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Assessment of two-phase olive mill solid waste and microalgae co-digestion to improve methane production and process kinetics

机译:评估两阶段橄榄磨固体废物和微藻共消化以改善甲烷生产和工艺动力学

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摘要

Olive mill solid waste (OMSW) is a pollutant waste coming from olive oil elaboration by the two-phase centrifugation system. OMSW has a high organic matter content and unbalanced carbon to nitrogen (C/N) ratio, 31/1, which avoids obtaining high methane yields in the anaerobic digestion of this waste. In the present study a microalgae, Dunaliella salina, was employed as co-substrate for the OMSW anaerobic digestion in order to decrease the C/N ratio and increase its biodegradability. Different co-digestion mixtures (C/N ratios) were studied. The increase of D. salina from 25% to 50% in the co-digestion mixture clearly increased the biodegradability of the sole substrates. The highest biodegradability was found for the co-digestion mixture 50% OMSW-50% D. salina. Nevertheless, the maximum methane production, 330mLCH4/gVSadded, and the highest methane production rate were obtained for the co-digestion mixture 75% OMSW-25% D. salina, keeping a C/N ratio near to 26.7/1. © 2014 Elsevier Ltd.
机译:橄榄磨固体废物(OMSW)是一种污染物,是通过两相离心系统精制橄榄油而产生的。 OMSW有机物含量高,碳氮比(C / N)为31/1,这避免了在厌氧消化这种废物时获得高甲烷产量。在本研究中,微藻杜氏盐藻被用作OMSW厌氧消化的共同底物,以降低C / N比并提高其生物降解性。研究了不同的共消化混合物(C / N比)。共消化混合物中的盐藻D. salina从25%增加到50%明显增加了唯一底物的生物降解能力。对于50%OMSW-50%D. salina的共消化混合物,发现最高的生物降解性。然而,对于共消化混合物中75%OMSW-25%盐沼中的甲烷,获得了最高的甲烷产量(330mLCH4 / gVS添加)和最高的甲烷生产率,使C / N比接近26.7 / 1。 ©2014爱思唯尔有限公司。

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