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Effects of Weak Acids on Canopy Leaching and Uptake Processes in a Coniferous-Deciduous Mixed Evergreen Forest in Central-South China

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Abstract

The effects of Weak acids (WA) on the canopy leaching and uptake processes are evaluated by comparing the leached base cations or the absorbed protons while including and excluding WA, e.g. the WA-included method and the WA-excluded method. The seasonal WA throughfall flux is even larger than twice the bulk precipitation flux except summer, which not only partly agrees with the conclusion that the total deposition of WA equals twice the bulk or dry deposition flux in European Intensive Monitoring plots (level II), but also indicates the significant canopy leaching of WA in Shaoshan forest. The seasonal canopy leaching of base cations in association with WA accounts for 6–30% of the total base cations in throughfall, with an annual mean of 23%, which is slightly higher than the 15% at the Speulder forest in The Netherlands. The canopy exchange capacity of H+ to NH4 + is closed to 6.0 while neglecting the WA exchange, which probably supports the assumption that the exchange capacity of H+ is six times that of NH4 +. Simultaneously, we suggest that the WA is competitive to a certain extent with protons to leach base cations of plant tissues during the canopy exchange processes.

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References

  1. Balestrini, R. and Tagliaferri, A.: 2001, ‘Atmospheric deposition and canopy exchange processes in alpine forest ecosystems (Northern Italy)’, Atmos. Environ. 36, 6421–6433.

    Article  Google Scholar 

  2. Berger, T. W., Eagar, C., Likens, G. E. and Stingeder, G.: 2001, ‘Effects of calcium and aluminum chloride additions on foliar and throughfall chemistry in sugar maples’, Forest. Ecol. Manag. 149, 75–90.

    Article  Google Scholar 

  3. Boyce, R. L., Friedland, A. J., Page, C. C. and Poulson, S.: 1996, ‘Direct canopy uptake from 15N-labeled wet deposition by mature red spruce’, Can. J. For. Res. 26, 1539–1547.

    Article  Google Scholar 

  4. Bredemeier, M.: 1988, ‘Forest canopy transformation of atmospheric deposition’, Water Air Soil Pollut. 40, 122–138.

    Google Scholar 

  5. Brown, A. D. and Sposito, G.: 1991, ‘Acid-base chemistry of dissolved organic matter in aqueous leaf extracts: Application to organic acids in throughfall’, J. Environ. Qual. 20, 839–845.

    Article  CAS  Google Scholar 

  6. Campo, J., Manuel, J. M., Vícotr, J., Jaramollo and Angelina Martinez Yrizar: 2000, ‘Calcium, potassium and magnesium cycling in a Mexican tropical dry forest ecosystem’, Biogeochemistry 49, 21–36.

    Article  CAS  Google Scholar 

  7. Cronan, C. S. and Reiners, W. A.: 1983, ‘Canopy processes of acid precipitation by coniferous and hardwood forests in New England’, Oecologia 59, 216–223.

    Article  Google Scholar 

  8. Draaijers, G. P. J. and Erisman, J. W.: 1995, ‘A canopy budget model to assess atmospheric deposition from throughfall measurement’, Water Air Soil Pollut. 85, 2253–2258.

    Article  CAS  Google Scholar 

  9. Draaijers G. P. J., Erisman J. W., Van Leeuwen N.F.M., Romer F.G., Winkel B.H.TE, Veltkamp A.C., Vermeulen A.T. and Wyers G.P.: 1997, ‘The impact of canopy exchange on defferences observed between atmospheric deposition and throughfall fluxes’, Atmos. Environ. 31, 387–397.

    Article  CAS  Google Scholar 

  10. Erisman, J. W., Vermeulen, A., De Vries, W., van der Salm, C., Reinds, G.J., Draaijers, G.P.J., Bleeker, A., Kristensen, H.L. and Gundersen, P.: 2002, ‘Final report of the project input-output relationship for intensive monitoring sites’, ECN-C-02-066, The Netherlands. pp.113–120.

