Global Rice Science Partnership (2013) Rice almanac, 4th edn. Los Banos (Philippines), International Rice Research Institute
Glossary of Soil Science Committee (2008) Glossary of soil science terms. Soil Science Society of
America, Inc, Madison
Hansel CM, Fendorf S, Sutton S (2001) Characterization of Fe plaque and associated metals on the
roots of mine-waste impacted aquatic plants. Environ Sci Technol 35:3863–3868
Heiberg L, Koch CB, Kjaergaard C, Jensen HS, Hansen HCB (2012) Vivianite precipitation and
phosphate sorption following iron reduction in anoxic soils. J Environ Qual 40:938–949
Hurt GW, Whited PM, Pringle RF (eds) (1996) Field indentification of hydric soils in the United
States. US Department of Agriculture, Natural Resources Conservation Service, Fort Worth
Ito J (1975) Concretion of ferrous phosphate (Fe 3 (PO 4 ) 2 .8H 2 O) appears in grey horizon of paddy
soils. Bull Hokuriku Natl Agric Exp Stn 18:119–14 (In Japanese, with English abstract.)
IUSS Working Group WRB (2015) World reference base for soil resources 2014. International soil
classification system for naming soils and creating lengends for soil maps, update 2015, World
soil resources reports no.106. FAO, Rome
Kahn N, Seshadri B, Bolan N, Saint CP, Kirkham MB, Chowdhury S, Yamaguchi N, Lee DY, Li G,
Kunhikrishnan A, Qi F, Karunanithi R, Qiu R, Zhu Y-G, Syu CH (2016) Root iron plaque on
wetland plants as a dynamic pool of nutrients and contaminants. Adv Agron 138:1–96
Kawai M, Samarajeewa PK, Barrero RA, Nshiguchi M, Uchiymiya H (1998) Cellular dissection of
the degradation pattern of cortical cell death during aerenchyma formation of rice roots. Planta
204:277–287
Kirk G (2004) The biogeochemistry of submerged soils. John Wiley & Sons Ltd., Chichester 291p
Kojima M (1971) Micro-analysis of rusty mottlings in paddy soils. J Sci Soil Manure, Jpn 42:69–73
Komiyama T, Niizuma S, Fujisawa E, Morikuni (2013) Phosphorus compounds and their solubility
in swine manure compost. Soil Sci Plant Nutr 59:419–426
Kondo M, Aguilar A, Abe J, Morita S (2000) Anatomy of nodal roots in tropical upland and
lowland rice varieties. Plant Prod Sci 3:437–445
Kusunoki A, Nanzyo M, Kanno H, Takahashi T (2015) Effect of water management on the vivianite
content of paddy-rice roots. Soil Sci Plant Nutr 61:910–916
Kyuma (2004) Paddy soil science. Kyoto University Press, Kyoto
Kyuma K, Mitsuchi M, Moormann FR (1988) Man-induced soil wetness: the “anthraquic” soil
moisture regime. In: Kinloch DI, Shoji S, Beinroth FH, Eswaran H (eds) Proceedings of the
ninth international soil classification workshop, Japan, 20 July to 1 August, 1987. Publ. by
Japanese Committee for the 9th inernational soil classification workshop, for the soil management support service, Washinton DC, USA, pp 138–146
Lehr JR, Brown EH, Frazier AW, Smith JP, Thrasher RD (1967) Crystallographic properties of
fertilizer compounds, Chemical Engineering Bull. 6. Tennessee Valley Authority, Knoxville
Lindsay WL (1979) Chemical equilibria in Soils. John Wiley & Sons, New York, pp 163–209
Nanzyo M, Kanno H, Obara S (2004) Effect of reducing conditions on P sorption of soils. Soil Sci
Plant Nutr 50:1028–1028
Nanzyo M, Yaginuma H, Sasaki K, Ito K, Aikawa Y, Kanno H, Takahashi T (2010) Identification
of vivianite formed on the root of paddy rice grown in pots. Soil Sci Plant Nutr 56:376–381
Nanzyo M, Onodera H, Hasegawa E, Ito K, Kanno H (2013) Formation and dissolution of vivianite
in paddy field soil. Soil Sci Soc Am J 77:1452–1459
Ponnamperuma FN (1972) The chemistry of submerged soils. Adv Agron 24:29–96
Rothe M, Kleeberg A, Hupfer M (2016) The occurrence, identification and environmental relevance
of vivianite in waterlogged soils and aquatic sediments. Earth-Sci Rev 158:51–64
Sadana US, Claassen N (1996) A simple method to study the oxidizing power of rice roots under
submerged soil conditions. Z Pflanzenahr Bodenk 159:643–646
Sadiq M, Lindsay WL (1979) Selection of standard free energies of formation for use in soil
chemistry. Tech Bull 134, Colorado State Univ Expt Stn
Saito M, Kawaguchi K (1971a) Flocculating tendency of paddy soils (Part 1) periodical changes of
physical properties of paddy soils under flooded conditions. J Sci Soil Manure, Jpn 42:1–6
Saito M, Kawaguchi K (1971b) Flocculating tendency of paddy soils (Part 3) structure of poorly
drained paddy soils. J Sci Soil Manure, Jpn 42:61–64
130
5 Inorganic Soil Constituents Sensitive to Varying Redox Conditions
Glossary of Soil Science Committee (2008) Glossary of soil science terms. Soil Science Society of
America, Inc, Madison
Hansel CM, Fendorf S, Sutton S (2001) Characterization of Fe plaque and associated metals on the
roots of mine-waste impacted aquatic plants. Environ Sci Technol 35:3863–3868
Heiberg L, Koch CB, Kjaergaard C, Jensen HS, Hansen HCB (2012) Vivianite precipitation and
phosphate sorption following iron reduction in anoxic soils. J Environ Qual 40:938–949
Hurt GW, Whited PM, Pringle RF (eds) (1996) Field indentification of hydric soils in the United
States. US Department of Agriculture, Natural Resources Conservation Service, Fort Worth
Ito J (1975) Concretion of ferrous phosphate (Fe 3 (PO 4 ) 2 .8H 2 O) appears in grey horizon of paddy
soils. Bull Hokuriku Natl Agric Exp Stn 18:119–14 (In Japanese, with English abstract.)
