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Combined process of biofiltration and ozone oxidation as an advanced treatment process for wastewater reuse

机译:生物过滤和臭氧氧化相结合的工艺作为废水回用的高级处理工艺

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The effluent of a wastewater treatment plant was treated in a pilot plant for reclaimed water production through the denitrification biofilter (DNBF) process, ozonation (O_3), and biologic aerated filtration (BAF). The combined process demonstrated good removal performance of conventional pollutants, including concentrations of chemical oxygen demand (27.8 mg·L~(-1)) and total nitrogen (9.9 mg·L~(-1)) in the final effluent, which met the local discharge standards and water reuse purposes. Micropollutants (e.g., antibiotics and endocrine-disrupting chemicals) were also significantly removed during the proposed process. Ozonation exhibited high antibiotic removal efficiencies, especially for tetracycline (94%). However, micropollutant removal efficiency was negatively affected by the nitrite produced by DNBF. Acute toxicity variations of the combined process were estimated by utilizing luminescent bacteria. Inhibition rate increased from 9% to 15% during ozonation. Carbonyl compound concentrations (e.g., aldehydes and ketones) also increased by 58% as by-products, which consequently increased toxicity. However, toxicity eventually became as low as that of the influent because the by-products were effectively removed by BAF. The combined DNBF/O_3/ BAF process is suitable for the advanced treatment of reclaimed water because it can thoroughly remove pollutants and toxicity.
机译:废水处理厂的废水在中试工厂中进行了处理,以通过反硝化生物滤池(DNBF),臭氧化(O_3)和生物曝气生物滤池(BAF)生产中水。组合过程显示出常规污染物的良好去除性能,包括最终废水中的化学需氧量(27.8 mg·L〜(-1))和总氮(9.9 mg·L〜(-1))的浓度均满足当地排放标准和中水回用的目的。在提议的过程中,微量污染物(例如,抗生素和破坏内分泌的化学物质)也得到了显着去除。臭氧化显示出高的抗生素去除效率,尤其是对于四环素(94%)。但是,DNBF产生的亚硝酸盐对微污染物的去除效率有不利影响。通过利用发光细菌来估计组合过程的急性毒性变化。臭氧化期间抑制率从9%增加到15%。副产物羰基化合物的浓度(例如,醛和酮)也增加了58%,因此增加了毒性。但是,由于副产物被BAF有效去除,因此毒性最终变得与进水一样低。 DNBF / O_3 / BAF组合工艺可以彻底去除污染物和毒性,因此适合于再生水的深度处理。

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