- احمدی، ک. قلیزاده، ح. عبادزاده، ح.ر. حسینپور، ر. حاتمی، ف. عبدشاه، ه. رضایی، م.م. کاظمیفرد، ر. فضلی استبرق، م. 1394. آمار نامه کشاورزی سال 1393، جلد سوم: محصولات باغی. انتشارات وزارت جهادکشاورزی. معاونت برنامه ریزی و اقتصادی، مرکز فناوری اطلاعات و ارتباطات. 147 صفحه.
- جعفری، الف. شریعتمداری، ح. حجازی مهریزی، م. 1394. تعیین شاخصهای بافری و نیاز استاندارد فسفر در چهار ردیف اراضی مناطق خشک و نیمه خشک با استفاده از همدماهای جذب سطحی (مطالعه موردی: اصفهان و شهرکرد). نشریه پژوهشهای حفاظت آب و خاک. جلد 22، شماره 3، صفحه 103-89.
- شهبازی، ک. و داودی، م.ح. 1391. ارزیابی نیازفسفرگندم درخاکهای آهکی با استفاده از همدماهای جذب فسفر. مجله پژوهشهای خاک (علوم خاک و آب). جلد 26، شماره 1، صفحه 17-1.
- شیروانی، م. شریعتمداری، ح. 1381. استفاده از همدماهای جذب سطحی در تعیین شاخصهای ظرفیت بافری و نیاز استاندارد فسفر برخی خاکهای آهکی استان اصفهان. مجله علوم و فنون کشاورزی و منابع طبیعی. جلد 6، شماره1، صفحه 129-121.
- محمودسلطانی، ش. صمدی، ع. 1382. شکلهای مختلف فسفر در برخی خاکهای آهکی استان فارس و روابط آنها با ویژگیهای فیزیکوشیمیایی خاک. مجله علوم و فنون کشاورزی و منابع طبیعی. جلد 7، شماره 3، صفحه 128- 119.
- مظاهری، د.مجنون حسینی، ن. 1385. مبانی زراعت عمومی.انتشارات دانشگاه تهران.ا412 صفحه.
- ملکوتی، م.ج. کشاورز، پ. کریمیان، ن. 1387. روش جامع تشخیص و توصیه بهینه کود برای کشاورزی پایدار. چاپ هفتم با بازنگری کامل. انتشارات دانشگاه تربیت مدرس. 755 صفحه.
- ملکوتی، م.ج. مشیری، ف. غیبی، م.ن. مولوی، ص. 1384. حد مطلوب غلظت عناصر غذایی در خاک و برخیازمحصولاتزراعیوباغی. انتشارات سازمان تحقیقات، آموزش و ترویج کشاورزی، موسسه تحقیقات خاک و آب. نشریه فنی شماره 406، 21 صفحه.
- ملکوتی، م.ج. همایی، م. 1383. حاصلخیزی خاکهای مناطق خشک (مشکلات و راه حلها). چاپ دوم با بازنگری کامل. انتشارات دانشگاه تربیت مدرس. 600 صفحه.
- Abekoe, M.K.,andK.L.Sahrawat. 2001. Phosphate retension andextractability in soils of the humid zone in West Africa.Geoderma. 102:175–187.
- Acanda, Y., M.J.Prado, M.V.González, andM. Rey. 2013. Somatic embryogenesis from stamen filaments in grapevine (Vitis vinifera L. cv. Mencía): changes in ploidy level and nuclear DNA content. In Vitro Cellular and Developmental Biology-Plant.1-9.
- Ahmed, M.F., I.R.Kennedy, A.T. Choudhury,M.A.M.L.Kecske´s, and R.Deaker. 2008. Phosphorus adsorption in some Australian soils and influence of bacteria on the desorption of phosphorus. Communications in Soil Science and Plant Analysis. 39: 1269–1294.
- Allison, L.E., and C.D. Moodi.1962. Carbonates. PP 1379-1396. In: C. A. Black et al. (ed), Methods of Soil Analysis. Part 2, American, Society of Agronomy, Madison,WI.
- Barros, N.F., Filho., N.B. Comerford., and N.F. Barros. 2005. Phosphorus sorption, desorption and resorption by soils of the Brazilian Cerrado supporting eucalypt. Biomass and Bioenergy. 28: 229-236.
