首页> 外文期刊>ACS applied materials & interfaces >Noncovalently Functionalized Sulfated Castor Oil-Graphene Oxide-Strengthened Polyetherimide Composite Membranes for Superior Separation of Organic Pollutants and Their Fouling Mitigation
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Noncovalently Functionalized Sulfated Castor Oil-Graphene Oxide-Strengthened Polyetherimide Composite Membranes for Superior Separation of Organic Pollutants and Their Fouling Mitigation

机译:非共价官能化的硫酸化蓖麻油 - 石墨烯氧化物加强的聚醚酰亚胺复合膜,用于优异的有机污染物及其污垢缓解

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摘要

A novel sulfated castor oil (SCO)-graphene oxide (GO)-strengthened polyetherimide (PEI) membrane was prepared for the first time via phase inversion process for the efficient separation of multiple organic pollutants with superior long-term antifouling stability. X-ray diffraction, attenuated total reflectance-Fourier transfer infrared spectroscopy, X-ray photoelectron spectroscopy, scanning electron microscopy, and mechanical strength studies revealed that the SCO and GO were successfully incorporated into the PEI membrane with enhanced mechanical strength. The water flux of the PEI/SCO@GO membrane (410.6 L m(-2) h(-1)) was about 50 times that of bare PEI (7.8 L m(-2) h(-1)) and about 6 times that of PEI/SCO (64.5 L m(-2) h(-1)) membranes. The surface hydrophilicity of the PEI/SCO@GO membrane was significantly increased in terms of the decrease of the water contact angle from 98.5 degrees (bare PEI) to 40.4 degrees. The PEI/SCO@GO membrane separation efficiency was found to be greater than 99.0%, particularly for both the oil-in-water emulsion and the humic acid solution, respectively. Because of the higher flux recovery ratio and the lower total fouling rate of the PEI/SCO@GO membrane, a comprehensive antifouling performance was observed during the long-term foulant filtration cycle analyses. Hence, the incorporation of both SCO and GO into the PEI matrix would render the highly hydrophobic PEI material as the suitable and desirable antifouling membrane toward the treatment of various organic foulants in wastewater.
机译:通过相位转化方法首次制备一种新型硫酸化蓖麻油(SCO)型氧化物(GO) - 制备的聚醚酰亚胺(PEI)膜,以便有效地分离具有优异的长期防污稳定性的多种有机污染物。 X射线衍射,减弱总反射率 - 傅里叶转移红外光谱,X射线光电子体光谱,扫描电子显微镜和机械强度研究表明,SCO和Go成功地掺入PEI膜中,具有增强的机械强度。 PEI / SCO @ GO膜的水通量(410.6L m(-2)H(-1))约为裸PEI的50倍(7.8L m(-2)H(-1))和约6个PEI / SCO的时间(64.5L m(-2)H(-1))膜。在98.5度(裸PEI)至40.4度的情况下,PEI / SCO @ GO膜的表面亲水性显着增加。发现PEI / SCO @ GO膜分离效率大于99.0%,特别是对于水包油乳液和腐殖酸溶液。由于PEI / SCO @ GO膜的持续总污染率较高,较低的总污垢率,在长期污垢过滤循环分析期间观察到综合的防污性能。因此,掺入SCO并进入PEI基质将使高疏水性PEI材料作为适当和理想的防污膜来处理废水中的各种有机污垢。

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