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氧化碳衍生碳作为一种新型填料用于改善杂化聚醚砜超滤膜的抗污染特性和渗透通量。

Oxidized carbide-derived carbon as a novel filler for improved antifouling characteristics and permeate flux of hybrid polyethersulfone ultrafiltration membranes.

作者信息

Almanassra Ismail W, Jaber Lubna, Backer Sumina Namboorimadathil, Chatla Anjaneyulu, Kochkodan Viktor, Al-Ansari Tareq, Shanableh Abdallah, Atieh Muataz Ali

机构信息

Research Institute of Sciences and Engineering (RISE), University of Sharjah, Sharjah, United Arab Emirates.

Research Institute of Sciences and Engineering (RISE), University of Sharjah, Sharjah, United Arab Emirates; Department of Chemistry, College of Sciences, University of Sharjah, Sharjah, United Arab Emirates.

出版信息

Chemosphere. 2023 Feb;313:137425. doi: 10.1016/j.chemosphere.2022.137425. Epub 2022 Nov 29.

Abstract

Polyethersulfone (PES) is a widely used polymer for ultrafiltration (UF) membrane fabrication. In the current study, carbide-derived carbon (CDC) oxidized by acid treatment was utilized as a filler to fabricate a novel PES composites UF membranes. The successful oxidation of CDC was validated from presence of oxygen containing functional groups and improved oxygen content, from 5.08 at.% for CDC to 26.22 at.% for oxidized CDC (OCDC). The OCDC PES UF membranes were prepared at different loadings of OCDC between 0.5 and 3.0 wt%. The membrane porosity, pore size and surface free energy found to be improved while a noticeable reduction in water contact angle was observed with OCDC loading implying the improved hydrophilicity of PES membranes. Consequently, the pure water flux found to improve from 151.6 to 569.6 (L/(m. h)) for the 3.0 wt% modified OCDC membrane (M-3) which is 3.8 folds of the bare PES membrane. The antifouling characteristics were evaluated by humic acid (HA) filtration. The results revealed a significant enhancement in HA rejection with OCDC loading, the highest rejection was 96.8% for M-3 membrane. Additionally, the adsorption capacity of OCDC modified membranes found to decrease with OCDC loading indicating improved rejection of HA from the membrane surface. Moreover, M-3 demonstrated the maximum flux recovery ratio (FRR) of 92.3%. Reusability of the fabricated membranes was evaluated by deionized water/humic acid cycling filtration. The FRR was higher than 86.7% over three cycles of pure water/HA filtration for 140 min, indicated the excellent stability and reusability of the membranes. Overall, the OCDC was an effective filler for enhancing the PES UF membranes antifouling and permeability properties.

摘要

聚醚砜(PES)是一种广泛用于制造超滤(UF)膜的聚合物。在当前研究中,通过酸处理氧化的碳化物衍生碳(CDC)被用作填料来制备新型PES复合超滤膜。从含氧化官能团的存在以及氧含量的提高验证了CDC的成功氧化,氧含量从CDC的5.08原子%提高到氧化CDC(OCDC)的26.22原子%。在0.5至3.0 wt%的不同OCDC负载量下制备了OCDC PES超滤膜。发现膜的孔隙率、孔径和表面自由能得到改善,同时随着OCDC负载量的增加,水接触角显著减小,这意味着PES膜的亲水性得到改善。因此,对于3.0 wt%改性OCDC膜(M-3),纯水通量从151.6提高到569.6(L/(m·h)),是裸PES膜的3.8倍。通过腐殖酸(HA)过滤评估了抗污染特性。结果表明,随着OCDC负载量的增加,HA截留率显著提高,M-3膜的最高截留率为96.8%。此外,发现OCDC改性膜的吸附容量随OCDC负载量的增加而降低,表明从膜表面对HA的截留率提高。此外,M-3的最大通量恢复率(FRR)为92.3%。通过去离子水/腐殖酸循环过滤评估了所制备膜的可重复使用性。在140分钟的纯水/HA过滤三个循环中,FRR高于86.7%,表明膜具有优异的稳定性和可重复使用性。总体而言,OCDC是一种有效的填料,可增强PES超滤膜的抗污染和渗透性能。

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