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提高利用食物垃圾、奶酪乳清和橄榄油厂废水的热干燥混合物进行厌氧共消化来生产沼气。

Improving biogas production from anaerobic co-digestion of sewage sludge with a thermal dried mixture of food waste, cheese whey and olive mill wastewater.

机构信息

Laboratory of Solid Waste & Wastewater Management, School of Agricultural Technology, Technological Educational Institute of Crete, Heraklion 71500, Crete, Greece; Harokopio University, Department of Geography, 70 El. Venizelou Ave., 176 71 Kallithea, Athens, Greece.

Laboratory of Solid Waste & Wastewater Management, School of Agricultural Technology, Technological Educational Institute of Crete, Heraklion 71500, Crete, Greece.

出版信息

Waste Manag. 2018 Jan;71:644-651. doi: 10.1016/j.wasman.2017.08.016. Epub 2017 Aug 12.

Abstract

Anaerobic co-digestion of sewage sludge and other organic wastes at a wastewater treatment plant (WWTP) is a promising method for both energy and material recovery. However, transportation and storage of wastes to WWTP may be the bottleneck for the successful implementation of this technology. In case of wet wastes and wastewater it is possible to reduce their volume and as a result the transportation and storage cost by using a drying process. During this study, the optimization of biogas production from sewage sludge (SS) was attempted by co-digesting with a dried mixture of food waste, cheese whey and olive mill wastewater (FCO). A series of laboratory experiments were performed in continuously-operating reactors at 37°C, fed with thermal dried mixtures of FCO at concentrations of 3%, 5% and 7%. The overall process was designed with a hydraulic retention time (HRT) of 24days. FCO addition can boost biogas yields if the mixture exceeds 3% (v/v) concentration in the feed. Any further increase of 5% FCO causes a small increase in biogas production. The reactor treating the sewage sludge produced 287ml CH/L/d before the addition of FCO and 815ml CH/L/d (5% v/v in the feed). The extra FCO-COD added (7% FCO v/v) to the feed did not have a negative effect on reactor performance, but seemed to have the same results. In all cases, the estimated biodegradability of mixtures was over 80%, while the VS removal was 22% for the maximum biomethane production (5% v/v). Moreover, co-digestion improved biogas production by 1.2-2.7 times.

摘要

在污水处理厂(WWTP)中对污水污泥和其他有机废物进行厌氧共消化是一种有前途的能源和材料回收方法。然而,将废物运输和储存到 WWTP 可能是成功实施该技术的瓶颈。对于湿废物和废水,可以通过干燥过程来减少其体积,从而降低运输和储存成本。在这项研究中,尝试通过与干燥的食品废物、奶酪乳清和橄榄磨废水(FCO)混合物共消化来优化污水污泥(SS)的沼气产量。在 37°C 的连续操作反应器中进行了一系列实验室实验,进料为 FCO 的热干燥混合物,浓度为 3%、5%和 7%。该过程总体设计的水力停留时间(HRT)为 24 天。如果混合物在进料中的浓度超过 3%(v/v),则可以增加 FCO 来提高沼气产量。进一步增加 5%的 FCO 只会导致沼气产量略有增加。在添加 FCO 之前,处理污水污泥的反应器产生了 287ml CH/L/d,而添加了 5%(v/v)FCO 后则产生了 815ml CH/L/d。额外添加的 FCO-COD(7%的 FCO v/v)对反应器性能没有负面影响,但似乎产生了相同的结果。在所有情况下,混合物的估计可生物降解性均超过 80%,而最大生物甲烷产量(5%v/v)时的 VS 去除率为 22%。此外,共消化将沼气产量提高了 1.2-2.7 倍。

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