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Distribution Of Pahs In Pine (pinus Thunbergii) Needles And Soils Correlates With Their Gas-particle Partitioning

机译:Pahs在松树(Thunbergii)针叶中的分布和土壤与它们的气体颗粒分配有关

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Pine (Pinus thunbergii) needles and surface soils were simultaneously sampled at 35 sites across Liaoning province, China, to investigate the distribution of polycyclic aromatic hydrocarbons (PAHs) in the two media. We hypothesized that the distribution of PAHs in soils and pine needles was related to the subcooled liquid vapor pressure (p°L) and the gas-particle partition coefficient (K_P), since soils accumulate PAHs mainly through dry/wet deposition of particles and pine needles sequester PAHs mainly from the gas phase, and the same physicochemical properties (e.g., p°L) determine the characteristics of PAHs deposition to soils and to needles. To verify the hypothesis, a soil-pine needle quotient (Q_(sp)) was defined, which is a dimensionless ratio of PAH concentrations in soils and pine needles. A significant relationship between logQ_(sp)and logp°L was observed (r= 0.94), and the variation of the regression parameters of logQSp~logp°L and logKP~logp°L relationships was similar. An adjusted soil-pine needle quotient (Q'sp) was defined by deducting the contributions of particle PAHsto pine needles and the vapor PAHs to soils. Log Q'sp correlated with logp°L and logarithm of the particle to gas ratio (logCp/CA) more evidently than logQsp. In addition, Q_(sp) (and Q'sp) could be used to characterize the removal factors of PAHs during atmospheric transport. All the observations proved that Q_(sp) (and Q'sp) carry the information of gas-particle partitioning and correlate with p°L.
机译:在中国辽宁省的35个地点同时采样了松树(Pinus thunbergii)针和表层土壤,以研究两种介质中多环芳烃(PAHs)的分布。我们假设土壤中和松针中PAHs的分布与过冷液体蒸气压(p°L)和气体颗粒分配系数(K_P)有关,因为土壤中PAHs的积累主要是通过颗粒和松木的干/湿沉积来实现的。针头主要从气相中螯合多环芳烃,而相同的理化特性(例如,p°L)决定了多环芳烃在土壤和针头上的沉积特征。为了验证该假设,定义了土壤松针商(Q_(sp)),它是土壤和松针中PAH浓度的无量纲比。观察到logQ_(sp)和logp°L之间的显着关系(r = 0.94),并且logQSp_logp°L和logKP_logp°L的回归参数的变化相似。通过扣除颗粒PAH对松针和蒸气PAHs对土壤的贡献,定义了经调整的松土针商(Q'sp)。 Log Q'sp与logp°L和粒子与气体比的对数(logCp / CA)的相关性比logQsp更明显。此外,Q_(sp)(和Q'sp)可用于表征大气传输过程中多环芳烃的去除因子。所有观察结果都证明Q_(sp)(和Q'sp)携带了气体颗粒分配信息并与p°L相关。

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