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Comparative effects of GAC addition on methane productivity and microbial community in mesophilic and thermophilic anaerobic digestion of food waste

机译:GAC添加对食品废弃物中甲烷生产率和微生物群落的比较效果

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摘要

The relative effects of granular activated carbon (GAC) addition (25 g/L) in anaerobic digestion of food waste at mesophilic (37 degrees C) and thermophilic (55 degrees C) temperatures were investigated using biochemical methane potential (BMP) test. The addition of GAC significantly reduced lag phases for methane production in comparison with the unamended control at both temperatures. Microbial community analyses revealed that GAC addition increased the diversity and richness of both bacterial and archaeal communities. Besides, several known or potential electroactive fermentative bacteria (e.g., Calorameter, Sporcumerobacter, Coprothermobacter, etc.) were found in GAC-amended bioreactors at both temperatures, suggesting the possibility of DIET-based syntrophy in these reactors. At mesophilic temperature, GAC amendment increased methane productivity (L CH4/kg-VS) by almost two-fold in comparison with the control; however, methane production at the thermophilic temperature was unaffected by GAC addition. These results indicate that enhanced process kinetics at thermophilic temperature might diminish the visible impact on methane productivity due to the addition of GAC.
机译:使用生物化学甲烷电位(BMP)试验研究了颗粒状活性炭(25g / L)在嗜苯胺(37℃)和嗜热(55℃)温度下的厌氧消化食物废物中的相对效果。与两个温度的未加工控制相比,添加GAC显着降低了甲烷产生的滞后相。微生物群落分析显示,GAC添加增加了细菌和古群落的多样性和丰富性。此外,在两个温度的GAC修正的生物反应器中发现了几种已知的或潜在的电活性发酵细菌(例如,煅烧液,奶昔,豆科杆菌等),表明这些反应器中基于饮食的同步性的可能性。在培养温度下,GAC修正案与对照相比,通过几乎两倍增加甲烷生产率(L CH4 / kg-Vs);然而,在嗜热温度下的甲烷产生不受GAC加入的影响。这些结果表明,由于添加GAC,嗜热温度的增强过程动力学可能会减少对甲烷生产率的可见影响。

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