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Plasma functionalized hydroxyapatite incorporated in membranes for improved performance of osmotic processes

机译:血浆官能化羟基磷灰石掺入膜中,以改善渗透过程的性能

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摘要

Osmotic processes are base processes for water desalination by reverse osmosis and power generation by forward osmosis. The development of advanced membrane materials may be considered the main step to improve these processes. In this work, hydroxyapatite (Hap) particles were functionalized by plasma treatment and incorporated into cellulose acetate membranes synthesized by phase inversion method. Morphology and physical-chemical properties of the functionalized Hap and the synthesized membranes were characterized. Plasma functionalization was able to increase Hap hydrophilicity by insertion of hydroxyl groups on particle surfaces. The water permeability of nanocomposite membranes increased from 0.39 to 0.51 L.h(-1)m(-2)bar(-1) with 1.0% (wt) Hapf in the reverse osmosis desalination system, maintaining high rejection of NaCl and MgSO4. In forward osmosis tests, the same membranes provided an increase from 4.5 to 7.5 L.h(-1)m(-2), representing a growth of 66%, maintaining reverse salt flux (Js) practically constant. This research revealed high-performance membranes with potential application in osmotic processes.
机译:渗透过程是通过正向渗透反渗透和发电的水脱盐的基础方法。先进的膜材料的发展可以被认为是改善这些过程的主要步骤。在这项工作中,通过等离子体处理使羟基磷灰石(HAP)颗粒官能化,并掺入通过相转化方法合成的醋酸纤维素膜。表征了官能化Hap和合成膜的形态学和物理化学性质。血浆官能化能够通过在颗粒表面上插入羟基来增加HAP亲水性。纳米复合膜的水渗透率从反渗透脱盐系统中的1.0%(wt)Hapf增加0.39至0.51升(-1)m(-2)棒(-1),保持高抑制NaCl和MgSO 4。在前渗透试验中,相同的膜提供从4.5-7.5L.H(-1)m(-2)的增加,表示66%的生长,维持逆盐通量(JS)实际上是恒定的。该研究揭示了高性能膜,具有在渗透过程中的潜在应用。

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