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Bioconcentration Factors for Volatile Organic Compounds in Vegetation

机译:植被中挥发性有机物的生物浓缩因子

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Samples of air and leaves were taken at the University of Nevada-Las Vegas campus and analyzed for volatile organic compounds using vacuum distillation coupled with gas chromatography/mass spectrometry. The data were used to estimate the bioconcentration of volatile organic compounds (VOCs) and to characterize the equilibration of VOCs between the leaves and air. The bioconcentration of volatiles in the leaves of some species can de predicted using the partition coefficients between air and octanol (K↓(oa)) and only considering VOC absorption in the lipid fraction of leaves. For these leaves, the bioconcentration factors agreed with existing models. Leaves of some species displayed a bioconcentration of Volatiles that greatly exceeded theory. These hyperbioconcentration leaves also contain appreciable concentrations of monoterpenes, suggesting that a terpenoid compartment should be considered for the bioconcentration of organic compounds in leaves. Adding an additional "terpenoid" compartment should improve the characterization of vo1atile organic compounds in the environment. The uptake of VOCs from air by leaves is rapid, and the equilibration rates are seen to be quicker for compounds that have higher vapor pressures. The release of VOCs from the leaves of plants is slower for hyperbioconcentration leaves.
机译:空气和叶子的样品是在内华达大学拉斯维加斯分校的采样,并采用真空蒸馏与气相色谱/质谱联用分析了挥发性有机化合物。数据用于估算挥发性有机化合物(VOC)的生物浓度,并表征叶片与空气之间VOC的平衡。可以使用空气和辛醇之间的分配系数(K↓(oa))并仅考虑叶片脂质部分中的VOC吸收来预测某些物种的叶片中挥发物的生物浓度。对于这些叶子,其生物浓缩系数与现有模型一致。一些物种的叶片显示出挥发性的生物浓缩物,大大超过了理论值。这些高生物浓度的叶子还含有相当浓度的单萜,这表明应该考虑使用萜类化合物隔室来使叶子中的有机化合物生物富集。添加一个额外的“萜类”隔室应该可以改善环境中挥发性有机化合物的特性。树叶从空气中吸收VOC的速度很快,对于具有较高蒸气压的化合物,平衡速率被认为更快。对于高生物富集的叶片,植物叶片中VOC的释放较慢。

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