References
Ando T, Yoshida S, Nishiyama I (1983) Nature of oxidizing power of rice plants. Plant Soil
72:51–57
Brindley GW, Brown G (1980) Crystal structures of clay minerals and their X-ray indentification,
Mineralogical society monograph no.5. Mineralogical Society, London
Childs CW, Matsue N, Yoshinaga N (1991) Ferrihydrite in volcanic ash soils of Japan. Soil Sci
Plant Nutr 37:299–311
Fanning DS, Burch SN (2000) Coastal acid sulfate soils, Reclamation of drastically disturbed lands,
agronomy monograph, vol 41. American Society of Agronomy, Madison, pp 921–937
Fanning DS, Rabenhorst MC, Burch SN, Islam KR, Tangren SA (2002) Sulfides and sulfate. In:
Dixon JB, Schulze DG (Co-eds) Soil mineralogy with environmental applications, Soil Science
Society of America, Inc. Madison, pp 229–260
Fonseca EC, da Silva EF (1998) Application of selective extraction techniques in metal-bearing
phases identification: a South European case study. J Geochem Explor 61:203–212
Fu Y-Q, Yang X-J, Ye Z-H (2016) Identification, separation and component analysis of reddish
brown and non-reddish brown iron plaque on rice (Oryza sativa) root surface. Plant Soil
402:277–290
Garnd S, Lavkulich LM (1980) The oxidation mechanism of vivianite as studies by Moessbauer
spectroscopy. Am Mineral 65:361–366
Fig. 5.28 An example of natrojarosite occurrence. (a) Landscape of soil containing sulfidic
materials in the lower horizon, (b) soil profile containing natrojarosite (white arrow), (c) SEM
image of natrojarosite, (d) EDX spectrum for the dashed area identified in (c), (e) XRD pattern of
natrojarosite, (f) reference XRD pattern of natrojarosite (Brindley and Brown 1980)
References
129
Ando T, Yoshida S, Nishiyama I (1983) Nature of oxidizing power of rice plants. Plant Soil
72:51–57
Brindley GW, Brown G (1980) Crystal structures of clay minerals and their X-ray indentification,
Mineralogical society monograph no.5. Mineralogical Society, London
Childs CW, Matsue N, Yoshinaga N (1991) Ferrihydrite in volcanic ash soils of Japan. Soil Sci
Plant Nutr 37:299–311
Fanning DS, Burch SN (2000) Coastal acid sulfate soils, Reclamation of drastically disturbed lands,
agronomy monograph, vol 41. American Society of Agronomy, Madison, pp 921–937
Fanning DS, Rabenhorst MC, Burch SN, Islam KR, Tangren SA (2002) Sulfides and sulfate. In:
Dixon JB, Schulze DG (Co-eds) Soil mineralogy with environmental applications, Soil Science
Society of America, Inc. Madison, pp 229–260
Fonseca EC, da Silva EF (1998) Application of selective extraction techniques in metal-bearing
phases identification: a South European case study. J Geochem Explor 61:203–212
Fu Y-Q, Yang X-J, Ye Z-H (2016) Identification, separation and component analysis of reddish
brown and non-reddish brown iron plaque on rice (Oryza sativa) root surface. Plant Soil
402:277–290
Garnd S, Lavkulich LM (1980) The oxidation mechanism of vivianite as studies by Moessbauer
spectroscopy. Am Mineral 65:361–366
Fig. 5.28 An example of natrojarosite occurrence. (a) Landscape of soil containing sulfidic
materials in the lower horizon, (b) soil profile containing natrojarosite (white arrow), (c) SEM
image of natrojarosite, (d) EDX spectrum for the dashed area identified in (c), (e) XRD pattern of
natrojarosite, (f) reference XRD pattern of natrojarosite (Brindley and Brown 1980)
References
129
