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Treatment of aqueous wastes by means of Thermophilic Aerobic Membrane Reactor (TAMR) and nanofiltration (NF): process auditing of a full-scale plant

机译:通过嗜热的好氧膜反应器(TAMR)和纳米滤波(NF)处理含水废物(NF):全尺寸植物的过程审计

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This work focuses on the Thermophilic Aerobic Membrane Reactor (TAMR) process. The research was carried out on a full-scale facility where, all along a 12-year period, daily monitoring and process audit tests were conducted for the process analysis and optimization. The plant treated -light and high-strength aqueous wastes and two different configurations were adopted: (1) thermophilic biological reactor + ultrafiltration (TAMR) and (2) TAMR + nanofiltration (TAMR + NF). In the latter case, the average chemical oxygen demand removal yield was equal to 89% and an effective denitrification (nitrogen oxides removal equal to 96%) was achieved by reducing the dissolved oxygen concentration in the bioreactor. Low specific sludge production was observed. Poor sludge settling properties were measured by a lab-scale settling test; respirometric tests (nitrogen uptake rate and ammonia uptake rate) showed the presence of denitrification and the inhibition of nitrification. Hydrodynamic tests revealed the presence of a significant dead space, thus showing room for improving the overall process performance. Finally, the rheological properties of the sludge were measured as a function of the biomass concentration, pH, temperature, and aeration scheme.
机译:这项工作侧重于嗜热需氧膜反应器(Tamr)工艺。该研究在全规模的设施上进行,沿着12年期间,每日监测和过程审计测试进行了过程分析和优化。采用植物处理的灯和高强度水废物和两种不同的构型:(1)嗜热生物反应器+超滤(Tamr)和(2)Tamr +纳米滤光(Tamr + NF)。在后一种情况下,通过降低生物反应器中的溶解氧浓度,实现平均化学氧需求除去产率等于89%,并通过降低生物反应器中的溶解氧浓度来实现有效的脱氮(等于96%的氮氧化物去除)。观察到低特异性污泥生产。通过实验室规模沉降试验测量贫困污泥沉降性能;呼吸测定试验(氮吸收率和氨摄取率)显示出反硝化和硝化抑制的存在。流体动力学测试揭示了存在显着的死区的存在,从而显示用于改善整体过程性能的空间。最后,用生物质浓度,pH,温度和曝气方案的函数测量污泥的流变性质。

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