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Anaerobic treatment of agro-industrial wastewaters for COD removal in expanded granular sludge bed bioreactor

机译:膨胀颗粒污泥床生物反应器中厌氧处理农业工业废水的化学需氧量去除

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Untreated agro-industrial wastewaters are undesirable in the aquatic environment due to the presence of high organic matter contents. However, they may constitute a large potential for biogas production. The present investigation is focused on three laboratory-scale anaerobic expanded granular sludge bed (EGSB) bioreactors, continuously operated for 60 d under mesophilic condition with the aim of exploring the feasibility of treating three most significant agro-industrial wastewaters in Chiapas, Mexico (i.e., cheese whey, vinasse, and coffee-processing wastewater). The EGSB bioreactors were operated with a hydraulic retention time (HRT) of 6 d under stable conditions (i.e., buffer index (BI) of 0.31, 0.34, and 0.03), generating a maximum chemical oxygen demand (COD) removal efficiency of 91, 74, and 96% with an average methane production of 340, 245, and 300 mL/g COD?d for cheese whey, vinasse, and coffee-processing wastewater, respectively. According to the obtained results, the EGSB bioreactors could be a sustainable alternative to simultaneously solve the environmental problems and to produce bioenergy.
机译:由于有机物含量高,未经处理的农业工业废水在水生环境中是不可取的。但是,它们可能构成沼气生产的巨大潜力。本研究的重点是三个实验室规模的厌氧膨胀颗粒污泥床(EGSB)生物反应器,在中温条件下连续运行60 d,目的是探索在墨西哥恰帕斯州处理三种最重要的农业工业废水的可行性(即,奶酪乳清,酒糟和咖啡处理废水)。 EGSB生物反应器在稳定条件下(即缓冲指数(BI)为0.31、0.34和0.03)在6 d的水力停留时间(HRT)下运行,产生的最大化学需氧量(COD)去除效率为91,干酪乳清,酒糟和咖啡处理废水的平均甲烷产量分别为74%和96%,平均甲烷产量分别为340、245和300 mL / g。根据获得的结果,EGSB生物反应器可能是可持续解决方案,可以同时解决环境问题并产生生物能。

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