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Forest Environment

Decreases in inorganic nitrogen inputs and effects on nitrogen saturation and soil acidification

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Pages 31-40 | Received 17 Jun 2019, Accepted 12 Dec 2019, Published online: 18 Dec 2019

References

  • Aber JD, Nadelhoffer KJ, Steudler P, Melillo JM. 1989. Nitrogen saturation in northern forest ecosystems. BioScience. 39:378–386.
  • Aoi T, Mori K, Ikeda M. 2003. Generation of ammonia gas from three-way catalyst equipped vehicles and the effect of exhausted NH3 and NOx to rainfall in the Tanigawa mountain region. Environ Eng Res. 40:713–720. (in Japanese with English summary).
  • Baba M, Abe S, Kasai M, Sugiura T, Kobayashi H. 2011. Contribution of understory vegetation to minimizing nitrate leaching in a Japanese cedar plantation. J For Res. 16:446–455. doi:https://doi.org/10.1007/s10310-010-0244-3).
  • Baba M, Okazaki M. 1998. Acidification in nitrogen-saturated forested catchment. Soil Sci Plant Nutr. 44:513–525.
  • Baba M, Okazaki M. 1999. Spatial variability of soil solution chemistry under hinoki cypress (Chamaecyparis obtusa) in Tama Hills. Soil Sci Plant Nutr. 45:321–336.
  • Baba M,Okazaki M. 2000. Changes in aluminum pools of andisols due to soil acidification. Soil Sci Plant Nutr. 46:797–805.
  • Baba M, Okazaki M, Hashitani T. 1995. Effect of acidic deposition on forested andisols in the Tama Hill region of Japan. Environ Pollut. 89:97–106.
  • Binkley D, Högberg P. 2016. Tamm review: revisiting the influence of nitrogen deposition on Swedish forests. For Ecol Manage. 368:222–239.
  • Chiwa M, Tateno R, Hishi T, Shibata H. 2019. Nitrate leaching from Japanese temperate forest ecosystems in response to elevated atmospheric N deposition. J For Res. 24:1–15.
  • Dise NB, Rothwell JJ, Gauci V, van der Salm C, de Vries W. 2009. Predicting dissolved inorganic nitrogen leaching in European forests using two independent databases. Sci Tot Environ. 407:1798–1808.
  • Fang Y, Gundersen P, Vogt RD, Koba K, Chen F, Chen XY, Yoh M. 2011. Atmospheric deposition and leaching of nitrogen in Chinese forest ecosystems. J For Res. 16:341–350.
  • Fujita S, Hayami H, Takahashi A, Mitsuse H, Miura K, Ideta T. 2012. Long term trend in the chemical composition of precipitation at Komae, Tokyo. Environ Sci. 25:26–36.
  • Fukuzawa K, Shibata H, Takagi K, Nomura M, Kurima N, Fukazawa T, Satoh F, Sasa K. 2006. Effects of clear-cutting on nitrogen leaching and fine root dynamics in a cool-temperate forested watershed in northern Japan. For Ecol Manage. 225:257–261.
  • Gundersen P, Callesen I, de Vries W. 1998. Nitrate leaching in forest ecosystems is related to forest floor C/N ratios. Environ Pollut. 102(S1):403–407.
  • Heeba NV, Saxer CJ, Forss A-M, Brühlmann S. 2008. Trends of NO-, NO2-, and NH3-emissions from gasoline-fueled Euro-3- to Euro-4-passenger cars. Atmos Environ. 42:2543–2554.
  • Hojito M, Hayashi K, Murano K, Mori A. 2006. The status of atmospheric concentrations of ammonia in an intensive dairy farming area in central Japan. Jpn J Soil Sci Plant Nutr. 77:53–57. (in Japanese with English summary).
  • Homyak PM, Sickman JO, Miller AE, Melack JM, Meixner T, Schimel JP. 2014. Assessing nitrogen-saturation in a seasonally dry chaparral watershed: limitations of traditional indicators of N-saturation. Ecosystems. 17. doi:https://doi.org/10.1007/s10021-014-9792-2.
  • Ishizuka K, Takahashi M, Takahashi M. 1990. A study on soil pH buffer reaction by artificial acid rain. Abstr Jpn For Soc. 101:249–252. (in Japanese).
