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Biophysical Feedbacks and the Risks of Desertification

Datos Bibliográficos

ID8374652
AutoresJonathan D Phillips (0000-0003-0283-6023, East Carolina University, autor de correspondencia)
Año1993
Volumen83
Número4
Páginas630-640
Fecha de publicación1993-12-01
Peer ReviewedSí
Open AccessNo
TipoARTICLE
RevistaAnnals of the Association of American Geographers (JOURNAL)
Identificadores de la revistaISSN: 0004-5608 • E-ISSN: 1467-8306
EditorialInforma UK Limited (PUBLISHER • GB)
DOI10.1111/j.1467-8306.1993.tb01957.x
OpenAlexW2076636754
IdiomaEN
Citas recibidas4
Referencias citadas44

The widespread distribution of irreversible degradation in dryland environments (desertification), along with recent studies of complex earth-surface systems, suggests that desertification may be the result of inherent biophysical feedbacks in dryland systems. This notion is tested by applying qualitative stability analysis of partially-specified systems. This analysis shows that a well-known model of biophysical feedbacks in dryland ecosystems is inherently unstable. Furthermore, the two-way relationships between seven key components in desertification (vegetation, albedo, temperature, precipitation, soil moisture, wind erosion, and water erosion) result in inherent instability. Stability theory also shows that any analysis of process-response or cause-effect relationships including those seven components is more likely than not to reveal an unstable relationship. The latter occur both in the form of mutually-reinforcing links which result in the growth and persistence of disturbances and competitive exclusion relationships which cause one variable to be favored. The inherent instability in the dryland environment means that perturbations such as drought or overgrazing will persist or grow, leading to desertification

Albedo (alchemy) · Biology · Desertification · Geography · Grazing · Land degradation · Land use · Meteorology · Overgrazing · Precipitation · Vegetation (pathology) · Aeolian processes and effects · Ecology · Ecology and Vegetation Dynamics Studies · Ecosystem dynamics and resilience · Environmental Science

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    Open Access•Andrew Warren, Andrew David Warren et al.•Geographical Journal•2001

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    Asher Siebert•Weather, Climate, and Society•2016

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    Open Access•Per Lindskog, Anna Tengberg•GeoJournal•1994

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    Open Access•Alexis Dinno•Social Science & Medicine•2007

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Obras citantes distintas4
Citas por año0,13
Intervalo de citas1994 - 2016 (23)
Velocidad de citaciónhistorical
Altamente citadoNo
Tipos de citaNeutras: 3
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