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In situ simultaneous investigation of the transport of phenanthrene and fluoranthene adsorbed onto the root surfaces to tissues of mangrove seedlings

机译:原位同时研究吸附在根表面的菲和荧蒽到红树林幼苗的转运

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摘要

A novel method for the simultaneous in situ determination of phenanthrene (Phen) and fluoranthene (Fla) adsorbed onto mangrove root surfaces was established using laser-induced time-resolved nanosecond-fluorescence spectroscopy combined with a first-order derivative fluorometry (D-LITRF) method. The linear dynamic range, detection limit and recoveries of D-LITRF and laser induced time-resolved nanosecond fluorescence spectroscopy (LITRF) were of the same order. Using the established method, the transport of Phen and Fla from the mangrove root surface to tissues was simultaneously investigated in situ. The transportation coefficients of Phen and Fla adsorbed onto the root surface showed a good linear relationship with the content of root lipids, while the inhibition rates showed no significant correlation with the content of root lipids (p > 0.05). Further studies showed that the interaction between Fla and Phen decreased the transport kinetics, especially the slow and very slow transport kinetics. In addition, the coefficients and inhibition rates of the transport of Phen and Fla to Kandelia obovata (Ko) root tissues were evaluated at different temperatures. The results acquired by these in situ methods provide new information about how two PAHs components are transported from the mangrove root surface to the tissues.
机译:利用激光诱导时间分辨纳秒荧光光谱结合一阶导数荧光法(D-LITRF),建立了一种同时测定吸附在红树林根表面上的菲(Phen)和荧蒽(Fla)的新方法方法。 D-LITRF和激光诱导的时间分辨纳秒荧光光谱法(LITRF)的线性动态范围,检测限和回收率是相同的。使用已建立的方法,同时就地研究了红树林根部表面中苯酚和氟乙烯从红树根表面到组织的转运。吸附在根表面的Phen和Fla的转运系数与根脂质的含量呈良好的线性关系,而抑制率与根脂质的含量无显着相关性(p> 0.05)。进一步的研究表明,Fla和Phen之间的相互作用降低了运输动力学,特别是缓慢和非常缓慢的运输动力学。此外,还评估了在不同温度下苯酚和Fla转运至黑叶茄根组织的系数和抑制率。这些原位方法获得的结果提供了有关两种PAHs组分如何从红树林根表面运输到组织的新信息。

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