phosphorus speciation
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2021 ◽  
pp. 0734242X2110652
Author(s):  
Charlotte Nilsson ◽  
Viktor Sjöberg ◽  
Anna Grandin ◽  
Stefan Karlsson ◽  
Bert Allard ◽  
...  

Given the high efficiency in phosphorus removal at municipal wastewater treatment plants (MMWWTP), sewage sludge constitutes a promising resource for phosphorus (P) recovery. Sewage sludge is, however, a complex matrix and its direct use as fertiliser is limited by its content of metals/metalloids and organic pollutants. In order to increase its usability as a potential resource of P, there is a need for increased knowledge on phosphorus speciation in these matrices. The sludge composition is highly influenced by local conditions (i.e. wastewater composition and treatment method), and it is therefore important to study sludge from several MMWWTPs. In this study, three different protocols for sequential extraction were utilised to investigate the chemical speciation of phosphorus in sludge from three different MMWWTP sludges in Sweden, as well as in corresponding ashes following incineration. The results showed that the total amounts of phosphorus ranged from 26 to 32 mg g−1 sludge (dry weight), of which 79–94% was inorganically bound (IP). In the sludge, 21–30% of the IP was associated with calcium (Ca-P), which is the preferred species for fertiliser production. Following incineration, this fraction increased to 54–56%, mainly due to transformation of iron-associated phosphorus (Fe-P), while aluminium-associated species of phosphorus (Al-P) remained unaltered. The results from this study confirm that incineration is a suitable treatment for sewage sludge in terms of potential phosphorus recovery.


Geoderma ◽  
2021 ◽  
Vol 403 ◽  
pp. 115208
Author(s):  
Gregor Meyer ◽  
Michael J. Bell ◽  
Enzo Lombi ◽  
Casey L. Doolette ◽  
Gianluca Brunetti ◽  
...  

2021 ◽  
Author(s):  
Xihe Zhang ◽  
Ronald Smernik ◽  
Ashlea Doolette ◽  
Samantha Walters ◽  
Luke M. Mosley

Author(s):  
Vanesa L. Perillo ◽  
Barbara Cade‐Menun ◽  
Monika Ivancic ◽  
Donald S. Ross ◽  
Beverley C. Wemple

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