铜绿微囊藻
降级(电信)
活性氧
氧气
化学
环境化学
生物物理学
微囊藻
生物化学
蓝藻
生物
细菌
有机化学
电信
遗传学
计算机科学
作者
Heshan Zheng,Yongjie Zheng,Yuan Le,Shuo Li,Junfeng Niu,Xu Dong,Yoong Kit Leong,Duu‐Jong Lee,Jo‐Shu Chang
标识
DOI:10.1016/j.biortech.2024.130806
摘要
The study investigated the inactivation of Microcystis aeruginosa using a combined approach involving thermally activated peroxyacetic acid (Heat/PAA) and thermally activated persulfate (Heat/PDS). The Heat/PDS algal inactivation process conforms to first-order reaction kinetics. Both hydroxyl radical (•OH) and sulfate radical (SO4-•) significantly impact the disruption of cell integrity, with SO4-• assuming a predominant role. PAA appears to activate organic radicals (RO•), hydroxyl (•OH), and a minimal amount of singlet oxygen (1O2). A thorough analysis underscores persulfate's superior ability to disrupt algal cell membranes. Additionally, SO4-• can convert small-molecule proteins into aromatic hydrocarbons, accelerating cell lysis. PAA can accelerate cell death by diffusing into the cell membrane and triggering advanced oxidative reactions within the cell. This study validates the effectiveness of the thermally activated persulfate process and the thermally activated peroxyacetic acid as strategies for algae inactivation.
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