Biogas production from sugarcane vinasse at mesophilic and thermophilic temperatures by static granular bed reactor (SGBR)

2021 ◽  
Vol 48 ◽  
pp. 101569
Author(s):  
Mostafa Kiani Deh Kiani ◽  
Mostafa Parsaee ◽  
Zabiollah Mahdavifar
Nativa ◽  
2019 ◽  
Vol 7 (4) ◽  
pp. 407
Author(s):  
Tamara Daiane de Souza ◽  
Alisson Carraro Borges ◽  
Diego Lopes ◽  
Paola Alfonsa Vieira Lo Monaco ◽  
Antonio Teixeira de Matos

Objetivou-se, com a realização deste trabalho, avaliar o desempenho de um reator de leito estático granular no tratamento de solução sintética simulando águas residuárias de indústrias de laticínios. Amostras do afluente e do efluente do reator foram submetidas às análises de DQO, turbidez, condutividade elétrica e pH. De acordo com os resultados obtidos, pode-se concluir que o sistema mostrou ser alternativa promissora para tratamento de águas residuárias oriundas de laticínios, apresentando, com um tempo de detenção hidráulica de 48 horas, eficiências médias de 96% na remoção de DQO e 93% na de turbidez. Ademais, observou-se que proporcionou a manutenção da alcalinidade no meio, possibilitando que o processo fosse conduzido em condições de estabilidade. O tratamento da água residuária sintética estudada com o uso do reator de leito estático granular proporcionou atendimento à legislação para lançamento de efluentes em corpos hídricos no que tange à concentração de matéria orgânica.Palavras-chave: tratamento anaeróbio; efluente de laticínios; remoção de DQO; reator biológico. USE OF THE STATIC GRANULAR BED REACTOR IN TREATMENT OF DAIRY WASTEWATER ABSTRACT: The aim of this work was to evaluate the performance of a static granular bed reactor to treat synthetic solution simulating wastewater from dairy industries. Influent and effluent samples were analyzed for COD, turbidity, electrical conductivity and pH. According to the results obtained, it can be concluded that the system proved to be a promising alternative for treatment of effluents from dairy industry, presenting, with a hydraulic residence time of 48 hours, average efficiencies of 96% for COD removal and 93% for turbidity removal. Furthermore, it was observed the maintaining of alkalinity in the medium, indicating an operation under stable conditions. The treatment of dairy wastewater using static granular bed reactor provided appropriate effluent according to law for discharging on water bodies regarding organic matter concentration.Keywords: anaerobic treatment; wastewater of dairy products; COD removal; biological reactor.


2017 ◽  
Vol 76 (1) ◽  
pp. 106-114 ◽  
Author(s):  
M. Basitere ◽  
Z. Rinquest ◽  
M. Njoya ◽  
M. S. Sheldon ◽  
S. K. O. Ntwampe

The South African poultry industry has grown exponentially in recent years due to an increased demand for their products. As a result, poultry plants consume large volumes of high quality water to ensure that hygienically safe poultry products are produced. Furthermore, poultry industries generate high strength wastewater, which can be treated successfully at low cost using anaerobic digesters. In this study, the performance of a bench-scale mesophilic static granular bed reactor (SGBR) containing fully anaerobic granules coupled with an ultrafiltration (UF) membrane system, as a post-treatment system, was investigated. The poultry slaughterhouse wastewater was characterized by a chemical oxygen demand (COD) range between 1,223 and 9,695mg/L, average biological oxygen demand of 2,375mg/L and average fats, oil and grease (FOG) of 554mg/L. The SGBR anaerobic reactor was operated for 9 weeks at different hydraulic retention times (HRTs), i.e. 55 and 40 h, with an average organic loading rate (OLR) of 1.01 and 3.14g COD/L.day. The SGBR results showed an average COD, total suspended solids (TSS) and FOG removal of 93%, 95% and 90% respectively, for both OLR. The UF post-treatment results showed an average of COD, TSS and FOG removal of 64%, 88% and 48%, respectively. The overall COD, TSS and FOG removal of the system (SGBR and UF membrane) was 98%, 99.8%, and 92.4%, respectively. The results of the combined SGBR reactor coupled with the UF membrane showed a potential to ensure environmentally friendly treatment of poultry slaughterhouse wastewater.


Fuel ◽  
2021 ◽  
Vol 286 ◽  
pp. 119378
Author(s):  
Felipe Eng Sánchez ◽  
Lucas Tadeu Fuess ◽  
Guilherme Soares Cavalcante ◽  
Maria Ângela Talarico Adorno ◽  
Marcelo Zaiat

Sign in / Sign up

Export Citation Format

Share Document