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1.
Bioresour Technol ; 189: 370-378, 2015.
Artigo em Inglês | MEDLINE | ID: mdl-25913884

RESUMO

Low temperature (<20 °C) limits bio-methanation of sewage. Literature shows that hydrogenotrophic methanogens can adapt themselves to low temperature and methanol is a preferred substrate by methanogens in cold habitats. The study hypothesizes that methanol can induce the growth of low-temperature resilient, methanol utilizing, hydrogenotrophs in UASB reactor. The hypothesis was tested in field conditions to evaluate the impact of seasonal temperature variations on methane yield in the presence and absence of methanol. Results show that 0.04% (v/v) methanol increased methane up to 15 times and its effect was more pronounced at lower temperatures. The qPCR analysis showed the presence of Methanobacteriales along with Methanosetaceae in large numbers. This indicates methanol induced the growth of both the hydrogenotrophic and acetoclastic groups through direct and indirect routes, respectively. This study thus demonstrated that methanol can impart resistance in methanogenic biomass to low temperature and can improve performance of UASB reactor.


Assuntos
Temperatura Baixa , Metano/biossíntese , Methanobacteriales/metabolismo , Metanol/farmacologia , Águas Residuárias/microbiologia , Técnicas de Cultura Celular por Lotes , Análise da Demanda Biológica de Oxigênio , Reatores Biológicos/microbiologia , Methanobacteriales/efeitos dos fármacos , Modelos Teóricos , Reação em Cadeia da Polimerase em Tempo Real , Esgotos/microbiologia , Fatores de Tempo
2.
Bioresour Technol ; 169: 596-604, 2014 Oct.
Artigo em Inglês | MEDLINE | ID: mdl-25105266

RESUMO

The role of algal biofilm in a pilot-scale, free-surface, up-flow constructed wetland (CW), was studied for its effect on chemical oxygen demand (COD), ammonia and phosphate removal during three seasons-autumn, winter and early spring. Effect of hydraulic retention time (HRT) was also investigated in presence and absence of algal biofilm. Principal Component Analysis was used to identify the independent factors governing the performance of CW. The study showed algal biofilm significantly improved nutrient removal, especially phosphate. Ammonia removal varied with HRT, biofilm and ambient temperature. Increase in biofilm thickness affected ammonia removal efficiency adversely. Algal biofilm-assisted COD removal compensated for reduced macrophyte density during winter. Two-way ANOVA test and the coefficients of dependent factors derived through multiple linear regression model confirmed role of algal biofilm in improving nutrient removal in CW. The study suggests that algal biofilm can be a green solution for bio-augmenting COD and nutrient removal in CW.


Assuntos
Biofilmes/crescimento & desenvolvimento , Reologia , Typhaceae/fisiologia , Áreas Alagadas , Amônia/isolamento & purificação , Análise de Variância , Biodegradação Ambiental , Análise da Demanda Biológica de Oxigênio , Modelos Lineares , Fosfatos/isolamento & purificação , Projetos Piloto , Análise de Componente Principal , Reprodutibilidade dos Testes , Estações do Ano , Propriedades de Superfície
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