Selective recovery of critical materials in supercritical water desalination
Selective recovery of critical materials in supercritical water desalination
Supercritical water desalination (SCWD) is an alternative zero-liquid discharge desalination technique that can overcome many technical and environmental challenges in common desalination processes. Our recent techno-economic analyses on the process integration and intensification of an SCWD process suggest that SCWD can be an economically competitive zero-liquid discharge desalination technique for highly concentrated brines. In addition to these attractive features, this work explores the possibility of utilizing the SCWD process for the selective recovery of industrially essential materials as co-products. Model brines containing sodium chloride, neodymium chloride, and other sodium-containing salts, are examined as model feeds from 25 to 450 C at 25 MPa. The sodium contents in the effluent were not sensitive to the presence other salts, but that of neodymium was. When sodium acetate was added, water-insoluble precipitates were obtained. The characterization of these deposits using gas pycnometer, FT-IR, SEM/EDS, and XRD indicates that the precipitates mainly contain neodymium hydroxide and some low-concentration impurities. These results suggest that an SCWD process has the potential to recover critical materials while producing freshwater.
Robert P. Currier、Rajinder P. Singh、Erica P. Craddock、Jeremy C. Lewis、Katie A. Maerzke、Jong Geun Seong、Alp T. Findikoglu、John A. Matteson、Tae Jun Yoon
环境科学技术现状废物处理、废物综合利用金属元素无机化合物化学工业
Robert P. Currier,Rajinder P. Singh,Erica P. Craddock,Jeremy C. Lewis,Katie A. Maerzke,Jong Geun Seong,Alp T. Findikoglu,John A. Matteson,Tae Jun Yoon.Selective recovery of critical materials in supercritical water desalination[EB/OL].(2021-10-31)[2025-05-06].https://arxiv.org/abs/2111.00634.点此复制
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