Evidence of formation of the tridymite form of AlPO4 in some municipal sewage sludge ashes

Author:

Peplinski B.,Adam C.,Adamczyk B.,Müller R.,Schadrack R.,Michaelis M.,Emmerling F.,Reuther H.,Menzel M.

Abstract

Evidence is provided that the tridymite component observed in the X-ray diffraction patterns of some sewage sludge ashes (SSAs) should not be interpreted as the tridymite modification of SiO2 but as the tridymite form of AlPO4. This proof is based on a combined X-ray Powder Diffraction (XRD), X-ray fluorescence (XRF) and Mossbauer spectroscopy investigation of two SSAs produced at two fluidized bed incineration facilities, located in different municipalities and operated differently. The structural and chemical characterization was carried out on the ‘as received’ SSA samples as well as on the residues of these two SSAs pretreated by leaching in citric acid. In addition, direct proof is presented that the tridymite form of AlPO4 does crystallize from X-ray amorphous precursors under conditions that mimic the huge heating rate and short retention time (just seconds at T ≈ 850 °C) typical for fluidized bed incinerators.

Publisher

Cambridge University Press (CUP)

Subject

Condensed Matter Physics,Instrumentation,General Materials Science,Radiation

Reference6 articles.

1. Glimpses at individual reaction steps accompanying the crystallization of the tridymite form(s) of AlPO4 from an X-ray amorphous precipitate doped with potassium and magnesium;Peplinski;Z. Kristallogr. Suppl,2011b

2. Phase Equilibria in the System CaO-Iron Oxide-SiO2, in Air

3. Thermochemical treatment of sewage sludge ashes for phosphorus recovery

4. Application of the Rietveld method to the severely superimposed diffraction patterns of technical products containing a large number of solid solution phases

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