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Application of PROSPECT for estimating total petroleum hydrocarbons in contaminated soils from leaf optical properties

机译:PROSPECT在根据叶片光学特性估算污染土壤中总石油烃中的应用

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摘要

Recent advances in hyperspectral spectroscopy suggest making use of leaf optical properties for monitoring soil contamination in oil production regions by detecting pigment alterations induced by Total Petroleum Hydrocarbons (TPH). However, this provides no quantitative information about the level of contamination. To achieve this, we propose an approach based on the inversion of the PROSPECT model. 1620 leaves from five species were collected on a site contaminated by 16 to 77 g.kg(-1) of TPH over a 14-month period. Their spectral signature was measured and used in PROSPECT model inversions to retrieve leaf biochemistry. The model performed well for simulating the spectral signatures (RMSE 2%) and for estimating leaf pigment contents (RMSE = 2.95 mu g.cm(-2) for chlorophylls). Four out of the five species exhibited alterations in pigment contents when exposed to TPH. A strong correlation was established between leaf chlorophyll content and soil TPH concentrations (R-2 = 0.74) for three of them, allowing accurate predictions of TPH (RMSE = 3.20 g.kg(-1) and RPD = 5.17). The accuracy of predictions varied by season and improved after the growing period. This study demonstrates the capacity of PROSPECT to estimate oil contamination and opens up promising perspectives for larger-scale applications.
机译:高光谱光谱学的最新进展表明,通过检测由总石油碳氢化合物(TPH)引起的色素变化,利用叶片的光学特性监测产油区的土壤污染。但是,这没有提供有关污染水平的定量信息。为此,我们提出了一种基于PROSPECT模型反演的方法。在14个月的时间里,从被16至77 g.kg(-1)的TPH污染的地点收集了5种物种的1620片叶子。测量了它们的光谱特征,并将其用于PROSPECT模型反演中以检索叶片的生物化学。该模型在模拟光谱特征(RMSE <2%)和估计叶片色素含量(叶绿素的RMSE <= 2.95μg.cm(-2))方面表现出色。当暴露于TPH时,五种中的四种显示出色素含量的变化。在其中三者之间,叶绿素含量与土壤TPH浓度(R-2> = 0.74)之间建立了很强的相关性,从而可以准确预测TPH(RMSE = 3.20 g.kg(-1)和RPD = 5.17)。预测的准确性随季节而变化,并且在生育期后有所提高。这项研究证明了PROSPECT评估油污染的能力,并为大规模应用打开了广阔的前景。

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