膜生物反应器处理含油废水用聚砜/Fe3O4@APTES纳米复合膜的制备与鉴定

IF 3.5 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL
Maryam Beit Sady, Ferial Nosratinia, Ahmad Khoshgard and Mehdi Ardjmand
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引用次数: 0

摘要

本研究制备了纳米复合膜,并对其进行了表征,用于膜生物反应器(mbr)处理含油废水。首先合成了氧化铁纳米颗粒(Fe3O4),然后用四乙氧基硅烷(TEOS)和3-氨基丙基三乙氧基硅烷(APTES)对其进行改性。加入Fe3O4@APTES,分别以0、0.05、0.1、0.3 wt%的不同浓度(分别用TFC、TFN-0.05、TFN-0.1、TFN-0.3的编码表示)制备膜。未添加Fe3O4@APTES纳米粒子(TFC)时,膜的最高水通量为58.36 L m−2 h−1,添加纳米粒子(TFN-0.3)后,膜的最高水通量为46.80 L m−2 h−1。TFN-0.1膜表现出最佳的膜生物反应器性能。采用TFN-0.1膜的MBR系统对重金属的终浓度为84.96% Pb(II) >;80.18% Zn(II) >;74.43% Cr(III) >;74.14%的镍(II)。因此,我们发现在膜中加入Fe3O4@APTES纳米颗粒可以减少不可逆污染。结果表明,TFN-0.1纳米复合膜的抗污性能最佳,通量回收率为96.3%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Fabrication and identification of polysulfone/Fe3O4@APTES nanocomposite membranes used in membrane bioreactors for oily wastewater treatment†

Fabrication and identification of polysulfone/Fe3O4@APTES nanocomposite membranes used in membrane bioreactors for oily wastewater treatment†

In this study, nanocomposite membranes were fabricated and characterized for use in membrane bioreactors (MBRs) to treat oily wastewater. Iron oxide nanoparticles (Fe3O4) were first synthesized and then modified by tetraethoxysilane (TEOS) and 3-aminopropyl triethoxysilane (APTES). The membranes were prepared by adding Fe3O4@APTES at different concentrations of 0, 0.05, 0.1, and 0.3 wt%, which were denoted by different codes of TFC, TFN-0.05, TFN-0.1, and TFN-0.3, respectively. The highest water flux through the membrane without Fe3O4@APTES nanoparticles (TFC) was recorded as 58.36 L m−2 h−1, which was later reduced to 46.80 L m−2 h−1 by adding nanoparticles to the membrane (TFN-0.3). The TFN-0.1 membrane demonstrated the best membrane bioreactor performance. The final concentration of heavy metals by the MBR system with the TFN-0.1 membrane was 84.96% Pb(II) > 80.18% Zn(II) > 74.43% Cr(III) > 74.14% Ni(II). Hence, it was found that adding Fe3O4@APTES nanoparticles to the membranes could reduce irreversible fouling. The results showed that the TFN-0.1 membrane with a flux recovery ratio of 96.3% had the most optimal antifouling performance among the other nanocomposite membranes.

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来源期刊
Environmental Science: Water Research & Technology
Environmental Science: Water Research & Technology ENGINEERING, ENVIRONMENTALENVIRONMENTAL SC-ENVIRONMENTAL SCIENCES
CiteScore
8.60
自引率
4.00%
发文量
206
期刊介绍: Environmental Science: Water Research & Technology seeks to showcase high quality research about fundamental science, innovative technologies, and management practices that promote sustainable water.
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