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Ammonia and pH Inhibition in Anaerobic Treatment of Wastewaters, Part II: Model Development

机译:厌氧处理废水中的氨和pH抑制,第二部分:模型开发

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摘要

A new model to account for the influences of pH and ammonia on methane production in the anaerobic treatment of wastewaters is presented. The model is developed and evaluated by using two different sets of experimental data obtained using seeds from two different full-scale industrial anaerobic reactors. One of the seeds was obtained from an expanded granular sludge-blanket (EGSB) reactor treating a corn processing waste. The other seed was obtained from an upflow anaerobic sludge-blanket reactor (UASB) treating waste from a potato chips production plant. Model development is based on the data collected at four different pH values (6.8, 7.4, 7.8, 8.4) and with six different TAN (Total Ammonia Nitrogen) values (262 mg/L (control), 1000, 1500, 2000, 2500, 3000). The proposed model has a considerably more convenient form compared to other models that have been used in the literature for similar purposes. For example, the model facilitates the calculation of quantities such as the optimal pH as a function of TAN concentration, or the TAN concentration leading to 50% inhibition (TAN_(50)) as a function of pH. High levels of correlations were achieved by the application of the proposed model to the experimental data obtained during our studies.
机译:提出了一个新模型来说明pH和氨对废水厌氧处理中甲烷产生的影响。通过使用两组不同的实验数据来开发和评估该模型,该两组实验数据是使用从两个不同的大型工业厌氧反应器获得的种子获得的。其中一种种子是从处理玉米加工废料的膨胀颗粒污泥毯式反应器(EGSB)获得的。另一个种子是从上流厌氧污泥-毯式反应器(UASB)获得的,该反应器处理来自薯片生产厂的废物。模型开发基于在四个不同pH值(6.8、7.4、7.8、8.4)和六个不同TAN(总氨氮)值(262 mg / L(对照),1000、1500、2000、2500, 3000)。与文献中出于类似目的而使用的其他模型相比,所提出的模型的形式要方便得多。例如,该模型有助于计算数量,例如最佳pH值作为TAN浓度的函数,或导致50%抑制的TAN浓度(TAN_(50))作为pH值的函数。通过将建议的模型应用于我们研究期间获得的实验数据,可以实现较高的相关性。

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