Shainberg I, Oster JD, Wood JD (1980) Sodium¼calcium exchange in montmorillonite and illite
suspensions. Soil Sci Soc Am J 44:960–964
Shima H, Onodera K, Kanazawa Y, Satoh K, Onodera H, Abe T, Wakashima A, Inao E, Moriya K,
Konno C, Kamiyama K, Itoh T, Kanno H (2012) Chemical property of tsunami sediment
deposited following the East Japan great earthquake (northern part of Miyagi Prefecture). Bull
Miyagi Prefectural Furukawa Agric Exp Station 10:33–42 (In Japanese with English summary)
Shiozawa S (2013) Vertical migration of radiocesium fallout in soil in Fukushima. In: Nakanishi
TM, Tanoi K (eds) Agricultural implications of the Fukushima nuclear accident. Springer,
Tokyo/Heiderberg/New York/Dordrecht/London, pp 49–60
Sims JT, Sharpley AN (2005) Phosphorus: agriculture and the environment. No.46 in the series
Agronomy. ASA-CSSA-SSSA, Madison
Srisutam C, Wagner J-F (2010) Tsunami sediment characteristics at the Thai Andaman Coast. Pure
Appl Geophys 167:215–232
Steinhauser G, Brandl A, Johnson TE (2014) Comparison of the Chernobyl and Fukushima nuclear
accidents: a review of the environmental impacts. Sci Total Envron 470–471:800–817
Syers K, Johnston E, Curtin D (2008) Efficiency of soil and fertilizer phosphorus: reconciling
changing concepts of soil phosphorus behavior with agronomic information, FAO fertilizer and
plant nutrition bulletin 18. FAO, Rome
Szczuciński W, Kokociński M, Rzeszewski M, Chague-Goff C, Cachao M, Goto K, Sugawara D
(2012) Sediment sources and sedimentation processes of 2011 Tohoku-oki tsunami deposits on
the Sendai Plain, Japan—Insights from diatoms, nannoliths and grain size distribution. Sediment Geol 282:40–56
Thomas G (1982) Exchangeable cations. In: Methods of soil analysis part 2, Chemical and
microbiological properties, 2nd edn. ASA-SSSA, Madison, pp 159–165
Tsukada H, Takeda A, Hisamatsu S, Inaba J (2008) Concentration and specific activity of fallout
137
Cs in extracted and particle-size fractions of cultivated soils. J Environ Radioact 99:875–881
U.S. Salinity Laboratory Staff (1954) Diagnosis and improvement of saline and alkali soils. In:
USDA agriculture handbook 60. U.S. Government Printing Office, Washington, DC, pp 25–30
Vorob’eva LA, Pankova EI (2008) Saline-alkali soils of Russia. Eurasian Soil Sci 41:517–532
Wada K (1959) Reaction of phosphate with allophane and halloysite. Soil Sci 87:325–330
Yomiuri News Paper (2011) Cesium of water treatment residual generated from Aganogawa water
purification plant. https://database.yomiuri.co.jp/ rekishikan/ (August, 2014)
Open Access This chapter is licensed under the terms of the Creative Commons Attribution 4.0
International License (http://creativecommons.org/licenses/by/4.0/), which permits use, sharing,
adaptation, distribution and reproduction in any medium or format, as long as you give appropriate
credit to the original author(s) and the source, provide a link to the Creative Commons license and
indicate if changes were made.
The images or other third party material in this chapter are included in the chapter’s Creative
Commons license, unless indicated otherwise in a credit line to the material. If material is not
included in the chapter’s Creative Commons license and your intended use is not permitted by
statutory regulation or exceeds the permitted use, you will need to obtain permission directly from
the copyright holder.
176
6 Role of Inorganic Soil Constituents in Selected Topics
Précédent

- 183/188

Suivant