  11. Fan, H.B. and Hong, W.: 2001, ‘Estimation of dry deposition and canopy exchange in Chinese fir plantations’, For. Ecol. Manage. 30, 99–107.

    Article  Google Scholar 

  12. Finér, L., Kortelainen, P., Mattsson, T., Ahtiainen, M., Kubin, E. and Sallantaus, T.: 2004, ‘Sulphate and base cation concentrations and export in streams from unmanaged forested catchments in Finland’, Forest. Ecol. Manag. 195, 115–128.

    Article  Google Scholar 

  13. Gonzáalez-Arias A., Amezaga I., Echeandía A. and Onaindia M.: 2000, ‘Buffering capacity through cation leaching of Pinus radiata D. Don canopy’, Plant Ecol. 149, 23–42.

    Article  Google Scholar 

  14. Hoffman, W. A., Lindberg, S.E. and Turnewr, R.R.: 1980, ‘Some observations of organic consituents in rain above and below a forest canopy’, Environ. Sci. Tech. 14, 999–1002.

    Article  CAS  Google Scholar 

  15. Ignatovaa, N. and Étienne, D.: 2000, ‘Canopy uptake of N deposition in spruce (Picea abies L. Karst) stands’, Ann. Forest. Sci. 57, 113–120.

    Article  Google Scholar 

  16. International standard: 1994, ‘Water quality – Determination of pH’, (ISO 10523)

  17. International standard: 1998, ‘Water quality – Determination of dissolved Li+, Na+, NH4 +, K+, Mn2+, Ca2+, Mg2+, Sr2+ and Ba2+ using ion chromatography – Method for water and waste water’, (ISO 14911)

  18. International standard: 1993, ‘Water quality – Determination of sodium and potassium – Part 3: Determination of sodium and potassium by flame emission spectrometry’, (ISO 9964–3)

  19. International standard: 1985, ‘Water quality – Determination of electrical conductivity, 1st edition’, (ISO 7888)

  20. Ivens, W. P. M. F.: 1990, ‘Atmospheric deposition onto forest: An analysis of the deposition variability by means of throughfall measurements’, Ph.D. thesis, University of Utretcht, The Netherlands.

  21. Kazda, M.: 1990, ‘Sequential stemflow sampling for estimation of dry deposition and crown leaching in beech stands’, In A.F. Harrison, P. Ineson and O.W. Heal (eds.), Nutrient Cycling in Terrestrial Ecosystems. Elsevier Applied Science, New York, pp. 46–55.

  22. Kreutzer K., Beier C., Bredemeier, M., Blanck K., Cummins, T., Farrel, E.P., Lammersdorf, N., Rasmussen, L., Rothe, A., de Visser P.H.B., Weis, W., Weiβ, T. and Xu Y.J. 1998: ‘Atmospheric deposition and soil acidification in five coniferous forest ecosystems: A comparison of the control plots of the EXMAN sites’, Forest. Ecol. Manag 101, 125–142

    Article  Google Scholar 

  23. Likens, G. E., Driscoll, C. T. and Buso, D. C.: 1996, ‘Long term effects of acid rain: Response and recovery of a forest ecosystem’, Science 272, 244–246.

    Article  CAS  Google Scholar 

  24. Lin, T. C., Hamburg, S. P., King, H. B. and Hsia, Y. J.: 2000, ‘Throughfall patterns in a subtropical rain forest of Northeastern Taiwan’, J. Environ. Qual. 29, 1186–1193.

    CAS  Google Scholar 

  25. Lin, T. C., Hamburg, S. P., Hsia, Y. J., King, H. B., Wang, L. J., and Lin, K. C. 2001, ‘Base cation leaching from the canopy of a subtropical rainforest in northeastern Taiwan’, Can. J. Forest. Res. 31, 1156–1163.

    Article  CAS  Google Scholar 

  26. Lindberg, S. E., Coe, J. M. and Hoffman, W. A.: 1984, ‘Dissociation of weak acids during Gran plot free acidity titrations’, TellusB 36, 186–191.

