您好,欢迎访问北京市农林科学院 机构知识库!

Pollution Remediation by Urban Forests: PM2.5 Reduction in Beijing, China

文献类型: 外文期刊

作者: Chen, Bo 1 ; Lu, Shaowei 2 ; Zhao, Yunge 3 ; Li, Shaoning 2 ; Yang, Xinbing 3 ; Wang, Bing 4 ; Zhang, Hongjiang 1 ;

作者机构: 1.Beijing Forestry Univ, Sch Soil & Water Conservat, Beijing 100083, Peoples R China

2.Beijing Acad Agr & Forestry Sci, Collaborat Innovat Ctr Ecoenvironm Improvement Fo, Forestry & Pomol Inst, Beijing 100093, Peoples R China

3.Agr Univ Hebei, Coll Forestry, Baoding 071000, Hebei, Peoples R China

4.Chinese Acad Forestry, Inst Forest Ecol & Environm Protect, Beijing 100091, Peoples R China

关键词: urban forest;remove function;PM2.5;aerosol generator;Beijing nitrification and denitrification;functional bacteria

期刊名称:POLISH JOURNAL OF ENVIRONMENTAL STUDIES ( 影响因子:1.699; 五年影响因子:1.654 )

ISSN: 1230-1485

年卷期: 2016 年 25 卷 5 期

页码:

收录情况: SCI

摘要: We based our research on real-time monitoring data for PM2.5 at the Beijing Municipal Environmental Protection Monitoring Center of Haidian Beijing Botanical Garden (a vegetated area), and at Haidian Wanliu (a non-vegetated area). By combining these two data points with the PM2.5 and meteorological data from a separate monitoring station in Beijing Botanical Garden's forest interior, we analyzed the daily fluctuation, regional variation, and foliar adsorption characteristics of PM2.5 in varied environments (Feb.-Dec. 2013 and Jan.-Feb. 2014). Our results show a double peak and valley pattern of PM2.5 daily variation and daytime values greater than nighttime measurements. Average annual PM2.5 concentration values at different monitoring stations were Haidian Wanliu (100.61 +/- 26.49 mu g.m(-3)), greater than at the Beijing Botanical Garden forest interior monitoring station (89.72 +/- 23.49 mu g.m(-3)), and both greater than at Haidian Beijing Botanical Garden (77.72 +/- 23.37 mu g.m(-3)). The maximum PM2.5 concentrations during 12 months were all in Haidian Wanliu (non-vegetated area), while the minimums were all in Haidian Beijing Botanical Garden (vegetated), Haidian Wanliu being 83.33% of the time higher in PM2.5 concentration than Beijing Botanical Garden forest interior. Possibly because of the trees, PM2.5 concentrations in the forest area were lower than that in the non-vegetated area. We find an average PM2.5 adsorption capacity per unit leaf area of 0.048 +/- 0.031 mu g.cm(-2) 0.645 +/- 0.034 mu g.cm(-2) in May, and 0.058 +/- 0.006 mu g.cm(-2) -0.887 +/- 0.014 mu g.cm(-2) in June for the 10 tree species included in our study. Of these 10, incense Cedrus deodara evidences the greatest adsorption and Sophora japonica shows the minimum. As a whole, conifers adsorb at 1.32 times the rate of broadleaf tree species, according to our data. PM2.5 adsorption capacity was greater in June (0.294 +/- 0.227 mu g.cm(-2)) than in May (0.215 +/- 0.184 mu g.cm(-2)). Daily and annual variation in different regions falls into a pattern where Haidian Wanliu pollution is greater than Beijing Botanical Garden forest interior monitoring station, and both are greater than Haidian Beijing Botanical Garden, which confirms the forest ecosystem's involvement. It appears that the forest has many functions, including atmospheric purification by adsorption of PM2.5 and other particulates as evidenced by better air quality in forest areas than in non-vegetated sites. Furthermore, forest clearings show better air quality than the forest interior.

  • 相关文献

[1]Research on the eco-purification function of urban forests in Beijing. Li, Shaoning,Lu, Shaowei,Pan, Qinghua,Zhang, Yuping,Chen, Bo,Yang, Xinbing. 2013

[2]Characteristics of atmospheric PM2.5 in stands and non-forest cover sites across urban-rural areas in Beijing, China. Chen, Bo,Li, Shaoning,Lu, Shaowei,Yang, Xinbing,Wang, Bing,Niu, Xiang. 2016

[3]基于多源数据的PM_(2.5)浓度时空分布预测与制图. 肖璐,郎艺超,夏浪,楼昭涵,孙楠,黄李童,George Christakos. 2017

[4]夏季绿化树种滞留PM_(2.5)与叶片微形态特征研究. 赵云阁,鲁笑颖,刘斌,鲁绍伟,陈波. 2016

[5]不同污染程度下PM2.5质量浓度及其水溶性离子变化特征. 鲁绍伟,温佳美,李少宁,赵娜,蒋燕,张勇. 2020

[6]北京西山冬季针叶树种叶片滞纳PM_(2.5)功能研究. 陈波,李少宁,鲁绍伟,刘海龙,赵东波,陈鹏飞. 2018

[7]北京秋季不同树种吸附PM_(2.5)研究. 赵云阁,鲁绍伟,李利学,谷建才,陈波,李少宁. 2016

[8]北京7种经济林吸滞PM_(2.5)特征及其价值评估. 刘凤芹,刘斌,鲁绍伟,李少宁,杨超. 2017

[9]北京主要绿化树种叶表面微形态与PM2.5吸滞能力. 李少宁,鲁绍伟,刘斌,鲁笑颖,陈军丽,李辉. 2017

[10]北京常见绿化树种叶表面形态与PM_(2.5)吸滞能力关系. 李少宁,刘斌,鲁笑颖,鲁绍伟,陈军丽. 2016

[11]北京春季PM2.5和PM10污染水平及影响因素研究. 陈波,李少宁,杨新兵,鲁绍伟,王兵,丁杰,徐兰,王迪. 2018

[12]北京不同树种吸滞PM2.5特征研究. 赵云阁,谷建才,刘海龙,鲁绍伟,赵东波,陈波,陈鹏飞,李少宁. 2017

[13]北京大兴南海子公园PM_(2.5)和PM_(10)质量浓度变化特征. 陈波,李少宁,鲁绍伟,鲁笑颖,陈军丽. 2016

作者其他论文 更多>>