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April 15, 2026BMC Biotechnology0 citationsOpen Access

Enhanced production and biodeinking application of β-glucosidase from Aspergillus niger S1 via submerged fermentation using office paper waste through conventional and statistical approaches

DADoaa AliMHMohamed S. HasaninMAMohamed Abdelraof

Key Points

  • This research aims to optimize the production of β-glucosidase from Aspergillus niger S1 using office paper waste.
  • Used submerged fermentation to cultivate Aspergillus niger S1.
  • Investigated factors like temperature, pH, and carbon source affecting enzyme production.
  • Applied CCD-based optimization techniques to fine-tune conditions for maximum output.
  • Achieved a maximum enzyme yield of 3.35 U/mL after 3 days at optimal conditions.
  • Identified pH 6.5 and 30 °C as ideal for enzyme production with office paper waste.
  • Confirmed enzyme activity successfully removed ink and improved paper properties.

Abstract

β-glucosidases are highly versatile catalysts with significant potential in various industries, including wastepaper deinking, which is a sustainable alternative due to its high effectiveness and minimal environmental impact. In this study, the optimal conditions for using submerged fermentation (SmF) to produce β-glucosidase from a newly isolated soil fungal species (Aspergillus niger S1) were improved. The main variables that influence the formation of β-glucosidase were examined, including temperature, pH, incubation period, nitrogen source, emulsifier concentration, and carbon source concentration. The production of β-glucosidase by the recently isolated Aspergillus niger S1 using office paper waste (OPW) as feedstock is encouraging because it reached its maximum production after just 3 days of incubation at pH 6.5 and 30 °C with office paper waste (15 g/L) serving as a carbon source at 1.5% (w/v), Tween 80 at 1.5% (v/v), and yeast extract as a nitrogen source. Using the CCD-based optimization approach, an enzyme yield of 3.35 U/mL β-galactosidase was achieved after 3 days of incubation at pH 6.0, with 1.5% (w/v) office paper waste and 1 g/L yeast extract. It was confirmed by the results that the β-glucosidase activity eliminated the ink particles and that this action improved the ash content, whiteness, and tensile strength. The findings showed that the investigated enzyme was a suitable green substitute for office paper waste deinking in the direction of sustainable waste management.

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Cite This Study

Ali et al. (2026) studied this question.

synapsesocial.com/papers/69df2bcae4eeef8a2a6b0adchttps://doi.org/10.1186/s12896-026-01139-9
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