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Comparison of cutting-oil emulsion treatment by electrocoagulation-flotation in bubble column and airlift reactors

机译:鼓泡塔和气浮反应器电凝-浮选法处理切削油乳液的比较

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Separation of nanoscale oil droplets in the cutting-oil emulsion by electrocoagulation-flotation (ECF) was carried out in a bubble column reactor (BCR) and an external-loop airlift reactor (ALR). Under the batch operation, aluminium electrode provided the highest efficiency of 99% and required the shortest separating time compared to iron and graphite electrodes. The separation performance was also affected by the electrode gap and current density due to the amount of produced aluminium ions and turbulence by bubble motions. Additionally, the ECF efficiency obtained from the ALR was similar to that of the BCR. However, the ALR was preferable owing to its lower energy consumption, less electrode sacrifice, and less sludge production. Similar results were acquired under the continuous mode; nevertheless, the highest efficiency of only 85% was achieved from both reactors. It was found that the efficiency declined with increasing flow rates. According to the results suggested by the residence time distribution (RTD), the ALR was more effective at higher flow rates since the plug flow condition can be retained. On the other hand, an increase in flow rate also provoked the bypass flow to the down-comer of the ALR, resulting in the presence of a dead zone and reduction in the treatment efficiency.
机译:在鼓泡塔反应器(BCR)和外环气提反应器(ALR)中通过电凝浮选(ECF)分离切削油乳液中的纳米级油滴。在分批操作下,与铁和石墨电极相比,铝电极的效率最高,可达99%,分离时间最短。分离性能还受到电极间隙和电流密度的影响,这归因于产生的铝离子量和气泡运动引起的湍流。此外,从ALR获得的ECF效率与BCR相似。然而,由于其较低的能耗,较少的电极牺牲和较少的污泥产生,ALR是优选的。在连续模式下获得了相似的结果。但是,两个反应器的最高效率都只有85%。发现效率随着流速的增加而下降。根据停留时间分布(RTD)所建议的结果,ALR在较高流速下更为有效,因为可以保留活塞流条件。另一方面,流速的增加也促使旁路流到达ALR的下降管,导致死区的存在和治疗效率的降低。

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