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Treatment of high strength aqueous wastes in a thermophilic aerobic membrane reactor (TAMR): performance and resilience

机译:嗜热性有氧膜反应器中高强度含水废物的处理(TAMR):性能和弹性

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In the present work, the thermophilic aerobic membrane reactor technology was studied for the treatment of high strength aqueous wastes mainly containing dyes, surfactants and solvents. The thermophilic biomass resilience and the process stability under critical conditions (such as rapid rise of the mixed liquor pH, oxygen supply interruption, etc.) were also evaluated. The experimental work was carried out with the use of a pilot plant at semi- industrial scale, which was managed throughout for 14 months; the operation temperature was 49 degrees C and the organic loading rate was increased from 3 to 12 kgCOD m(-3) d(-1). Critical conditions, especially the interruption of oxygen supply, affected the pilot plant performance but did not cause a complete system break down. After the temporary reduction of process performance, also proven by the decrease in the oxygen consumption, the normal working conditions were restored. Moreover, the longer non- aerated phase involved a significant reduction (40%) of volatile suspended solids concentration in the biological reactor and the increase of 30% in foaming power; nevertheless, once the oxygen supply was reactivated, optimal conditions were rapidly restored. Therefore, the study showed the high resilience of the thermophilic biomass, which was able to recover full functionality after critical events.
机译:在本作工作中,研究了嗜热的有氧膜反应器技术,用于治疗主要含有染料,表面活性剂和溶剂的高强度含水废物。还评估了嗜热生物质弹性和过程稳定性(例如混合液pH,氧供应中断等快速上升)。在半工业规模上使用试验工厂进行实验工作,该工厂在整个整个14个月内管理;操作温度为49℃,有机加载速率从3〜12kgcod m(-3)d(-1)增加。临界条件,特别是氧气供应中断,影响了试验厂的性能,但没有引起完整的系统分解。在暂时降低过程性能后,还通过降低耗氧来证明,恢复正常的工作条件。此外,较长的非空气阶段涉及在生物反应器中的挥发性悬浮固体浓度的显着减少(40%),并且发泡动力增加30%;然而,一旦氧气供应重新激活,就迅速恢复了最佳条件。因此,该研究表明嗜热生物质的高度恢复性,能够在批判性事件后恢复全功能。

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