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A chemically enhanced biological process for lowering operative costs and solid residues of industrial recalcitrant wastewater treatment

机译:一种化学增强的生物工艺,可降低工业顽固废水处理的运营成本和固体残留物

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An innovative process based on ozone-enhanced biological degradation, carried out in an aerobic granular biomass system (SBBGR - Sequencing Batch Biofilter Granular Reactor), was tested at pilot scale for tannery wastewater treatment chosen as representative of industrial recalcitrant wastewater. The results have shown that the process was able to meet the current discharge limits when the biologically treated wastewater was recircu-lated through an adjacent reactor where a specific ozone dose of 120 mg O_3/L_(influent) was used. The benefits produced by using ozone were appreciable even visually since the final effluent of the process looked like tap water. In comparison with the conventional treatment, the proposed process was able to reduce the sludge production by 25-30 times and to save 60% of operating costs.rnMolecular in situ detection methods were employed in combination with the traditional measurements (oxygen uptake rate, total protein content, extracellular polymeric substances and hydrophobicity) to evaluate microbial activity and composition, and the structure of the biomass. A stable presence of active bacterial populations was observed in the biomass with the simultaneous occurrence of distinctive functional microbial groups involved in carbon, nitrogen and sulphate removal under different reaction environments established within the large microbial aggregates. The structure and activity of the biomass were not affected by the use of ozone.
机译:在有氧颗粒生物质系统(SBBGR-顺序批处理生物过滤器颗粒反应器)中进行的基于臭氧增强生物降解的创新工艺在中试规模下进行了制革废水处理试验,该工艺被选为工业难处理废水的代表。结果表明,当经过生物处理的废水通过相邻的反应器进行再循环时,该工艺能够满足当前的排放限值,在该反应器中使用了120 mg O_3 / L_(进水)的特定臭氧剂量。使用臭氧产生的好处即使在视觉上也很明显,因为该过程的最终流出物看起来像自来水。与常规处理相比,该方法能够将污泥产生减少25-30倍,并节省60%的运营成本。rnn分子原位检测方法与传统测量方法结合使用(氧气吸收率,总吸附量)蛋白质含量,细胞外聚合物质和疏水性)来评估微生物活性和组成以及生物质的结构。在生物质中观察到稳定的活性细菌种群,同时在大型微生物聚集体中建立的不同反应环境下,同时出现了涉及去除碳,氮和硫酸盐的独特功能性微生物基团。生物质的结构和活性不受臭氧使用的影响。

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