A novel membrane-integrated sustainable technology for downstream recovery of molybdenum from industrial wastewater
- Authors
- Kumar, Ramesh; Liu, Chengjia; Ha, Geon-Soo; Kim, Kwang Ho; Chakrabortty, Sankha; Tripathy, Suraj K.; Park, Young -Kwon; Khan, Moonis Ali; Yadav, Krishna Kumar; Cabral-Pinto, Marina M. S. .; Jeon, Byong-Hun
- Issue Date
- 2023-09
- Publisher
- Elsevier
- Citation
- Resources, Conservation and Recyclcing, v.196
- Abstract
- An experimental investigation was conducted to recover and recycle a precious metal (molybdenum) while treating industrial wastewater using a novel membrane-integrated hybrid technology. Hollow-fiber crossflow modules containing ultrafiltration and nanofiltration membranes in the recirculation mode successfully separated 96.5% of the molybdenum from industrial wastewater. The volume of feed wastewater (250 L) was reduced by -94%, and the molybdenum concentration was increased from 1.32 to 10.2 g/L using a VNF-1 membrane for its smooth recovery (98.7%) as ammonium molybdate by chemical precipitation under response-surfaceoptimized conditions of critical parameters of NH4+/Mo ratio (1.32), pH (1.7), temperature (62 degrees C), and time (15.7 h). Further, ammonium molybdate was converted into MoO3 of high purity (99.4%) using thermal decomposition at 500 degrees C for 30 min. This is the first proof-of-concept demonstrating the use of a membrane system to recover molybdenum from industrial wastewater to promote a circular economy for recycling and regenerating valuable resources.
- Keywords
- NANOFILTRATION MEMBRANES; DIELECTRIC-PROPERTIES; AMMONIACAL WASTE; AQUEOUS-SOLUTION; SODIUM ALGINATE; HEAVY-METALS; HUMIC-ACID; REMOVAL; REJECTION; SURFACE; Industrial wastewater; Resource recovery; Nanofiltration; Molybdenum trioxide; Sustainable technology; Circular economy
- ISSN
- 0921-3449
- URI
- https://pubs.kist.re.kr/handle/201004/113359
- DOI
- 10.1016/j.resconrec.2023.107035
- Appears in Collections:
- KIST Article > 2023
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