  • Itoh Y, Miura S, Kato M, Yoshinaga S. 2004. Regional distribution of nitrate concentrations in the stream water of forested watersheds in the Kanto and Chubu districts. J Jpn For Soc. 86:275–278. (in Japanese with English summary).
  • Japan Ministry of Environment 2017. Annual Report on the Environment, the Sound Material-Cycle Society and Biodiversity in Japan 2016 http://www.env.go.jp/policy/hakusyo/h29/pdf/2_4.pdf (2018 Jan 29th) ( in Japanese).
  • Kamisako M, Sase H, Matsui T, Suzuki H, Takahashi A, Oida T, Nakata M, Totsuka T, Ueda H. 2008. Seasonal and annual fluxes of inorganic constituents in a small catchment of a Japanese cedar forest near the Sea of Japan. Water Air Soil Pollut. 195:51–61.
  • Kaneko S. 1998. The wide area examination on torrent water in Kinki area; Concerning the factors on formation of torrent water. Water Sci. 239:35–55. (in Japanese).
  • Kaneko S, Akieda N, Naito F, Tamai K,Hirono Y. 2007. Nitrogen budget of a rehabilitated forest on a degraded granitic hill. J for Res. 12:38–44.
  • Kaste Ø, Stoddard JL, Henriksen A. 2003. Implication of lake water residence time on the classification of Norwegian surface water sites into progressive stages of nitrogen saturation. Water Air Soil Pollut. 142:409–424.
  • Kato H, Shirai M. 1995. Acidification of soils around Sugi and Hinoki stems. Jpn J Soil Sci Plant Nutr. 66:57–60. in Japanese.
  • Konohira E, Kubota J, Tsukamoto Y. 1997a. The effect of expansion of the saturated soil zone on NO3–N concentration in streamwater during a rainfall event. J Jpn Soc Hydrol Water Resour. 10:154–160. (in Japanese with English summary).
  • Konohira E, Yoh M, Toda T, Yagi K, Tsukamoto Y. 1997b. Denitrification in the valley soil of a forested catchment-analysis by the natural abundance of 15N of nitrate-. J Jpn For Soc. 79:83–88. (in Japanese with English summary).
  • Lepori F, Barbieri A, Ormerod SJ. 2003. Causes of episodic acidification in Alpine streams. Freshwater Biol. 48:175–189.
  • Lovett GM, Goodale CL. 2011. A new conceptual model of nitrogen saturation based on experimental nitrogen addition to an oak forest. Ecosystems. 14:615–631.
  • Makino S, Tokuchi N, Fukushima K, Kawakami T. 2017. Nitrogen dynamics of nitrogen saturated and unsaturated deciduous forest ecosystems on Toyama Plain, Japan. J Jpn For Soc. 99:120–128. (in Japanese with English summary).
  • Miyazako T, Tabayashi Y, Ohshiro H, Koyama Y, Nakashima Y, Sato S, Nojiri Y, Kishi M, Fujihara A, Kamiya H. 2011. Transboundary nitrogen pollution from continental China to a river that flows into the Sea of Japan. Jpn J Limnol. 75:27–34. (in Japanese with English summary).
  • Nakahara O, Takahashi M, Sase H, Yamada T, Matsuda K, Ohizumi T, Fukuhara H, Inoue T, Takahashi A, Kobayashi H, et al. 2010. Soil and stream water acidification in a forested catchment in central Japan. Biogeochemistry. 97:141–158.
  • Nishina K, Watanabe M, Koshikawa MK, Takamatsu T, Morino Y, Nagashima T, Soma K, Hayashi S. 2017. Varying sensitivity of mountainous streamwater base-flow NO3− concentrations to N deposition in the northern suburbs of Tokyo. Sci Rep. 7:7701.
  • Nodvin SC, van Miegroet H, Lindberg SE, Nicholas NS, Johnson DW. 1995. Acidic deposition, ecosystem processes, and nitrogen saturation in a high elevation southern Appalachian watershed. Water Air Soil Pollut. 85:1647–1652.
  • Ogura N, Ishino A, Nagai K, Tange I. 1986. Behaviour of nitrogen compounds in surface runoff water at small watershed of Tama Hill. Jpn J Limnol. 47:17–26. (in Japanese with English summary).
  • Ohrui K. 1997. Nitrogen saturation in forest ecosystems: the existing conditions in Japan. Jpn J For Environ. 39:1–9.
  • Ohrui K, Mitchell MJ. 1997. Nitrogen saturation in Japanese forested watersheds. Ecol Appl. 7:391–401.
