Enhancement of Releasing Phosphorus from Bone Char in Calcareous Sandy Soil Under Applying Different Levels of Water Salinity
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Amin AA (2020) Sulfur, Na2-EDTA and their mixture effects on phosphorus release from cow bone char in P-poor sandy soil. Environ Technol Innov 17:100636. https://doi.org/10.1016/j.eti.2020.100636
Ara I, Islam MS, Kashem MA, Osman KT (2018) A comparative study of phosphorus availability in an acidic soil and an alkaline soil amended with organic and inorganic phosphorus sources. J Soil Sci Plant Nutr 18:466–478
Bai J, Ye X, Jia J, Zhang G, Zhao Q, Cui B, Liu X (2017) Phosphorus sorption-desorption and effects of temperature, pH and salinity on phosphorus sorption in marsh soils from coastal wetlands with different flooding conditions. Chemosphere 188:677–688. https://doi.org/10.1016/j.chemosphere.2017.08.117
Baruah TC, Barthakur HP (1997) A textbook of soil analysis. Vikas Publishing House PVT LTD, New Delhi
Brady NC, Weil RR (1999) The nature and properties of soils, 11th edn. Prentice-Hall International, Inc., Upper Saddle River
Bruland GL, DeMent G (2009) Phosphorus sorption dynamics of Hawaii’s coastal wetlands. Estuar Coasts 32:844–854. https://doi.org/10.1007/s12237-009-9201-9
Cao Y, Gao Y, Li J, Tian Y (2019) Straw composts, gypsum and their mixtures enhance tomato yields under continuous saline water irrigation. Agric Water Manag 223:105721. https://doi.org/10.1016/j.agwat.2019.105721
Chen L, Li C, Feng Q, Wei Y, Zhao Y, Zhu M, Deo RC (2019) Direct and indirect impacts of ionic components of saline water on irrigated soil chemical and microbial processes. Catena 172:581–589. https://doi.org/10.1016/j.catena.2018.09.030
Cordell D, Drangert JF, White S (2009) The story of phosphorus: global food security and food for thought. Glob Environ Chang 19:292–305. https://doi.org/10.1016/j.gloenvcha.2008.10.009
Domínguez R, Del Campillo C, Pena F, Delgado A (2001) Effect of soil properties and reclamation practices on phosphorus dynamics in reclaimed calcareous marsh soils from the Guadalquivir Valley, SW Spain. Arid Land Res Manag 15:203–221. https://doi.org/10.1080/15324980152119775
El Tahlawi MR, Farrag AA, Ahmed SS (2008) The groundwater of Egypt: “an environmental overview”. Environ Geol 55:639–652. https://doi.org/10.1007/s00254-007-1014-1
Flower H, Rains M, Lewis D, Zhang JZ (2017b) Rapid and intense phosphate desorption kinetics when saltwater intrudes into carbonate rock. Estuar Coasts 40:1–13. https://doi.org/10.1007/s12237-017-0228-z
Flower H, Rains M, Lewis D, Zhang JZ, Price R (2016) Control of phosphorus concentration through adsorption and desorption in shallow groundwater of subtropical carbonate estuary. Estuar Coast Shelf Sci 169:238–247. https://doi.org/10.1016/j.ecss.2015.10.024
Flower H, Rains M, Lewis D, Zhang JZ, Price R (2017a) Saltwater intrusion as a potential driver of phosphorus release from limestone bedrock in coastal aquifer. Estuar Coast Shelf Sci 184:166–176. https://doi.org/10.1016/j.ecss.2016.11.013
Glæsner N, Hansen HCB, Hu Y, Bekiaris G, Bruun S (2019) Low crystalline apatite in bone char produced at low temperature ameliorates phosphorus-deficient soils. Chemosphere 223:723–730. https://doi.org/10.1016/j.chemosphere.2019.02.048
Gupta DK, Chatterjee S, Datta S, Veer V, Walther C (2014) Role of phosphate fertilizers in heavy metal uptake and detoxification of toxic metals. Chemosphere 108:134–144. https://doi.org/10.1016/j.chemosphere.2014.01.030
Hamam KA, Negim O (2014) Evaluation of wheat genotypes and some soil properties under saline water irrigation. Ann Agric Sci 59:165–176. https://doi.org/10.1016/j.aoas.2014.11.002
Hinsinger P (2001) Bioavailability of soil inorganic P in the rhizosphere as affected by root-induced chemical changes: a review. Plant Soil 237:173–195
Jackson ML (1973) Soil chemical analysis. Prentice-Hall of India Private Limited, New Delhi
Jaggi RC, Aulakh MS, Sharma AR (2005) Impacts of elemental S applied under various temperature and moisture regimes on pH and available P in acidic, neutral and alkaline soils. Biol Fertil Soils 41:52–58. https://doi.org/10.1007/s00374-004-0792-9
Jalali M, Kolahchi Z (2009) Effect of irrigation water quality on the leaching and desorption of phosphorous from soil. Soil Sediment Contam 18:576–589. https://doi.org/10.1080/15320380903113451
Khan MN, Mobin M, Abbas ZK, Alamri SA (2018) Fertilizers and their contaminants in soils, surface and groundwater. In: DellaSala DA, Goldstein MI (eds) The encyclopedia of the Anthropocene. Elsevier, Oxford, pp 225–240. https://doi.org/10.1016/B978-0-12-809665-9.09888-8