    Article  Google Scholar 

  27. Lindberg, S. E., Lovett, G. M., Richter, D. D. and Johnson, D. W.: 1986, ‘Atmospheric deposition and canopy interactions of major ions in a forest’, Science 231, 141–145.

    Article  CAS  Google Scholar 

  28. Lovett, G. M. and Lindberg, S. E.: 1984, ‘Dry deposition and canopy exchange in a mixed oak forest as determined by analysis of throughfall’, J. Appl. Ecol. 21, 1013–1027.

    Article  Google Scholar 

  29. Lovett, G. M., Lindberg, S. E., Richter, D. D. and Johnson, D. W.: 1985, ‘The effects of acidic deposition on cation leaching from three deciduous forest canopies’, Can. J. Forest. Res. 15, 1055–1060.

    Article  CAS  Google Scholar 

  30. Lovett, G. M., Nolan, S. S, Driscoll, C. T. and Fahey, T. J.: 1996, ‘Factors regulating throughfall flux in a New Hampshire forested landscape’, Can. J. Forest. Res. 26, 2134–2144.

    Article  Google Scholar 

  31. Matzner, E.: 1986, ‘Deposition/Canopy interactions in two forest ecosystems of Northwest Germany’, in H.W. Gerogii (ed.), Atmospheric pollutants in Forest Areas D. Reidel Pabl. Co. Dorrecht. Holland. pp. 247–262.

    Google Scholar 

  32. Norwegian standard: 1992, ‘Determination of dissolved fluoride, chloride, nitrite, orthophosphate, bromide, nitrate and sulphate ions, using liquid chromatography of ions. Part 1: Method for water with low contamination’, (NS-EN, ISO 10304-1, Water quality)

  33. Parker, G. G.: 1983, ‘Throughfall and stemflow in the forest nutrient cycle’, Adv. Ecol. Res. 13, 57–133.

    Article  Google Scholar 

  34. Parker, G. G.: 1990, ‘Evaluation of dry deposition, pollutant damage, and forest health with throughfall studies’, in Mechanisms of forest response to acidic deposition, in A. A. Lucier and S.G. Haines (eds.), Springer-Verlag, New York.

    Google Scholar 

  35. Piirainen, S., Finér, L. and Starr, M.: 2002, ‘Deposition and leaching of sulphate and base cations in a mixed boreal forest in Eastern Finland’, Water Air Soil Pollut. 131, 185–204.

    Article  Google Scholar 

  36. Prescott, C. E.: 2002, ‘The influence of the forest canopy on nutrients cycling’, Tree Physiol. 22, 1193–1200.

    CAS  Google Scholar 

  37. Qualls, R. G., Haines B. L. and Swank W. T.: 1991, ‘Fluxes of dissolved organic nutrients and humic substances in a deciduous forest’, Ecology 72, 254–66.

    Article  Google Scholar 

  38. Reynolds, B.: 1996, ‘Estimating the total deposition of base cations from throughfall measurements’, Sci. Total Environ. 180, 183–186.

    Article  CAS  Google Scholar 

  39. Schaefer, D. A. and Reiners, W. A.: 1990, ‘Throughfall chemistry and canopy processing mechanisms’, in S. E. Lindberg L. A. Page and S.A. Norton (eds.), Acid precipitation, Vol. 3, Sources, deposition, and canopy interactions, Springer - Verlag, Berlin, pp. 241–284.

    Google Scholar 

  40. Schmitta, M., Thönib, L., Waldnera, P. and Thimonier, A.: 2005, ‘Total deposition of nitrogen on Swiss long-term forest ecosystem research (LWF) plots: Comparison of the throughfall and the inferential method’, Atmos. Environ. 39, 1079–1091

    Article  CAS  Google Scholar 

  41. Shibata, H., Kirikae, M., Tanaka, Y., Sakuma, T. and Hatano, T.: 1998, ‘Proton budgets of forest ecosystems on volcano genous regosols in Hokkaido in Northern Japan’, Water Air Soil Pollut. 105, 63–72.

    Article  CAS  Google Scholar 

  42. Shibata, H., Saton, F. and Sasa, K.: 2001, ‘Importance of internal proton production for the proton budget in Japanese forest ecosystem’, Water Air Soil Pollut. 130, 685–690.

