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Disappearance of polycyclic aromatic hydrocarbons sorbed on surfaces of pine [Pinua thunbergii] needles under irradiation of sunlight: Volatilization and photolysis

机译:日光照射下松树针叶表面吸附的多环芳烃的消失:挥发和光解

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摘要

The solar photodegradation of 16 polycyclic aromatic hydrocarbons (PAHs), sorbed on surfaces of pine [Pinua thunbergii] needles was investigated. The PAHs were produced by combustion of polystyrene and exposed onto the surfaces of pine needles. The disappearance of PAHs sorbed on the pine needle surfaces is mainly caused by volatilization and photolysis, with photolysis playing a major role. The volatilization rates correlate with PAH molecular weight significantly. The photolysis of the 16 PAHs follows first-order kinetics and their photolysis half-lives (t_(1/2,P)) range from 12.9h for naphthalene to 65.4h for fluorene. The PAHs have similar half-lives whether they are sorbed on spruce or pine needles. Compared with water, the cuticular waxes of pine needles can stabilize photolysis of PAHs and facilitate accumulation of PAHs. t_(1/2,P) for selected PAHs correlate with semi-empirically calculated energy of the highest occupied orbital (E_(HOMO))- Photochemical behaviors of PAHs are dependent not only on their molecular structures but also the physical-chemical properties of the substrate on which they are adsorbed.
机译:研究了16种多环芳烃(PAHs)在松树针(Pinua thunbergii)针表面上的太阳光降解作用。 PAH是通过聚苯乙烯燃烧产生的,并暴露在松针的表面上。松针表面吸附的多环芳烃的消失主要是由挥发和光解引起的,其中光解起着主要作用。挥发速率与PAH分子量显着相关。 16种多环芳烃的光解遵循一级动力学,其光解半衰期(t_(1/2,P))的范围从萘的12.9h到芴的65.4h。无论是吸附在云杉针叶还是松针上,PAH的半衰期都相似。与水相比,松针的表皮蜡可以稳定多环芳烃的光解并促进多环芳烃的积累。所选PAH的t_(1/2,P)与最高占据轨道(E_(HOMO))的半经验计算能量相关-PAH的光化学行为不仅取决于其分子结构,而且还取决于其的物理化学性质它们吸附在其上的基质。

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