[1] 李继泉,等. 环境因子对植物释放挥发性化合物的影响[J]. 植物学通报, 2001,18(6): 649-656.[2] 牟玉静,等. 落叶阔叶树异戊二烯排放研究[J]. 环境科学, 1999,18(1): 21-27.[3] 彭少麟,等. 高等植物中的萜类化合物及其在生态系统中的作用[J]. 生态学杂志, 2002,21(3): 33-38.[4] 王志辉,等. 北京地区植物VOCs排放速率的测定[J]. 环境科学, 2003,24(1): 7-12.[5] Guenther A, et al. A global model of natural volatile organic compound emissions[J]. Journal of Geophysical Research, 1995,101: 1345-1359.[6] Lamb B, et al. Evaluation of forest canopy models for estimating isoprene emissions[J]. J Geophys Res., 1996,101(D17): 22787-22797.[7] 魏德保. 森林与人类健康[M]. 北京: 科学出版社, 1981.[8] 杨小波,等. 城市生态学[M]. 北京: 科学出版社, 2001: 134-142.[9] Gregory E, et al. Reducing Air Pollution through Urban Forestry[C]. Sacramento, CA: The Proceedings of the 48th Annual Meeting of the California Forest Pest Council, 1999.[10] 崔骁勇,等. 植物源异戊二烯及其生态意义[J]. 应用生态学报, 2002,13(4): 505-509.[11] Freedman B. Environment Ecology: The Ecological Effects of pollution, Disturbance,and other stresses(2nd edition)[M]. New York: Academic Press, 1995.[12] Allison Steiner, et al. Past and present-day biogenic volatile organic compound emissions in East Asia[J]. Atmospheric Environment, 2002,36: 4895-4905.[13] Peterson Willy. A survey of Biogenic VOCs[J].Paint & Coatings Industry, 1999,15(5): 82-89.[14] Harley A, et al. Effect of light, temperature and canopy position on net photosynthesis and isoprene emission from sweetgum( Liquidambar styraciflua) leaves[J]. Tree Physiology, 1996,16: 25-32.[15] Helmig, D, et al. Vertical profiling and determination of landscape fluxes of biogenic non-methane hydrocarbons within the planetary boundary layer in the Peruvian Amazon[J]. Journal of Geophysical Research, 1998,103: 25519-25532.[16] Loreto F. Emission of isoprenoids by plant: Their role in atmospheric chemistry, response to the environment, and biochemical pathyways[J]. J Environ Pathol Tax One, 1997,16(2&3): 119-124.[17] John V H, et al. Modelling changes in VOC emission in response to climate change in the continental United States[J].Global Change Biology, 1999,5: 791-806[18] Klinger L F, et al. Assessment of volatile organic compound emissions from ecosystems of China[J]. Journal of Geophysical Reseach, 2002,107(D21): 4603.[19] Lerdau Manuel, et al. Plant production and emission of volatile organic compounds[J].Bioscience, 1997,47(6):[20] Crutzen P J. G1obal problems of atmospheric chemistry—The story of mains impact on atmospheric ozone[M]// Moller D. Atmospheric Environmental Reseach—Critical Decisions Between Technological progress and preservation of Nature. Berlin:Springer-Verlag, 1999: 1-30.[21] 朱根逸. 环境质量标准总论[M]. 北京: 中国标准出版社, 1986: 130.[22] Mckeen S A, et al. A study of the Dependence of Rural Ozone on Ozone precursors in the Eastern Unites States[J]. J Geophys Res., 1991,96(D8): 15377-15394.[23] 彭立新,等. 天然源排放碳氢化合物对广州地区光化学污染的影响[J]. 中国环境科学, 2003,24(1): 8-15.[24] 阿斯娅•克里木,等. 光化学烟雾大气污染的形成机理[J]. 新疆师范大学学报(自然科学版), 2002,21(3): 26-30.[25] 张远航,等. 中国城市光化学烟雾污染研究[J]. 北京大学学报(自然科学版), 1998,34(2-3): 392-400.[26] Trainer M, et al. Models and observations of the impact of natural hydrocarbons on rural ozone[J].Nature, 1987,329:705-707.