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The criteria currently used to determine the extent of novel forest decline areleaf loss andyellowing of leaves. However, these criteria have only a limited value for indicating damage of woody trees, especially the early stages. Therefore, physiological-biochemical parameters will be useful to measure the extent of forest decline. Results from several natural spruce stands indicate that in needles with early signs of damage and needles with severe damage PEPC activity is significantly higher than in needles of healthy plants. Therefore, PEPC activity can reveal beginning damage and may be used as abiochemical indicator for damage assessments of spruce. The influence of air pollutants on PEPC activity in spruce needles was measured in fumigation chambers and open-top chambers; PEPC activity was shown to be affected by long-term exposition only. 相似文献
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Application of fuzzy models to assess susceptibility to droughts from a socio-economic perspective 总被引:1,自引:1,他引:0
Lilibeth A. Acosta-Michlik K. S. Kavi Kumar Richard J. T. Klein Sabine Campe 《Regional Environmental Change》2008,8(4):151-160
By combining the concepts of environmental stress, state susceptibility and environmental crisis, “Security Diagram” (SD)
provides a quantitative approach to assessing environmental change and human security. The SD is a tool that clearly presents
in a diagram the security situation of a population or region affected by a particular environmental crisis. Its underlying
concept emphasises that the higher the level of environmental stress and socio-economic susceptibility, the higher the probability
of the occurrence of crisis. Focusing on drought, this study analyses the susceptibility of case study regions in India, Portugal,
and Russia from a socio-economic perspective. A conceptual framework of socio-economic susceptibility is developed based on
the economic development theories of modernisation and dependency. Fuzzy set theory is used to generate susceptibility indices
from a range of national and sub-national indicators, including financial resources, agricultural dependency and infrastructure
development (for economic susceptibility), and health condition, educational attainment and gender inequality (for social
susceptibility). Results indicate that socio-economic susceptibility over the period 1980–1995 was highest in India, followed
by Russia and (since 1989) lowest in Portugal. Globalisation is likely to contribute to changes in the level of socio-economic
susceptibility over time. Moreover, specific social and economic structures unique in each country (e.g., the role of women
in society in India, the socialist legacy in Russia) may explain differences in susceptibility between the case study regions.
相似文献
Sabine CampeEmail: |
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Sabine Braun Christian Schindler 《Environmental pollution (Barking, Essex : 1987)》2010,158(9):2954-2963
For a quantitative estimate of the ozone effect on vegetation reliable models for ozone uptake through the stomata are needed. Because of the analogy of ozone uptake and transpiration it is possible to utilize measurements of water loss such as sap flow for quantification of ozone uptake. This technique was applied in three beech (Fagus sylvatica) stands in Switzerland. A canopy conductance was calculated from sap flow velocity and normalized to values between 0 and 1. It represents mainly stomatal conductance as the boundary layer resistance in forests is usually small. Based on this relative conductance, stomatal functions to describe the dependence on light, temperature, vapour pressure deficit and soil moisture were derived using multivariate nonlinear regression. These functions were validated by comparison with conductance values directly estimated from sap flow. The results corroborate the current flux parameterization for beech used in the DO3SE model. 相似文献
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Rocheleau S Kuperman RG Martel M Paquet L Bardai G Wong S Sarrazin M Dodard S Gong P Hawari J Checkai RT Sunahara GI 《Chemosphere》2006,62(4):545-558
The toxicities of 2,4,6-trinitrotoluene (TNT), 1,3,5-trinitrobenzene (TNB), 2,4-dinitrotoluene (2,4-DNT), and 2,6-dinitrotoluene (2,6-DNT) to terrestrial plants alfalfa (Medicago sativa L.), Japanese millet (Echinochloa crusgalli L.), and perennial ryegrass (Lolium perenne L.) were determined in Sassafras sandy loam soil using seedling emergence, fresh shoot, and dry mass measurement endpoints. A 13-week weathering and aging of energetic materials in soils, which included wetting and drying cycles, and exposure to sunlight of individual soil treatments, was incorporated into the study design to better reflect the soil exposure conditions in the field than toxicity determinations in freshly amended soils. Definitive toxicity tests showed that dinitrotoluenes were more phytotoxic for all plant species in freshly amended treatments based on EC20 values for dry shoot ranging from 3 to 24mgkg(-1) compared with values for TNB or TNT ranging from 43 to 62mgkg(-1). Weathering and aging of energetic materials (EMs) in soil significantly decreased the toxicity of TNT, TNB or 2,6-DNT to Japanese millet or ryegrass based on seedling emergence, but significantly increased the toxicity of all four EMs to all three plant species based on shoot growth. Exposure of the three plant species to relatively low concentrations of the four compounds initially stimulated plant growth before the onset of inhibition at greater concentrations (hormesis). 相似文献