Disengagement of dispersed cerium oxalate from nitric-oxalic acid medium in a batch settler: Measurements and CFD simulations

2020 ◽  
Vol 144 ◽  
pp. 107574
Author(s):  
Saroj K. Panda ◽  
P. Vishnu Anand ◽  
B. Aashranth ◽  
N.K. Pandey
Author(s):  
Xia Kang ◽  
Laszlo Csetenyi ◽  
Xiang Gao ◽  
Geoffrey Michael Gadd

Abstract Cerium has many modern applications such as in renewable energies and the biosynthesis of nanomaterials. In this research, natural struvite was solubilized by Aspergillus niger and the biomass-free struvite leachate was investigated for its ability to recover cerium. It was shown that struvite was completed solubilized following 2 weeks of fungal growth, which released inorganic phosphate (Pi) from the mineral by the production of oxalic acid. Scanning electron microscopy (SEM) showed that crystals with distinctive morphologies were formed in the natural struvite leachate after mixing with Ce3+. Energy-dispersive X-ray analysis (EDXA), X-ray diffraction (XRD) and Fourier-transform infrared spectroscopy (FTIR) confirmed the formation of cerium phosphate hydrate [Ce(PO4)·H2O] at lower Ce concentrations and a mixture of phosphate and cerium oxalate decahydrate [Ce2(C2O4)3·10H2O] at higher Ce concentrations. The formation of these biogenic Ce minerals leads to the removal of > 99% Ce from solution. Thermal decomposition experiments showed that the biogenic Ce phosphates could be transformed into a mixture of CePO4 and CeO2 (cerianite) after heat treatment at 1000 °C. These results provide a new perspective of the fungal biotransformation of soluble REE species using struvite leachate, and also indicate the potential of using the recovered REE as biomaterial precursors with possible applications in the biosynthesis of novel nanomaterials, elemental recycling and biorecovery. Key points • Cerium was recovered using a struvite leachate produced by A. niger. • Oxalic acid played a major role in struvite solubilization and Ce phosphate biorecovery. • Resulting nanoscale mineral products could serve as a precursor for Ce oxide synthesis.


2002 ◽  
Vol 45 (1) ◽  
pp. 23-32 ◽  
Author(s):  
Nicholas M Martyak ◽  
Page McAndrew ◽  
John E McCaskie ◽  
Julien Dijon

2007 ◽  
Vol 606 (2) ◽  
pp. 85-94 ◽  
Author(s):  
O. Devos ◽  
C. Gabrielli ◽  
L. Beitone ◽  
C. Mace ◽  
E. Ostermann ◽  
...  

1997 ◽  
Vol 94 ◽  
pp. 569-583 ◽  
Author(s):  
A Derja ◽  
A El Hanssali

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