Disposable diapers biodegradation by the fungus Pleurotus ostreatus

Rosa María Espinosa-Valdemar1, Sylvie Turpin-Marion, Irma Delfín-Alcalá

  • 1Universidad Autónoma Metropolitana - Azcapotzalco, Av. San Pablo, No. 180 Col. Reynosa-Tamaulipas, C.P. 02200 Mexico City, Mexico. rmev@correo.azc.uam.mx

Insights

Oyster mushroom (Pleurotus ostreatus) can degrade used disposable diapers, reducing waste mass and volume by up to 90%. This process also yields edible mushrooms with high protein content, offering a sustainable waste management solution.

Area of Science:

  • Mycology
  • Environmental Science
  • Biotechnology

Background:

  • Used disposable diapers constitute a significant portion of urban solid waste.
  • These diapers contain cellulose, which degrades slowly, posing disposal challenges.
  • Pleurotus ostreatus (oyster mushroom) is known for degrading cellulosic materials.

Purpose of the Study:

  • To assess the feasibility of using Pleurotus ostreatus to degrade used disposable diapers.
  • To evaluate the effectiveness of different diaper pre-treatment methods on degradation efficiency.
  • To determine the potential for producing edible mushrooms from diaper waste.

Main Methods:

  • Pilot laboratory assays were conducted using used disposable diapers as a substrate for Pleurotus ostreatus.
  • Variables tested included plastic cover presence, shredding vs. grinding, and addition of grape waste.
  • Degradation was measured by mass and volume reduction, cellulose and lignin content decrease, and fungal biomass production over 68 days.

Main Results:

  • Weight and volume of diaper material were reduced by up to 90%.
  • Cellulose and lignin content decreased by 50% and 47%, respectively.
  • Fungal biological efficiency ranged from 0% to 34%, with harvested mushrooms being edible and pathogen-free.

Conclusions:

  • Pleurotus ostreatus effectively degrades used disposable diapers, offering a viable waste reduction strategy.
  • The process can convert waste into a source of high-protein food.
  • This research presents a dual solution for solid waste management and food security.

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