Hydrophilic Polyethyleneimine-Tio2 Hybrid Layer on Polyethersulfone/Sulfonated Polysulfone Blend Membrane with Antifouling Characteristics for the Effective Separation of Oil-in-Water Emulsions

51 Pages Posted: 24 May 2022

See all articles by Jianxin Li

Jianxin Li

Tiangong University

Christine Matindi

Tiangong University

Sania Kadanyo

Tiangong University

Gansheng Liu

Tiangong University

Mengyang Hu

Tiangong University

Feng Yan

Tiangong University

Xiaohua Ma

Tiangong University

Yunxia Hu

Tiangong University

Zhenyu Cui

Tiangong University

Benqiao He

Tiangong University

Abstract

Polyethersulphone/sulfonated polysulfone/TiO2 (PES/SPSf/TiO2) ultrafiltration (UF) mixed matrix membranes (MMMs) were coated with a hybrid layer composed of branched polyethyleneimine (PEI) and TiO2 nanoparticles (NPs) crosslinked by glutaraldehyde (GA) to enhance its stability. The effect of TiO2 NPs loadings on the thickness, surface wettability, surface charge and molecular weight cut-off (MWCO) was explored. The corresponding MWCO decreased from 96 kDa for the pristine MMMs (M0) to 8.5 kDa for PEI-GA@MMMs (M1), and then gradually increased to the range of 15 kDa-40 kDa for PEI-TiO2/GA@MMMs. TiO2 NPs having abundant –OH groups also increased electronegativity and hydrophilicity of the composite membranes. At neutral pH, the zeta potential changed from negative charge of MMMs (-33 mV) into positive charge of M1 (1.3 mV), then into negative charge (-7.4 mV) in the optimum hybrid coated membrane PEI-TiO2 (0.025 wt. %)/GA@MMMs (M3). The underwater oil contact angle (UWOCA) of with hexane, gasoline, dichloromethane and petroleum ether was 165°, 167°, 164° and 135°, respectively. The air/water contact angle of M3 was 42°, which is lower than that of M1 (63°). It is important to note that M3 demonstrated a high rejection of different oil-in-water emulsions with < 300 nm oil droplets (>90%) and an improved pure water permeance of 62 LMH bar-1 compared to 44 LMH bar-1of M1. Notably, M3 exhibited double the antifouling rates of M1 hence corroborating wettability and surface charge results. In summary, our current study provides an available tuning approach to engineering membranes for the treatment of oil-in-water emulsions containing nano-sized oil droplets.

Keywords: Polyethyeleneimine, TiO2 nanoparticles, Hybrid coating, Oil-in-water separation, Antifouling.

undefined

Suggested Citation

Li, Jianxin and Matindi, Christine and Kadanyo, Sania and Liu, Gansheng and Hu, Mengyang and Yan, Feng and Ma, Xiaohua and Hu, Yunxia and Cui, Zhenyu and He, Benqiao, Hydrophilic Polyethyleneimine-Tio2 Hybrid Layer on Polyethersulfone/Sulfonated Polysulfone Blend Membrane with Antifouling Characteristics for the Effective Separation of Oil-in-Water Emulsions. Available at SSRN: https://ssrn.com/abstract=4118385 or http://dx.doi.org/10.2139/ssrn.4118385

Jianxin Li (Contact Author)

Tiangong University ( email )

China

Christine Matindi

Tiangong University ( email )

China

Sania Kadanyo

Tiangong University ( email )

China

Gansheng Liu

Tiangong University ( email )

Mengyang Hu

Tiangong University ( email )

China

Feng Yan

Tiangong University ( email )

China

Xiaohua Ma

Tiangong University ( email )

Yunxia Hu

Tiangong University ( email )

China

Zhenyu Cui

Tiangong University ( email )

China

Benqiao He

Tiangong University ( email )

China

0 References

    0 Citations

      Do you have a job opening that you would like to promote on SSRN?

      Paper statistics

      Downloads
      48
      Abstract Views
      263
      PlumX Metrics
      Plum Print visual indicator of research metrics
      • Citations
        • Citation Indexes: 2
      • Usage
        • Abstract Views: 258
        • Downloads: 48
      • Captures
        • Readers: 1
      see details