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March 21, 2026Scientific Reports2 citationsOpen Access

Development and characterization of an aloe vera-based bio-emulsifier for sustainable bio-emulsion liquid membrane systems for wastewater treatment

MWManisha WakleSKSnigdha Khuntia

Key Points

  • This study aims to develop a natural bio-emulsifier from Aloe vera for enhancing emulsion stability in wastewater treatment.
  • Characterization of Aloe vera leaf extract using HPLC and GC-MS.
  • Determination of critical micelle concentration and surface tension measurements.
  • Rheological analysis to assess shear-thinning behavior.
  • Optimization of bio-emulsifier concentration and operating conditions.
  • Assessment of extraction efficiency for methylene blue dye.
  • Bio-emulsifier exhibited a critical micelle concentration of 2% v/v and a surface tension of 18 mN/m.
  • Achieved droplet sizes of 50-200 nm with stable structural integrity for 15 days.
  • Optimal conditions identified included 2.5% bio-emulsifier concentration and 800 rpm stirring speed.
  • Achieved 98% extraction efficiency for methylene blue dye from synthetic solutions.

Abstract

Emulsion instability poses a challenge in the development of emulsion liquid membrane (ELM) systems, as coalescence and phase separation hinder their effectiveness in wastewater treatment. This study presents a bio-emulsion liquid membrane (Bio-ELM) system that uses Aloe vera leaf (AVL) extract as a natural bio-emulsifier. AVL extract was characterized using HPLC and GC-MS, confirming the presence of amphiphilic bioactive compounds that reduce interfacial tension and form uniform nanoscale droplets. The critical micelle concentration (CMC) of the bio-emulsifier was 2% v/v, which corresponded to a surface tension of 18 mN/m. Bio-ELM exhibited droplet sizes of 50-200 nm, shear-thinning behavior verified by rheological analysis, and FTIR evidence indicating bio-emulsifier incorporation into the membrane phase. Optimization studies identified the optimal conditions as a bio-emulsifier concentration of 2.5% v/v, stirring speed of 800 rpm, internal phase concentration of 0.25 M, pH 8, and membrane-to-internal phase ratio of 1:1.5. Under these conditions, Bio-ELM achieved a 98% extraction efficiency for methylene blue dye from a synthetic aqueous solution. Dimensionless numbers (Capillary, Bond, and Marangoni numbers) provide insights into the balance of viscous, interfacial, and elastic forces governing emulsion stability. Stability assessments showed that the Bio-ELM maintained structural integrity and performance for up to 15 days. This study demonstrates the potential of an Aloe vera-derived bio-emulsifier to address emulsion instability, offering a sustainable alternative for environmental remediation using Bio-ELM technology.

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Cite This Study

Wakle et al. (2026) studied this question.

synapsesocial.com/papers/69be37ce6e48c4981c677b0dhttps://doi.org/10.1038/s41598-026-41280-1
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