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Improved processes involving hydrodynamic cavitation and oxidants for treatment of real industrial effluent

机译:改进涉及流体动力空化和氧化剂治疗真正工业流出物的过程

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The present study focuses on the use of hydrodynamic cavitation (HC) alone and in combination with oxidants as pre-treatment for conventional biological treatment with an objective of enhancing the treatability of industrial effluent. Under fixed conditions of inlet pressure (4 bar) and pH (4), chemical oxygen demand (COD) reduction has been investigated using HC alone and its combination with hydrogen peroxide (H2O2), O-3 and Fenton's reagent. The individual operation of HC resulted in only 21.6% of reduction in 120 min of treatment with rate constant of 2.1 x 10(-3) min(-1). The combination of HC + H2O2, HC + O-3 and HC + Fenton yielded significantly enhanced COD reduction than the treatment using HC alone with actual values as 39.5%, 52.8%, and 72.1% respectively. Improvements in primary and tertiary treatment options have also been investigated in the current work. The coagulation using alum as primary treatment to HC + Fenton process gave overall enhanced COD reduction of about 80%. Subsequent conventional biological oxidation resulted in COD reduction of about 98%. Finally, the effluent obtained from biological treatment was filtered to remove biomass and disinfected using sodium hypochlorite. After all the steps of treatment, the final COD obtained was <= 250 mgO(2)/dm(3) which is suitable for discharge. The different treatment approaches were compared based on the power consumption and the operational cost. Overall, an improved treatment scheme involving HC + Fenton, conventional biological treatment and chemical oxidants was demonstrated for treatment showing compliance for the treated effluent.
机译:本研究侧重于单独使用流体动力空化(HC)并与氧化剂组合作为常规生物处理的预处理,其目的是提高工业流出物的可治工。在固定条件的入口压力(4巴)和pH(4)下,通过单独使用HC来研究化学需氧量(COD)还原及其与过氧化氢(H2O2),O-3和Fenton的试剂的组合。 HC的个体操作仅为120分钟处理的21.6%,速率常数为2.1×10(-3)分钟(-1)。 HC + H 2 O 2,HC + O-3和HC + FENTON的组合产生显着增强的COD减少,而不是单独使用HC的治疗,实际值分别为39.5%,52.8%和72.1%。在目前的工作中也调查了初级和三级治疗方案的改善。使用明矾作为HC + FENTON工艺的初级处理的凝血总体增强COD减少约80%。随后的常规生物氧化导致COD降低约98%。最后,过滤从生物处理中获得的流出物以除去生物质并使用次氯酸钠消毒。在所有处理步骤之后,所得最终鳕鱼是适合排出的<= 250mgO(2)/ DM(3)。基于功耗和运营成本比较了不同的处理方法。总的来说,证明了涉及HC + Fenton,常规生物处理和化学氧化剂的改进的处理方案用于治疗治疗流出物的顺从。

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