- Barrow, N.J. 1978. The description of phosphate adsorption curves. Journal of Soil Science. 29: 447-462.
- Bertrand, I., R.E.Holloway,R.D. Armstrong,and M.J.McLaughlin.2003. Chemical characteristics of phosphorus in alkalinesoils from southern Australia. Australian Journal of Soil Research. 41:61–76.
- Bohn, H.L., McNeal, B.L., and O,Connor. 1979. Soil Chemistry. John Wiley and Sons.
- Bouyoucos, G.J. 1962. Hydrometer method improved for making particle size analysis of soils. Journal of Agronomy. 54: 464-465.
- Carreira, J.A., B.Vinegla., and K. Lajtha.2006. Secondary CaCO3 and precipitation of P–Ca compounds control the retention of soil P in arid ecosystems. Arid Environmental. 64: 460–473.
- Fink, J.R., A.V. Inda., J. Bavaresco., V. Barron., J. Torrent., and C. Bayer. 2016. Adsorption and desorption of phosphorus in subtropical soils as affected by management system and mineralogy. Soil and Tillage Research. 155: 62-68.
- Food, and Agriculture Organization, faostat, retrieved may 1. 2012. fromhttp://faostat. fao.org/site./626/ default.//626/ aspx#ancor.
- Fox, R.L., and E.J.Kamprath. 1970. Phosphate sorption isotherms for evaluating the phosphate requirements of soils. Journal of Soil Science Society of American Proceeding. 34: 902–907.
- Ghafoor, A., R.Mam.and S.S. Kamil. 2014. Phosphorus Sorption in Some Great Soil Groups of Iraqi Kurdistan Region. Journal of Zankoy Sulaimani- Part A, Special Issue, Vol. 16.
- Hadgu, F., H.Gebrekidan, K. Kibret,and B.Yitaferu. 2014. Study of phosphorus adsorption and its relationship with soil properties, analyzed with Langmuir and Freundlich models. Agriculture, Forestry and Fisheries. 3: 40-51.
- Holford, I.C.R. 1979. Evaluation of soil phosphorus buffering indices. Australian Journal of Soil Research. 17: 495-54.
- Jalali, M. 2006. Soil phosphorus buffer coefficient as influencedby time and rate of P addition. Archive of Agronomy and Soil Science.
- Jalali, M. 2007. Phosphorus status and sorption characteristics of some calcareous soils of Hamadan, western Iran.Environmental Geology. 53: 365-374.
- Jalali, M., and E. Naderi Peikam. 2013. Phosphorus sorption-desorption behavior of river bed sediments in the Abshineh river, Hamedan, Iran, related to their composition. Environmental Monitoring and Assesment. 185: 537-552.
- Kolahch, Z. and M. Jalali. 2013. Phosphorus movment and retention by two calcareous soils. Soil and Sediment Contamination: An International Journal. 22(1), 21-38.
- Ma, L., R. Xu. and J. Jiang. 2010. Adsorption and desorption of Cu(II) and Pb(II) in paddy soils cultivated for various years in the subtropical China. Journal of Environment and Science. 22: 689–695.
- Mashal, K., M. Al-Qinna, and J.Ibbini. 2011. Phosphorus-Sorption Characteristics of Calcareous Soils in Arid and Semi Arid Regions.Journal of Sustainable Water and Environmental Systems. 3 (1): 53-58.
- McCollum, R.E. 1991. Build up and decline in soil phosphorus: 30-year trends on a typic umprabuult. Agronomy Journal. 83:77–85.
- Mehadi, A.A., R.W. Taylor, and J.W.Shuford. 1990. Prediction of fertilizer phosphate requirement using the Langmuir adsorption maximum. Plant and Soil. 122(2): 267-270.
- Moazed, H., Y.Hoseini, A. Naseri, and F.Abbasi. 2010. Determining phosphorus adsorption isotherm in soil and its relation to soil characteristics. Journal of Food, Agriculture and Environment. 8 (2):1153 - 1157.
- Moshi, A.O., A. Wild., and D.J. Greenland. 1974. Effect of organic matter on the charge phosphate adsorption characteristics of Kikuyu red clay from Kenya. Geoderma. 11:275-285.
