicated that DBD can reduce the toxicity of microcystin-LR. The contribution of active substances to the inactivation of microcystis aeruginosa is e > •OH > HO > O > O > •O > ONOO, while on the degradation of microcystin-LR is e > •OH > HO > O > •O > O > ONOO. The application of DBD plasma technology in microcystis aeruginosa algae removal and detoxification has certain prospects for promotion and application.
有害蓝藻水华是全球严重的环境问题之一。铜绿微囊藻是蓝藻水华中具有代表性的有害藻类。开发去除铜绿微囊藻和微囊藻毒素的新技术具有重要意义。研究了介质阻挡放电(DBD)等离子体去除铜绿微囊藻和降解微囊藻毒素的可行性及作用机制。本研究获得的合适DBD参数为DBD(41.5 W,40 min)和DBD(41.5 W,50 min),藻去除率分别为77.4%和80.4%;扫描电子显微镜和死活分析表明,DBD处理可破坏细胞结构并导致细胞死亡;元素组成和化学状态分析表明,铜绿微囊藻中存在痕量有机氮和有机碳的氧化现象;进一步的细胞内活性氧浓度和抗氧化酶活性分析证实,DBD通过氧化作用损伤铜绿微囊藻。同时,DBD可有效降解细胞裂解后释放的微囊藻毒素-LR,DBD(41.5 W)组细胞外微囊藻毒素-LR浓度在60 min时较20 min最高浓度降低了88.7%;降解中间产物的进一步毒性分析表明,DBD可降低微囊藻毒素-LR的毒性。活性物质对铜绿微囊藻灭活的贡献顺序为e>•OH>HO>O>O>•O>ONOO,而对微囊藻毒素-LR降解的贡献顺序为e>•OH>HO>O>•O>O>ONOO。DBD等离子体技术在铜绿微囊藻去除和解毒方面的应用具有一定的推广应用前景。