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Research Articles

Enhancing antifouling characteristics and performance against protein macromolecule foulant on PVDF membrane ultrafiltration with eco-friendly Arabic gum additive

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Pages 255-269 | Received 04 Jan 2023, Accepted 04 Mar 2023, Published online: 31 Mar 2023

References

  • Wang, H.; Wang, Z. M.; Yan, X.; Chen, J.; Lang, W. Z.; Guo, Y. J. Novel Organic-Inorganic Hybrid Polyvinylidene Fluoride Ultrafiltration Membranes with Antifouling and Antibacterial Properties by Embedding N-Halamine Functionalized Silica Nanospheres. J. Indus. Eng. Chem. 2017, 52, 295–304. DOI: 10.1016/j.jiec.2017.03.059.
  • Desiriani, R.; Susanto, H.; Aryanti, N. Performance Evaluation of Nanofiltration Membranes for Dye Removal of Synthetic Hand-Drawn Batik Industry Wastewater. Environ. Prot. Eng. 2022, 48, 51–68. DOI: 10.37190/epe220104.
  • Desiriani, R.; Kresnowati, M. T. A. P.; Wenten, I. G. Membrane-Based Downstream Processing of Microbial Xylitol Production. Int. J. Technol. 2017, 8, 1393–1401. DOI: 10.14716/ijtech.v8i8.726.
  • Sun, H.; Yang, X.; Zhang, Y.; Cheng, X.; Xu, Y.; Bai, Y.; Shao, L. Segregation-Induced In Situ Hydrophilic Modification of Poly (Vinylidene Fluoride) Ultrafiltration Membranes via Sticky Poly (Ethylene Glycol) Blending. J. Membr. Sci. 2018, 563, 22–30. DOI: 10.1016/j.memsci.2018.05.046.
  • Yu, Y.; Yang, Y.; Yu, L.; Koh, K. Y.; Chen, J. P. Modification of Polyvinylidene Fluoride Membrane by Silver Nanoparticles-Graphene Oxide Hybrid Nanosheet for Effective Membrane Biofouling Mitigation. Chemosphere 2021, 268, 129187. DOI: 10.1016/j.chemosphere.2020.129187.
  • Bai, H.; Wang, X.; Zhou, Y.; Zhang, L. Preparation and Characterization of Poly(Vinylidene Fluoride) Composite Membranes Blended with Nano-Crystalline Cellulose. Prog. Nat. Sci.: Mater. Int. 2012, 22, 250–257. DOI: 10.1016/j.pnsc.2012.04.011.
  • Sri Abirami Saraswathi, M. S.; Rana, D.; Kaleekkal, N. J.; Divya, K.; Nagendran, A. Investigating the Efficacy of PVDF Membranes Customized with Sulfonated Graphene Oxide Nanosheets for Enhanced Permeability and Antifouling. J. Environ. Chem. Eng. 2020, 8. DOI: 10.1016/j.jece.2020.104426.
  • Susanto, H.; Malik, A. I. F.; Raharjo, S. H.; Nur, M. Preparation and Characterization of High Flux Polypropylene Microfiltration Membrane via Non-Solvent Induced Phase Separation. Mater. Today Proc. 2019, 13, 276–280. DOI: 10.1016/j.matpr.2019.03.227.
  • Chen, Z.; Chen, G. E.; Xie, H. Y.; Xu, Z. L.; Li, Y. J.; Wan, J. J.; Liu, L. J.; Mao, H. F. Photocatalytic Antifouling Properties of Novel PVDF Membranes Improved by Incorporation of SnO2-GO Nanocomposite for Water Treatment. Sep. Purif. Technol. 2021, 259. DOI: 10.1016/j.seppur.2020.118184.
  • Xu, Y.; An, L.; Chen, L.; Cao, L.; Zeng, D.; Wang, G. A Facile Chemical Route to Synthesize Zn Doped Hydroxyapatite Nanorods for Protein Drug Delivery. Mater. Chem. Phys. 2018, 214, 359–363. DOI: 10.1016/j.matchemphys.2018.04.117.
  • Rahimpour, A.; Jahanshahi, M.; Rajaeian, B.; Rahimnejad, M. TiO2 Entrapped Nano-Composite PVDF/SPES Membranes: Preparation, Characterization, Antifouling and Antibacterial Properties. Desalination 2011, 278, 343–353. DOI: 10.1016/j.desal.2011.05.049.
