Fire effects on California chaparral systems: an overview
暂无分享,去创建一个
[1] R. Schreyer,et al. THE DEPARTMENT OF AGRICULTURE. , 1901, Science.
[2] K. W. Parker. Plant Succession on Burned Chaparral Lands , 1944 .
[3] 野口 陽一. Influence of Some Watershed Uariables on a Major Flood , 1950 .
[4] D. Hedrick. Studies on the succession and manipulation of chamise brushlands in California , 1951 .
[5] H. Hellmers,et al. SOIL FERTILITY: A WATERSHED MANAGEMENT PROBLEM IN THE SAN GABRIEL MOUNTAINS OF SOUTHERN CALIFORNIA , 1955 .
[6] J. S. Horton,et al. Development of Vegetation after Fire in the Chamise Chaparral of Southern California , 1955 .
[7] R. Dasmann,et al. The Dynamics of Three Natural Populations of the Deer Odocoileus Hemionus Columbianus , 1957 .
[8] S. F. Cook. The Effects of Fire on a Population of Small Rodents , 1959 .
[9] Walter C. Kahn. Observations on the Effect of a Burn on a Population of Sceloporus Occidentilis , 1960 .
[10] H. Gratkowski. Heat as a factor in germination of seeds of Ceanothus velutinus var. laevigatus T. & G. , 1962 .
[11] C. Delwiche,et al. Nitrogen Fixation by Ceanothus. , 1965, Plant physiology.
[12] Leonard F. DeBano,et al. WATER REPELLENT SOILS AND THEIR RELATION TO WILDFIRE TEMPERATURES , 1966 .
[13] G. Lawrence. Ecology of Vertebrate Animals in Relation to Chaparral Fire in the Sierra Nevada Foothills , 1966 .
[14] Ted L. Hanes. Succession after Fire in the Chaparral of Southern California , 1971 .
[15] H. Lewis,et al. Patterns of Indian Burning in California: Ecology and Ethnohistory , 1973 .
[16] H. Biswell. 10 – Effects of Fire on Chaparral , 1974 .
[17] H. Lewis,et al. Patterns of Indian Burning in California: Ecology and Ethnohistory. , 1974 .
[18] Jon E. Keeley,et al. Seed Production, Seed Populations in Soil, and Seedling Production After Fire for Two Congeneric Pairs of Sprouting and Nonsprouting Chaparal Shrubs , 1977 .
[19] H. Lillywhite. Effects of chaparral conversion on small vertebrates in Southern California , 1977 .
[20] Robert Ornduff,et al. Terrestrial Vegetation of California. , 1977 .
[21] J. Keeley,et al. Reproduction of Chaparral Shrubs After Fire: A Comparison of Sprouting and Seeding Strategies , 1978 .
[22] C. Conrad,et al. THE EFFECT OF FIRE ON NUTRIENTS IN A CHAPARRAL ECOSYSTEM , 1978 .
[23] R. M. Rice,et al. Soil heating in chaparral fires: effects on soil properties, plant nutrients, erosion, and runoff , 1979 .
[24] S. Conard,et al. Physiological control of chamise shoot growth after fire. , 1980 .
[25] L. Debano. Water repellent soils: a state-of-the-art , 1981 .
[26] Lisle R. Green,et al. Burning by prescription in chaparral , 1981 .
[27] J. Keeley,et al. Postfire Succession of the Herbaceous Flora in Southern California Chaparral , 1981 .
[28] Jon E. Keeley,et al. Post fire regeneration of southern California chaparral , 1981 .
[29] P. Riggan,et al. Operational use of prescribed fire in southern California chaparral , 1982 .
[30] J. Keeley. Distribution of lightning and man-caused wildfires in California , 1982 .
[31] Gregory S. McMaster,et al. Vegetation Change in Response to Extreme Events: The Effect of a Short Interval between Fires in California Chaparral and Coastal Scrub , 1983 .
[32] C. H. Gimingham,et al. Mediterranean-Type Ecosystems: The Role of Nutrients , 1983 .
[33] R. Minnich. Fire Mosaics in Southern California and Northern Baja California , 1983, Science.
[34] J. Gray. Nutrient use by evergreen and deciduous shrubs in southern California. I: Community nutrient cycling and nutrient-use efficiency , 1983 .
[35] J. Keeley. Factors affecting germination of chaparral seeds , 1984 .
[36] W. Schlesinger. Decomposition of Chaparral Shrub Foliage , 1985 .
[37] R. N. Lockwood,et al. Deposition and processing of airborne nitrogen pollutants in Mediterranean-type ecosystems of southern California. , 1985, Environmental science & technology.
[38] Tomas J. Soderstrom,et al. Post fire recovery of chaparral along an elevational gradient in southern California , 1986 .
[39] P. Riggan,et al. Fire and chaparral management at the chaparral/urban interface , 1986 .
[40] Jon E. Keeley,et al. Resilience of mediterranean shrub communities to fires , 1986 .
[41] P. Riggan,et al. Nitrogen and sulfur emissions from the burning of forest products near large urban areas , 1987 .
[42] J. Keeley,et al. Role of fire in the germination of chaparral herbs and suffrutescents , 1987 .
[43] C. Black. Biomass, nitrogen, and phosphorus accumulation over a southern California fire cycle chronosequence , 1987 .
[44] W. G. Wells. The effects of fire on the generation of debris flows in southern California , 1987 .
[45] J. Keeley. Role of Fire in Seed Germination of Woody Taxa in California Chaparral , 1987 .
[46] G. Marion,et al. Potentially Available Nitrogen and Phosphorus Along a Chaparral Fire Cycle Chronosequence , 1988 .
[47] P. Riggan,et al. Enhanced biogenic emissions of nitric oxide and nitrous oxide following surface biomass burning , 1988 .
[48] D. I. Sebacher,et al. Particulate emissions from a mid‐latitude prescribed chaparral fire , 1988 .
[49] S. Keeley. The California chaparral : paradigms reexamined , 1989 .
[50] A. Dunn. The effects of prescribed burning on fire hazard in the chaparral: toward a new conceptual synthesis , 1989 .
[51] F. Weirich. The generation of turbidity currents by subaerial debris flows, California , 1989 .
[52] V. T. Parker. Maximizing vegetation response on management burns by identifying fire regimes , 1989 .
[53] David J. Strauss,et al. Do One Percent of the Forest Fires Cause Ninety-Nine Percent of the Damage? , 1989, Forest Science.
[54] P. Riggan,et al. Emissions of some trace gases from biomass fires , 1990 .
[55] R. Mees. Is Arson Associated with Severe Fire Weather in Southern California , 1991 .