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Degradation of 3,3′,4,4′-tetrachlorobiphenyl (PCB77) by dielectric barrier discharge (DBD) non-thermal plasma: Degradation mechanism and toxicity evaluation

机译:通过介电阻挡放电(DBD)非热血浆(DBD)非热血浆(DBD)非热等离子体降解3,3',4,4'-四氯硼苯基(PCB77):降解机制和毒性评估

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Polychlorinated biphenyls (PCBs) are a kind of persistent organic pollutants (POPs) with stable chemical properties which can be enriched in a biological body for a long time. They are often carelessly released into natural environment and thus constantly posing a potential threat to human health. However, because of lack of effective ways of degrading PCBs, researchers are still striving to explore new approaches to remove them from the environment. In this work, we employed atmospheric-pressure non-thermal dielectric barrier discharge (DBD) plasma to treat 3,3',4,4'-tetrachlorobiphenyl (PCB77) in aqueous solution and investigated the removal efficiency under different DBD conditions using different discharging gases. As a result, we showed that He-DBD had the highest removal efficiency with hydroxyl radical playing the major role in the degradation, while O_2-DBD also gave rise to relatively high efficiency with ozone making an important contribution. After 2 min of treatments by He-DBD and O_2-DBD, over 75% of PCB77 was degraded with removal rate of 23.65 mg/L and 22.19 mg/L per minute, respectively. Besides, the toxicological evaluation for the DBD treatment was also provided, confirming that the PCB77 degradation products had negligible biotoxicity. This work therefore provides a new effective approach to treatment of persistent organic pollutants (POPs) in the environment
机译:多氯联苯(PCB)是一种持续的有机污染物(POPS),具有稳定的化学性质,可以长时间富集生物体。他们往往不小心地释放到自然环境中,因此不断对人类健康构成潜在的威胁。然而,由于缺乏有效的PCB的有效方法,研究人员仍在努力探索从环境中删除它们的新方法。在这项工作中,我们在水溶液中使用大气压非热介质屏障放电(DBD)等离子体以在水溶液中处理3,3',4,4'-四氯基苯基(PCB77),并使用不同的排放来研究不同DBD条件下的去除效率气体。因此,我们表明,He-DBD具有最高的去除效率,羟基激进效果在降解中发挥着重要作用,而O_2-DBD也会产生相对高的效率,臭氧是一个重要的贡献。通过He-DBD和O_2-DBD治疗2分钟后,超过75%的PCB77分别降解了23.65mg / L和每分钟22.19mg / L的去除率。此外,还提供了DBD治疗的毒理学评估,证实PCB77降解产物具有可忽略不计的生物毒性。因此,这项工作提供了一种在环境中治疗持久性有机污染物(POPS)的新有效方法

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