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Stable biogas production from single-stage anaerobic digestion of food waste

机译:单级厌氧消化食物垃圾可稳定生产沼气

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Anaerobic digestion is widely used for the management of the organic fraction of municipal solid waste and is also predicted to play a vital role in the future of renewable energy production. However, reactor instability due to low acid buffering capacity at high organic loading rates in single stage reactors is a known risk of this technology. Such process instability represents a risk to electricity and heat generation through interruptions to biogas production. Co-digestion and trace element supplementation have each been advocated as strategies to stabilize biogas production, but the relative merits of these strategies have never been assessed. Here we operated a series of anaerobic continuously stirred tank reactors fed with synthetic organic household waste with or without trace element supplementation and with or without wheat straw as co-substrate at gradually increasing loading rates. Stable and high methane yields (450-550 mL/g VS) at higher organic loading rates were only maintained with trace element supplementation, regardless of co-digestion. We conclude that trace element supplementation was hierarchically more important than co-digestion at maintaining stable biogas production.
机译:厌氧消化被广泛用于管理城市固体废物的有机部分,并且预计在未来可再生能源生产中也将发挥至关重要的作用。然而,由于在单级反应器中高有机负荷率下酸缓冲能力低而导致的反应器不稳定性是该技术的已知风险。这种过程的不稳定性代表了由于沼气生产中断而产生电和热的风险。共消化和微量元素补充已被提倡作为稳定沼气生产的策略,但是这些策略的相对优点尚未得到评估。在这里,我们运行了一系列厌氧连续搅拌罐式反应器,以逐渐增加的加载速率向其中添加或不添加微量元素,并以或不添加麦秸作为共基质的合成有机生活垃圾进料。不论共消化如何,仅通过补充微量元素就可以保持较高有机负载率下的稳定且高甲烷产量(450-550 mL / g VS)。我们得出结论,在维持稳定的沼气生产中,微量元素的补充在层次上比共同消化更为重要。

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