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首页> 外文期刊>Bioprocess and Biosystems Engineering >Using a carbon-based ASM3 EAWAG Bio-P for modelling the enhanced biological phosphorus removal in anaerobic/aerobic activated sludge systems
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Using a carbon-based ASM3 EAWAG Bio-P for modelling the enhanced biological phosphorus removal in anaerobic/aerobic activated sludge systems

机译:使用碳基ASM3 EAWAG Bio-P模拟厌氧/好氧活性污泥系统中增强的生物除磷

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摘要

Modelling of activated sludge processes is a commonly used technique to design and optimize waste-water treatment processes. Since wastewater and activated sludge is characterized by chemical oxygen demand (COD) measurements, units of state variables describing organic matter are expressed as equivalent amounts of COD. However, current procedures for measuring it have several drawbacks, including the production of hazardous wastes, so the utility of other variables for characterizing the organic load in modelling, such as total organic carbon (TOC), warrant re-evaluation. Other advantages of TOC over COD are that it provides matrix-independent analytical results and it can be readily measured online. Proposals for TOC-based models were made in the 1990s, but they seem to have sunk into obscurity. To re-assess the value of TOC for this purpose, we have recalculated the EAWAG module for Bio-P removal coupled to the Activated Sludge Model No. 3 on a TOC basis, and tested it against data acquired in batch experiments with four single carbon sources (acetate, glucose, citrate and casein). The batch test-based calibrations showed a good match with experimental data, following modifications of the model to account for the anaerobic volumes and retention times applied in the tests.
机译:活性污泥工艺的建模是设计和优化废水处理工艺的常用技术。由于废水和活性污泥的特征在于化学需氧量(COD)的测量,因此描述有机质的状态变量的单位表示为COD的当量。但是,当前的测量方法有几个缺点,包括危险废物的产生,因此在建模中使用其他变量来表征有机负荷时,需要重新评估总有机碳(TOC)。与COD相比,TOC的其他优势在于它提供了与基质无关的分析结果,并且可以轻松在线进行测量。基于TOC的模型的提议是在1990年代提出的,但似乎已经变得晦涩难懂。为了重新评估TOC的价值,我们重新计算了以TOC为基础结合生物活性炭模型3的BioP去除的EAWAG模块,并针对使用四个单一碳的批量实验中获得的数据进行了测试来源(醋酸盐,葡萄糖,柠檬酸盐和酪蛋白)。基于模型的修改以说明测试中应用的厌氧体积和保留时间,基于批测试的校准显示出与实验数据的良好匹配。

著录项

  • 来源
    《Bioprocess and Biosystems Engineering》 |2011年第3期|p.287-295|共9页
  • 作者单位

    Institute of Food Technology and Bioprocess Engineering, TU Dresden, Bergstrafie 120, 01062 Dresden, Germany;

    Institute of Applied Microbiology, TU Dresden, Zellescher Weg 20b, 01217 Dresden, Germany;

    Institute of Applied Microbiology, TU Dresden, Zellescher Weg 20b, 01217 Dresden, Germany;

    Institute of Applied Microbiology, TU Dresden, Zellescher Weg 20b, 01217 Dresden, Germany;

    Institute of Food Technology and Bioprocess Engineering, TU Dresden, Bergstrafie 120, 01062 Dresden, Germany;

    Department of Environmental Microbiology, Centre for Environmental Research Leipzig, UFZ, PermoserstraBe 15, 04318 Leipzig, Germany;

    Institute of Food Technology and Bioprocess Engineering, TU Dresden, Bergstrafie 120, 01062 Dresden, Germany;

    Institute of Applied Microbiology, TU Dresden, Zellescher Weg 20b, 01217 Dresden, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    activated sludge model no. 3; ASM3; enhanced biological phosphorus removal; EBPR; TOC; carbon based;

    机译:活性污泥型号3;ASM3;增强生物除磷;EBPR;TOC;碳基;

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