    Article  Google Scholar 

  43. Sievering, H., Fernandez, I., Lee, J., Hom, J. and Rustad, L.: 2000, ‘Forest canopy uptake of atmospheric nitrogen deposition at eastern U.S. conifer sites: Carbon storage implications ? Global Biogeochem. Cycl. 104, 707–713.

    Google Scholar 

  44. Silver, Whendee L., Herman, J., Donald, Firestone and Mary, K.: 2001, ‘Dissimilatory nitrate reduction to ammonium in upland tropical forest soils’, Ecology 82, 2410– 2416.

    Article  Google Scholar 

  45. Strengbom, J., Nordin, A., Näsholm, T. and Ericson, L.: 2001, ‘Slow recovery of boreal forest ecosystem following decreased nitrogen input’, Funct. Ecol. 15, 451–457.

    Article  Google Scholar 

  46. Topol, L. E., Lev-On, M., Flanagan, J., Schwall, R. J., Jackson, A.E. and Mitchell, W.J.: 1985, ‘Quality assurance manual for precipitation measurement systems’, Research Triangle Park, NC, U.S. Environmental Protection Agency. pp. 78–95.

  47. Ulrich, B.: 1983, ‘A concept of forest ecosystem stability and of acid deposition as driving force for destabilization’, in B. Ulrich and J. Pankrath (eds.), Effects of accumulation of air pollutants in forest ecosystems, D. Reidel Publ. Co., Dordrecht, Holland, pp.1–29.

    Google Scholar 

  48. Ukonmaanaho, L., Starr, M. and Ruoho-Airola, T.: 1998, ‘Trends in sulphate, base cations and H+ concentrations in bulk precipitation and throughfall at integrated monitoring sites in Finland 1989–1995’, Water Air Soil Pollut. 105, 353–363.

    Article  CAS  Google Scholar 

  49. Van der Maas, Van Breemen, M. P. and Van Langenvelde, I.: 1991, ‘Estimation of atmospheric deposition and canopy exchange in two Douglas fir stands in The Netherlands’, Internal publication, Department of soil science and geology, Agriculture University of Wageningen, The Netherlands, pp.25–30.

    Google Scholar 

  50. Van Ek, R. and Draaijers, G. P. J.: 1994, ‘Estimation of atmospheric deposition and canopy exchange for three common tree species in The Netherlands’, Water Air Soil Pollut. 73, 61–82.

    Article  CAS  Google Scholar 

  51. Wang, M. C., Liu C. P. and Sheu B. H.: 2004, ‘Characterization of organic matter in rainfall, throughfall, stemflow, and streamwater from three subtropical forest ecosystems’, J. Hydrol. 289, 275–285.

    Article  CAS  Google Scholar 

  52. Wilson, E. J.: 1992, ‘Foliar uptake and release of inorganic nitrogen compounds in Pinus sylvestris L. and Picea abies Karst’, New Phyto. 120, 407–416.

    Article  CAS  Google Scholar 

  53. Zeng, G. M., Zhang, G., Huang, G. H., Jiang, Y. M. and Liu, H. L.: 2005, ‘Exchange of Ca2+, Mg2+ and K+ and the uptake of H+, NH4 + for the canopies in the subtropical forest influenced by the acid rain in Shaoshan forest located in central south China’, Plant Sci. 168, 259–266.

    Article  CAS  Google Scholar 

  54. Zhang G., Zeng G. M., Huang G. H., Jiang Y. M., Yao J. M., Jiang R. and Zhang C.: 2005, ‘Deposition pattern of precipitation and throughfall in a subtropical forest, Central-south China’, J. Forest. Res. In revision.

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Zhang, G., Zeng, G.M., Jiang, Y.M. et al. Effects of Weak Acids on Canopy Leaching and Uptake Processes in a Coniferous-Deciduous Mixed Evergreen Forest in Central-South China. Water Air Soil Pollut 172, 39–55 (2006). https://doi.org/10.1007/s11270-005-9044-3

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