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首页> 外文期刊>Composites Science and Technology >Highly-efficient and salt-resistant Cs_xWO_3@g-C_3N_4/PVDF fiber membranes for interfacial water evaporation, desalination, and sewage treatment
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Highly-efficient and salt-resistant Cs_xWO_3@g-C_3N_4/PVDF fiber membranes for interfacial water evaporation, desalination, and sewage treatment

机译:高效和耐盐CS_XWO_3 @ G-C_3N_4 / PVDF纤维膜,用于界面水蒸发,脱盐和污水处理

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摘要

In this work, cesium tungsten oxide/graphitic carbon nitride (Cs0.32WO3@g-C3N4) hybrids were successfully synthesized using a facile solvothermal method. The hybrids were incorporated into PVDF and electrospun into Cs0.32WO3@g-C3N4/PVDF fiber membranes. Water evaporation, desalination, and sewage treatment were studied using the photothermal fiber membranes. The experimental results showed that the highest photothermal conversion could be achieved for a fiber membrane composed of 10 wt% of Cs0.32WO3@g-C3N4. The highest temperature elevations measured were 85 degrees C and 90 degrees C under NIR and full solar light, respectively. The membranes exhibited excellent anti-salt fouling behavior while also demonstrating superior water evaporation efficiency and salt rejection 95.4% and 99.9%, respectively. Furthermore, the electrospun fiber membranes showed excellent efficiencies for removing organic dyes, 4-nitro phenol and tetracycline. These superior properties are attributed to the hydrophobicity of PVDF, which enables an air gap to form between the water and the fiber membrane. This air gap selectively admits water vapor into the fiber membrane while salt and organic pollutants diffuse back to bulk water, which is critical for the successful of desalination. This study opens the door to design new multi-functional fiber membranes for sewage treatment, especially for desalination.
机译:在这项工作中,使用容易的溶剂热法成功地合成了氧化铯氧化铯/石墨碳氮化物(CS0.32WO3@G-C3N4)杂种。将杂交物掺入PVDF和Electrom optO中,进入CS0.32WO3@G-C3N4/PVDF纤维膜。使用光热纤维膜研究水蒸发,脱盐和污水处理。实验结果表明,纤维膜可以实现最高的光热转化率为10wt%的CS0.32WO3至-C3N4。在NIR和全太阳光下,测量的最高温度升高为85℃和90摄氏度。膜表现出优异的抗盐污垢行为,同时也分别显示出优异的水蒸发效率和盐排斥率为95.4%和99.9%。此外,电纺纤维膜显示出优异的效率,用于去除有机染料,4-硝基苯酚和四环素。这些优异的性质归因于PVDF的疏水性,这使得气隙能够在水和纤维膜之间形成。这种气隙选择性地承认水蒸气进入纤维膜,而盐和有机污染物散开散装水,这对于脱盐的成功至关重要。本研究开辟了设计新的多功能纤维膜,用于污水处理,特别是用于脱盐。

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