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等离子体-臭氧对空气中微生物的杀灭效果研究 被引量:8
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作者 顾春英 薛广波 居喜娟 《第二军医大学学报》 CAS CSCD 北大核心 1998年第3期276-278,共3页
目的:研究沿面放电等离子体-臭氧对空气中微生物的杀灭作用及影响因素。方法:采用人工空气染菌试验法。结果:等离子体-臭氧对空气中的金黄色葡萄球菌作用1min,杀灭率为99.99%,10min杀灭率为100%;对白色念珠... 目的:研究沿面放电等离子体-臭氧对空气中微生物的杀灭作用及影响因素。方法:采用人工空气染菌试验法。结果:等离子体-臭氧对空气中的金黄色葡萄球菌作用1min,杀灭率为99.99%,10min杀灭率为100%;对白色念珠菌作用6min可全部杀灭;对枯草杆菌黑色变种芽孢作用15min,杀灭率达到99.90%以上,30mim可全部杀灭。在菌液中加入10%小牛血清,对消毒效果无明显影响。结论:等离子体-臭氧对空气中的微生物有良好的杀灭作用。 展开更多
关键词 等离子体-臭氧 消毒 空气消毒 微生物
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Synergetic effect between non-thermal plasma and photocatalytic oxidation on the degradation of gas-phase toluene: Role of ozone 被引量:7
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作者 Haoling Ye Yiqiu Liu +3 位作者 Si Chen Haiqiang Wang Zhen Liu Zhongbiao Wu 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2019年第5期681-690,共10页
In this study, a hybrid process using non‐thermal plasma (NTP) and photocatalytic oxidation (PCO) was adopted for the degradation of gas‐phase toluene using TiO2 as the photocatalyst. To discover the synergetic effe... In this study, a hybrid process using non‐thermal plasma (NTP) and photocatalytic oxidation (PCO) was adopted for the degradation of gas‐phase toluene using TiO2 as the photocatalyst. To discover the synergetic effect between NTP and PCO, the performances of both sole (O3, UV, NTP, and PCO) and combined (O3 + TiO2, O3 + UV, NTP + UV, O3 + PCO, and NTP + PCO) processes were investigated from different perspectives, such as the toluene removal efficiency, selectivity of COx, mineralization rate, ozone utilization, and the generation of by‐products. The toluene removal efficiency of the combined NTP + PCO process was 80.2%, which was much higher than that of a sole degradation process such as NTP (18.8%) and PCO (13.4%). The selectivity of CO2 and the ozone utilization efficiency also significantly improved. The amount of by‐products in the gas phase and the carbon‐ based intermediates adsorbed on the catalyst surface dramatically reduced. The improvement in the overall performances of the combined NTP + PCO process was mainly ascribed to the efficient utilization of ozone in the photocatalytic oxidation, and the ozone further acting as an electron acceptor and scavenger, generating more hydroxyl radicals and reducing the recombination of electron‐ hole pairs. 展开更多
关键词 Non‐thermal plasma Photocatalytic oxidation Synergetic effect OZONE TOLUENE
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