  • Abriyanto, H.; Susanto, H.; Maharani, T.; Filardli, A. M. I.; Desiriani, R.; Aryanti, N. Synergistic Effect of Chitosan and Metal Oxide Additives on Improving the Organic and Biofouling Resistance of Polyethersulfone Ultrafiltration Membranes. ACS Omega 2022. DOI: 10.1021/acsomega.2c03685.
  • Liu, Q.; Huang, S.; Zhang, Y.; Zhao, S. Comparing the Antifouling Effects of Activated Carbon and TiO2 in Ultrafiltration Membrane Development. J. Colloid Interface Sci. 2018, 515, 109–118. DOI: 10.1016/j.jcis.2018.01.026.
  • Kajau, A.; Motsa, M.; Mamba, B. B.; Mahlangu, O. Leaching of CuO Nanoparticles from PES Ultrafiltration Membranes. ACS Omega 2021, 6, 31797–31809. DOI: 10.1021/acsomega.1c04431.
  • Azhar, F. H.; Harun, Z.; Hubadillah, S. K.; Ahmad, R. A. R.; Sazali, N.; Bahri, S. S.; Ibrahim, S. A.; Hussin, R. Fabrication of Mixed Matrix Membrane Containing Chlorophyll Extracted from Spinach for Humic Acid Removal. In Materials Today: Proceedings; Elsevier Ltd, 2020; Vol. 46, pp 2058–2064. DOI: 10.1016/j.matpr.2021.03.200.
  • Elizalde, C. N. B.; Al-Gharabli, S.; Kujawa, J.; Mavukkandy, M.; Hasan, S. W.; Arafat, H. A. Fabrication of Blend Polyvinylidene Fluoride/Chitosan Membranes for Enhanced Flux and Fouling Resistance. Sep. Purif. Technol. 2018, 190, 68–76. DOI: 10.1016/j.seppur.2017.08.053.
  • Liu, C. X.; Zhang, D. R.; He, Y.; Zhao, X. S.; Bai, R. Modification of Membrane Surface for anti-Biofouling Performance: Effect of Anti-Adhesion and Anti-Bacteria Approaches. J. Membr. Sci. 2010, 346, 121–130. DOI: 10.1016/j.memsci.2009.09.028.
  • Biao, L.; Tan, S.; Wang, Y.; Guo, X.; Fu, Y.; Xu, F.; Zu, Y.; Liu, Z. Synthesis, Characterization and Antibacterial Study on the Chitosan-Functionalized Ag Nanoparticles. Mater. Sci. Eng. C 2017, 76, 73–80. DOI: 10.1016/j.msec.2017.02.154.
  • Ali, B. H.; Ziada, A.; Blunden, G. Biological Effects of Gum Arabic: A Review of Some Recent Research. Food Chem. Toxicol. 2009, 47, 1–8. DOI: 10.1016/j.fct.2008.07.001.
  • Manning, H. E.; Bird, M. R. Gum Arabic Fractionation Using Synthetic Membranes: The Importance of Fouling. Food Bioprod. Process. 2015, 93, 298–303. DOI: 10.1016/j.fbp.2014.10.008.
  • Manawi, Y.; Kochkodan, V.; Mohammad, A. W.; Ali Atieh, M. Arabic Gum as a Novel Pore-Forming and Hydrophilic Agent in Polysulfone Membranes. J. Membr. Sci. 2017, 529, 95–104. DOI: 10.1016/j.memsci.2017.02.002.
  • Aji, M. M.; Narendren, S.; Purkait, M. K.; Katiyar, V. Biopolymer (Gum Arabic) Incorporation in Waste Polyvinylchloride Membrane for the Enhancement of Hydrophilicity and Natural Organic Matter Removal in Water. J. Water Process Eng. 2020, 38. DOI: 10.1016/j.jwpe.2020.101569.
  • Chai, P. V.; Choy, P. Y.; Teoh, W. C.; Mahmoudi, E.; Ang, W. L. Graphene Oxide Based Mixed Matrix Membrane in the Presence of Eco-Friendly Natural Additive Gum Arabic. J. Environ. Chem. Eng. 2021, 9. DOI: 10.1016/j.jece.2021.105638.
  • Ahmed, A. A. Health Benefits of Gum Arabic and Medical Use. In Gum Arabic: Structure, Properties, Application and Economics; Elsevier: Amsterdam, 2018; pp 183–210. DOI: 10.1016/B978-0-12-812002-6.00016-6.
