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The pH dependence of SO2 damage to lichens

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Summary

In order to determine the influence of the hydrogen-ion concentration on the damage exerted to lichens by sulfur dioxide gas, thalli of the species Hypogymnia physodes and Xanthoria parietina were submerged in buffer solutions of pH 2 to pH 8 and subsequently exposed to SO2 gas. Net photosynthesis was employed as a criterion of vitality.

The degree of damage to the lichens after exposure to 4 mg of SO2/m3 air for 14 hrs is dependent on the pH of the buffer solutions. Hypogymnia physodes shows the least damage at pH 7, Xanthoria parietina at pH 5 to pH 7. The degree of damage increases with increasing acidity. After exposure to SO2 gas at pH 3 no apparent photosynthesis is achieved.

The different degrees of impairment are due to the fact that the concentration of the toxic products, resulting from the reaction of SO2 and water, is dependent on the pH value.

The mere shift of the pH into the strong acid range of pH 3 and pH 2 damages the lichens with Xanthoria parietina being more seriously damaged than Hypogymnia physodes. Basicity, however, is already harmful to the lichens under test in the low range of pH 8. Here Xanthoria parietina is less affected than Hypogymnia physodes.

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References

  • Baddeley, M. S., Ferry, B. W., Finegan, E. J.: A new method of measuring lichen respiration: Response of selected species to temperature, pH and sulphur dioxide. Lichenologist 5, 18–25 (1971)

    Google Scholar 

  • Beschel, R.: Flechtenvereine der Städte, Stadtflechten und ihr Wachstum. Ber. Naturwiss.-Med. Vereins Innsbruck 52, 1–158 (1958)

    Google Scholar 

  • Brightman, F. H.: Some factors influencing lichen growth in towns. Lichenologist 1, 104–108 (1959)

    Google Scholar 

  • Coker, P. D.: The effects of sulfur dioxide pollution on bark epiphytes. Trans. Brit. Bryol. Soc. 5, 341–347 (1967)

    Google Scholar 

  • Gilbert, O. L.: Lichens as indicators of air pollution in the Tyne Valley, p. 35–47. In: Ecology and the industrial society, G. T. Goodman et al., eds. Oxford: Blackwell 1965

    Google Scholar 

  • Gilbert, O. L.: Bryophytes as indicators of air pollution in the Tyne Valley. New Phytol. 67, 15–30 (1968)

    Google Scholar 

  • Gilbert, O. L.: Further studies on the effect of sulphur dioxide on lichens and bryophytes. New Phytol. 69, 605–627 (1970)

    Google Scholar 

  • Hill, D. J.: Experimental study of the effect of sulfide on lichens with reference to atmospheric pollution. New Phytol. 70, 831–836 (1971)

    Google Scholar 

  • Johnsen, I., Søchting, U.: Influence of air pollution on the epiphytic lichen vegetation and bark properties of deciduous trees in the Copenhagen area. Oikos 24, 344–351 (1973)

    Google Scholar 

  • Lange, O. L., Ziegler, H.: Der Schwermetallgehalt von Flechten aus dem Acarosporetum sinopicae auf Erzschlackenhalden des Harzes. I. Eisen und Kupfer. Mitt. flor.-soz. Arb.-Gemeinsch., N.F. 10, 156–183 (1963)

    Google Scholar 

  • Pišút, I.: Bemerkungen zur Wirkung der Exhalationsprodukte auf die Flechtenvegetation in der Umgebung von Rudnany (Nordostslowakei). Biológia 17, 481–494 (1962)

    Google Scholar 

  • Puckett, K. J., Nieboer, E., Flora, W. P., Richardson, D. H. S.: Sulphur dioxide: Its effect on photosynthetic 14C fixation in lichens and suggested mechanisms of phytotoxicity. New Phytol. 72, 141–154 (1973)

    Google Scholar 

  • Rao, D. N., LeBlanc, F.: Influence of an iron sintering plant on corticolous epiphytes in Wawa, Ontario. Bryologist 70, 141–157 (1967)

    Google Scholar 

  • Schmidt, M.: Fundamental chemistry of sulfur dioxide removal and subsequent recovery via aqueous scrubbing. Int. J. Sulfur Chem., Part B 7, 11–19 (1972)

    Google Scholar 

  • Seel, F.: Grundlagen der Analytischen Chemie. Weinheim: Verlag Chemie 1967

    Google Scholar 

  • Skye, E.: Lichens and air pollution: A study of cryptogamic epiphytes and environment in the Stockholm region. Acta Phytogeogr. Suec. 52, 1–123 (1968)

    Google Scholar 

  • Syers, J. K., Birnie, A. C., Mitchell, B. D.: The calcium oxalate content of some lichens growing on limestone. Lichenologist 3, 409–414 (1967)

    Google Scholar 

  • Türk, R., Wirth, V., Lange, O. L.: CO2-Gaswechsel-Untersuchungen zur SO2-Resistenz von Flechten. Oecologia (Berl.) 15, 33–64 (1974)

    Google Scholar 

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Türk, R., Wirth, V. The pH dependence of SO2 damage to lichens. Oecologia 19, 285–291 (1975). https://doi.org/10.1007/BF00348104

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