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Field spectroscopy and radiative transfer modelling to assess impacts of petroleum pollution on biophysical and biochemical parameters of the Amazon rainforest

机译:现场光谱和辐射转移模型评估石油污染对亚马逊雨林生物物理和生化参数的影响

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摘要

Biophysical and biochemical plant foliage parameters play a key role in assessing vegetation health. Those plant parameters determine the spectral reflectance and transmittance properties of vegetation; therefore, hyperspectral remote sensing, particularly imaging spectroscopy, can provide estimates of leaf and canopy chemical properties. Based on the relationship between spectral response and biochemical/biophysical properties of the leaves and canopies, the PROSPECT radiative transfer model simulates the interaction of light with leaves. In this study, more than 1100 leaf samples from the Amazon forest of Ecuador were collected at several study sites, some of which are affected by petroleum pollution, and across the vertical profile of the forest. For every sample, field spectroscopy at leaf level was conducted with a spectroradiometer. The goal of this study was to assess leaf optical properties of polluted and unpolluted rainforest canopies across the vertical profile and identify vegetation stress expressed in changes of biophysical and biochemical properties of vegetation. An ANOVA followed by Holme's multiple comparisons of means and a principal component analysis showed that photosynthetic pigments, chlorophyll and carotenoids have significantly lower levels across the vertical profile of the forest, particularly in sites affected by petroleum pollution. On the other hand, foliar water content showed significantly higher levels in the polluted site. Those findings are symptoms of vegetation stress caused by reduced photosynthetic activity and consequently decreased transpiration and water-use efficiency of the plants. Cross- comparison between SPAD-502 chlorophyll content meter index and chlorophyll content showed strong positive correlation coefficients (r = 0.71 and r(2) = 0.51) which suggests that using the SPAD-502 chlorophyll index itself is sensitive enough to detect vegetation stress in a multispecies tropical forest. Therefore, the SPAD-502 can be used to assess chlorophyll content of vegetation across polluted and non-polluted sites at different canopy layers. The results presented in this paper contribute to the very limited literature on field spectroscopy and radiative transfer models applied to the vertical profile of the Amazon forest.
机译:生物物理和生化植物叶子参数在评估植被健康中起关键作用。这些植物参数决定了植被的光谱反射率和透射率特性。因此,高光谱遥感,尤其是成像光谱学,可以估计叶片和冠层的化学性质。基于光谱响应与叶片和冠层的生化/生物物理特性之间的关系,PROSPECT辐射传递模型模拟了光与叶片的相互作用。在这项研究中,从几个研究地点采集了来自厄瓜多尔亚马逊森林的1100多个叶子样本,其中一些受到石油污染的影响,并且横跨森林的垂直剖面。对于每个样品,使用分光辐射计在叶片水平上进行现场光谱分析。这项研究的目的是评估垂直剖面上被污染和未被污染的雨林林冠的叶片光学特性,并确定在植被的生物物理和生化特性变化中表达的植被胁迫。方差分析(ANOVA)和Holme对均值的多次比较以及主成分分析表明,在森林的垂直剖面上,特别是在受到石油污染影响的地区,光合色素,叶绿素和类胡萝卜素的含量显着降低。另一方面,在受污染的地方,叶面水分含量明显较高。这些发现是由于光合作用降低,植物蒸腾作用和水分利用效率降低而引起的植被胁迫症状。 SPAD-502叶绿素含量仪指数与叶绿素含量的交叉比较显示出很强的正相关系数(r = 0.71和r(2)= 0.51),这表明使用SPAD-502叶绿素指数本身就足以检测植被胁迫。多物种的热带森林。因此,SPAD-502可用于评估不同冠层不同污染和非污染部位的植被叶绿素含量。本文介绍的结果对有关适用于亚马逊森林垂直剖面的现场光谱和辐射传输模型的文献非常有限。

著录项

  • 来源
    《Environmental earth sciences》 |2017年第5期|217.1-217.14|共14页
  • 作者单位

    Yachay Tech Univ, Sch Geol Sci & Engn, Hacienda San Jose S N, San Miguel Urcuqui, Imbabura, Ecuador|Yachay Tech Univ, Ctr Earth Observat CEO, Hacienda San Jose S N, San Miguel Urcuqui, Imbabura, Ecuador|Univ Leicester, Ctr Landscape & Climate Res, Leicester Inst Space & Earth Observat, Dept Geog, Univ Rd, Leicester LE1 7RH, Leics, England;

    Univ Leicester, Ctr Landscape & Climate Res, Leicester Inst Space & Earth Observat, Dept Geog, Univ Rd, Leicester LE1 7RH, Leics, England;

    Univ Leicester, Ctr Landscape & Climate Res, Leicester Inst Space & Earth Observat, Dept Geog, Univ Rd, Leicester LE1 7RH, Leics, England|Univ Leicester, Natl Ctr Earth Observat, Univ Rd, Leicester LE1 7RH, Leics, England;

    Univ Nottingham, Sch Geog, Nottingham NG7 2RD, England;

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

    Amazon forest; Chlorophyll content; PROSPECT model; SPAD-502; Yasuni National Park; Petroleum pollution;

    机译:亚马逊森林;叶绿素含量;PROSPECT模型;SPAD-502;Yasuni国家公园;石油污染;

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