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Gas Chromatographic Estimation of Vapor Pressures and Octanol-Air Partition Coefficients of Semivolatile Organic Compounds of Emerging Concern

机译:蒸汽压力的气相色谱估计和辛醇 - 空气分配系数的新兴担忧的半抗生素有机化合物

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The subcooled liquid-phase vapor pressures (p(L)(298)/Pa) and octanol-air partition coefficients (K-OA(298)) at T/K = 298, enthalpies of vaporization (Delta H-VAP/kJ.mol(-1)), and internal energies of phase transfer from octanol to air (Delta U-OA/kJ.mol(-1)) were estimated for synthetic musks, novel brominated flame retardants (N-BFR), organophosphate esters, and ultraviolet filters using the capillary gas chromatographic retention time (GC-RT) method. These compounds, which spanned approximately six and three orders of magnitude for pL(298)/Pa and K-OA(298), respectively, were co-chromatographed with one of three reference compounds to give initial estimates of properties at T/K = 298. The initial GC-RT property estimates were subsequently calibrated using 18 compounds that spanned 6 log units for pL(298)/Pa and 13 compounds covering 4 log units for K-OA(298). The calibrated log10 pL(298)/Pa values estimated here ranged from 0.14 +/- 0.19 to -9.19 +/- 0.29 for cyclopentadecanone to syn-dechlorane plus (syn-DDC-CO), respectively, while the range of log10 K-OA(298) values was 6.59 +/- 0.26 to 11.40 +/- 0.23 for cyclopentadecanone to 2,2',4,4',5-pentabromodiphenyl ether (BDE-99), respectively. The calibrated GC-RT-derived values were highly correlated with, and were within an average of 0.70 log units of, the literature data for compounds with well-established p(L)(298)/Pa and K-OA(298) measured or derived using non-GC-RT methods. Nonpolar compounds were used in this study to estimate the target polar compound data, which may introduce systematic errors. However, the comparison of our GC-RT results against the literature non-GC-RT values shows that the GC-RT methods performed similarly well for estimating both polar and nonpolar target compounds studied in this work.
机译:在t / k = 298,蒸发焓(Delta H-VAP / KJ时,所述液相蒸汽压力(P(1)(298)/ PA)和辛醇 - 空气分配系数(K-OA(298)),蒸发焓(Delta H-VAP / KJ。 Mol(-1))和从辛醇到空气的相转移的内部能量(Delta U-OA / KJ.mol(-1))估计合成麝香,新型溴化阻燃剂(N-BFR),有机磷酸酯,使用毛细管气相色谱保留时间(GC-RT)方法和紫外线过滤器。这些化合物分别跨越PL(298)/ pa和k-oa(298)的大约六个级和三个级(298)与三种参考化合物中的一种共同色谱分离,以在T / k =的初始性能估计298.随后使用18种化合物校准初始GC-RT性质估计,所述18个化合物用于PL(298)/ PA和13个化合物,覆盖K-OA的4个对数单元(298)。校准的log10 pl(298)/ p pl值估计为0.14 +/- 0.19至-9.19 +/- 0.29分别用于Syn-Dechlorane Plus(SYN-DDC-CO),而LOG10 K-的范围oA(298)的值分别为环戊二烷酮为6.59 +/- 0.26至11.40 +/- 0.23分别为2,2',4,4',5-五溴二苯醚(BDE-99)。校准的GC-RT衍生的值与具有良好成熟的P(1)(298)/ Pa和K-OA(298)的化合物的文献数据的平均值高。测量或使用非GC-RT方法导出。在该研究中使用非极性化合物以估计目标极性化合物数据,这可能引入系统误差。然而,我们对文献非GC-RT值的GC-RT结果的比较表明,GC-RT方法类似地进行,用于估计在该工作中研究的极性和非极性目标化合物。

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