首页> 外文期刊>The Korean journal of chemical engineering >Use of Activate Sludge Model No. 3 and Bio-P module for simulating five-stage step-feed enhanced biological phosphorous removal process
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Use of Activate Sludge Model No. 3 and Bio-P module for simulating five-stage step-feed enhanced biological phosphorous removal process

机译:使用3号活性污泥和Bio-P模块模拟五步分步进料增强型生物除磷工艺

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摘要

The ASM3 with EAWAG Bio-P Module (ASM3+P) was used for simulating a five-stage step-feed Enhanced Biological Phosphorous Removal (fsEBPR) process and its applicability was compared with the ASM2d. The fsEBPR process was predicted to achieve effective nitrogen and phosphorus removal from the wastewater even with low C/N and C/P ratios without additional carbon sources. Application of the ASM3+P on this configuration will be an ample chance for expanding the new models in the activated sludge process. Sensitivity analysis and parameter estimation were conducted with the ASM2d and the ASM3+P prior to model application so that calibration of the models could focus only on the sensitive parameters. The ASM2d was less successful for predicting the process behavior. Moreover, the ASM2d required 6 times more computation time than that for the AMS3+P due to its decay-regeneration model structure. To confirm the applicability of parameters determined from the pilot-scale reactor operating results, those were tested on the field data without further correction. Only the ASM3+P successfully predicted nitrogen and phosphate variations in the full-scale plants. Overall examination of simulation results using the pilot and full-scale data has led to the conclusion that the ASM3+P is better than the ASM2d for simulating fsEBPR processes.
机译:具有EAWAG Bio-P模块(ASM3 + P)的ASM3用于模拟五阶段分步进料增强型生物除磷(fsEBPR)过程,并将其适用性与ASM2d进行了比较。据预测,即使在没有其他碳源的低C / N和C / P比的情况下,fsEBPR工艺仍可有效去除废水中的氮和磷。在此配置上应用ASM3 + P将是在活性污泥工艺中扩展新模型的充分机会。在应用模型之前,使用ASM2d和ASM3 + P进行了灵敏度分析和参数估计,因此模型的校准只能集中在敏感参数上。 ASM2d在预测过程行为方面不太成功。此外,由于ASM2d的衰变再生模型结构,其计算时间比AMS3 + P多6倍。为了确认由中试规模的反应堆运行结果确定的参数的适用性,对这些参数进行了现场测试,无需进一步校正。只有ASM3 + P才能成功预测全规模植物中的氮和磷酸盐变化。使用试验数据和满量程数据对仿真结果进行全面检查,得出的结论是,在模拟fsEBPR过程中,ASM3 + P优于ASM2d。

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