  • Zielińska-Przyjemska, M.; Ignatowicz, E.; Krajka-Kuźniak, V.; Baer-Dubowska, W. Effect of Tannic Acid, Resveratrol and its Derivatives, on Oxidative Damage and Apoptosis in Human Neutrophils. Food Chem. Toxicol. 2015, 84, 37–46. DOI: 10.1016/j.fct.2015.07.013.
  • Dave, P. N.; Gor, A. Natural Polysaccharide-Based Hydrogels and Nanomaterials: Recent Trends and Their Applications. In Handbook of Nanomaterials for Industrial Applications; Elsevier: Amsterdam, 2018; pp 36–66. DOI: 10.1016/B978-0-12-813351-4.00003-1.
  • Farooq, M.; Ihsan, J.; Mohamed, R. M. K.; Khan, M. A.; Rehman, T. U.; Ullah, H.; Ghani, M.; Saeed, S.; Siddiq, M. Highly Biocompatible Formulations Based on Arabic Gum Nano Composite Hydrogels: Fabrication, Characterization, and Biological Investigation. Int. J. Biol. Macromol. 2022, 209, 59–69. DOI: 10.1016/j.ijbiomac.2022.03.162.
  • Agnihotri, A. S. M. N.; Rison, S. B. A. K.; Varghese, A. Tuning of the Surface Structure of Silver Nanoparticles Using Gum Arabic for Enhanced Electrocatalytic Oxidation of Morin. Appl. Surf. Sci. Adv. 2021, 6, 100181. DOI: 10.1016/j.apsadv.2021.100181.
  • Moghadam, A.; Salmani Mobarakeh, M.; Safaei, M.; Kariminia, S. Synthesis and Characterization of Novel Bio-Nanocomposite of Polyvinyl Alcohol-Arabic Gum-Magnesium Oxide via Direct Blending Method. Carbohydr. Polym. 2021, 260 (February), 117802. DOI: 10.1016/j.carbpol.2021.117802.
  • Al-Ansari, M. M.; Al-Dahmash, N. D.; Ranjitsingh, A. J. A. Synthesis of Silver Nanoparticles Using Gum Arabic: Evaluation of its Inhibitory Action on Streptococcus Mutans Causing Dental Caries and Endocarditis. J. Infect. Public Health 2021, 14, 324–330. DOI: 10.1016/j.jiph.2020.12.016.
  • Vuillemin, M. E.; Michaux, F.; Adam, A. A.; Linder, M.; Muniglia, L.; Jasniewski, J. Physicochemical Characterizations of Gum Arabic Modified with Oxidation Products of Ferulic Acid. Food Hydrocoll. 2020, 107. DOI: 10.1016/j.foodhyd.2020.105919.
  • Guan, K.; Qin, W.; Liu, Y.; Yin, X.; Peng, C.; Lv, M.; Sun, Q.; Wu, J. Evolution of Porosity, Pore Size and Permeate Flux of Ceramic Membranes During Sintering Process. J. Membr. Sci. 2016, 520, 166–175. DOI: 10.1016/j.memsci.2016.07.023.
  • Lee, W.; Kang, P. K.; Kim, A. S.; Lee, S. Impact of Surface Porosity on Water Flux and Structural Parameter in Forward Osmosis. Desalination 2018, 439, 46–57. DOI: 10.1016/j.desal.2018.03.027.
  • Abunada, M.; Dhakal, N.; Andyar, W. Z.; Ajok, P.; Smit, H.; Ghaffour, N.; Schippers, J. C.; Kennedy, M. D. Improving MFI-UF Constant Flux to More Accurately Predict Particulate Fouling in RO Systems: Quantifying the Effect of Membrane Surface Porosity. J. Membr. Sci. 2022, 660. DOI: 10.1016/j.memsci.2022.120854.
  • Moradi, G.; Zinadini, S.; Rajabi, L. Development of Nanofiltration PES Membranes Incorporated with Hydrophilic Para Hydroxybenzoate Alumoxane Filler for High Flux and Antifouling Property. Chem. Eng. Res. Des. 2020, 158, 148–163. DOI: 10.1016/j.cherd.2020.04.004.
  • Mokarizadeh, H.; Raisi, A. Industrial Wastewater Treatment Using PES UF Membranes Containing Hydrophilic Additives: Experimental and Modeling of Fouling Mechanism. Environ. Technol. Innov. 2021, 23. DOI: 10.1016/j.eti.2021.101701.
