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Study on the Fluorescence Characteristic of Phenanthrenes and Anthracenes in Soil Based on Two-Dimensional Correlation Fluorescence Spectroscopy

机译:二维相关荧光光谱法研究土壤中菲和蒽的荧光特性

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Polycyclic aromatic hydrocarbons (PAHs) are a kind of persistent organic pollutants in soil. Due to the low content of PAHs and the fluorescence peaks of PAHs overlapped with each other, the characteristic bands of PAHs in complex soil cannot be resolved effectively by conventional fluorescence spectrometry. In this paper, two-dimensional (2D) correlation fluorescence spectroscopy was applied to resolve the heavily overlapped fluorescence information of phenanthrenes and anthracenes in soil. According to research objectives, 9 mixed soil samples of phenanthrenes and anthracenes were prepared. And the one-dimensional (1D) fluorescence spectra of all samples were collected using LS-55 fluorescence spectrometer. Then, 2D correlation fluorescence spectra were calculated under the perturbation of the concentration of PAHs in soil. There are six auto-peaks at 367 nm, 389 nm, 409 nm, 419 nm, 434 nm, and 463 nm in synchronous 2D correlation fluorescence spectrum. The un-covered peak of 389 nm can be assigned to phenanthrene in soil. The peaks at 367 nm, 409 nm, 434 nm, and 463 nm have positive correlation with 389 nm, and thus are assigned to phenanthrene in soil. On the other hand, the peaks at 419 nm have negative correlation with 389 nm, and thus are assigned to anthracene in soil. Meanwhile, the origin of fluorescence peaks of phenanthrenes and anthracenes in soil were further verified by asynchronous 2D correlation fluorescence spectrum.
机译:多环芳烃(PAHs)是土壤中一种持久的有机污染物。由于PAHs含量低,且PAHs的荧光峰相互重叠,常规荧光光谱法不能有效地分辨复杂土壤中PAHs的特征谱带。本文使用二维(2D)相关荧光光谱法解决了土壤中菲和蒽的大量重叠的荧光信息。根据研究目的,制备了菲和蒽的9种混合土壤样品。并使用LS-55荧光光谱仪收集所有样品的一维(1D)荧光光谱。然后,在土壤中多环芳烃浓度扰动下,计算了二维相关荧光光谱。在同步2D相关荧光光谱中,在367 nm,389 nm,409 nm,419 nm,434 nm和463 nm处有六个自动峰。未发现的389 nm峰可归因于土壤中的菲。 367 nm,409 nm,434 nm和463 nm处的峰与389 nm正相关,因此归属于土壤中的菲。另一方面,在419nm处的峰与389nm具有负相关,因此归属于土壤中的蒽。同时,通过异步二维相关荧光光谱进一步验证了土壤中菲和蒽的荧光峰的起源。

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