Dust Retention Effect of Greenery in Typical Urban Traffic Landscapes of Nanjing—In the Case of Xuanwu Avenue in Nanjing City

Author:

Sheng Qianqian1234,Zhang Xiangyi12,Meng Chen1,Zhang Xiru12,Li Weizheng5,Yang Ruizhen6,Zhu Zunling12347

Affiliation:

1. College of Landscape Architecture, Nanjing Forestry University, Nanjing 210037, China

2. Co-Innovation Center for the Sustainable Forestry in Southern China, Nanjing Forestry University, Nanjing 210037, China

3. Jin Pu Research Institute, Nanjing Forestry University, Nanjing 210037, China

4. Research Center for Digital Innovation Design, Nanjing Forestry University, Nanjing 210037, China

5. Advanced Analysis and Testing Center, Nanjing Forestry University, Nanjing 210037, China

6. Nanjing Sky Hunt Data Technology Co., Ltd., Nanjing 210037, China

7. College of Art and Design, Nanjing Forestry University, Nanjing 210037, China

Abstract

With the accelerated process of urbanization, air pollution has become increasingly severe. Garden plants can trap atmospheric particulate matter, which is of great significance for improving the urban ecological environment and promoting sustainable development. To investigate the dust retention effect of typical transportation green spaces in Nanjing, this study focuses on thirteen garden plants on Xuanwu Avenue in Nanjing. The dust retention capacity of these plants was determined using the wash-off method, while the microstructure of their leaf surfaces was observed using scanning electron microscopy. The results are as follows: Firstly, per unit leaf area, Liriope spicata, Ophiopogon japonicus, and Viburnum odoratissimum demonstrate solid dust retention abilities. Additionally, Viburnum odoratissimum, Prunus serrulata var. Lannesiana, and Liriope spicata show strong dust retention abilities per single leaf. Moreover, Platanus acerifolia, Viburnum odoratissimum, and Cinnamomum camphora have strong dust retention abilities per plant. Viburnum odoratissimum, Platanus acerifolia, and Prunus serrulata var. Lannesiana exhibit the most substantial dust retention capacities. Secondly, there is a significant negative correlation between dust retention per plant and the potassium content, while a significant positive correlation is observed with plant height, canopy height, and leaf width. Furthermore, there is a highly significant positive correlation between dust retention per unit leaf area and stomatal length and a highly significant negative correlation with leaf length. The surface microstructure of the blade mainly increases the dust retention capacity of the blade by increasing the friction of the leaf surface. Lastly, specific leaf surface microstructures, such as grooved epidermis and trichomes, enhance plants’ dust retention capacity. Consequently, for the future configuration of road green spaces in Nanjing, a mixed planting mode of trees, shrubs, and grass is recommended. Priority should be given to selecting plants with strong overall dust retention capabilities, such as Platanus acerifolia, Viburnum odoratissimum, and Prunus serrulata var. Lannesiana, to alleviate air pollution, improve the urban ecological environment, and achieve sustainable development.

Funder

Ministry of Education Humanities and Social Sciences Research

Young elite scientist sponsorship program by cast in China Association for Science and Technology

Social Science Foundation Project of Jiangsu Province

National Natural Science Foundation of China

Natural Science Foundation of Jiangsu Province of China

The Natural Science Foundation of the Jiangsu Higher Education Institutions of China

The National Natural Science Foundation of China

“Qing Lan Project” in Jiangsu Province of China

Qianqian Sheng

Publisher

MDPI AG

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