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Industrial wastewater platform: Upgrading of the biological process and operative configurations for best performance

机译:工业废水平台:升级生物过程和操作配置以获得最佳性能

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The treatment of industrial liquid wastes is placed in a wide context of technologies and is related to the high variability of the influent physical-chemical characteristics. In this condition, the achievement of satisfactory biological unit efficiency could be complicated. An alternate process (AC) with aerobic and anoxic phases fed in a continuous way was evaluated as an operative solution to optimize the performance of the biological reactor in a platform for the treatment of industrial liquid wastes. The process application has determined a stable quality effluent with an average concentration of 25 mg TN L ~(-1), according to the law limits. The use of discharged wastewaters as rapid carbon sources to support the anoxic phase of the alternate cycle, realizes a reduction of TN of 95% without impact on the total operative costs. The evaluation of the micro-pollutants behaviour has highlighted a bio-adsorption phenomenon in the first reactor. The implementation of the process defined 31% of energy saving during period 1 and 19% for the periods 2, 3 and 4.
机译:工业废液的处理涉及广泛的技术范围,并且与进水物化特性的高度可变性有关。在这种情况下,实现令人满意的生物单位效率可能会很复杂。评价了一种以连续方式供氧和缺氧相供料的替代工艺(AC),作为可优化生物反应器在处理工业废液平台中的性能的有效解决方案。该工艺应用已根据法律规定确定了质量稳定的废水,平均浓度为25 mg TN L〜(-1)。使用排放的废水作为快速碳源来支持交替循环的缺氧阶段,可将总氮减少95%,而不会影响总运营成本。对微污染物行为的评估突出了第一反应器中的生物吸附现象。该过程的实施定义了在第1阶段的节能量为31%,第2、3和4阶段的节能量为19%。

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