Literature DB >> 18268311

XANES spectroscopic analysis of phosphorus speciation in alum-amended poultry litter.

Jennifer M Seiter1, Kristin E Staats-Borda, Matthew Ginder-Vogel, Donald L Sparks.   

Abstract

Aluminum sulfate (alum; Al(2)(SO(4))(3).14H(2)O) is used as a chemical treatment of poultry litter to reduce the solubility and release of phosphate, thereby minimizing the impacts on adjacent aquatic ecosystems when poultry litter is land applied as a crop fertilizer. The objective of this study was to determine, through the use of X-ray absorption near edge structure (XANES) spectroscopy and sequential extraction, how alum amendments alter P distribution and solid-state speciation within the poultry litter system. Our results indicate that traditional sequential fractionation procedures may not account for variability in P speciation in heterogeneous animal manures. Analysis shows that NaOH-extracted P in alum amended litters is predominantly organic ( approximately 80%), whereas in the control samples, >60% of NaOH-extracted P was inorganic P. Linear least squares fitting (LLSF) analysis of spectra collected of sequentially extracted litters showed that the P is present in inorganic (P sorbed on Al oxides, calcium phosphates) and organic forms (phytic acid, polyphosphates, and monoesters) in alum- and non-alum-amended poultry litter. When determining land application rates of poultry litter, all of these compounds must be considered, especially organic P. Results of the sequential extractions in conjunction with LLSF suggest that no P species is completely removed by a single extractant. Rather, there is a continuum of removal as extractant strength increases. Overall, alum-amended litters exhibited higher proportions of Al-bound P species and phytic acid, whereas untreated samples contained Ca-P minerals and organic P compounds. This study provides in situ information about P speciation in the poultry litter solid and about P availability in alum- and non-alum-treated poultry litter that will dictate P losses to ground and surface water systems.

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Year:  2008        PMID: 18268311     DOI: 10.2134/jeq2007.0285

Source DB:  PubMed          Journal:  J Environ Qual        ISSN: 0047-2425            Impact factor:   2.751


  4 in total

Review 1.  Innovative methods in soil phosphorus research: A review.

Authors:  Jens Kruse; Marion Abraham; Wulf Amelung; Christel Baum; Roland Bol; Oliver Kühn; Hans Lewandowski; Jörg Niederberger; Yvonne Oelmann; Christopher Rüger; Jakob Santner; Meike Siebers; Nina Siebers; Marie Spohn; Johan Vestergren; Angela Vogts; Peter Leinweber
Journal:  J Plant Nutr Soil Sci (1999)       Date:  2015-01-12       Impact factor: 2.426

2.  Phosphorus K-edge XANES spectroscopy of mineral standards.

Authors:  Ellery D Ingall; Jay A Brandes; Julia M Diaz; Martin D de Jonge; David Paterson; Ian McNulty; W Crawford Elliott; Paul Northrup
Journal:  J Synchrotron Radiat       Date:  2010-12-02       Impact factor: 2.616

3.  Characterizing the phosphorus forms extracted from soil by the Mehlich III soil test.

Authors:  Barbara J Cade-Menun; Kyle R Elkin; Corey W Liu; Ray B Bryant; Peter J A Kleinman; Philip A Moore
Journal:  Geochem Trans       Date:  2018-02-21       Impact factor: 4.737

4.  Molecular speciation and transformation of soil legacy phosphorus with and without long-term phosphorus fertilization: Insights from bulk and microprobe spectroscopy.

Authors:  Jin Liu; Jianjun Yang; Barbara J Cade-Menun; Yongfeng Hu; Jumei Li; Chang Peng; Yibing Ma
Journal:  Sci Rep       Date:  2017-11-10       Impact factor: 4.379

  4 in total

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