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Original Articles

Release of Inorganic Phosphorus from Soils by Low‐Molecular‐Weight Organic Acids

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Pages 1233-1245 | Received 18 Jan 2005, Accepted 08 Sep 2005, Published online: 15 Aug 2006

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Read on this site (10)

Arup Sen, Sankhadip Banerjee, Ratneswar Poddar & Sumana Balo. (2023) Effectiveness of Three Organic Acids on Phosphorus Solubilization in Some Acid Soils of Eastern India. Communications in Soil Science and Plant Analysis 54:7, pages 992-1004.
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Mohankumar Karadihalli Thammaiah, Raghu Nath Pandey, Tapan Jyoti Purakayastha, Kapil Atmaram Chobhe, Ananta Vashisth, Suresh Chandra, Atul Bhagawan Pawar & Ankita Trivedi. (2022) Impact of Low Molecular Weight Organic Acids on Soil Phosphorus Release and Availability to Wheat. Communications in Soil Science and Plant Analysis 53:18, pages 2497-2508.
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Cuilan Li, Peng Zhang, Jinjing Zhang, Ping Zhu & Lichun Wang. (2021) Forms, transformations and availability of phosphorus after 32 years of manure and mineral fertilization in a Mollisol under continuous maize cropping. Archives of Agronomy and Soil Science 67:9, pages 1256-1271.
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Chandra Sekhar Paul, Filip Mercl, Jiřina Száková, Václav Tejnecký & Pavel Tlustoš. (2021) The role of low molecular weight organic acids in the release of phosphorus from sewage sludge-based biochar. All Life 14:1, pages 599-609.
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Adem Oral & Veli Uygur. (2018) Effects of low-molecular-mass organic acids on P nutrition and some plant properties of Hordeum vulgare. Journal of Plant Nutrition 41:11, pages 1482-1490.
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Shaminder Singh Chahal, O. P. Choudhary & Manpreet Singh Mavi. (2018) Microbial Activity Is Constrained by the Quality of Carbon and Nitrogen under Long-term Saline Water Irrigation. Communications in Soil Science and Plant Analysis 49:11, pages 1266-1280.
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D. Chatterjee, S.C. Datta & K.M. Manjaiah. (2015) Effect of citric acid treatment on release of phosphorus, aluminium and iron from three dissimilar soils of India. Archives of Agronomy and Soil Science 61:1, pages 105-117.
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Lizhen Zhang, JingJing Fan, Qiuxia Meng, Yu Niu & Wei Niu. (2013) CARAGANA FABR. PROMOTES REVEGETATION AND SOIL REHABILITATION IN SALINE-ALKALI WASTELAND. International Journal of Phytoremediation 15:1, pages 38-50.
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Mas Teddy Sutriadi, Syaiful Anwar, Budi Mulyanto, Darmawan & Husnain. Dynamic of soil phosphorus fractions and its correlation with maize yield on organic acids application with phosphate rock in upland acid soil. Dynamic of soil phosphorus fractions and its correlation with maize yield on organic acids application with phosphate rock in upland acid soil.
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Md. Shahinur Rahman, Cassandra Schefe & Anthony Weatherley. (2023) The combined addition of citric and aromatic organic acids to an acid soil prolongs phosphorus availability. Soil Science Society of America Journal 87:4, pages 797-807.
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Kuan Zhao, Cong Wang, Xin Xiao, Ming Li, Wenrui Zhao, Yixuan Wang & Yang Yang. (2023) The Hormetic Response of Soil P Extraction Induced by Low-Molecular-Weight Organic Acids. Processes 11:1, pages 216.
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Mohsen Jalali & Mahdi Jalali. (2022) Effect of Low-Molecular-Weight Organic Acids on the Release of Phosphorus from Amended Calcareous Soils: Experimental and Modeling. Journal of Soil Science and Plant Nutrition 22:4, pages 4179-4193.
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Mas Teddy Sutriadi, Syaiful Anwar, Budi Mulyanto, Darmawan, Husnain & Adi Jaya. (2022) Improving Upland Acid Soil Properties And Increasing Maize Yield By Phosphate Rock Application With Organic Acids. International Journal of Agronomy 2022, pages 1-12.
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Peng Si, Wei Shao, Huili Yu, Guoyi Xu & Guoqiang Du. (2022) Differences in Microbial Communities Stimulated by Malic Acid Have the Potential to Improve Nutrient Absorption and Fruit Quality of Grapes. Frontiers in Microbiology 13.
