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Bicarbonate dosing: a tool to performance recovery of a thermophilic methanol-fed UASB reactor

机译:碳酸氢盐加药:回收嗜热甲醇供料的UASB反应器性能的工具

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The thermophilic-anaerobic treatment of methanol-containing wastewater in an upflow anaerobic sludge blanket (UASB) reactor, was found to be quite sensitive to pH shocks, both acid and alkaline. The results of the recovery experiments of sludge exposed to an alkaline shock, indicated that the addition or deprivation of sodium bicarbonate (NaHCO3) in the medium, plays an important role in the competition of methanogens and (homo)acetogens for methanol. In addition, caution has to be taken when using NaHCO3 for buffering methanol-containing wastewaters, since its introduction in the system will favour (homo)acetogenesis when proper conditions are not established. Based on these results, a recovery strategy for methanogenesis was proposed where bicarbonate is supplied stepwise, and the reactor is operated in a batch mode. This strategy was found to be appropriate, i.e. the results revealed that the recovery of methanogenesis on methanol from a reactor upset or complete failure caused by pH shock is possible, even in systems where (homo)acetogens are outcompeting methanogens. The time and the number of feedings required will depend on the degree of deterioration of the sludge. [References: 8]
机译:发现在上流式厌氧污泥床(UASB)反应器中对甲醇甲醇废水进行高温厌氧处理对酸和碱的pH冲击非常敏感。碱冲击下污泥的回收实验结果表明,培养基中碳酸氢钠(NaHCO3)的添加或去除在产甲烷和(均)产乙酸的甲醇竞争中起着重要作用。此外,在使用NaHCO3缓冲含甲醇的废水时,必须谨慎,因为如果没有建立适当的条件,将其引入系统中将有利于(均质)产乙酸。基于这些结果,提出了甲烷生成的回收策略,其中逐步提供碳酸氢盐,并且反应器以间歇模式运行。发现该策略是合适的,即,结果表明,即使在(均)乙酸原超过甲烷原的系统中,也可以从反应器失常或pH冲击引起的完全失效中恢复甲醇上的甲烷生成。所需的时间和进料次数将取决于污泥的恶化程度。 [参考:8]

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