[27] Chameides W L, et al. The role of Biogenic Hydrocarbons in Urban Photochemical Smog: Atlanta as a case study[J]. Reports, 1988.[28] Sebrands J G, et al. Volatile organic compound emission rates from mixed deciduous and coniferous forests in Northern Wisconsin, USA[J]. Atmos Environ., 1999,33: 2527-2536.[29] Logan B A, et al. Biochemistry and physiology of foliar isoprene production[J]. Trends Plant Sci. 2000(5): 477-481.[30] Gershenzon J, et al. Terpenoid biosynthesis:the basic pathway and formation of monoterpenes, seaquiterpenes and diterpenes[M]// Moore T. Lipid Metobolism in Plants. Boca Raton(FL): CRC Press, 1993: 333-388.[31] Owen S M, et al. Light dependency of VOC emission from selected Mediterranean plant species[J]. Atmospheric Environment, 2002,36: 3147-3159.[32] Beijiamin M. Low-emitting urban forests: A taxonomic methodology for assessomg isoprene and monoterpene emission rates[J]. Atmospheric Environment, 1996,30: 1437-1452.[33] Guenther A, et al. Estimates of regional natural volatile organic compound fluxs from enclosure and ambient measurements[J]. J Geophys Res., 1996,10(D1): 1345-1359.[34] John F, et al. Plant species composition, calculated leaf masses and estimated biogenic emissions of urban landscape types from a field survey in Phoenix, Arizona[J]. Landscape and Urban Planning, 2001,53: 123-134.[35] Martin M J, et al. A Process-based model to predict the effects of climatic change on leaf isoprene emission rates[J]. Ecological Modeling, 2000,131: 161-174.[36] Christoher D, et al. Reassessment of biogenic volatile organic compound emissions in the Atlanta area[J]. Atmospheric Environment, 1995,29(13): 1569-1578[37] Guenther A, et al. Natural volatile organic compound emission rate estimates for U.S. woodland landscape[J]. Atmospheric Environment, 1994,28(6): 1197-1210.[38] Heling D, et al. Biogenic volatile organic compound emissions: I. Identidications from three continental sites in the U.S.[J]. Chemosphere, 1999,38(9): 2163-2204.[39] Otter L B, et al. Seasonal and spatial variations in biogenic hydrocarbon emissions from Southern African savannas and woodlands[J]. Atmosperic Environment, 2002,36: 4265-4275.[40] Min Shao, et al. Biogenic VOCs emissions and its impact on ozone formation in major cities of China[J]. J Environ Sci Health, 2000,A35(10): 1941-1950.[41] Rasmussen R, et al. Volatile organic material of plant origin in the atmosphere[J]. Proceedings of the National Academy of Science, 1965,53: 215-220.[42] Michael T, et al. Estimation the ozone-forming potential of urban tree and shrubs[J]. Atmospheric Environment, 1998,32(1): 53-68.[43] Tyson B, et al. Volatilization of terpenes from Salvia mellifera[J]. Nature, 1974,252: 119-120.[44] 李庆军,等. 中国不同气候带植被挥发性有机化合物通量与生态系统演替的相关性[J]. 植物学报, 2001,43(10): 1065-1 071.[45] Klinger L F, et al. Patterns in volatile organic compound emissions along a savanna-rainforest gradient in central Africa[J]. Journal of Geophysical Research, 1998,103(D1): 1443-1454.[46] Guenther A, et al. Natural Emission of Non-Methane Volatile Organic Compounds, Carbon Monoxide, and Oxides of Nitrogen from North American[J]. Atmospheric Environment, 2000,34: 2205-2230. |