Kurunc A, Aslan GE, Karaca C, Tezcan A, Turgut K, Karhan M, Kaplan B (2020) Effects of salt source and irrigation water salinity on growth, yield and quality parameters of Stevia rebaudiana Bertoni. Sci Hortic 270:109458. https://doi.org/10.1016/j.scienta.2020.109458
Li J, Gao Y, Zhang X, Tian P, Li J, Tian Y (2019) Comprehensive comparison of different saline water irrigation strategies for tomato production: soil properties, plant growth, fruit yield and fruit quality. Agric Water Manag 213:521–533. https://doi.org/10.1016/j.agwat.2018.11.003
Liu M, Hou L, Xu S, Ou D, Yang Y, Zhang B, Liu Q (2002) Adsorption of phosphate on tidal flat surface sediments from the Yangtze Estuary. Environ Geol 42:657–665. https://doi.org/10.1007/s00254-002-0574-3
Mekmene O, Quillard S, Rouillon T, Bouler J, Piot M, Gaucheron F (2009) Effects of pH and Ca/P molar ratio on the quantity and crystalline structure of calcium phosphates obtained from aqueous solutions. Dairy Sci Technol 89:301–316. https://doi.org/10.1051/dst/2009019
Millero F, Huang F, Zhu X, Liu X, Zhang JZ (2001) Adsorption and desorption of phosphate on calcite and aragonite in seawater. Aquat Geochem 7:33–56
Morshedizad M, Panten K, Klysubun W, Leinweber P (2018) Bone char effects on soil: sequential fractionations and XANES spectroscopy. Soil 4:23–35. https://doi.org/10.5194/soil-4-23-2018
Olsen SR, Cole CV, Watanabe FS, Dean LA (1954) Estimation of available phosphorus in soils by extraction with sodium bicarbonate. Circular/United States Department of Agriculture (no. 939)
Price RM, Savabi MR, Jolicoeur JL, Roy S (2010) Adsorption and desorption of phosphate on limestone in experiments simulating seawater intrusion. Appl Geochem 25:1085–1091. https://doi.org/10.1016/j.apgeochem.2010.04.013
Ragab R, Prudhomme C (2002) Climate change and water resources management in arid and semi-arid regions: prospective and challenges for the 21st century. Biosyst Eng 81:3–34. https://doi.org/10.1006/bioe.2001.0013
Remmen K, Niewersch C, Wintgens T, Yüce S, Wessling M (2017) Effect of high salt concentration on phosphorus recovery from sewage sludge and dewatering properties. J Water Process Eng 19:277–282. https://doi.org/10.1016/j.jwpe.2017.07.027
Sarkar D, Kar SK, Chattopadhyay A, Shikha RA, Tripathi VK, Dubey PK, Abhilash PC (2020) Low input sustainable agriculture: a viable climate-smart option for boosting food production in a warming world. Ecol Indic 115:106412. https://doi.org/10.1016/j.ecolind.2020.106412
Schnug E, Haneklaus SH (2016) The enigma of fertilizer phosphorus utilization. In: Schnug E, De Kok LJ (eds) Phosphorus in agriculture: 100% zero. Springer Science+Business Media, Dordrecht, pp 7–26
Soaud AA, Al Darwish FH, Saleh ME, El-Tarabily KA, Sofian-Azirun M, Rahman MM (2011) Effects of elemental sulfur, phosphorus, micronutrients and Paracoccus versutus on nutrient availability of calcareous soils. Aust J Crop Sci 5:554–561
Sparks DL (2003) Environmental soil chemistry, 2nd edn. Academic Press, London
Warren GP, Robinson JS, Someus E (2009) Dissolution of phosphorus from animal bone char in 12 soils. Nutr Cycl Agroecosyst 84:167–178. https://doi.org/10.1007/s10705-008-9235-6
Wopenka B, Pasteris JD (2005) A mineralogical perspective on the apatite in bone. Mater Sci Eng C 25:131–143. https://doi.org/10.1016/j.msec.2005.01.008
Zhang JZ, Fischer CJ, Ortner PB (2004) Potential availability of sedimentary phosphorus to sediment resuspension in Florida Bay. Glob Biogeochem Cycles 18:GB4008. https://doi.org/10.1029/2004GB002255
Zhang JZ, Huang XL (2007) Relative importance of solid-phase phosphorus and iron on the sorption behavior of sediments. Environ Sci Technol 41:2789–2795. https://doi.org/10.1021/es061836q
Zhang JZ, Huang XL (2011) Effect of temperature and salinity on phosphate sorption on marine sediments. Environ Sci Technol 45:6831–6837. https://doi.org/10.1021/es200867p
Zhang T, Zhan X, He J, Feng H, Kang Y (2018) Salt characteristics and soluble cations redistribution in animpermeable calcareous saline-sodic soil reclaimed with an improved drip irrigation. Agric Water Manag 197:91–99. https://doi.org/10.1016/j.agwat.2017.11.020
Zhao G, Sheng Y, Jiang M, Zhou H, Zhang H (2019) The biogeochemical characteristics of phosphorus in coastal sediments under high salinity and dredging conditions. Chemosphere 215:681–692. https://doi.org/10.1016/j.chemosphere.2018.10.015
Zhu J, Li M, Whelan M (2018) Phosphorus activators contribute to legacy phosphorus availability in agricultural soils: a review. Sci Total Environ 612:522–537. https://doi.org/10.1016/j.scitotenv.2017.08.095