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Evaluation of Dissolved Organic Matter Removals through WWT and SAT Using Pilot-Scale and Lab-Scale Reactors

机译:使用中试规模和实验室规模反应堆通过WWT和SAT评估溶解有机物的去除

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Indirect potable reuse systems, which consist of wastewater treatment (WWT) and soil aquifer treatment (SAT), offer advantages such as their low cost and the underground storage of reuse water. In this study, the dissolved organic matter (DOM) profile of a sequential treatment system (i.e. WWT followed by SAT) was investigated using a pilot-scale SAT reactor. In addition, the biological DOM removal characteristics in the vadose zone of the SAT, which were found to play an important role in DOM removal for the entire SAT, were investigated using lab-scale reactors (LSRs). Composition of the removed DOM by WWT and SAT showed that the majority fraction of the removed DOM was different for the WWT (hydrophobic neutral 27.9%) and SAT (hydrophobic acids (HoA) 29.1%), suggesting that SAT exhibits unique DOM removal characteristics that contribute to water reclamation. Biological DOM removal was confirmed using the LSRs, and changes in the DOM removal characteristics 10-20cm from the top of the vadose zone in the LSRs were revealed on the basis of the DOM fractionation and a BIOLOG assay, suggesting that microbial activity in the lower layer of the vadose zone contributed to the unique removal of the HoA fraction in the SAT.
机译:间接饮用水回用系统包括废水处理(WWT)和含水层处理(SAT),具有成本低廉和地下回用水的优势。在这项研究中,使用中试规模的SAT反应器研究了顺序处理系统(即WWT,然后是SAT)的溶解有机物(DOM)分布。此外,使用实验室规模的反应器(LSR)研究了SAT渗流区中的生物DOM去除特性,这些特性在整个SAT的DOM去除中起着重要作用。通过WWT和SAT去除的DOM的组成表明,去除的DOM的大部分对于WWT(疏水性中性27.9%)和SAT(疏水性酸(HoA)29.1%)是不同的,这表明SAT具有独特的DOM去除特性,即有助于开垦水。 LDOM证实了生物DOM的去除,并根据DOM分馏和BIOLOG分析揭示了LSR渗流区顶部10-20cm处的DOM去除特征的变化,表明较低的微生物活性渗流区的水层有助于SAT中HoA分数的独特去除。

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