Yang Hee-Man, Choi Hye Min, Jang Sung-Chan, Han Myeong Jin, Seo Bum-Kyoung, Moon Jei-Kwon, Lee Kune-Woo
J Nanosci Nanotechnol. 2015 Oct;15(10):8279-84. doi: 10.1166/jnn.2015.11244.
Hyperbranched polyglycerol-coated magnetic nanoparticles (SHPG-MNPs) were functionalized with succinate groups to form a draw solute for use in a forward osmosis (FO). After the one-step synthesis of hyperbranched polyglycerol-coated magnetic nanoparticles (HPG-MNPs), the polyglycerol groups on the surfaces of the HPG-MNPs were functionalized with succinic anhydride moieties. The resulting SHPG-MNPs showed no change of size and magnetic property compared with HPG-MNPs and displayed excellent dispersibility in water up to the concentration of 400 g/L. SHPG-MNPs solution showed higher osmotic pressure than that of HPG-MNPs solution due to the presence of surface carboxyl groups in SHPG-MNPs and could draw water from a feed solution across an FO membrane without any reverse draw solute leakage during FO process. Moreover, the water flux remained nearly constant over several SHPG-MNP darw solute regeneration cycles applied to the ultrafiltration (UF) process. The SHPG-MNPs demonstrate strong potential for use as a draw solute in FO processes.
超支化聚甘油包覆的磁性纳米颗粒(SHPG-MNPs)用琥珀酸基团进行功能化,以形成用于正向渗透(FO)的汲取溶质。在一步合成超支化聚甘油包覆的磁性纳米颗粒(HPG-MNPs)后,HPG-MNPs表面的聚甘油基团用琥珀酸酐部分进行功能化。所得的SHPG-MNPs与HPG-MNPs相比,尺寸和磁性没有变化,并且在浓度高达400 g/L时在水中表现出优异的分散性。由于SHPG-MNPs中存在表面羧基,SHPG-MNPs溶液比HPG-MNPs溶液表现出更高的渗透压,并且可以在正向渗透过程中从进料溶液中通过正向渗透膜汲取水,而不会有任何反向汲取溶质泄漏。此外,在应用于超滤(UF)过程的几个SHPG-MNP汲取溶质再生循环中,水通量几乎保持恒定。SHPG-MNPs在正向渗透过程中作为汲取溶质具有很强的应用潜力。