首页> 外文期刊>Journal of Environmental Management >Improving biogas production from anaerobic co-digestion of Thickened Waste Activated Sludge (TWAS) and fat, oil and grease (FOG) using a dual-stage hyper-thermophilic/thermophilic semi-continuous reactor
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Improving biogas production from anaerobic co-digestion of Thickened Waste Activated Sludge (TWAS) and fat, oil and grease (FOG) using a dual-stage hyper-thermophilic/thermophilic semi-continuous reactor

机译:使用双级超嗜热/嗜热半连续反应器,通过增稠废物活性污泥(TWAS)和油脂,油脂的厌氧共消化来提高沼气生产

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This paper investigates the feasibility and advantages of using a dual-stage hyper-thermophilic/thermophilic semi-continuous reactor system for the co-digestion of Thickened Waste Activated Sludge (TWAS) and Fat, Oil and Grease (FOG) to produce biogas in high quantity and quality. The performance of the dual-stage hyper-thermophilic (70°C)/thermophilic (55°C) anaerobic co-digestion system is evaluated and compared to the performance of a single-stage thermophilic (55°C) reactor that was used to co-digest the same FOG-TWAS mixtures. Both co-digestion reactors were compared to a control reactor (the control reactor was a single-stage thermophilic reactor that only digested TWAS). The effect of FOG% in the co-digestion mixture (based on total volatile solids) and the reactor hydraulic retention time (HRT) on the biogas/methane production and the reactors' performance were thoroughly investigated. The FOG% that led to the maximum methane yield with a stable reactor performance was determined for both reactors. The maximum FOG% obtained for the single-stage thermophilic reactor at 15 days HRT was found to be 65%. This 65% FOG resulted in 88.3% higher methane yield compared to the control reactor. However, the dual-stage hyper-thermophilic/thermophilic co-digestion reactor proved to be more efficient than the single-stage thermophilic co-digestion reactor, as it was able to digest up to 70% FOG with a stable reactor performance. The 70% FOG in the co-digestion mixture resulted in 148.2% higher methane yield compared to the control at 15 days HRT. 70% FOG (based on total volatile solids) is so far the highest FOG% that has been proved to be useful and safe for semi-continuous reactor application in the open literature. Finally, the dual-stage hyper-thermophilic/thermophilic co-digestion reactor also proved to be efficient and stable in co-digesting 40% FOG mixtures at lower HRTs (i.e., 9 and 12 days) and still produce high methane yields and Class A effluents.
机译:本文研究了使用双级超嗜热/嗜温半连续反应器系统共同消化增稠废物活性污泥(TWAS)和脂肪,油脂和油脂(FOG)来生产高沼气的可行性和优势。数量和质量。评估了两级超嗜热(70°C)/嗜热(55°C)厌氧共消化系统的性能,并将其与单级嗜热(55°C)反应器的性能进行了比较。共同消化相同的FOG-TWAS混合物。将两个共消化反应器与对照反应器进行比较(对照反应器是仅消化TWAS的单级嗜热反应器)。彻底研究了共消化混合物中FOG%(基于总挥发性固体)和反应器水力停留时间(HRT)对沼气/甲烷生产和反应器性能的影响。确定了两个反应器的FOG%,这些FOG%导致最大的甲烷产率和稳定的反应器性能。发现在HRT 15天时,单级嗜热反应器获得的最大FOG%为65%。与对照反应器相比,该65%的FOG导致甲烷产率提高了88.3%。然而,事实证明,双级超嗜热/共消化反应器比单级嗜热共消化反应器更有效,因为它能够消化高达70%的FOG,并具有稳定的反应器性能。共消化混合物中70%的FOG与HRT 15天的对照相比产生了148.2%的甲烷产率。迄今为止,公开文献中已证明70%FOG(基于总挥发性固体)是最高的FOG%,已证明对半连续反应器的应用是有用且安全的。最后,双级超高温/高温共消化反应器在较低的HRT(即9天和12天)下共消化40%FOG混合物时也被证明是有效且稳定的,并且仍然产生高甲烷产率和A级废水。

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