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Optimization of Energy Recovery from Cellulosic Wastewater Using Mesophilic Single-Stage Bioreactor

机译:利用碘入液体生物反应器优化纤维素废水能量回收

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The efficiency of single-stage biohythane production from synthetic cellulosic wastewater under mesophilic temperature was investigated. A lab-scale continuously stirred tank reactor was conducted at a hydraulic retention time of 10 days using mixed microflora without pretreatment. The experimental results show that a stable methane and hydrogen yields of 18.2 ±0.16 and 5.6±0.31 L/kg VS were maintained for 240 days, respectively with acetate/butyrate ratio of 0.39 as the main byproducts. Based on COD mass balance, more than 45% of the decomposed COD converted to bio-hythane, which means that the setting temperature 37 °C and pH improved the conditions of degradation efficiency. The energy recovery calculations indicated that the total net energy was 4.54 MJ/m~3 of cellulosic wastewater. This work contributes to the limited knowledge on continuous cellulosic-hythane conversion into a safe and clean form of energy.
机译:研究了在中抚化温度下合成纤维素废水的单级生物律生产的效率。使用混合微生物的液压保留时间在使用混合微生物的情况下在没有预处理的情况下在10天的液压保留时间下进行实验室凝固的连续搅拌釜反应器。实验结果表明,稳定的甲烷和氢产率为18.2±0.16和5.6±0.31L / kg与乙酸盐/丁酸盐比为0.39作为主要副产物。基于COD质量平衡,超过45%的分解鳕鱼转化为生物膦糖,这意味着设定温度37°C和pH值改善降解效率的条件。能量回收计算表明,净能量总量为4.54mJ / m〜3纤维素废水。这项工作有助于对连续纤维素 - 膦酸盐转化为安全和清洁的能量形式的有限知识。

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