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Thomas Heron, Daniel G. Strawn, Mariana Dobre, Barbara J. Cade-Menun, Chinmay Deval, Erin S. Brooks, Julia Piaskowski, Caley Gasch & Alex Crump. (2021) Soil Phosphorus Speciation and Availability in Meadows and Forests in Alpine Lake Watersheds With Different Parent Materials. Frontiers in Forests and Global Change 3.
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Stella GYPSER & Dirk FREESE. (2020) Phosphorus release from vivianite and hydroxyapatite by organic and inorganic compounds. Pedosphere 30:2, pages 190-200.
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Stella Gypser, Elisabeth Schütze & Dirk Freese. (2019) Crystallization of single and binary iron‐ and aluminum hydroxides affect phosphorus desorption. Journal of Plant Nutrition and Soil Science 182:5, pages 741-750.
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Xiaoyan Yang, Xiangwei Chen, Erhui Guo & Xitian Yang. (2018) Path analysis of phosphorus activation capacity as induced by low-molecular-weight organic acids in a black soil of Northeast China. Journal of Soils and Sediments 19:2, pages 840-847.
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Irshad Ul Haq, Reto Daniel Zwahlen, Pu Yang & Jan Dirk van Elsas. (2018) The Response of Paraburkholderia terrae Strains to Two Soil Fungi and the Potential Role of Oxalate. Frontiers in Microbiology 9.
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Daniel Menezes-BlackburnCecilia Paredes, Hao ZhangCourtney D. GilesTegan DarchMarc StutterTimothy S. GeorgeCharles ShandDavid LumsdonPatricia CooperRenate WendlerLawrie BrownMartin BlackwellCatherine WearingPhilip M. Haygarth. (2016) Organic Acids Regulation of Chemical–Microbial Phosphorus Transformations in Soils. Environmental Science & Technology 50:21, pages 11521-11531.
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Yongzhuang WangJoann K. WhalenXin ChenYanhong CaoBin HuangCaiyan LuYi Shi. (2016) Mechanisms for altering phosphorus sorption characteristics induced by low-molecular-weight organic acids. Canadian Journal of Soil Science 96:3, pages 289-298.
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M. B. Rudnick, J. A. van Veen & W. de Boer. (2015) Oxalic acid: a signal molecule for fungus‐feeding bacteria of the genus C ollimonas ? . Environmental Microbiology Reports 7:5, pages 709-714.
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Yongzhuang Wang, Xin Chen, Joann K. Whalen, Yanhong Cao, Zhi Quan, Caiyan Lu & Yi Shi. (2015) Kinetics of inorganic and organic phosphorus release influenced by low molecular weight organic acids in calcareous, neutral and acidic soils. Journal of Plant Nutrition and Soil Science 178:4, pages 555-566.
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Elizabeth A. Guertal & Julie A. Howe. (2012) Influence of phosphorus-solubilizing compounds on soil P and P uptake by perennial ryegrass. Biology and Fertility of Soils 49:5, pages 587-596.
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C. R. Schefe & K. Tymms. (2013) Phased addition of organic and phenolic acids with phosphate fertiliser increases P availability in an acid soil. Soil Research 51:5, pages 437.
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Xiankai Lu, Jiangming Mo, Frank S. GilliamHua Fang, Feifei Zhu, Yunting Fang, Wei Zhang & Juan Huang. (2011) Nitrogen Addition Shapes Soil Phosphorus Availability in Two Reforested Tropical Forests in Southern China. Biotropica 44:3, pages 302-311.
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Shanmugam Jayashree, Ponnusamy Vadivukkarasi, Kirupanithi Anand, Yuko Kato & Sundaram Seshadri. (2011) Evaluation of pink-pigmented facultative methylotrophic bacteria for phosphate solubilization. Archives of Microbiology 193:8, pages 543-552.
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S. C. Datta, P. N. Takkar & U. K. Verma. (2009) Effect of partial removal of adsorbed humus on kinetics of potassium and silica release by tartaric acid from clay - humus complex from two dissimilar soil profiles. Soil Research 47:7, pages 715.
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M. K. Conyers & P. W. Moody. (2009) A conceptual framework for improving the P efficiency of organic farming without inputs of soluble P fertiliser. Crop and Pasture Science 60:2, pages 100.
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Adhyayan Sharan, Shikha, Nandan Singh Darmwal & Rajeeva Gaur. (2007) Xanthomonas campestris, a novel stress tolerant, phosphate-solubilizing bacterial strain from saline–alkali soils. World Journal of Microbiology and Biotechnology 24:6, pages 753-759.
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