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Reishi, Lingzhi · 2023 · Preprint

Medium relevance

Performance of cocultivation of Chlorella vulgaris and four different fungi in biogas slurry purification and biogas upgrading by induction of strigolactone (GR24) and endophytic bacteria

Ganoderma lucidum

Energy & fatigue
SpeciesReishi, Lingzhi
JournalNot listed
Year2023

Key points

  • This study aimed to determine the best fungi to form the algal-bacterial-fungi symbiotic system and identify the optimal conditions for the synchronous processing of biogas slurry and biogas
  • Chlorella vulgaris ( C. vulgaris ) and endophytic bacteria (S395-2) isolated from it and four different fungi ( Ganoderma lucidum, Pleurotus ostreatus, Pleurotus geesteranus, and Pleurotus corucopiae ) were used to form different symbiotic systems
  • Four different concentrations of GR24 were added to systems to examine the growth characteristics, the content of chlorophyll a (CHL-a), the activity of carbonic anhydrase (CA), the photosynthetic performance, the removal of nutrients, and the biogas purification performance
  • The results suggested that the growth rate, CA, CHL-a content, and photosynthetic performance of the C. vulgaris- endophytic bacteria -Ganoderma lucidum symbiosis were higher than the other three symbiotic systems when 10 -9 M GR24 was added
  • The highest nutrients/CO 2 removal efficiency 78.36 ± 6.98% for chemical oxygen demand (COD), 81.63 ± 7.35% for total nitrogen (TN), 84.05 ± 7.16% for total phosphorus (TP) and 65.18 ± 6.12% for CO 2 was obtained under the above optimal conditions
  • This approach will provide a theoretical basis for the selection and optimization of an algal-bacterial-fungi symbiotic system for biogas slurry and biogas purification

From the paper

Abstract

This study aimed to determine the best fungi to form the algal-bacterial-fungi symbiotic system and identify the optimal conditions for the synchronous processing of biogas slurry and biogas. Chlorella vulgaris ( C. vulgaris ) and endophytic bacteria (S395-2) isolated from it and four different fungi ( Ganoderma lucidum, Pleurotus ostreatus, Pleurotus geesteranus, and Pleurotus corucopiae ) were used to form different symbiotic systems. Four different concentrations of GR24 were added to systems to examine the growth characteristics, the content of chlorophyll a (CHL-a), the activity of carbonic anhydrase (CA), the photosynthetic performance, the removal of nutrients, and the biogas purification performance. The results suggested that the growth rate, CA, CHL-a content, and photosynthetic performance of the C. vulgaris- endophytic bacteria -Ganoderma lucidum symbiosis were higher than the other three symbiotic systems when 10 -9 M GR24 was added. The highest nutrients/CO 2 removal efficiency 78.36 ± 6.98% for chemical oxygen demand (COD), 81.63 ± 7.35% for total nitrogen (TN), 84.05 ± 7.16% for total phosphorus (TP) and 65.18 ± 6.12% for CO 2 was obtained under the above optimal conditions. This approach will provide a theoretical basis for the selection and optimization of an algal-bacterial-fungi symbiotic system for biogas slurry and biogas purification.

Citation

Ji Y, Huang L, Wang Z, Xu J, Wei J, Zhao Y (2023). Performance of cocultivation of Chlorella vulgaris and four different fungi in biogas slurry purification and biogas upgrading by induction of strigolactone (GR24) and endophytic bacteria. https://doi.org/10.21203/rs.3.rs-2673020/v1

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