- Murphy, J., and J.P.Riley. 1962. A modified single solution method for determination of phosphate in natural waters. Analytica Chimica Acta. 27:31-36.
- Oliveira, C.M.B., L.C.Gatiboni, D.J. Miquelluti, T.J.Smyth., and J.A. Almeida.2014. Capacidade máxima de adsorção de fósforo e constante de energia de ligação em Latossolo Bruno em razão de diferentes ajustes do modelo de Langmuir. RevistaBrasileira de Ciencia do Solo. 38: 1805–1815.
- Olsen, S.R., and F.S. Watanabe.1965. Test of an ascorbic acid method for determining phosphorous I water and NaHCO3 extracts from soil. In method of soil analysis: chemical and microbiological properties, part 1 2nd ed. Agron. Monogr. No9. A. Klute (Ed). ASA and SSSA, Madison WI. pp: 403-430.
- Ozanne, P.G., and T.C.Shaw. 1968. Advantages of the recently developed phosphate sorption test over the older extractant methods for soil phosphate. International, Congress of Soil Science. Trans. 2: 273-280.
- Polyzopoulos, N.A., V.Z. Keramidas., and H. Kiosse.1985. Phosphate sorption by some Alfisols of Greece as described by commonly used isotherms. Journal of Soil Science Society of American. pp: 49.
- Probert, M.E., and P.W. Moody. 1998. Relating phosphorus quantity, intensity and buffer capacity to phosphorus uptake. Australian Journal of Soil Research. 36:389-393.
- Rashmi, A.K., S.K.C. Biswas., and R. A.Subba. 2013. Phosphorus adsorption capacity in soybean growing soils of Madhya Pradesh African Crop. Indian Institute of Soil Science, Bhopal (M.P.). 1: 15-20.
- Rhoades, J.D. 1968.Cation exchang capacity. pp. 149-158. In: A.C. page (Ed.), Methods of Soil Analysis. Part 2, Monograph No 9 .American, Society of Agronomy.
- Rossi, C.G., D.M. Heil, N.B. Bonumà., and J.R. Williams. 2012. Evaluation of the Langmuir model in the Soil and Water Assessment Tool for a high soil phosphorus condition. Sci Verse Science Direct. Environmental Modelling and Software. 38: 40-49.
- Rowell, D.L. 1994. Soil science: methods and applications. Longman, London.
- Saunders, W.M.H. 1965. Phosphate retenyion by New Zealand soils and its relationship to free constituents.New Zealand Journal of Agricultural Research. 8: 30-57.
- Shirvani, M., M.Kalbasi, H. Shariatmadari, F. Nourbakhsh, and B. Najafi. 2006. Sorption- adsorption of cadmium in aqueous palygorshite, sepiolite, and calcite suspensions: Isotherm hysteresis. Chemosphere. 65: 2178-2184.
- Sims, J.T., R.R. Simard,and B.C.Joern. 1998. Phosphorus losses in agricultural drainage: Historical perspective and currentresearch. Journal of Environmental Quality. 27:277–293
- Sparks, D.L. 2003.Environmental soil chemistry. Academic Press, San Diego.
- Sui, Y., andM.L.Thompson.2000. Phosphorus sorption, desorption, and buffering capacity in a biosolids-amended Mollisol. Soil Science Society of America Journal.64: 164-169.
- Sui, Y., M.L. Thompson,andC.W. Mize. 1999. Redistribution of biosolids-derived total P applied to a Mollisol. Journal of Environmental Quality. 28:1068–1074.
- Thomas, G.W. 1996. Soil pH and soil acidity. PP. 475-490. In: Sparks, D. L. (Ed.), Methods of Soil Analysis. Part3, Chemical methods.SSSA, Madison, WI.
- Turin, H.J., and R.S.Bowman. 1997. Sorption behavior and competition of bromacil, napropamide, and prometryn. Journal of Environmental Quality. 26: 1282-1287.
- Wang, Q.R., and Y.C. Li. 2010. Phosphorus adsorption and desorption behavior on sediments of different origins. Journal of Soil Sediment. 10: 1159–1173.
- Wang, W., X.S. Hang, Y.M. Zhang, and Y.L. Yi. 2011. Phosphorus adsorption of red clay and its mechanism. Journal of Ecology and Rural Environment. 27: 109–112 (in Chinese).
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