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首页> 外文期刊>Science of the total environment >The relationship between particulate matter retention capacity and leaf surface micromorphology of ten tree species in Hangzhou, China
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The relationship between particulate matter retention capacity and leaf surface micromorphology of ten tree species in Hangzhou, China

机译:杭州十树种类颗粒物质保留能力和叶片表面微观的关系

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摘要

Atmospheric particulate matter (PM) is one of the main environmental air pollutants, but it can be retained and adsorbed by plants. To systematically and comprehensively conduct qualitative and quantitative research on the relationship between the leaf PM retention ability and the microstructure of leaf surfaces, this study evaluated the PM retention abilities often common tree species (1860 leaf pieces in total) in the greenbelts around the Lin'an toll station of the Hang-Rui Expressway in Hangzhou, China, in October 2019. The leaf surface roughness and contact angle were measured with confocal laser scanning microscopy and a contact angle measuring instrument Scanning electron microscopy was applied to collect data on the stomata and groove morphology. The PM retention ability of the leaves was assessed by quantifying the PM mass and number density on the leaves. The results revealed that Platanus acerifolia and Sapindus mukorossi had a strong ability to retain particulates of different sizes. The mass of the retained PM_(2.5) on their leaves accounted for the lowest proportion (mean: 8.12%) among the total retained particulate mass, but the number density of the retained PM_(2.5) accounted for the highest proportion (mean: 97.49%) among the total number density. A significant negative correlation between the PM_(2.5) mass and the groove width on the adaxial surface (R~2 = 0.746, P < 0.05) and a significant positive correlation between the roughness and the PM number density on the adaxial surface (R~2 = 0.702, P < 0.01) were observed. No obvious correlations were found among the groove width, roughness and number density of the retained PM on the abaxial surface. Leaf surfaces with dense and narrow grooves, strip-like projections, high roughness and high wettability had strong retention abilities. This study can provide a theoretical reference for selecting plants with strong PM retention ability for green urban garden design.
机译:大气颗粒物质(PM)是主要的环境空气污染物之一,但它可以保留并被植物吸附。为了系统地,全面地对叶片保留能力与叶片表面微观结构之间的定性和定量研究,本研究评估了PM保留能力常见的普通树种(总共1860个叶片)在林的绿贝中2019年10月杭州杭州恒瑞高速公路的收费站。用共聚焦激光扫描显微镜测量叶面粗糙度和接触角,并施加接触角测量仪器扫描电子显微镜,以收集气孔的数据和沟形态。通过量化叶片上的PM质量和数量密度来评估叶片的PM保留能力。结果表明,Platanus Acerifolia和Sapindus Mukorossi能够保留不同尺寸的颗粒的能力。其叶片上保留的PM_(2.5)的质量占总保留的颗粒物质中的最低比例(平均:8.12%),但保留的PM_(2.5)的数量密度占最高比例(平均值:97.49 %)总数密度之间。 PM_(2.5)质量与凹槽宽度之间的显着的负相关性(R〜2 = 0.746,P <0.05)和粗糙度与PM数密度之间的显着正相关性(R〜观察2 = 0.702,P <0.01)。在轴向表面上保留PM的凹槽宽度,粗糙度和数密度中没有发现明显的相关性。叶片表面具有致密且窄的凹槽,带状凸起,高粗糙度和高润湿性具有强烈的保持能力。本研究可以为绿色城市园艺设计的强度保留能力提供理论参考。

著录项

  • 来源
    《Science of the total environment》 |2021年第1期|144812.1-144812.11|共11页
  • 作者单位

    College of Landscape Architecture Zhejiang Agriculture and Forestry University Hangzhou Zhejiang 311300 China;

    College of Landscape Architecture Zhejiang Agriculture and Forestry University Hangzhou Zhejiang 311300 China;

    College of Environmental Sciences and Engineering Peking University Beijing 100871 China The Key Laboratory of Water and Sediment Sciences Ministry of Education Peking University Beijing 100871 China;

    Wulanchabu Administration Station of Wildlife and Wetland Conservation Wulanchabu Administration of Forestry and Grassland Wulanchabu Neimenggu 012000 China;

    Hangzhou Botanical Garden (Hangzhou West Lake Academy of Landscape Science) Hangzhou Zhejiang 310012 China;

    College of Landscape Architecture Zhejiang Agriculture and Forestry University Hangzhou Zhejiang 311300 China;

    College of Landscape Architecture Zhejiang Agriculture and Forestry University Hangzhou Zhejiang 311300 China;

    College of Landscape Architecture Zhejiang Agriculture and Forestry University Hangzhou Zhejiang 311300 China;

    College of Landscape Architecture Zhejiang Agriculture and Forestry University Hangzhou Zhejiang 311300 China;

    College of Landscape Architecture Zhejiang Agriculture and Forestry University Hangzhou Zhejiang 311300 China;

    College of Landscape Architecture Zhejiang Agriculture and Forestry University Hangzhou Zhejiang 311300 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Particulate matter; Microstructure; Surface roughness; Surface contact angle; Tree;

    机译:颗粒物质;微观结构;表面粗糙度;表面接触角;树;

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