Environmental effects of aluminium
- 1 March 1990
- journal article
- Published by Springer Nature in Environmental Geochemistry and Health
- Vol. 12 (1-2) , 17-27
- https://doi.org/10.1007/bf01734045
Abstract
Aluminium (Al), when present in high concentrations, has for long been recognised as a toxic agent to aquatic freshwater organisms,i.e. downstream industrial point sources of Al-rich process water. Today the environmental effects of aluminium are mainly a result of acidic precipitation; acidification of catchments leads to increased Al- concentrations in soil solution and freshwaters. Large parts of both the aquatic and terrestrial ecosystems are affected. In the aquatic environment, aluminium acts as a toxic agent on gill-breathing animals such as fish and invertebrates, by causing loss of plasma- and haemolymph ions leading to osmoregulatory failure. In fish, the inorganic (labile) monomeric species of aluminium reduce the activities of gill enzymes important in the active uptake of ions. Aluminium seems also to accumulate in freshwater invertebrates. Dietary organically complexed aluminium, maybe in synergistic effects with other contaminants, may easily be absorbed and interfere with important metabolic processes in mammals and birds. The mycorrhiza and fine root systems of terrestrial plants are adversely affected by high levels of inorganic monomeric aluminium. As in the animals, aluminium seems to have its primary effect on enzyme systems important for the uptake of nutrients. Aluminium can accumulate in plants. Aluminium contaminated invertebrates and plants might thus be a link for aluminium to enter into terrestrial food chains.Keywords
This publication has 124 references indexed in Scilit:
- Leaching of metals from forest soils as influenced by tree species and managementForest Ecology and Management, 1987
- Acidification and chemical properties of fagus sylvatica l forest soilsScandinavian Journal of Forest Research, 1987
- The effects of acid deposition on benthic animals in lakes and streamsCellular and Molecular Life Sciences, 1986
- Exchangeable Aluminium as a Basis for Lime Requirement Determinations in Acid Forest SoilsActa Agriculturae Scandinavica, 1986
- Variation in tolerance to low environmental pH by the crayfish Orconectes rusticus, O. propinquus, and Cambarus robustusCanadian Journal of Zoology, 1985
- Effects of aluminum and acid on calcium uptake by the crayfishOrconectes virilisArchives of Environmental Contamination and Toxicology, 1985
- Reduced carbonic anhydrase and Na−K-ATPase activity in gills of salmonids exposed to aluminium-containing acid waterCellular and Molecular Life Sciences, 1984
- Gill surface interaction model for trace-metal toxicity to fishes: role of complexation, pH, and water hardnessEnvironmental Science & Technology, 1983
- Osteomalacia and chronic renal failure.Journal of Clinical Pathology, 1981
- Parathyroid hormone-mediated aluminum deposition and egress in the ratKidney International, 1980