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The importance of aeration mode and flowrate in the determination of the biological activity and stability of organic wastes by respiration indices

机译:通过呼吸指数确定曝气模式和流量对确定有机废物的生物活性和稳定性的重要性

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The aim of this study was to assess the effect of different air flowrates and different aeration modes on the respiration activity of three organic substrates of different stability degree: (i) a constant flowrate and (ii) a continuously adjusted air flowrate that optimized the oxygen uptake rate (OUR). Above 20 L air kg(-1) DM h(-1), at the constant flow regime, the resulting dynamic respiration index at 24 h (DRI24) and the cumulative respiration at four days (AT(4)) were statistically similar. At the OUR based aeration regime, the DRI24 and AT4 were statistically similar at all initial flowrates tested. Above a minimum threshold, cumulative air flow of around 3000 L air kg(-1) DM during a 5 day period, the respiration activity was similar, particularly for the two less active substrates. This study highlights the importance of selecting the aeration to obtain reliable measures of biological activity and stability in organic wastes. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项研究的目的是评估不同的空气流量和不同的曝气方式对三种不同稳定性程度的有机基质的呼吸活动的影响:(i)恒定流量和(ii)连续调节的空气流量以优化氧气吸收率(OUR)。高于20 L空气kg(-1)DM h(-1),在恒定流量下,在24 h时产生的动态呼吸指数(DRI24​​)和在4天时的累积呼吸(AT(4))在统计学上相似。在基于OUR的曝气方案中,在所有测试的初始流量下,DRI24​​和AT4在统计上均相似。超过最低阈值,在5天的时间内累积空气流量约为3000 L空气kg(-1)DM,呼吸活动相似,尤其是对于两种活性较低的底物。这项研究强调了选择曝气以获得有机废物中生物活性和稳定性的可靠措施的重要性。 (C)2015 Elsevier Ltd.保留所有权利。

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