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纳米碳固定膜减少和消除空气鼓泡膜蒸馏中腐殖酸结垢

Reduction and Elimination of Humic Acid Fouling in Air Sparged Membrane Distillation Using Nanocarbon Immobilized Membrane.

机构信息

Department of Chemistry and Environmental Science, New Jersey Institute of Technology, Newark College of Engineering, University Heights, Newark, NJ 07102, USA.

出版信息

Molecules. 2022 May 1;27(9):2896. doi: 10.3390/molecules27092896.

Abstract

In this paper, we present the treatment of humic acid solution via carbon nanotube immobilized membrane (CNIM) distillation assisted by air sparging (AS). Carbon nanotubes offer excellent hydrophobicity to the modified membrane surface and actively transport water vapor molecules through the membrane to generate higher vapor flux and better rejection of humic acid. The introduction of air sparging in the membrane distillation (MD) system has changed the humic substance fouling by changing the colloidal behavior of the deposits. This modified MD system can sustain a higher run time of separation and has enhanced the evaporation efficiency by 20% more than the regular membrane distillation. The air sparging has reduced the deposition by 30% in weight and offered lesser fouling of membrane surface even after a longer operating cycle. The water vapor flux increased with temperature and decreased as the volumetric concentrating factor (VCF) increased. The mass transfer coefficient was found to be the highest for the air sparged-carbon nanotube immobilized membrane (AS-CNIM) integrated membrane distillation. While the highest change in mass transfer coefficient (MTC) was found for polytetrafluoroethylene (PTFE) membrane with air sparging at 70 °C.

摘要

本文提出了一种通过空气喷射辅助碳纳米管固定膜(CNIM)蒸馏处理腐殖酸溶液的方法。碳纳米管使改性膜表面具有极好的疏水性,并通过膜主动传输水蒸气分子,从而产生更高的蒸汽通量和更好的腐殖酸截留率。在膜蒸馏(MD)系统中引入空气喷射改变了胶体物质的沉积行为,从而改变了腐殖质的污染。与常规膜蒸馏相比,改进后的 MD 系统能够维持更长的分离运行时间,并将蒸发效率提高 20%。空气喷射减少了 30%的沉积量,即使在更长的运行周期内,膜表面的污染也更少。水蒸气通量随温度升高而增加,随体积浓缩因子(VCF)增加而降低。发现空气喷射碳纳米管固定膜(AS-CNIM)集成膜蒸馏的传质系数最高。而在 70°C 下用空气喷射时,聚四氟乙烯(PTFE)膜的传质系数变化最大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a94e/9103841/ad9ad8269e1f/molecules-27-02896-g001.jpg

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