IUSS Working Group WRB (2015) World reference base for soil resources 2014. International soil
classification system for naming soils and creating lengends for soil maps, update 2015, World
soil resources reports no.106. FAO, Rome
Kahn N, Seshadri B, Bolan N, Saint CP, Kirkham MB, Chowdhury S, Yamaguchi N, Lee DY, Li G,
Kunhikrishnan A, Qi F, Karunanithi R, Qiu R, Zhu Y-G, Syu CH (2016) Root iron plaque on
wetland plants as a dynamic pool of nutrients and contaminants. Adv Agron 138:1–96
Kawai M, Samarajeewa PK, Barrero RA, Nshiguchi M, Uchiymiya H (1998) Cellular dissection of
the degradation pattern of cortical cell death during aerenchyma formation of rice roots. Planta
204:277–287
Kirk G (2004) The biogeochemistry of submerged soils. John Wiley & Sons Ltd., Chichester 291p
Kojima M (1971) Micro-analysis of rusty mottlings in paddy soils. J Sci Soil Manure, Jpn 42:69–73
Komiyama T, Niizuma S, Fujisawa E, Morikuni (2013) Phosphorus compounds and their solubility
in swine manure compost. Soil Sci Plant Nutr 59:419–426
Kondo M, Aguilar A, Abe J, Morita S (2000) Anatomy of nodal roots in tropical upland and
lowland rice varieties. Plant Prod Sci 3:437–445
Kusunoki A, Nanzyo M, Kanno H, Takahashi T (2015) Effect of water management on the vivianite
content of paddy-rice roots. Soil Sci Plant Nutr 61:910–916
Kyuma (2004) Paddy soil science. Kyoto University Press, Kyoto
Kyuma K, Mitsuchi M, Moormann FR (1988) Man-induced soil wetness: the “anthraquic” soil
moisture regime. In: Kinloch DI, Shoji S, Beinroth FH, Eswaran H (eds) Proceedings of the
ninth international soil classification workshop, Japan, 20 July to 1 August, 1987. Publ. by
Japanese Committee for the 9th inernational soil classification workshop, for the soil management support service, Washinton DC, USA, pp 138–146
Lehr JR, Brown EH, Frazier AW, Smith JP, Thrasher RD (1967) Crystallographic properties of
fertilizer compounds, Chemical Engineering Bull. 6. Tennessee Valley Authority, Knoxville
Lindsay WL (1979) Chemical equilibria in Soils. John Wiley & Sons, New York, pp 163–209
Nanzyo M, Kanno H, Obara S (2004) Effect of reducing conditions on P sorption of soils. Soil Sci
Plant Nutr 50:1028–1028
Nanzyo M, Yaginuma H, Sasaki K, Ito K, Aikawa Y, Kanno H, Takahashi T (2010) Identification
of vivianite formed on the root of paddy rice grown in pots. Soil Sci Plant Nutr 56:376–381
Nanzyo M, Onodera H, Hasegawa E, Ito K, Kanno H (2013) Formation and dissolution of vivianite
in paddy field soil. Soil Sci Soc Am J 77:1452–1459
Ponnamperuma FN (1972) The chemistry of submerged soils. Adv Agron 24:29–96
Rothe M, Kleeberg A, Hupfer M (2016) The occurrence, identification and environmental relevance
of vivianite in waterlogged soils and aquatic sediments. Earth-Sci Rev 158:51–64
Sadana US, Claassen N (1996) A simple method to study the oxidizing power of rice roots under
submerged soil conditions. Z Pflanzenahr Bodenk 159:643–646
Sadiq M, Lindsay WL (1979) Selection of standard free energies of formation for use in soil
chemistry. Tech Bull 134, Colorado State Univ Expt Stn
Saito M, Kawaguchi K (1971a) Flocculating tendency of paddy soils (Part 1) periodical changes of
physical properties of paddy soils under flooded conditions. J Sci Soil Manure, Jpn 42:1–6
Saito M, Kawaguchi K (1971b) Flocculating tendency of paddy soils (Part 3) structure of poorly
drained paddy soils. J Sci Soil Manure, Jpn 42:61–64
130
5 Inorganic Soil Constituents Sensitive to Varying Redox Conditions
