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Evaluation of the prediction of trace organic compound removal during ozonation of secondary effluents using tracer substances and second order rate kinetics

机译:使用示踪物质和二级速率动力学评估二级废水臭氧化过程中微量有机化合物去除的预测

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摘要

The application of the R_(CT)-concept for predicting the removal of trace organic compounds (TrOCs) in organic rich WWTP effluents is often problematic due to the fast ozone depletion with instantaneous ozone demand in the range of typically applied ozone dosages. In this study, the determination of OH-radical and ozone exposure from second order rate kinetics with two internal tracer substances was evaluated as alternative approach for these waters. Results from batch and semi-batch experiments showed a linear correlation of OH radical exposure with ozone consumption, characterized by its slope indicating the formation efficiency of OH-radicals and a lag ozone consumption without significant formation of OH-radicals. Evaluation of data from the project PILOTOX on ozonation of secondary effluent confirmed reasonable prediction of ozone resistant compound removal from relative residual concentration of an internal tracer substance. In contrast, predicting the reduction of TrOCs by direct reactions with ozone from internal tracers was not feasible. Similar removal efficiencies for fast reacting compounds with different rate constants from k_(o3) = 10~4 M~1 s~2 to k_(o3) = 10~6 M ~1 s ~1 were observed indicating a limitation of the reaction by mass transfer. This effect was observed at low ozone dosages in semi-batch and pilot experiments as well as in batch experiments, where mass transfer from gas to liquid phase is not limiting. It is assumed that consumption of low ozone dosages is faster than sample homogenization in the batch reactors used. Thus, prediction of compound removal by direct reaction with ozone always needs to consider reactor design and geometry.
机译:R_(CT)概念在预测富含有机物的WWTP废水中痕量有机化合物(TrOCs)的去除中的应用通常存在问题,因为在常规应用的臭氧剂量范围内,臭氧消耗迅速,瞬时臭氧需求量很大。在本研究中,评估了使用两种内部示踪剂物质从二阶速率动力学确定OH自由基和臭氧的暴露,作为这些水的替代方法。分批和半分批实验的结果表明OH自由基暴露与臭氧消耗之间存在线性相关性,其斜率表明OH自由基的形成效率和滞后臭氧消耗而没有明显形成OH自由基。对来自PILOTOX项目的有关次级废水臭氧化的数据进行评估,证实了从内部示踪剂物质的相对残留浓度中去除臭氧耐受性化合物的合理预测。相反,通过与内部示踪剂与臭氧的直接反应来预测TrOCs的减少是不可行的。对于k_(o3)= 10〜4 M〜1 s〜2到k_(o3)= 10〜6 M〜1 s〜1的不同速率常数的快速反应化合物,其去除效率相似。传质。在半分批实验和中试实验以及在不限制从气相到液相的传质的分批实验中,在低臭氧剂量下都观察到了这种效果。假定消耗的低臭氧剂量比使用的间歇式反应器中的样品均质化要快。因此,预测与臭氧直接反应去除化合物的过程始终需要考虑反应器的设计和几何形状。

著录项

  • 来源
    《Water Research》 |2013年第17期|6467-6474|共8页
  • 作者

    U. Huebner; S. Keller; M. Jefeel;

  • 作者单位

    Technical University of Berlin, Chair of Water Quality Control, Str. des 17. Juni 135, 10623 Berlin, Germany;

    Technical University of Berlin, Chair of Water Quality Control, Str. des 17. Juni 135, 10623 Berlin, Germany;

    Technical University of Berlin, Chair of Water Quality Control, Str. des 17. Juni 135, 10623 Berlin, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ozonation; Trace organic compounds; Secondary effluent; OH-radicals;

    机译:臭氧化;微量有机化合物;二级污水;OH基;
  • 入库时间 2022-08-17 13:45:42

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