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Influence of different anoxic time exposures on active biomass, protozoa and filamentous bacteria in activated sludge

机译:不同缺氧时间暴露对活性污泥中活性生物量,原生动物和丝状细菌的影响

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摘要

Medium-sized wastewater treatment plants are considered too small to implement anaerobic digestion technologies and too large for extensive treatments. A promising option as a sewage sludge reduction method is the inclusion of anoxic time exposures. In the present study, three different anoxic time exposures of 12, 6 and 4 hours have been studied to reduce sewage sludge production. The best anoxic time exposure was observed under anoxic/oxic cycles of 6 hours, which reduced 29.63% of the biomass production compared with the oxic control conditions. The sludge under different anoxic time exposures, even with a lower active biomass concentration than the oxic control conditions, showed a much higher metabolic activity than the oxic control conditions. Microbiological results suggested that both protozoa density and abundance of filamentous bacteria decrease under anoxic time exposures compared to oxic control conditions. The anoxic time exposures 6/6 showed the highest reduction in both protozoa density, 37.5%, and abundance of filamentous bacteria, 41.1%, in comparison to the oxic control conditions. The groups of crawling ciliates, carnivorous ciliates and filamentous bacteria were highly influenced by the anoxic time exposures. Protozoa density and abundance of filamentous bacteria have been shown as promising bioindicators of biomass production reduction.
机译:中型废水处理厂被认为太小而无法实施厌氧消化技术,而太大则无法进行广泛的处理。作为减少污水污泥方法的一种有前途的选择是包括缺氧时间暴露。在本研究中,已研究了三种不同的缺氧时间分别为12、6和4小时,以减少污水污泥的产生。在6小时的缺氧/有氧循环下观察到最佳的缺氧时间暴露,与有氧对照条件相比,其减少了29.63%的生物量产生。即使在不同的缺氧时间暴露条件下,污泥的活性生物量浓度也低于缺氧控制条件,但其代谢活性却远高于缺氧控制条件。微生物学结果表明,与有氧对照条件相比,在无氧时间暴露下,原生动物密度和丝状细菌的丰度均降低。与有氧对照条件相比,无氧时间暴露6/6表现出原生动物密度降低最高,达37.5%,丝状细菌丰度降低达41.1%。爬行的纤毛虫,肉食的纤毛虫和丝状细菌受缺氧时间的影响很大。原生动物的密度和丰富的丝状细菌已被证明是减少生物量产量的有前途的生物指标。

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