Role of plasma process gas on permeate flux augmentation of cellulose nitrate membrane for mud water treatment

等离子体工艺气体对硝酸纤维素膜渗透通量增强在泥水处理中的作用

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Abstract

A comparative study between Nitrogen (N(2)) and Argon (Ar) plasma is carried out to investigate its effect on surface morphology, hydrophilicity, permeate flux and ageing of cellulose nitrate polymeric membranes in the present work. Langmuir probe and Optical Emission Spectroscopy are used to characterize the plasma. The SEM analysis reveals the noticeable macro-void creations and pore enlargement for both N(2) and Ar plasma. The AFM analysis shows a higher surface roughness for Ar plasma treatment as compared to N(2) plasma treatment. XPS analysis confirms the changes in the polymer matrix along with the incorporation of various functional groups on the membrane surface as a result of the plasma treatment. A better hydrophilic nature with prolonged plasma treatment is observed for Ar plasma as compared to N(2) plasma treatment. The present results show a higher permeate flux with a high rejection rate for Ar plasma treatment in comparison to N(2) plasma, which might be due to the pore size and pore area enlargement of the membrane. The hydrophobic recovery for both the plasma-treated membranes is found significant for the initial ageing period of 7 days and found almost stable in nature after 7 days. A diffusion-based theoretical model is developed to study the hydrophobic recovery of plasma-treated membranes. A strong alignment between experimental and theoretical results is observed in the present work. The Cake Filtration model, derived from the Hermia model, is identified as the most suitable model for describing the fouling mechanisms for the present work.

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