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Effects of VOCs on herbaceous plants in an open-top chamber experiment

pmid: 12713933
A selection of herbaceous plants representing the ground flora around a typical chemical installation in the UK was exposed continuously for 7 weeks to a mixture of six VOCs (acetone, acetonitrile, dichloromethane, ethanol, methyl t-butyl ether and toluene) in open-top chambers. Exposure concentrations were based on predictions of atmospheric dispersion from a single source, at a distance of approximately 2 km. The effects of continuous exposure, representing a worst-case, were measured in terms of uncontrolled water loss from leaves, leaf wettability, chlorophyll content and fluorescence, dry matter production and detailed observations of changes in plant growth and phenology. There were significant effects of VOC exposure on seed production, leaf water content and photosynthetic efficiency in some plant species. Such effects may be detectable in vegetation close to major industrial point sources of VOCs, or as a result of an accidental release of material during manufacture or transport. Some of the species tested e.g. birdsfoot trefoil (Lotus corniculatus L.) seem to be promising as potential bioindicators for VOCs, but there may be other even more sensitive species waiting to be discovered. However, the most obvious and conveniently measured response to VOCexposure in the birdsfoot trefoil (premature senescence i.e. advanced timing of seed pod production) could easily be confused in the field with climatic influences. It is also uncertain at this stage whether any of the effects observed would lead to longer term ecological changes in natural plant communities, through biased competition between sensitive and more tolerant species.
- UK Centre for Ecology & Hydrology United Kingdom
- UK Centre for Ecology & Hydrology United Kingdom
- ASTRAZENECA UK LIMITED United Kingdom
- Plymouth University United Kingdom
- AstraZeneca (United Kingdom) United Kingdom
Chlorophyll, Methyl Ethers, Air Pollutants, Methylene Chloride, Acetonitriles, Ethanol, Plant Development, Flowers, Plants, Hydrocarbons, Aromatic, Acetone, Plant Leaves, Environmental Monitoring, Toluene
Chlorophyll, Methyl Ethers, Air Pollutants, Methylene Chloride, Acetonitriles, Ethanol, Plant Development, Flowers, Plants, Hydrocarbons, Aromatic, Acetone, Plant Leaves, Environmental Monitoring, Toluene
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