Low-emitting urban forests: A taxonomic methodology for assigning isoprene and monoterpene emission rates

被引:213
作者
Benjamin, MT [1 ]
Sudol, M [1 ]
Bloch, L [1 ]
Winer, AM [1 ]
机构
[1] UNIV CALIF LOS ANGELES,SCH PUBL HLTH,ENVIRONM SCI & ENGN PROGRAM,LOS ANGELES,CA 90095
关键词
biogenic hydrocarbons; isoprene; monoterpenes; biogenic emission rates; taxonomic methodology; urban forests;
D O I
10.1016/1352-2310(95)00439-4
中图分类号
X [环境科学、安全科学];
学科分类号
08 [工学]; 0830 [环境科学与工程];
摘要
Large-scale tree planting programs have been proposed, and are being implemented, as a means of reducing energy demand, mitigating urban heat islands, and improving air quality. However, many species of trees emit highly photochemically reactive hydrocarbons and the rates of such emissions can vary by four orders of magnitude, depending upon the tree species. Thug, planting of high-emitting trees species on a massive scale has the potential to adversely affect air quality rather than leading to improvement. However, the selection of low-emitting trees is difficult because emission rates have been experimentally determined for only a limited number of species. The present study describes a methodology for assigning biogenic emission rates based on taxonomic relationships. Using this methodology, direct emission measurements from 124 tree and shrub species found in the California South Coast Air Basin (SoCAB) are used to assign emission rates to 253 other species found in the SoCAB but for which there are no measured emission rates. The combined listing of 377 species is ranked according to total (isoprene and monoterpenes) biogenic emission rate on an hourly basis. Although the ranking of trees developed here is specific to Southern California, the methodology described can be applied to other geographic areas to assist in the planting of low-emitting urban forests.
引用
收藏
页码:1437 / 1452
页数:16
相关论文
共 65 条
[1]
HYDROCARBON EMISSIONS FROM NATURAL VEGETATION IN CALIFORNIA SOUTH-COAST-AIR-BASIN [J].
AREY, J ;
CROWLEY, DE ;
CROWLEY, M ;
RESKETO, M ;
LESTER, J .
ATMOSPHERIC ENVIRONMENT, 1995, 29 (21) :2977-2988
[2]
ASHIZAWA W, 1992, ALLIANCES COMMUNITY
[3]
BAUML J, 1994, COMMUNICATION
[4]
BENJAMIN MT, 1996, IN PRESS ATMOSPHERIC
[5]
CARTER WPL, 1994, J AIR WASTE MANAGE, V44, P881
[6]
THE ROLE OF BIOGENIC HYDROCARBONS IN URBAN PHOTOCHEMICAL SMOG - ATLANTA AS A CASE-STUDY [J].
CHAMEIDES, WL ;
LINDSAY, RW ;
RICHARDSON, J ;
KIANG, CS .
SCIENCE, 1988, 241 (4872) :1473-1475
[7]
CHARLWOOD BV, 1991, ECOLOGICAL CHEM BIOC
[8]
HYDROCARBON EMISSIONS FROM 12 URBAN SHADE TREES OF THE LOS-ANGELES, CALIFORNIA, AIR BASIN [J].
CORCHNOY, SB ;
AREY, J ;
ATKINSON, R .
ATMOSPHERIC ENVIRONMENT PART B-URBAN ATMOSPHERE, 1992, 26 (03) :339-348
[9]
CRONN DR, 1982, TELLUS, V34, P159, DOI 10.1111/j.2153-3490.1982.tb01803.x
[10]
Cronquist A., 1988, The evolution and classification of flowering plants, V2d