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Anaerobic biodegradation of aircraft deicing fluid in UASB reactors

机译:UASB反应堆中飞机除冰液的厌氧生物降解

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A central composite design was employed to methodically investigate anaerobic treatment of aircraft deicing fluid (ADF) in bench-scale Upflow Anaerobic Sludge Blanket (UASB) reactors. A total of 23 runs at 17 different operating conditions (0.8% 1.6% ADF (6000-12,000 mg/L COD), 12-56h HRT, and 18-36 g VSS/L) were conducted in continuous mode. The development of four empirical models describing process responses (i.e. COD removal efficiency, biomass-specific acetoclastic activity, methane production rate, and methane production potential) as functions of ADF concentration, hydraulic retention time, and biomass concentration is presented. Model verification indicated that predicted responses (COD removal efficiencies, biomass-specific acetoclastic activity, and methane production rates and potential) were in good agreement with experimental results. Biomass-specific acetoclastic activity was improved twofold from 0.23 g COD/gVSS/d for inoculum to a maximum of 0.55 g COD/gVSS/d during ADF treatment in UASB reactors. For the design window, COD removal efficiencies were higher than 90%. The predicted methane production potentials were close to theoretical values, and methane production rates increased as the organic loading rate is increased. ADF toxicity effects were evident for 1.6% ADF at medium organic loadings (SOLR above 0.5 g COD/ gVSS/d). In contrast, good reactor stability and excellent COD removal efficiencies were achieved at 1.2% ADF for reactor loadings approaching that of highly loaded systems (0.73 g COD/gVSS/d).
机译:采用中央复合设计,系统地研究了台式规模上流厌氧污泥毯子(UASB)反应器中飞机除冰液(ADF)的厌氧处理。以连续模式在17种不同的操作条件下进行了23次运行(0.8%1.6%ADF(6000-12,000 mg / L COD),12-56h HRT和18-36 g VSS / L)。提出了四个经验模型的发展,这些模型描述了过程响应(即COD去除效率,特定于生物质的碎屑活性,甲烷产生速率和甲烷产生潜力)与ADF浓度,水力停留时间和生物质浓度的函数关系。模型验证表明,预测的响应(COD去除效率,生物量特定的破骨细胞活性以及甲烷生成速率和潜力)与实验结果非常吻合。在UASB反应器中进行ADF处理期间,生物质特定的破破骨细胞活性从接种的0.23 g COD / gVSS / d提高到最大0.55 g COD / gVSS / d的两倍。对于设计窗口,COD去除效率高于90%。预测的甲烷生产潜力接近理论值,并且随着有机负荷率的增加,甲烷生产率也随之提高。在有机负荷中等(SOLR高于0.5 g COD / gVSS / d)时,对于1.6%ADF,ADF的毒性作用是明显的。相反,当反应堆的负荷接近高负荷系统的负荷(0.73 g COD / gVSS / d)时,在1.2%ADF时获得了良好的反应器​​稳定性和出色的COD去除效率。

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