- اولیایی، ح .ر ، ا. ادحمی، ع. اجرایی، م. نجفی قیریو و م. رجایی. 1389. مطالعه پذیرفتاری مغناطیسی در برخی خاکهای اکوئیک و غیراکوئیک استان فارس. مجله تحقیقات آب و خاک ایران، شماره 41، ۱۴۷‐۱۵۹.
- ترابی گل سفیدی، ح.، م. کریمیان اقبال و م. کلباسی. 1380. بررسی تغییرات پتانسیل اکسایش و کاهش در اراضی شالیکاری، روی لندفرمهای مختلف شرق گیلان. مجله علوم کشاورزی ایران، جلد 32، شماره 2، 343-331.
- راهب، ع.ر. 1390. آنالیز تصویر و بررسی خصوصیات میکرومورفولوژیکی و کانی شناسی خاکهای شالیزار و غیر شالیزار. پایان نامه کارشناسی ارشد، گروه مهندسی علوم خاک دانشگاه تهران، 184ص.
- راهب، ع.ر. و ا. حیدری. 1391. بررسی شرایط اکسید و احیاء و برخی خصوصیات الکتروشیمیایی، شیمیایی و کانی شناسی در خاکهای شالیزار و غیرشالیزار. مجله تحقیقات آب و خاک ایران، جلد 43، شماره 1، 54-47
- محبی صادق، م.ج.، ا. حیدری، ف. سرمدیان، غ.ر. ثواقبی و ع.ر. راهب. 1391. شکلهای مختلف آهن و منگنز و توزیع آنها در تجمعات و نیمرخ برخی آلفیسولهای تحت تأثیر شرایط اکسایش و کاهش. مجله پژوهشهای خاک (علوم خاک و آب) جلد 26 ، شماره 1،53-43.
- Anonymous. 2010.Soil Survey Staff. Keys to Soil Taxonomy, United States Department of Agriculture. 11nd ed. Natural Resources Conservation Service, Washington DC., USA.
- Bacha, R.E., and L.R. Hossner. 1977. Characteristics of coating-formed on rice roots as affected by iron and manganese addition. Soil Sci. Soc. Am. J. 41: 931-935.
- Becker, M., and F. Asch. 2005. Iron toxicity in rice condition and management concepts. J. of Plant Nutr Soil Sci. 168: 558-573.
- Bohn, H.L., B.L. McNeal, and G.A. O,Conner. 1985. Soil Chemistry. 2nd ed. John Wiley & Sons, New York, NY.
- Carter, M.R., and E.G. Gregorich. 2008. Soil Sampling and Methods of Analysis. 2nd ed. Canadian Society of Soil Science, 1224 p.
- Fiedler, S., and M. Sommer. 2004. Water and Redox Conditions in Wetland Soils Their Influence on Pedogenic Oxides and Morphology. Soil Sci. Soc. Am. J. 68: 326-335.
- Friedrich, R. 2003. Developing a standardized procedure to screen lowland rice (Oryza Sativa) seedlings for tolerance to iron toxicity. Msc. Thesis, Rheinische Willhelms University. Bon. Germany.53 p.
- Gotoh, S., and W.H. Patrick. 1974. Transformation of iron in a waterlogged soil as influenced by redox potential and pH. Soil Sci. Soc. Am. J. 38: 66-71.
- Jahnson, M.G., and M.B. Mcbride. 1989. Mineralogical and chemical characteristics of Adirondack spodosols evidence for para and noncrystallin aluminosilicate minerals. Soil Sci. Soc. Am. J. 53: 482-490.
- Loeppert, R.H., and W.P. Inskeep. 1996. Iron. In Sparks, D.L. (ed.), Method of soil Analysis, Part 3. Chemical Methods. American Society of Agronomy, Madison, WI. 1390 p.
- Lindsay, W.L. 1972. Zinc in Soils and Plant Nutrition. Advances in Agronomy, 24: 147-186.
- Lindsay, W.L., and W.A. Norvell. 1978. Development of a DTPA soil test for zinc, iron, manganese and copper. Soil Sci. Soc. Am. J. 42: 421-428.
