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Investigating the efficiency of biogas production using modelling anaerobic digestion of baker's yeast wastewater on two-stage mixed-UASB reactor

机译:使用贝卡酵母废水模拟骨质消化对两阶段混合 - uasb反应堆的抗骨酵母消化的效率

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Baker's yeast wastewater containing about 20,000 mg COD l(-1) organic compounds was used to produce biogas in a two-stage mixed-UASB rector. The main goal is to model this system and compare the results with the laboratory model. Therefore, based on the existing laboratory model, including a mixed-UASB reactor, a mathematical modeling simulation was developed using the Monod equation to justify the behavior of the reactors. The experiments were performed over 40-day periods. According to modeling, by increasing the concentration of inlet wastewater, the removal of organic compounds was increased, while the methane production efficiency was decreased. In the concentration range from 1.55 to 4.1 mg COD cm(-3), the lowest and the highest amount of chemical oxygen demand efficiency was 9.05% and 35.98%, respectively. The volume of obtained biogas from wastewater at the end of 40 days was 113.4 L. Experiments show that for a period above 40 days, the biogas production time in the methanogenic reactor is negligible and baker's yeast wastewater is completely decomposed into acidic compounds. Because of the high sensitivity of methanogenic bacteria to pH, it is important to keep the pH value between 6.8 and 7.8, so it is better to maintain the alkalinity about 1500 to 7500 mg CaCO3 l(-1) to create a good reactor capacity.
机译:含有约20,000mg COD L(-1)有机化合物的面包师的酵母废水用于在两级混合 - UASB校长中产生沼气。主要目标是为该系统进行建模并将结果与​​实验室模型进行比较。因此,基于现有实验室模型,包括混合UASB反应器,使用Monod方程式开发了数学建模模拟,以证明反应器的行为。实验在40天内进行。根据建模,通过增加入口废水的浓度,增加有机化合物,而甲烷的生产效率降低。在1.55至4.1mg CM(-3)的浓度范围内,最低和最高量的化学需氧量分别为9.05%和35.98%。在40天末期的废水中获得的沼气量为113.4升。实验表明,在40天以上,甲烷的反应器中的沼气生产时间可以忽略不计,并且面包酵母废水完全分解成酸性化合物。由于甲状腺细菌对pH的高灵敏度,保持6.8和7.8之间的pH值是重要的,因此保持约1500至7500mg CaCO3 L(-1)以产生良好的反应器​​容量。

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