  • Montesanto, S.; Mannella, G. A.; Carfì Pavia, F.; la Carrubba, V.; Brucato, V. Coagulation Bath Composition and Desiccation Environment as Tuning Parameters to Prepare Skinless Membranes via Diffusion Induced Phase Separation. J. Appl. Polym. Sci. 2015, 132. DOI: 10.1002/app.42151.
  • Chakrabarty, B.; Ghoshal, A. K.; Purkait, M. K. Preparation, Characterization and Performance Studies of Polysulfone Membranes Using PVP as an Additive. J. Membr. Sci. 2008, 315, 36–47. DOI: 10.1016/j.memsci.2008.02.027.
  • Istirokhatun, T.; Rokhati, N.; Nurlaeli, D.; Arifianingsih, N. N.; Sudarno; Syafrudin; Susanto, H. Characteristics, Biofouling Properties and Filtration Performance of Cellulose/Chitosan Membranes. J. Environ. Sci. Technol. 2017, 10, 56–67. DOI: 10.3923/jest.2017.56.67.
  • Susanto, H.; Robbani, M. H.; Istirokhatun, T.; Firmansyah, A. A.; Rhamadhan, R. N. Preparation of Low-Fouling Polyethersulfone Ultrafiltration Membranes by Incorporating High-Molecular-Weight Chitosan with the Help of a Surfactant. S. Afr. J. Chem. Eng. 2020, 33, 133–140. DOI: 10.1016/j.sajce.2020.07.003.
  • Sinha, M. K.; Purkait, M. K. Enhancement of Hydrophilicity of Poly(Vinylidene Fluoride-Co-Hexafluoropropylene) (PVDF-HFP) Membrane Using Various Alcohols as Nonsolvent Additives. Desalination 2014, 338, 106–114. DOI: 10.1016/j.desal.2014.02.002.
  • Wang, Y. Q.; Wang, T.; Su, Y. L.; Peng, F. B.; Wu, H.; Jiang, Z. Y. Remarkable Reduction of Irreversible Fouling and Improvement of the Permeation Properties of Poly(Ether Sulfone) Ultrafiltration Membranes by Blending with Pluronic F127. Langmuir 2005, 21, 11856–11862. DOI: 10.1021/la052052d.
  • Aseri, N. S.; Lau, W. J.; Goh, P. S.; Hasbullah, H.; Othman, N. H.; Ismail, A. F. Preparation and Characterization of Polylactic Acid-Modified Polyvinylidene Fluoride Hollow Fiber Membranes with Enhanced Water Flux and Antifouling Resistance. J. Water Process Eng. 2019, 32. DOI: 10.1016/j.jwpe.2019.100912.
  • Hassankiadeh, N. T.; Cui, Z.; Kim, J. H.; Shin, D. W.; Lee, S. Y.; Sanguineti, A.; Arcella, V.; Lee, Y. M.; Drioli, E. Microporous Poly(Vinylidene Fluoride) Hollow Fiber Membranes Fabricated with PolarClean as Water-Soluble Green Diluent and Additives. J. Membr. Sci. 2015, 479, 204–212. DOI: 10.1016/j.memsci.2015.01.031.
  • Rajabzadeh, S.; Liang, C.; Ohmukai, Y.; Maruyama, T.; Matsuyama, H. Effect of Additives on the Morphology and Properties of Poly(Vinylidene Fluoride) Blend Hollow Fiber Membrane Prepared by the Thermally Induced Phase Separation Method. J. Membr. Sci. 2012, 423–424, 189–194. DOI: 10.1016/j.memsci.2012.08.013.
  • Lusiana, R. A.; Sangkota, V. D. A.; Sasongko, N. A.; Gunawan, G.; Wijaya, A. R.; Santosa, S. J.; Siswanta, D.; Mudasir, M.; Abidin, M. N. Z.; Mansur, S.; et al. Permeability Improvement of Polyethersulfone–Polietylene Glycol (PEG–PES) Flat Sheet Type Membranes by Tripolyphosphate-Crosslinked Chitosan (TPP-CS) Coating. Int. J. Biol. Macromol. 2020, 152, 633–644. DOI: 10.1016/j.ijbiomac.2020.02.290.
  • Wang, J.; Yi, M.; Shen, Z.; Liu, L.; Zhang, X.; Ma, S. Enhanced Thermal and Mechanical Properties of Poly (Vinylidene Fluoride) Nanocomposites Reinforced by Liquid-Exfoliated Graphene. J. Macromol. Sci. A: Pure Appl. Chem. 2019, 56, 733–740. DOI: 10.1080/10601325.2019.1607375.
