首页> 外文会议>Biennial conference of the International Association on Water Quality >COMBINED BIOLOGICAL AND CHEMICAL TREATMENT OF HIGHLY CONCENTRATED RESIDUAL DYEHOUSE LIQUORS
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COMBINED BIOLOGICAL AND CHEMICAL TREATMENT OF HIGHLY CONCENTRATED RESIDUAL DYEHOUSE LIQUORS

机译:高浓度残留染料酒的生物和化学联合处理

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The combined biological and chemical treatment of highly concentrated reactive azo dye-containing residual dyehouse liquors with recalcitrant compounds was investigated in a sequencing batch reactor (SBR). The plant consists of a batch reactor in which the anoxic and aerobic phases are carried out by sequenced steps. Water-soluble reactive dyes were reductively cleft and decolorized by a facultative anaerobic bacterial mixed culture under anoxic conditions. Complete decolorization was observed up to concentrations of nearly 20 g dye/L without addition of an external auxiliar substrate. Mineralization of the cleavage products occurs with the same bacterial mixed culture in the same reactor under aerobic conditions. The biomass used for the anoxic treatment is grown in this aerobic phase by the use of split flows with readily biodegradable compounds. Because of the recalcitrant toxic character of some remaining substances, further aerobic mineralization was initiated by partial oxidation with ozone. Partial ozonization in a circulated stream with biological post-treatment of the transformed substances led to an increased reaction selectivity, to a better biological degradation and not least to a lower consumption of ozone. Due to this purification procedure involving highly concentrated residual dyehouse liquors a total decolorization and an overvall degradation of nearly 90% in DOC was achieved.
机译:在顺序分批反应器(SBR)中研究了高浓度的含偶氮染料的高浓度活性残留染料房液与难降解化合物的生物和化学联合处理。该设备由一个间歇式反应器组成,其中缺氧和好氧阶段通过顺序步骤进行。通过在缺氧条件下通过兼性厌氧细菌混合培养对水溶性反应性染料进行还原裂和脱色。在不添加外部辅助底物的情况下,观察到完全脱色,直至染料/ L的浓度接近20 g。裂解产物的矿化在有氧条件下在同一反应器中以相同的细菌混合培养物发生。通过使用具有易于生物降解的化合物的分流,在该好氧相中生长用于缺氧处理的生物质。由于某些残留物质具有顽强的毒性特性,因此进一步的有氧矿化作用是通过臭氧部分氧化而引发的。循环流中的部分臭氧化以及对转化物质的生物后处理导致反应选择性提高,生物降解效果更好,并且不仅降低了臭氧消耗,还提高了反应选择性。由于该纯化程序涉及高度浓缩的残留染厂液,因此在DOC中可实现完全脱色和将近90%的过valval降解。

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