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Thermal pretreatment and bioaugmentation improve methane yield of microalgal mix produced in thermophilic anaerobic digestate

机译:热预处理和生物沉积改善嗜热厌氧消化中生产的微藻混合物的甲烷产率

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Liquid fraction produced in anaerobic digestion (AD) of biodegradable waste can be treated on-site with microalgae, which can be recycled back as substrate to the biogas plant. For this research, a pilot high rate algal pond (HRAP) was set with connections to a full scale biogas plant that enabled the use of waste heat and CO2 from a combined heat and power gen-set (CHP). The microalgal mix produced in the thermophilic anaerobic digestate supernatant was tested as a substrate for biogas production in the thermophilic AD (i.e. untreated, bioaugmented with anaerobic bacteria Clostridium thermocellum, and thermally pretreated, respectively). The methane potential of the untreated microalgal mix was low (157.5 +/- 18.7 mL CH4/g VS). However, after the thermal pretreatment of the microalgae, methane production increased by 62%, while in the bioaugmentation with C thermocellum under thermophilic conditions (T = 55 degrees C) it was elevated by 12%. The outcome of our pilot trial suggests that microalgae produced in the thermophilic biogas digestate represent a prospective alternative AD feedstock. At the same time, microalgae reduce the digestate nitrogen and COD to the level sufficient for the outflow to meet the quality required by the sewage system (ammonia-nitrogen max 200 mg/L, nitrite max 10 mg/L). (C) 2017 Elsevier Ltd. All rights reserved.
机译:可生物降解废物的厌氧消化(AD)中产生的液体级分可以在现场进行微藻,其可以将其作为底物再循环回到沼气厂。对于本研究,将试验高速率藻池(HRAP)设定为与全尺寸沼气设备的连接,使得从组合的热量和功率Gen-Set(CHP)中使用废热和CO2。在嗜热的厌氧消化物上清液中产生的微藻混合物被测试为嗜热扫描中的沼气生产的底物(即,未经处理的,用厌氧细菌的梭菌热膨胀,分别进行热预处理)。未处理的微藻混合物的甲烷电位低(157.5 +/- 18.7ml CH 4 / g Vs)。然而,在微藻的热预处理后,甲烷产量增加62%,而在嗜热条件下用C热膨胀物(T = 55摄氏度)在生物沉积中升高12%。我们的试验试验结果表明,嗜热沼气消化中产生的微藻代表了前瞻性替代广告原料。同时,微藻将消化氮和鳕鱼减少到足以满足污水系统所需的质量(氨 - 氮最大200 mg / L,亚硝酸盐最多10 mg / L)。 (c)2017 Elsevier Ltd.保留所有权利。

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