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October 3, 2025Processes2 citationsOpen Access

Exploring the Effect of the Porogenic Agent on Flat Membranes Based on Polyamide 6 (PA6)/Carbon Nanotubes (MWCNT) Nanocomposites

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CSClara Maria Marinho SerafimRPRenê Anísio da PazRDRafael Agra Dias

Key Points

  • Higher MWCNT content resulted in decreased water flow, with optimal conditions achieved using calcium chloride.
  • SEM analysis revealed that calcium chloride effectively modified membrane morphology, creating more interconnected pores.
  • The membranes produced via phase inversion demonstrated improved water vapor transmission with increased MWCNT concentrations.
  • Polyamide 6 and MWCNT nanocomposites showed significant potential for water filtration applications under specific conditions.

Abstract

Polymeric membranes are a highly viable technology for wastewater treatment, water purification, and other filtration operations. Accordingly, flat membranes were developed from extruded nanocomposites of polyamide 6 (PA6) and carbon nanotubes (MWCNT), varying the filler content to 1, 3, and 5 parts per hundred resin (phr). The membranes were produced using the phase inversion process through the immersion–precipitation technique. In total, eight membrane compositions were developed with solvent/polymer ratios of 80/20 (weight %). Calcium chloride (CaCl2) was used as a pore-forming agent at a content of 10 phr. Thus, the characterizations performed were: solution viscosity, FTIR, contact angle measurement, SEM, AFM, water permeability test, and water vapor permeation test. The results showed that the high viscosity of membranes, excessive gelation time, and higher MWCNT contents contributed to a decrease and/or absence of flow. Through SEM images and water flow measurements, the significant influence of CaCl2 was observed in modifying the membrane morphology (more interconnected porous structures), ensuring the presence of flow. The AFM images also confirm this phenomenon through the increase in roughness. Water vapor transmission increased with higher MWCNT content. These results demonstrate that PA6 and MWCNT membranes were effective for water filtration, only in those where CaCl2 was used, and for water vapor initially.

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Cite This Study

Serafim et al. (2025) studied this question.

synapsesocial.com/papers/68e034fdf0e39f13e7fa3618https://doi.org/10.3390/pr13103155
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