  • Okazaki M. 1989. Effect of acid deposition on soils, Assessment for effect of acid deposition on terrestrial ecosystems and the overcoming strategy, The Ministry of Education, Science and Culture, Japan, G010-N11-01. p. 63–69. (in Japanese).
  • Sakurai T, Kiyono T, Nakae S, Fujita S. 2002. Analysis of ammonia behavior in the Kanto region. J Jpn Soc Atmos Environ. 37:155–165.
  • Sase H, Takahashi M, Matsuda K, Sato K, Tanikawa T, Yamashita N, Ohizumi T, Ishida T, Kamisako M, Kobayashi R, et al. 2019. Response of river water chemistry to changing atmospheric environment and sulfur dynamics in a forested catchment in central Japan. Biogeochemistry. 142:357–374.
  • Sawata S, Kato H. 1991. Effect of forest on soil (part 2) The base accumulation and other soil properties related to age of Cryptomeria and Japanese cypress stands. Jpn J Soil Sci Plant Nutr. 62:49–58. (in Japanese with English summary).
  • Shindo J, Konohira E, Yoshioka T, Okamoto K, Kawashima H. 2005. Nationwide estimation of nitrogen load and nitrogen concentration in natural stream water. Environ Sci. 18:455–463. (in Japanese with English summary).
  • Stoddard JL. 1994. Long-term changes in watershed retention of nitrogen: its cause and aquatic consequences. In: Baker LA, editor. Environmental chemistry of lakes and reservoirs. Washington, (DC): American Chemical Society; p. 223–284.
  • Tanaka K, Fukagawa S, Sekita M, Konno M. 2016. On-board measurements of ammonia in automobile exhaust using laser absorption spectroscopy. Trans Soc Automot Eng Jpn. 47:369–374. (in Japanese with English summary).
  • Templer PM, Arthur MA, Lovett GM, Weathers KC. 2007. Plant and soil natural abundance δ15N: indicators of relative rates of nitrogen cycling in temperate forest ecosystems. Oecologia. 153:399–406.
  • Tokyo Metropolitan Government, Bureau of Environment. 2000. Quality of Environment in Tokyo: Data section. p.186. (in Japanese).
  • Tokyo Metropolitan Government, Bureau of Environment. 2017. Quality of environment in Tokyo. p.139. (in Japanese).
  • Ulrich B. 1986. Natural and anthropogenic components of soil acidification. Zeitschrift Für Pflanzenernährung Und Bodenkunde. 149:702–717.
  • van Breemen N, Mulder J, Driscoll CT. 1983. Acidification and alkalinization of soils. Plant Soil. 75:283–308.
  • van Breemen N, Mulder J, van Grinsven JJM. 1987. Impacts of acid atmospheric deposition on woodland soils in the Netherlands: II. Nitrogen transformations. Soil Sci Soc Am J. 51:1634–1640.
  • Verstraeten A, Neirynck J, Genouw G, Cools N, Roskams P, Hens M. 2012. Impact of declining atmospheric deposition on forest soil solution chemistry in Flanders, Belgium. Atmos Environ. 62:50–63.
  • Watmough SA. 2010. An assessment of the relationship between potential chemical indices of nitrogen saturation and nitrogen deposition in hardwood forests in southern Ontario. Environ Monit Assess. 164:9–20.
  • Wright RF, Roelof JGM, Bredemeier M, Blanck K, Boxman AW, Emmett BA, Gundersen P, Hultberg H, Kjønaas OJ, Moldan F, et al. 1995. NITREX: responses of coniferous forest ecosystems to experimentally changed deposition of nitrogen. For Ecol Manage. 71:163–169.
  • Yagasaki Y, Mulder J, Okazaki M. 2006. Comparing the activity of aluminum in two B horizons developed from volcanic ash deposits in Japan, dominated by short-range ordered aluminosilicates and crystalline clay minerals, respectively. Geochi Cosmochi Acta. 70:147–163.
  • Yoh M. 2001. Soil C/N ratio as affected by climate: an ecological factor of forest NO3− leaching. Water Air Soil Pollut. 130:661–666.

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