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Trace Metal Uptake and Accumulation in Trees as Affected by Environmental Pollution

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Effects of Atmospheric Pollutants on Forests, Wetlands and Agricultural Ecosystems

Part of the book series: NATO ASI Series ((ASIG,volume 16))

Abstract

Regional-scale increases in combustion of fossil fuels, trace metal deposition profiles in lake sediments, and metal accumulation patterns in forest soils suggest that forests have been exposed to increasing levels of trace metals in recent decades. Such increases are of concern because metals such as Al, Cd, Cu, Fe, Mn, Ni and Zn typically have long residence times in soil-plant systems and can adversely affect plant physiological and litter decomposition processes at sufficiently high concentrations. Chronic effects of these metals at present regional concentrations are largely unknown, and their increased availability to trees can occur through multiple pathways, most of which are poorly characterized. Our surveys of changes in tree-ring chemistry of conifers show that increased tissue concentrations of some metals are quite similar to temporal increases in local and regional fossil fuel combustion, suggesting a relationship between the two. Highest metal concentrations in tree rings were found near a power plant and at high-elevation sites remote from point sources. Levels of many trace metals, particularly Al, Fe, and Mn, in tree phloem tissues are at or exceed levels reported as toxic thresholds in other plant species. In reviewing the literature, it is clear that toxic thresholds are strongly influenced by soil characteristics, plant species, and plant part. Thus, until more information is obtained on toxic thresholds for individual and combined levels of trace metals on plant physiological and forest ecosystem-level processes, their role, if any, in forest declines must be considered conjectural.

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References

  • Adams F, Moore BL (1983) Chemical factors affecting root growth in subsoil horizons of coastal piain soils. Soil Sci Soc Am J 47: 99–102

    Article  CAS  Google Scholar 

  • Baes CF III, McLaughlin SB (1984) Trace elements in tree rings: evidence of recent and historical air pollution. Science 224: 494–497

    Article  PubMed  CAS  Google Scholar 

  • Baes CF III, McLaughlin SB (1986) Mu1tielernental analysis of tree rings: a survey of coniferous trees in the Great Smoky Mountains National Park. ORNL-6155, Oak Ridge National Laboratory, Oak Ridge, TN

    Google Scholar 

  • Baes CF III, McLaughlin SB, Hagan TA (1984) Multielemental analysis of tree rings: temporal accumulation patterns and relationships with air pollution. In: Davis DD, Millen AA, Dochinger L (eds) Air pollution and the produetivity of the forest, Proceedings of the Symposium, October 4–5, 1983, Washington, DC, p 273

    Google Scholar 

  • Bowen HJM (1979) Environmental chemistry of the elements. Academic Press, New York, p 333

    Google Scholar 

  • Chaney WR, Kelly JM, Strickland RC (1978) Influence of cadmium and zinc on carbon dioxide evolution from litter and soil from a black oak forest. J Environ Qual 7: 115–119

    Article  CAS  Google Scholar 

  • Cronan CS, Schofield CL (1979) Aluminum leaching response to acid precipitation effects on high elevation watersheds in the Northeast. Science 204: 304–305

    Article  PubMed  CAS  Google Scholar 

  • David MB, Driscoll CT (1984) Aluminum speciation and equilibria in soil solutions of a haplorthod in the Adirondack Mountains (New York, U.S.A.). Geoderma 33: 297–318

    Article  CAS  Google Scholar 

  • Embleton TW, Jones WW, Platt RG (1976) Leaf analysis as a guide to citrus fertilization. In: Reisenauer HM (ed) Soil and plant-tissue testing in California. University of California, Division of Agricultural Science Bulletin 1879, p 4

    Google Scholar 

  • Foy CD (1971) Effects of aluminum on plant growth. In: Carson EW (ed) The Plant Root and its Environment. Proceedings of an institute, sponsored by the Southern Regional Education Board, held at Virginia Polytechnic Institute and State University, July 5–16, 1971, University Press of Virginia, Charlottsville, chapter 20

    Google Scholar 

  • Foy CD, Chaney RL, White MC (1978) The physiology of metal toxicity in plants. Ann Rev Plant Physiol 46: 511–566

    Article  Google Scholar 

  • Friedland AJ, Johnson AH, Siccama TG (1984) Trace metal content of the forest floor in the Green Mountains of Vermont: spatial and temporal patterns. Water Air Soil Pollut 21: 161–170

    Article  CAS  Google Scholar 

  • Gough LP, Shacklette HT, Case AA (1979) Element concentrations toxic to plants, animals, and man. USGS Bulletin 1466, U.S. Government Printing Office, Washington, DC

    Google Scholar 

  • Gschwandtner G, Gschwandtner KC, Eldridge K (1984) Historic emissions of sulfur and nitrogen oxides in the United States from 1900 to 1980. Pacific Environmental Services, Ine, Durharn, NC

    Google Scholar 

  • Hanson DW, Norton SA, Williams JS (1982) Modern and paleolimnological evidence for accelerated leaching and metal accumulation in soils in New England, caused by atmospheric deposition. Water Air Soil Pollut 18: 227–239

    Article  CAS  Google Scholar 

  • Hütterman A (in press) The effects of acid deposition on the physiology of the forest ecosystem. Experientia

    Google Scholar 

  • Hutchinson TC (1980) Impact of heavy metals on terrestrial and aquatic ecosystems. In: Miller PR (ed) Effects of air pollutants on mediterranean and temperate forest ecosystems. USDA Forest Service Report PSW-43, p 158

