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Determining sub-cooled liquid vapor pressures and octanol-air partition coefficients for chlorinated and brominated polycyclic aromatic hydrocarbons based on gas chromatographic retention times: Application for gas/particle partitioning in air

机译:基于气相色谱保留时间测定氯化和溴化多环芳烃烃的亚冷液蒸汽压力和辛醇 - 空气分配系数:气体/颗粒在空气中施用

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摘要

Halogenated polycyclic aromatic hydrocarbons (Halo-PAHs) are a new group of PAH derivatives and are reported to be more toxic than their parent PAHs. However, limited research has been undertaken on their physicochemical properties. In this study, sub-cooled liquid vapor pressures (P-L) and octanol-air partition coefficients (K-OA) of 24 chlorinated and 11 brominated PAHs (C1PAHs and BrPAHs) were determined using the gas chromatographic retention time (GC-RT) technique. The temperature dependences of P(L )and K-OA for the Halo-PAHs were determined by the slopes and intercepts of the linear regressions. The GC-RT method also provided the enthalpies of vaporization (Delta H-L) and internal energies of phase transfer (Delta U-OA) for all interested compounds. The activity of Halo-PAHs in octanol (gamma(oct)) ranging from 18 to 87, indicated the non-ideal solution behavior. The number of the chlorine atoms in the PAH rings could influence the interaction of C1PAHs with the organic matter, whereas this interaction for BrPAHs could not be studied due to the limited number of target BrPAHs. The measured values of P-L and K(OA )were applied to investigate the gas/particle partition behaviors of Halo-PAHs in Ulsan, South Korea. This study is so far the first one to report the linear regression coefficients, which can be used to estimate the P (L) and K-OA values of Halo-PAHs at any temperature.
机译:卤代多环芳烃(Halo-Pahs)是一组新的PAH衍生物,据报道毒素比父母PAH更大。然而,已经在其物理化学性质上进行了有限的研究。在该研究中,使用气相色谱保留时间(GC-RT)技术测定24个氯化和11溴化PAHs(C1PAH和BRPAH)的亚冷液蒸汽压力(PL)和辛醇 - 空气分配系数(K-OA) 。 P(L)和K-OA的温度依赖性通过线性回归的斜坡和截距确定。 GC-RT方法还提供了对所有感兴趣的化合物的蒸发(Delta H-L)和相转移(Delta U-OA)的内部能量的焓。辛醇(γ(OCT))的卤素活性范围为18至87,表明了非理想的解决方案行为。 PAH环中氯原子的数量可以影响C1PAH与有机物质的相互作用,而由于目标BRPAH的数量有限,因此不能研究BRPAHS的相互作用。应用P-L和K(OA)的测量值来研究韩国乌斯兰卤代菌的气体/粒子分配行为。本研究到目前为止,首先报告线性回归系数,其可用于在任何温度下估计卤素PAHS的p(l)和k-oa值。

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