- Lindsay, W.L. 1979. Manganese. p. 150-161. In Lindsay, W.L.(ed.), Chemical equilibria in soils. John Wiley & Sons, New York, NY.
- McKeague, J.A., and J.H. Day. 1966. Dithionite and oxalate-extractable Fe and Al as aids in differentiating various classes of soils. Can. Soc. Soil Sci. 46: 13-22.
- McKenzie, R.M. 1988. Manganese oxides and hydroxides. p. 439-465. In Dixon, J.B. and S.B. Weed, (eds.), Minerals in Soil Environments. Soil Science Society of America Inc., Madison. WI.
- Meek, B. D., A.J. MacKenzie, and L.B. Grass. 1968. Effects of organic matter, flooding time, and temperature on the dissolution of Iron and Manganese from soil in situ. Soil Sci. Soc. Am. J. 32: 634-638.
- Moraghan, J.T., and H.J. Mascagni. 1991. Enviromental and soil factor affecting micronutrient deficiencies and toxicities. p. 371-425. In Mortvedt, J.J. (ed.), Micronutrients in Agriculture. 2nd ed. Soil Science Society of America Inc., Madison. WI.
- Morris, D.R., R.H. Loppert, and T.J. Moor. 1990. Indigenous soil factors influencing iron cholorosis of soybean in calcarous soils. Soil Sci. Soc. Am. J. 54:1329-1336.
- Newhall, F., and C.R. Berdanier. 1996. Calculation of soil moisture regimes from the climatic record. Natural Resources Conservation Service, Soil Survey Investigation Report No. 46.
- Patrick, W.H., and C.N. Reddy. 1978. Chemical changes in rice soils. In Soils and rice. International Rice Research Institute, Los Banos, Philippines. p. 361-379.
- Richards, B.K., T.S. Steenhuisa, J.H. Peverlyb, and M.B. McBride. 1998. Metal mobility at an old, heavily loaded sludge application site. Environ. Poll. 99: 365-377.
- Rostaminia, M., S. Mahmoodi, H.T. Gol Sefidi, E. Pazira, and S.B. Kafaee. 2011. Study of reduction-oxidation potential and characteristics of a paddy field during rice growing season. J. Applied Sci. 11: 1004-1011.
- Schwertmann, U. 1966. Inhibitory effect of soil organic matter in the crystallisation of amorphous ferric hydroxide. Nature, 212: 645-646.
- Schwertmann, U., H. Kodama, and W.R. Fischer. 1986. Mutual interactions between organics and iron oxides. p. 223-250. In Huang, P.M. and M. Scnitzer, (eds.) Interactions of Soil Minerals with Natural Organics and Microbes. Soil Science Society of America Inc., Special Publication Vol. 17. Madison. WI.
- Sharma, B.D., H. Arora, R. Kumar, and V.K. Nayyar. 2004. Relationships between Soil Characteristics and Total and DTPA Extractable Micronutrients in Inceptisols of Punjab. Commun. Soil Sci. Plant Anal. 35: 799-818.
- Singer, A. 1977. Extractable sesquioxides in six Mediterranean soils developed on basalt and scoria. J. Soil Sci. 28: 125-135.
- Sparks, D.L. 1996. Method of soil Analysis. Part 3. Chemical Methods. American Soceity of Agronomy, Madison, WI. p. 1390.
- Tokashiki, Y., J.B. Dixon, and D.C. Golden. 1986. Manganese oxide analysis in soils by combined X-ray diffraction and selective dissolution methods. Soil Sci. Soc. Am. J. 50: 1079-1084.
- Vempati, R.K., and R.H. Loppert.1988. Chemistry and mineralogy of Fe-containing oxides and layer silicate in relation to plant available Fe. J. Plant Nutr.11:1557-1574.
- Vepraskas, M.J. 1996. Redoxomorphic features for identifying aquic condition.Tech. Bull. 301. North Carolina.
- Wiederhold, j., N. Teutsch, S. Kraemer, and A. Halliday. 2007. Iron isotope fractionation during pedogenesis in reoxomorphic Soil. Soil Sci. Soc. Am. J. 71:1840-1850.
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