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Phosphorus removal by slag depends on its mineralogical composition: A comparative study of AOD and EAF slags

Authors :
Minyu Zuo
Jon Petter Gustafsson
Wantana Klysubun
Gunno Renman
Source :
Journal of Water Process Engineering. 25:105-112
Publication Year :
2018
Publisher :
Elsevier BV, 2018.

Abstract

Electric arc furnace slag (EAF) and argon oxygen decarburization slag (AOD) were investigated in column experiments to determine the effect of mineralogical composition on their P removal performance and lifespan. Polyethylene glycol (PEG) and NaOH solutions were used for pretreatment of the slags to adjust their dissolution properties. The modified slags exhibited better P removal performance at the beginning of the experiment, but had shorter lifespan than the unmodified slags. AOD and EAF modified with PEG and NaOH achieved 100% P removal during the first 84 and 60 pore volumes, respectively, which were ≥20 pore volumes longer than virgin AOD and EAF. However, virgin EAF and AOD both had a P removal efficiency above 90% during the first 280 pore volumes. Possibly, soluble minerals such as free lime are lost during the modification step, causing a decreased long-term P removal capacity. The XRD results showed that the high P removal ability of AOD and EAF was attributed to the dissolution of beta dicalcium silicate (β-C2) and gamma dicalcium silicate (γ-C2S), which were dominant mineral phases in the slags. Results from SEM-EDS analysis revealed significant P accumulation on the slag surface. Cracks on the EAF slag surface contributed to its longer lifespan. Analysis with P K-edge XANES spectroscopy showed that the P retained on the slag surface was dominated by amorphous calcium phosphate, with a substantial amount of carbonate apatite (around 30%). Amorphous calcium phosphate was transformed to crystalline apatite as the slag aged with column operating time.

Details

ISSN :
22147144
Volume :
25
Database :
OpenAIRE
Journal :
Journal of Water Process Engineering
Accession number :
edsair.doi...........bf2ade42edc3ec754c6b634b8c990e9c
Full Text :
https://doi.org/10.1016/j.jwpe.2018.07.003