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Yuefei Song
Researcher at Ocean University of China
Publications - 6
Citations - 226
Yuefei Song is an academic researcher from Ocean University of China. The author has contributed to research in topics: Nanofiltration & Fouling. The author has an hindex of 6, co-authored 6 publications receiving 195 citations. Previous affiliations of Yuefei Song include Chinese Ministry of Education & Henan Normal University.
Papers
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Journal ArticleDOI
Performance of UF–NF integrated membrane process for seawater softening
TL;DR: In this article, an integrated membrane system (IMS) was used to evaluate the NF efficiency of seawater softening and showed that the high softening efficiency of NF membrane could be achieved using UF membrane with smaller MWCO (20kDa).
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The performance of polyamide nanofiltration membrane for long-term operation in an integrated membrane seawater pretreatment system
TL;DR: An ultrafiltration-nanofiltration integrated membrane system (IMS) was operated for 500h to examine the performance of the NF membrane in seawater desalination pretreatment as mentioned in this paper.
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Evaluation of scaling potential in a pilot-scale NF–SWRO integrated seawater desalination system
TL;DR: In this paper, a pilot-scale experiments were carried out on a nanofiltration-seawater reverse osmosis (SWRO) integrated membrane system (IMS) to evaluate scaling potential on NF and SWRO membrane surface using a kind of loosen NF membrane and costal seawater.
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Investigation on high NF permeate recovery and scaling potential prediction in NF–SWRO integrated membrane operation
TL;DR: In this paper, the effect of increasing NF permeate recovery rate (R NF ) on the potential of scaling in the NF and RO modules was investigated in terms of concentration polarization modulus (CP) of scalant ions, Stiff and Davis Stability Index (S&DSI ), and Supersaturation Index ( SI ) of CaCO 3 and CaSO 4.
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Improvement of overall water recovery by increasing RNF with recirculation in a NF–RO integrated membrane process for seawater desalination
TL;DR: In this paper, the effect of increasing nanofiltration (NF) permeate recovery (R NF ) by recirculation and dosage of chemicals on NF separation performance, concentration polarization (CP ), and accumulation of scaling-prone ion concentration on NF membrane surface was explored.