    Google Scholar 

  • Jackson DR, Watson AP (1977) Disruption of nutrient pools and transport of heavy metals in a forested watershed near a lead smelter. J Environ Qual 6: 331–338

    Article  CAS  Google Scholar 

  • Johnson AH, Siccama TG, Friedland AJ (1982) Spatial and temporal patterns of lead accumulation in the forest floor in the northeastern United States. J Environ Qual 11: 557–580

    Article  Google Scholar 

  • Kirkpatrick HC, Thompson JM, Edwards JH (1975) Effects of aluminum concentration on growth and chemical composition of peach seedlings. Hortscience 10: 132–134

    CAS  Google Scholar 

  • Lindberg SE, Harriss RC, Turner RR (1982) Atmospheric deposition of metals to forest vegetation. Science 215: 1609–1611

    Article  PubMed  CAS  Google Scholar 

  • McCormick LH, Steiner KC (1978) Variation in aluminum tolerance among six genera of trees. For Sci 24: 565–568

    Google Scholar 

  • McLaughlin SB (1985) Air pollution effects on forests: a critical review. J Air Pollut Control Assoc 35: 512–534

    CAS  Google Scholar 

  • National Research Council (1979) Zinc. University Park Press, Baltimore, MD

    Google Scholar 

  • Norton SA, Hanson DW, Campana RJ (1980) The impact of acidic precipitation and heavy metals on soils in relation to forest ecosystems. In: Miller PR (ed) Effects of air pollutants on mediterranean and temperate forest ecosystems. USDA Forest Service Report PSW-43, p 152

    Google Scholar 

  • Pavan MA, Bingham FT, Pratt PF (1982) Toxicity of aluminum to coffee in Utisols and Oxisols amended with CaCO3, MgCO3 and CaSO4.H2O. Soil Sci Soc Am J 46: 1201–1207

    Article  CAS  Google Scholar 

  • Raisch W, Zöttl HW (1983) Heavy metal distribution in spruce stands in the Barholde Watershed (Southern Black Forest). Mitt Dtsch Bodenkundl Ges 38: 399–406

    Google Scholar 

  • Rost-Siebert K (1984) Aluminum toxicity in seedlings of Norway spruce (Picea abies Karst.) and beech (Fagus silvatica L.). In: Proceedings of the Workshop on Aluminum Toxicity to Trees. Uppsala, Sweden, May 14–16, 1984

    Google Scholar 

  • Schier GA (1985) Response of red spruce and baisam fir seedlings to aluminum toxicity in nutrient solutions. Can J For Res 15: 29–33

    Article  CAS  Google Scholar 

  • Soane BD, Saunder DH (1959) Nickel and chromium toxicity of serpentine soils in southern Rhodesia. Soil Sci 88: 322–330

    Article  CAS  Google Scholar 

  • Sommers LE (1980) Toxic metals in agricultural crops. In: Sludge - Health Risks of Land Application. Ann Arbor Science, Ann Arbor, MI, p 105

    Google Scholar 

  • Steiner KC, Barbour JR, McCormick LH (1984) Response of Populus hybrids to aluminum toxicity. For Sci 30: 404–410

    Google Scholar 

  • Symeonides C (1979) Tree-ring analysis for tracing the history of pollution: application to a study in northern Sweden. J Environ Qual 8: 482–486

    Article  CAS  Google Scholar 

  • Turner RR, Lindberg SE, Coe JM (1985) Comparative analysis of trace metal accumulation in forest ecosystems. Heavy metals in the environment, Vol 1, CEP Consultants, Edinburgh, p 356–358

    Google Scholar 

  • Tyler G (1981) Leaching of metals from the A-horizon of a spruce forest. Water Air Soil Pollut 15: 353–369

    Article  CAS  Google Scholar 

  • Ulrich B, Mayer R, Khanna TK (1980) Chemical changes due to acid precipitation in a loess-derived soil in central Europe. Soil Sci 130: 193–199

    Article  CAS  Google Scholar 

  • U.S. Department of Commerce (1982) Tape Deck 1440, Airways surface observations. National Oceanic and Atmospheric Administration, Ashville, NC

    Google Scholar 

  • Van Hook RI, Harris WF, Henderson GS (1977) Cadmium, lead, and zinc distributions and cycling in a mixed deciduous forest. Ambio 6: 281–286

    Google Scholar 

  • Vaughan BE, Abel KH, Cataldo DA, Haies IM, Hane CE, Rancitelli LA, Routson RC, Wildung RE, Wolf EG (1975) Review of potential impact on health and environmental guality from metals entering the environment as a result of coal utilization. Battelle-Pacific Northwest Laboratories, Richland, WA

    Google Scholar 

  • Whitby LM, Hutchinson TC (1974) Heavy metal pollution in the Sudbury mining and smelting region of Canada. II. Soil toxicity tests. Environ Conserv 1: 191–200

    Article  CAS  Google Scholar 

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© 1987 Springer-Verlag Berlin Heidelberg

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Baes, C.F., McLaughlin, S.B. (1987). Trace Metal Uptake and Accumulation in Trees as Affected by Environmental Pollution. In: Hutchinson, T.C., Meema, K.M. (eds) Effects of Atmospheric Pollutants on Forests, Wetlands and Agricultural Ecosystems. NATO ASI Series, vol 16. Springer, Berlin, Heidelberg. https://doi.org/10.1007/978-3-642-70874-9_22

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  • DOI: https://doi.org/10.1007/978-3-642-70874-9_22

  • Publisher Name: Springer, Berlin, Heidelberg

  • Print ISBN: 978-3-642-70876-3

  • Online ISBN: 978-3-642-70874-9

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