| Literature DB >> 26113414 |
Rundong Li1, Ziheng Zhang2, Yanlong Li2, Wenchao Teng2, Weiyun Wang2, Tianhua Yang2.
Abstract
The recovery of phosphorus from incinerated sewage sludge ash (SSA) is assumed to be economical. Transformation from non-apatite inorganic phosphorus (NAIP) to apatite phosphorus (AP), which has a higher bioavailability and more extensive industrial applications, was studied at 750-950°C by sewage sludge incineration and model compound incineration with a calcium oxide (CaO) additive. Thermogravimetric differential scanning calorimetry analysis and X-ray diffraction measurements were used to analyze the reactions between NAIP with CaO and crystallized phases in SSA. High temperatures stimulated the volatilization of NAIP instead of AP. Sewage sludge incineration with CaO transformed NAIP into AP, and the percentage of AP from the total phosphorus reached 99% at 950°C. Aluminum phosphate reacted with CaO, forming Ca2P2O7 and Ca3(PO4)2 at 750-950°C. Reactions between iron phosphate and CaO occurred at lower temperatures, forming Ca(PO3)2 before reaching 850°C.Entities:
Keywords: Apatite phosphorus; Non-apatite inorganic phosphorus; Sewage sludge ash; Thermogravimetric analysis–differential scanning calorimetric analysis; Transformation; X-ray diffraction
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Year: 2015 PMID: 26113414 DOI: 10.1016/j.chemosphere.2015.05.094
Source DB: PubMed Journal: Chemosphere ISSN: 0045-6535 Impact factor: 7.086