  • Boributh, S.; Chanachai, A.; Jiraratananon, R. Modification of PVDF Membrane by Chitosan Solution for Reducing Protein Fouling. J. Membr. Sci. 2009, 342, 97–104. DOI: 10.1016/j.memsci.2009.06.022.
  • Teng, L.; Yue, C.; Zhang, G. Epoxied SiO2 Nanoparticles and Polyethyleneimine (PEI) Coated Polyvinylidene Fluoride (PVDF) Membrane for Improved Oil Water Separation, Anti-Fouling, Dye and Heavy Metal Ions Removal Capabilities. J. Colloid Interface Sci. 2023, 630, 416–429. DOI: 10.1016/j.jcis.2022.09.148.
  • Hassan, F.; Mushtaq, R.; Saghar, S.; Younas, U.; Pervaiz, M.; Aljuwayid, A.; Muteb; Habila, M. A.; Sillanpaa, M. Fabrication of Graphene-Oxide and Zeolite Loaded Polyvinylidene Fluoride Reverse Osmosis Membrane for Saltwater Remediation. Chemosphere 2022, 307, 136012. DOI: 10.1016/j.chemosphere.2022.136012.
  • Li, M.; Yang, Y.; Zhu, L.; Wang, G.; Zeng, Z.; Xue, L. Anti-Fouling and Highly Permeable Thin-Film Composite Forward Osmosis Membranes Based on the Reactive Polyvinylidene Fluoride Porous Substrates. Colloids Surf. A: Physicochem. Eng. Asp. 2022, 654. DOI: 10.1016/j.colsurfa.2022.130144.
  • Wu, L.; Liu, Y.; Hu, J.; Feng, X.; Ma, C.; Wen, C. Preparation of Polyvinylidene Fluoride Composite Ultrafiltration Membrane for Micro-Polluted Surface Water Treatment. Chemosphere 2021, 284. DOI: 10.1016/j.chemosphere.2021.131294.
  • Bakhshizadeh, S.; Sabzehmeidani, M. M.; Ghaedi, M.; Dashtian, K.; Abbasi-Asl, H. Preparation and Characterization of Mixed Matrix Membranes Based on PVDF Blend and Hydrophilic Molecularly Imprinted MIL-101 (Cr) as Filler for Efficient Selective Removal of Dye. J. Environ. Chem. Eng. 2022, 10. DOI: 10.1016/j.jece.2022.108864.
  • Hester, J. F.; Banerjee, P.; Mayes, A. M. Preparation of Protein-Resistant Surfaces on Poly(Vinylidene Fluoride) Membranes via Surface Segregation. Macromolecules 1999, 32, 1643–1650. DOI: 10.1021/ma980707u.
  • Lin, Q.; Wu, L.; Hu, W.; Wan, X.; Wu, Z.; Zhang, C. Antifouling and Antimicrobial Modification of Polyvinylidene Fluoride Micropore Membrane by Plant Tannic Acid and Polyhexamethylene Guanidine. Surf. Interfaces 2022, 29. DOI: 10.1016/j.surfin.2021.101708.
  • Asadi, A.; Gholami, F.; Nazari, S.; Dolatshah, M. Preparation of Antifouling and Antibacterial Polyvinylidene Fluoride Membrane by Incorporating Functionalized Multiwalled Carbon Nanotubes. J. Water Process Eng. 2022, 49. DOI: 10.1016/j.jwpe.2022.103042.
  • Li, Y. J.; Chen, G. E.; Xie, H. Y.; Chen, Z.; Xu, Z. L.; Mao, H. F. Increasing the Hydrophilicity and Antifouling Properties of Polyvinylidene Fluoride Membranes by Doping Novel Nano-Hybrid ZnO@ZIF-8 Nanoparticles for 4-Nitrophenol Degradation. Polym. Test. 2022, 113. DOI: 10.1016/j.polymertesting.2022.107613.
  • Vatanpour, V.; Ghadimi, A.; Karimi, A.; Khataee, A.; Yekavalangi, M. E. Antifouling Polyvinylidene Fluoride Ultrafiltration Membrane Fabricated from Embedding Polypyrrole Coated Multiwalled Carbon Nanotubes. Mater. Sci. Eng. C: Mater. Biol. Appl. 2018, 89, 41–51. DOI: 10.1016/j.msec.2018.03.026.

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