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Thermodynamic Properties of Dibenzo-p-dioxin, Dibenzofuran, and Their Polychlorinated Derivatives in the Gaseous and Condensed Phases.1. Thermodynamic Properties of Gaseous Compounds

机译:二苯并对二恶英,二苯并呋喃及其多氯代衍生物在气相和冷凝相中的热力学性质1。气态化合物的热力学性质

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摘要

Gas-phase thermodynamic properties (enthalpy of formation, entropy, and heat capacity) are estimated for dibenzo-p-dioxin (DF), 75 possible isomers of polychlorinated dibenzo-p-dioxins (PCCDs), and 135 of polychlorinated dibenzofurans (PCDFs). To estimate the enthalpy of formation valures, the difference method is used that is completely consistent with the group additivity approach. Entropies and heat capacities are calculated by statistical thermodynamics using evaluated structural parameters and vibrational frequencies. Normal coordinate analysis is carried out for all isomers of PCDDs and PCDFs by transferring the force constants from polycycic aromatic hydrocarbons, dibenzofuran, and chlorinated benzenes. The group additivity scheme with 10 parameters is developed to approximate calculated thermodynamic properties. Results obtained in this work are compared with published experimental and theoretical data.
机译:估算了二苯并-对-二恶英(DF),75种可能的多氯二苯并-对-二恶英(PCCD)异构体和135种多氯代二苯并呋喃(PCDF)的气相热力学性质(形成焓,熵和热容) 。为了估计地层价值的焓,所使用的差异方法与组可加性方法完全一致。通过使用评估的结构参数和振动频率通过统计热力学计算熵和热容量。通过转移多环芳烃,二苯并呋喃和氯代苯的力常数,对PCDDs和PCDFs的所有异构体进行正态坐标分析。开发了具有10个参数的组可加性方案,以近似计算出的热力学性质。将这项工作中获得的结果与已发表的实验和理论数据进行比较。

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