首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >In situ investigation of the depuration of fluoranthene adsorbed on the leaf surfaces of living mangrove seedlings
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In situ investigation of the depuration of fluoranthene adsorbed on the leaf surfaces of living mangrove seedlings

机译:原位研究活红树林幼苗叶片表面吸附的荧蒽的脱水

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摘要

A novel approach for the in situ determination of fluoranthene (Fla) that was adsorbed onto the leaf surfaces of Avicennia marina (Am), Kandelia obovata (Ko), Bruguiera gymnorrhiza (Bg), and Aegiceras corniculatum (Ac) was established using laser-induced nanosecond time-resolved fluorescence (LITRF). The detection limits for the in situ determination of the Fla adsorbed onto the Am, Ko, Bg and Ac leaf surfaces were 0.03, 0.14, 0.16 and 0.31 ng spot ~(-1), respectively. Using the LITRF method, the depuration of the adsorbed Fla from the leaf surfaces of the four selected mangrove species was investigated in situ. The results showed that the method was very simple and rapid to perform and it was applicable for a real-time in situ survey of the depuration processes of PAHs that were adsorbed onto the mangrove leaves. The depuration of Fla that was adsorbed onto the Am, Ko, Bg and Ac leaf surfaces followed fast and slow phases, both of which varied significantly between the mangrove species in terms of the elimination rate, the remaining Fla residues, and the effect of temperature on the remaining Fla residues on the leaf surfaces. Variations in leaf wax content and the leaf surface roughness among the four mangrove species were responsible for the differences in the rapid phase, while photolysis and penetration into the inner cuticle were dominant mechanisms for the slow depuration.
机译:建立了一种新的方法来现场测定荧蒽(Fla)的吸附量,该方法被吸附在Avicennia marina(Am),obdeta(Kandelia obovata)(Ko),Bruguiera Gymnorrhiza(Bg)和Aegiceras corniculatum(Ac)的叶片表面上。诱导的纳秒级时间分辨荧光(LITRF)。原位测定Am,Ko,Bg和Ac叶片表面吸附的Fla的检测限分别为0.03、0.14、0.16和0.31 ng spot〜(-1)。使用LITRF方法,从四种选定的红树林物种的叶片表面上对吸附的Fla的净化进行了原位研究。结果表明,该方法操作简便,快速,适用于吸附在红树林叶片上的多环芳烃的净化过程的实时原位研究。吸附在Am,Ko,Bg和Ac叶片表面上的Fla的净化过程遵循快相和慢相,这两种红树林在清除率,剩余的Fla残留量和温度影响方面都存在显着差异。残留在叶片表面的Fla残留物上。四种红树林叶片蜡含量和叶片表面粗糙度的变化是造成快速阶段差异的原因,而光解作用和渗透到内角质层是缓慢净化的主要机制。

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