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Volatile Organic Compound Emissions from Urban Trees in Shenyang, China

中國瀋陽市樹木揮發性有機物釋放規律研究

摘要


Biogenic emissions of the volatile organic compounds isoprene and monoterpene (BVOCs) contribute to tropospheric ozone and secondary particle formation and have indirect effects on global climate change. However, little research has focused on BVOC emissions from urban trees. In this study, the monoterpene emissions of Chinese Pine (Pinus tabulaeformis Carr.) have been measured by GC/MS. The emission rates of α-pinene, β-pinene, camphene and limonene reached their maximum 78.55, 0.67, 0.82 and 0.31 μg g^(-1) dw h^(-1) (p<0.05), respectively, in August. For Δ3-carene, the highest emission rate, about 0.51 μg g^(-1) dw h^(-1), was observed in June. The dominant monoterpene emitted was α-pinene. In August and September, this monoterpene accounted for more than 97% of the emissions. Correlation analyses revealed significant correlations among emission rates of α-pinene, β-pinene, camphene, and limonene (p<0.01). This may imply that the biosynthesis of α-pinene, β-pinene, camphene, and limonene were controlled by some common metabolic routes.

關鍵字

GC/MS 異戊二烯 單萜 油松

並列摘要


Biogenic emissions of the volatile organic compounds isoprene and monoterpene (BVOCs) contribute to tropospheric ozone and secondary particle formation and have indirect effects on global climate change. However, little research has focused on BVOC emissions from urban trees. In this study, the monoterpene emissions of Chinese Pine (Pinus tabulaeformis Carr.) have been measured by GC/MS. The emission rates of α-pinene, β-pinene, camphene and limonene reached their maximum 78.55, 0.67, 0.82 and 0.31 μg g^(-1) dw h^(-1) (p<0.05), respectively, in August. For Δ3-carene, the highest emission rate, about 0.51 μg g^(-1) dw h^(-1), was observed in June. The dominant monoterpene emitted was α-pinene. In August and September, this monoterpene accounted for more than 97% of the emissions. Correlation analyses revealed significant correlations among emission rates of α-pinene, β-pinene, camphene, and limonene (p<0.01). This may imply that the biosynthesis of α-pinene, β-pinene, camphene, and limonene were controlled by some common metabolic routes.

並列關鍵字

GC/MS Isoprene Monoterpenes Pinus tabulaeformis Carr

被引用紀錄


張菀蓉(2014)。麻竹筍生長之細胞壁特性及基因表現分析〔碩士論文,國立臺灣大學〕。華藝線上圖書館。https://doi.org/10.6342/NTU.2014.02742

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