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Volatile organic compounds from vegetation in southern Yunnan Province, China: Emission rates and some potential regional implications

机译:中国云南南部植被中的挥发性有机化合物:排放率和某些潜在的区域意义

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Little information is currently available regarding emissions of biogenic volatile organic compounds (BVOCs) in southern Asia. To address the need for BVOC emission estimates in regional atmospheric chemistry simulations, 95 common plant species were screened for emissions of BVOC in and near the Xishuangbanna Tropical Biological Gardens in southern Yunnan Province, Peoples' Republic of China in February 2003. In situ measurements with leaf cuvettes and branch bag enclosures were used in combination with portable gas chromatography, flame ionization, photoionization, and mass spectral detection to identify and quantify BVOC emissions. Forty-four of the species examined emitted isoprene at rates exceeding 20μg Cg~(-1) (leaf dry weight) h~(-1). An emphasis was placed on the genus Ficus, which is important in the region and occupies a wide range of ecological niches. Several species in the footprint of a nearby flux tower were also examined. Several palm species and an abundant fern (Cyclosorus parasiticus) emitted substantial amounts of isoprene, and probably accounted for observed daytime mean isoprene fluxes from the understory of a Hevea brasiliensis plantation of 1.0 and 0.15mgCm~(-2)h~(-1) during the wet and dry seasons, respectively. These measurements verify that both the forest floor and canopy in this region can be sources of isoprene. Monoterpene emissions exceeded 1.0 μg-Cg~(-1) (leaf dry weight) h~(-1) from only 4 of 38 species surveyed, including some Ficus species and H. brasiliensis. However most of the trees of the latter species were sparsely foliated due to dry season senescence, and emission factors are approximately an order of magnitude lower than those reported during the wet season. BVOC emission rates and physiology of many species are impacted by reduced moisture availability, especially Mangifera indica. South Asia is a region undergoing rapid landuse change and forest plantation establishment, with large increases in area of high BVOC-emitting species in the genera Bambusa, Elaeis, Eucalyptus, Hevea, Pinus, and Populus (among others). This could result in profound changes in atmospheric chemistry in these regions, for instance, terpene emissions from H. brasiliensis could increase wet season biogenic organic aerosol burdens by approximately a factor of 2 in the Xishuangbanna region. Increases in plantation area established with high isoprene emitting species, (e.g. Bambusa spp. and Eucalyptus spp.) are also projected for China and other parts of Southeast Asia in the near future. Thus, landcover change in South Asian landscapes is usually associated with large increases in BVOC flux with the potential to alter the atmospheric chemical composition and air quality over this rapidly developing region.
机译:关于南亚生物挥发性有机化合物(BVOCs)的排放,目前知之甚少。为了满足在区域大气化学模拟中估算BVOC排放量的需求,2003年2月在中华人民共和国南部云南省西双版纳热带生物园内及附近筛选了95种常见植物物种的BVOC排放量。叶片比色皿和分支袋外壳与便携式气相色谱仪,火焰电离,光电离和质谱检测结合使用,以识别和量化BVOC排放。被检查的44种物质中异戊二烯的释放速率超过20μgCg〜(-1)(叶干重)h〜(-1)。重点放在了榕属上,该属在该地区很重要,并且占据了广泛的生态位。还检查了附近助焊剂塔占地面积中的几种物种。几种棕榈树种和丰富的蕨类植物(Cyclosorus parasiticus)散发出大量的异戊二烯,可能是从巴西橡胶树人工林下层1.0和0.15mgCm〜(-2)h〜(-1)观察到的白天平均异戊二烯通量的原因。分别在潮湿和干燥的季节。这些测量结果证明,该地区的林地和冠层都可能是异戊二烯的来源。在所调查的38个物种中,只有4个物种中单萜的排放超过1.0μg-Cg〜(-1)(叶干重)h〜(-1),其中包括一些榕属物种和巴西橡胶树。但是,由于干旱季节的衰老,后一种树种的大多数树木稀疏地落叶,其排放因子比雨季报告的排放因子低大约一个数量级。 BVOC排放速率和许多物种的生理受到水分供应减少的影响,尤其是印度芒果。南亚是一个土地利用变化迅速,建立人工林的地区,班布萨(Bambusa),伊莱伊斯(Elais),尤加利(Eucalyptus),橡胶树(Hevea),松(Pinus)和胡杨(Populus)等属中的BVOC高排放物种面积大大增加。这可能会导致这些地区的大气化学发生深刻变化,例如,巴西双螺旋杆菌的萜烯排放可能使西双版纳地区的雨季生物有机气溶胶负荷增加约2倍。在不久的将来,中国和东南亚其他地区也计划增加具有高异戊二烯排放物种(例如Bambusa spp。和Eucalyptus spp。)的种植面积。因此,南亚景观的土地覆盖变化通常与BVOC通量的大量增加有关,并有可能改变这个快速发展地区的大气化学成分和空气质量。

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