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Biological Activated Carbon: Understanding the Role of Metabolism in Extending Service Life and Improving Process Performance

机译:生物活性炭:了解代谢在延长使用寿命和改善工艺性能方面的作用

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Continuous-flow GAC bioregeneration experiments were conducted at different EBCTs using mixtures of biodegradable (benzene, toluene) and nonbiodegradable (perchloroethylene, carbon tetrachloride) SOCs. The GAC was pre-equilibrated with respect to each combination of SOCs to observe the biggest effect on bioregeneration performance. If no dissolved oxygen limitations occurred in the bioregeneration experiments, the effluent biodegradable SOC concentration decreased over time and then remained low, after which the effluent nonbiodegradable SOC concentration also decreased because of the increased availability of adsorption sites on the GAC. Pre and post-experimental GAC loadings show a marked decrease in the biodegradable SOC loading as well as an increase in the nonbiodegradable SOC loading. Larger amounts of bioregeneration were found for higher SOC concentrations and longer EBCTs. Bioregeneration ranged from 30 to 45% of the initial loading after 13-14.5 days. These results illustrate an increase in GAC service life for nonbiodegradable SOCs through bioregeneration of GAC containing biodegradable SOCs.
机译:使用可生物降解(苯,甲苯)和不可生物降解(全氯乙烯,四氯化碳)SOC的混合物,在不同的EBCT上进行了连续流GAC生物再生实验。 GAC已针对每种SOC组合进行了预平衡,以观察到对生物再生性能的最大影响。如果在生物再生实验中没有发生溶解氧限制,则废水中可生物降解的SOC浓度会随时间降低,然后保持较低水平,此后,废水中不可生物降解的SOC浓度也会降低,这是因为GAC上吸附位的可用性增加。实验之前和之后的GAC加载量均显示出可生物降解SOC加载量显着降低,以及不可生物降解SOC加载量增加。发现更高的SOC浓度和更长的EBCT,生物再生的量更大。 13-14.5天后,生物再生的范围为初始负荷的30%至45%。这些结果说明,通过包含可降解SOC的GAC的生物再生,不可降解SOC的GAC使用寿命得以延长。

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