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天津与上海35岁以上人群氮氧化物个体暴露水平及其影响因素

  • Bo Pang
  • , Tongjun Guo
  • , Xi Chen
  • , Huaqi Guo
  • , Jiazhang Shi
  • , Juan Chen
  • , Xinmei Wang
  • , Yaoyan Li
  • , Anqi Shan
  • , Hengyi Yu
  • , Jing Huang
  • , Naijun Tang
  • , Yan Wang
  • , Xinbiao Guo
  • , Guoxing Li
  • , Shaowei Wu
  • Peking University
  • Tianjin Medical University
  • Shanghai Jiao Tong University

科研成果: 期刊稿件文章同行评审

摘要

Objective :To investigate personal exposures to nitrogen oxides (NOX) and nitrogen dioxide (NO2) and the influence of baseline personal characteristics, living environment and daily activity patterns of the participants on the exposures among adults over 35 in Tianjin and Shanghai. Methods :In this panel study, 91 healthy nonsmoking adults aged over 35 from Tianjin and Shanghai participated in our study. The study was conducted in summer and winter. The participants were followed for three times with an interval of at least two weeks. Only participants in Shanghai were followed once in winter because of the COVID-19 pandemic. Twenty-seven participants completed follow-up visits in both seasons. We measured their 24 h personal exposures to NOX and NO2 and collected their baseline and time-activity information through questionnaire/diary. The linear mixed model was used to analyze the associations between potential influencing factors and personal NOx and NO2 exposure levels. Results :There were 349 follow-up visits with valid 24 h personal NO2 and NOx exposure measurements in the two cities. The average 24 h personal exposures to N02 and NOx (volume fraction) in Tianjin participants were 18. 0 x 10-9 and 26. 2 × 10-9 in summer, and 31.0 × 10-9 and 54. 9 × 10-9 in winter, respectively; and the average 24 h personal exposures to NO2 and NOX in Shanghai participants were 38.7 × 10-9 and 100. 0 × 10-9 in summer, and 45. 5 × 10-9 and 139. 2 × × 10-9 in winter, respectively. The results of univariate regression analysis showed that their personal NOX exposure levels were significantly associated with city, season, gender, average daily cooking times, and ambient NO2 concentrations measured at fixed-site monitoring stations. In addition to the above factors, the personal NOX exposure levels were also significantly associated with educational level and the personal NO2 exposure levels were also significantly associated with passive smoking, average daily home time, cooking energy type, residential distance from main traffic road, and use of kitchen ventilators. Multivariate regression analysis showed that the personal exposure levels of NO2 and NOX were significantly lower in Tianjin than that in Shanghai, were significantly lower in summer than that in winter, and were significantly and positively associated with ambient NO2 concentrations measured at fixed-site monitoring stations. In addition, personal NOX exposure levels were significantly lower in females than in males, and personal NO2 exposure levels were significantly positively associated with average daily cooking times and significantly inversely associated with average daily home time. For every interquartile range (IQR) increase (12. 7 × 10-9) in ambient NO2, the personal NO2 exposure levels increased by 27. 5% (95% CI:17. 0% - 38. 9%), and personal NOX exposure levels increased by 16. 1% (95% CI:7.1% -25.8%), Conclusion :Season, city and ambient NO2 concentrations are significant influencing factors of personal exposure levels of NO2 and NOX. At the same time, the personal exposures levels of NO2 are also affected by lifestyle factors. Our study provides scientific evidence for making precise air pollution control decisions and reducing the exposure levels of NOX in the population.

投稿的翻译标题Personal nitrogen oxides exposure levels and related influencing factors in adults over 35 years old in Tianjin and Shanghai
源语言繁体中文
页(从-至)700-707
页数8
期刊Beijing da xue xue bao. Yi xue ban = Journal of Peking University. Health sciences
56
4
DOI
出版状态已出版 - 18 8月 2024

联合国可持续发展目标

此成果有助于实现下列可持续发展目标:

  1. 可持续发展目标 11 - 可持续城市和社区
    可持续发展目标 11 可持续城市和社区

关键词

  • Air pollution
  • Nitrogen oxides
  • Personal exposure
  • Risk factors

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