[口头报告]Simultaneous removal of multiple indoor-air pollutants

Simultaneous removal of multiple indoor-air pollutants
编号:51 稿件编号:45 访问权限:仅限参会人 更新:2021-09-20 21:37:47 浏览:644次 口头报告

报告开始:2021年12月05日 08:00 (Asia/Shanghai)

报告时间:20min

所在会议:[S6] 分会场6 » [S6-2] 室内环境改善新技术、新材料

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摘要
Indoor air pollution has been attracting growing attentions. The indoor air pollutants cause serious health risks for residents, especially  in the developing countries. In this study, a synergistically combined process was studied for the removal of multi-pollutants in indoor air. Technologies including electrostatic precipitation and catalytic decomposition were integrated and investigated in a 3 m3 environmental chamber. Various sources of pollutants including cigarette smoke and building material were used to generate contaminants with complex composition. Simultaneous and effective removal of particulate matter, VOCs and ozone were achieved. The effective combination of the technologies synergistically improved the decontamination performance. Electrostatic precipitation removed particulate matter (94%-100% removal), while UV-catalysts oxidized VOCs (100% removal) within 20 min. In addition, during this process, the pre- cipitator and VUV lights produced ozone (up to 360 ppb), initiated ozone-catalytic oxidation of gaseous pol- lutants, consequently enhanced the removal of VOCs. Moreover, an ozone depleting module was installed downstream to decompose the residual ozone, ensuring no ozone was released into ambient air. Notably, comparing with other reported works, the gas hourly space velocity in this work was high as 594,000 h−1, while the contact time of pollutants on the catalyst was short as 0.02 s. However, simultaneous and effective removal of real and complex pollutants was achieved under such circumstance. The experimental results also suggest that the combined process can effectively improve the indoor air quality.  The results demonstrated a novel and effective process for improving the indoor air quality (IAQ), while it could also provide a new idea for the decontamination of multi-pollutants in indoor air.

 
关键字
​​​​​​​Indoor air pollution,Multiple pollutants,Electrostatic precipitation,VOCs removal,Catalytic decomposition
报告人
黄海保
中山大学

稿件作者
黄海保 中山大学
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重要日期

会议举办时间:2021年12月3-5日

投稿截止时间:2021年9月15日

 

 

组织机构

主办单位:

中国环境科学学会室内环境与健康分会

武汉理工大学

 

合办单位:

武汉科技大学

 

协办单位:

华中科技大学

武汉大学

华中师范大学

中船重工719研究所

空军勤务学院

黄冈师范学院

湖北省绿色智能建筑工程技术研究中心

 

赞助单位:

冠名赞助:   北京三五二环保科技有限公司

优秀论文奖:远大洁净空气科技有限公司

特别赞助:

(1)浙江合冶科技有限公司

(2)绿建斯维尔

  (3)  上海埃松气流控制技术有限公司

  (4)  德图仪器国际贸易(上海)有限公司

(5)国际期刊 Energy and Built Environment

 (6)  黄鹤楼酒·陈香

(持续更新中~)
 

期刊特刊:

(1) International Journal of Environmental Research and Public Health

(2) Energy and Built Environment

 

组委会:

大会主席:王乾坤 武汉理工大学

执行主席:明廷臻 武汉理工大学

 

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