References
- Bolan, N.S., R. Naidu, S. Mahimairaja, and S. Baskaran. 1994. Influence of low-molecular-weight organic acids on the solubilisation of phosphates. Biol. Fertil. Soils 180:311-319.
- Earl, K.D., J.K. Syers, and J.R. McLaughlin. 1979. Origin of citrate, tartrate, and acetate on phosphate sorption by soils and synthetic gels. Soil Sci. Soc. Am. J. 43:674-678. https://doi.org/10.2136/sssaj1979.03615995004300040009x
- Haynes, R.J. and M.S. Mokolobate. 2001. Amelioration of Al toxicity and P deficiency in acid soils by additions of organic residues: a cirtical review of the phenomenon and the mechanisms involved. Nutr. Cycl. Agroecosys. 59:47-63. https://doi.org/10.1023/A:1009823600950
- Hsu, T.C. 1964. Mammalian Chromosomes in vitro. 18. DNA replication in the Chinese hamster. J. Cell Biol. 25:53-62.
- Hu, H.Q., J.Z. He, X.Y. Li, and F. Liu. 2001. Effect of several organic acids on phosphate adsorption by variable charge soils of central China. Environ. Inter. 26:353-358. https://doi.org/10.1016/S0160-4120(01)00012-5
- Huang, P.M. and Violante, A. 1986. Influence of organic acids on crystallization and surface properties of precipitation products of aluminum: in Interactions of Soil Minerals with Natural Organics and Microbes, P. M. Huang and M. Schnitzer, eds., SSSA Special Publication No.17, Soil Sci. Soc. Am., Madison, Wisconsin, pp.159-221.
- Hue, N.V. 1991. Effects of organic acids/anions on P sorption and phytoavailability in soils with different mineralogies. Soil Sci. 152:463-471. https://doi.org/10.1097/00010694-199112000-00009
- Iyamuremye, F. and R.P. Dick. 1996. Organic amendments and phosphorus sorption by soils. Adv. Agron. 56:139-185. https://doi.org/10.1016/S0065-2113(08)60181-9
- Jones, D.L. 1998. Organic acids in the rhizosphere: A critical review. Plant Soil. 205:25-44. https://doi.org/10.1023/A:1004356007312
- Jones, D.L. and P.R. Darrah. 1994. Role of root derived organic acids in the mobilization of nutrients from the rhizosphere. Plant Soil. 166:247-257. https://doi.org/10.1007/BF00008338
- Kim, M.S., Y.H. Kim, C.H. Lee, S.J. Park, B.G. Ko, S.G. Yoon, and B.K. Hyun. 2015. Effects of DTPA application on growth of red pepper and chemical properties of nutrient accumulated soil in plastic film house. Korean J. Soil Sci. Fert. 48(4):312-317. https://doi.org/10.7745/KJSSF.2015.48.4.312
- Lan, M., N.B. Comerford, and T.R. Fox. 1995. Organic anions effect on phosphorus release from spodic horizons. Soil Sci. Soc. Am. J. 59:1745-1749. https://doi.org/10.2136/sssaj1995.03615995005900060034x
- Lee, S.H. 2003. Release of soil residual phosphate into soil solution by organic acids. M.S.(Thesis) Kangwon National University.
- Lindsay, W.L. 1979. Chemical equilibria in soils. John Wiley & Sons, New York, pp.238-266.
- Lopez-Hernandez, D., G. Siegert, and J.V. Rodriguez. 1986. Competitive adsorption of phosphate with malate and oxalate by tropical soils. Soil Sci. Soc. Am. J. 50:1460-1462. https://doi.org/10.2136/sssaj1986.03615995005000060016x
- Mo, S.X. 1986. Production and transformation of soil organic acids and their significance on soil fertility.(In chinese.) Adv. Soil Sci. 4:9-11.
- NAAS. 2010. Fertilizer Recommendation for crops (revision). National Academy of Agricultural Science, RDA, Suwon, Korea.
- NIAST. 2000. Methods of soil and plant analysis. National Institute of Agricultural Science and Technology, RDA, Suwon, Korea
- Palomo, L., N. Claassen, and D.L. Jones. 2006. Differential mobilization of P in the maize rhizosphere by citric acid and potassium citrate. Soil Biol. Biochem. 38:683-692. https://doi.org/10.1016/j.soilbio.2005.06.019
- RDA. 2013. Soil management technology for agricultural land. RDA., Suwon, Korea.
- Schefe, C.R. and K. Tymms. 2013. Phased addition of organic and phenolic acids with phosphate fertiliser increases P availability in an acid soil. Soil Res. 51:437-446. https://doi.org/10.1071/SR13126
- Sharpley, A.N. 1995. Dependence of runoff phosphorus on extractable soil phosphorus. J. Environ. Qual. 24:920-926.
- Stanford, G., and W.H. Pierre. 1953. Soil management practices in relation to phosphorus availability and use. Cited in soil and fertilizer phosphorus in crop nutrition. Academic Press, New York.
- Stevenson, F.J. 1967. Organic acid in soil: in Soil Biochemistry, Vol.L, A. D. McLaren and G. H. Peterson, eds., Marcel Dekker, New York, pp.119-146.
- Van Hees P.A.W., S.I. Vinogradoff, A.C. Edwards, D.L. Godbold and D.L. Jones. 2003. Low molecular weight organic acid adsorption in forest soils: effects on soil solution concentrations and biodegradation rates. Soil Biol. Biochem. 35, pp.1015-1026. https://doi.org/10.1016/S0038-0717(03)00144-5
- Wang, Y., Y. He, H, Zhang, J. Schroder, C. Li, and D. Zhou. 2008. Phosphate mobilization by citric, tartaric, and oxalic acids in a clay loam Ultisol. Soil Sci. Soc. Am. J. 72:1263-1268. https://doi.org/10.2136/sssaj2007.0146
- Yang, J.E., S.H. Lee, C.J. Park, J.J. Kim, and K.B. Lee. 2000. Utilization of residual phosphate in the plastic film house soils. J. Agr. Sci. 11:120-128.
- Yun, H.B., Y.J. Lee, M.S. Kim, J.K. Sung, Y.S. Zhang, S. M. Lee, S.C. Kim, and Y.B. Lee. 2013. Changes of potential NPK input by chemical fertilizers and livestock manure from 1990 to 2011 in Korea. Korean J. Soil Sci. Fert. 46(6):593-598. https://doi.org/10.7745/KJSSF.2013.46.6.593