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Co-digestion of microalga-bacteria biomass with papaya waste for methane production

机译:微藻 - 细菌生物量与木瓜废物进行甲烷生产

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The anaerobic co-digestion of microalga-bacteria biomass and papaya waste (MAB/PW) was evaluated under semi-continuous conditions. Microalgae-bacteria biomass was obtained from a high rate algal pond fed with municipal wastewater and artificially illuminated. The co-digestion of MAB/PW was evaluated using a 1:1 (w/w) ratio and an organic loading rate of 1.1 ± 0.1 g COD/L/d. Enzymatic activity assays of papain were performed in the feeding to determine the activity of this enzyme in the substrate mixture. A methane yield of 0.55 L CH_(4)/gVS and 68% of total volatile solid removal were observed. The volumetric productivity was 0.30 ± 0.03 L CH_(4)/L/d with a methane content of 71%. It was observed that papaya waste was a suitable co-substrate because it maintained a low ammonium concentration, decreasing the risk of inhibition due to ammonia and then increasing the methane yield of the microalgae-bacteria biomass compared to the biomass alone. The pretreatment effect by the addition of papaya waste on the microalgae-bacteria biomass was supported by the papain activity remaining in the substrate.
机译:在半连续条件下评价微凝血菌生物量和木瓜废物(MAB / PW)的厌氧共消化。微藻 - 细菌生物量是从用城市废水供给的高速率藻类池,人为照射。使用1:1(w / w)的比率和1.1±0.1g COD / L / D的有机加载速率来评估MAB / PW的共消化。在进料中进行木瓜蛋白酶的酶活性测定以确定酶在基材混合物中的活性。观察到甲烷产率为0.55LCH_(4)/ GV和总挥发性固体除去的68%。体积生产率为0.30±0.03L CH_(4)/ L / D,甲烷含量为71%。观察到番木瓜废物是合适的共衬底,因为它保持低铵浓度,降低了氨而导致的抑制风险,然后增加与单独的生物质相比微血糖生物量的甲烷产率。通过在底物中留下的木瓜蛋白酶活性来支持通过添加番木瓜废物的预处理效果。

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