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Shiitake, Hua Gu · 2023 · Preprint

Medium relevance

Remediation of brewery wastewater and reuse for β-glucans production by basidiomycete fungi

Lentinula edodes

Energy & fatigue
SpeciesShiitake, Hua Gu
JournalNot listed
Year2023

Key points

  • Abstract Purpose This paper aims to assess the potential of basidiomycete fungi to mycoremediate brewery wastewater and generate a bioactive molecule (β-glucan) for industrial applications
  • Methods Six basidiomycete fungi, Ganoderma applanatum, Ganoderma lipsiense, Pleurotus ostreatus, Pycnoporus sanguineus, Lentinula edodes, and Oudemansiela canarii were grown in submerged fermentation using brewery wastewater (BW). β-glucan production, biomass concentration, reducing sugar content, and pH were evaluated and the fungus with the highest β-glucan production was subjected to a kinetic study of β-glucan production
  • Results Results showed that BW has important nutrients for fungi growth and all species had high biomass production
  • The highest production of β-glucans was for G. lipsiense (23.87%) and its kinetic study showed the highest production of β-glucans at 14 days and the greatest increase in biomass at 21 days
  • There was a correlation between the production of β-glucans and the consumption of BW substrate and a decrease in chemical oxygen demand (81% at 21 days), nitrate ( -1 ), total phosphorus (66.326 mg L -1 ), and total dissolved solids (634.1 mg L -1 )
  • Conclusion This study highlighted a sustainable use of BW for its remediation besides fungal biomass production as a source of a high-value product for the biotechnology industry, opening prospects in the circular bioeconomy

From the paper

Abstract

Abstract Purpose This paper aims to assess the potential of basidiomycete fungi to mycoremediate brewery wastewater and generate a bioactive molecule (β-glucan) for industrial applications. Methods Six basidiomycete fungi, Ganoderma applanatum, Ganoderma lipsiense, Pleurotus ostreatus, Pycnoporus sanguineus, Lentinula edodes, and Oudemansiela canarii were grown in submerged fermentation using brewery wastewater (BW). β-glucan production, biomass concentration, reducing sugar content, and pH were evaluated and the fungus with the highest β-glucan production was subjected to a kinetic study of β-glucan production. Results Results showed that BW has important nutrients for fungi growth and all species had high biomass production. The highest production of β-glucans was for G. lipsiense (23.87%) and its kinetic study showed the highest production of β-glucans at 14 days and the greatest increase in biomass at 21 days. There was a correlation between the production of β-glucans and the consumption of BW substrate and a decrease in chemical oxygen demand (81% at 21 days), nitrate ( -1 ), total phosphorus (66.326 mg L -1 ), and total dissolved solids (634.1 mg L -1 ). Conclusion This study highlighted a sustainable use of BW for its remediation besides fungal biomass production as a source of a high-value product for the biotechnology industry, opening prospects in the circular bioeconomy.

Citation

Timm TG, Schipmann DBD, Costa TM, Tavares LBB (2023). Remediation of brewery wastewater and reuse for β-glucans production by basidiomycete fungi. https://doi.org/10.21203/rs.3.rs-3331854/v1

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