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1.
Water Sci Technol ; 87(8): 1819-1831, 2023 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-37119157

RESUMO

In this study, microalgae-bacteria (MB) systems using saline conditions (3 and 5% salinity) were built in order to use waste-activated sludge (AS) as raw material for cultivating lipid-rich microalgae. Algae were observed to be flourishing in 60 days of operation, which totally used the N and P released from the sludge biomass. A prominent improvement of lipid content in MB consortia was obtained under algae growth and salinity stimulation, which occupied 119-136 mg/g-SS rather than a low content of 12.1 mg/g-SS in AS. Lipid enrichment also brought a 3.1-3.3 times total heat release (THR) in the MB biomass. The marine spherical algae Porphyridium, as well as filamentous Geitlerinema, Nodularia, Leptolyngbya were found to be the main lipid producers and self-flocculated to 23.0% (R1) and 33.5% (R2) volume under the effect of residue EPS. This study had a big meaning in not only waste sludge reduction but also in manufacturing useful bioenergy products.


Assuntos
Cianobactérias , Microalgas , Esgotos/química , Eliminação de Resíduos Líquidos , Reatores Biológicos/microbiologia , Biomassa , Lipídeos/química
2.
Bioresour Technol ; 354: 127182, 2022 Jun.
Artigo em Inglês | MEDLINE | ID: mdl-35439564

RESUMO

In this study modified microalgal-bacterial granular sludge (MBGS) was constructed and employed to compare the performance for treating 1%-5% saline wastewater with aerobic granular sludge (AGS). Filamentous algae were found to flourish at 1% salinity when nutrients were temporarily restricted to low level (COD 0, N 10 mg/L, P 0.5 mg/L). A significant improvement of granule stability was detected as the integrity coefficients of MBGS was only 0.12-0.24 rather than 0.19-0.48 of AGS under 1%-5% salinities, which reduced the risk of particle disintegration. Filamentous algae including Leptolyngbya and Geitlerinema occupied 91.2% of identified algae, and were beneficial for enhancing the biomass content and lipid production to about 1.27-1.37, 3.1-5.0 times than AGS. The MBGS had best nitrogen and phosphorus removal efficiencies of 93.4% and 64.6% at 1% salinity, and showed higher resistance to 3%-5% salinities. This study could provide meaningful information for using this modified MBGS technology in practice.


Assuntos
Microalgas , Esgotos , Aerobiose , Bactérias , Reatores Biológicos/microbiologia , Lipídeos , Nitrogênio/análise , Nutrientes , Esgotos/microbiologia , Eliminação de Resíduos Líquidos , Águas Residuárias
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