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SELF-FERMENTATION: INNOVATIVE PRETREATMENT FOR USE HIGH CONCENTRATION OF OLIVE MILL WASTEWATER IN ANAEROBIC DIGESTION PLANT

机译:自我发酵:在厌氧消化厂使用高浓度橄榄磨废水的创新预处理

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This study aimed to evaluate the impact of self fermentation on methane production as biological pretreatment of olive mill wastewater (OMW). The self-fermentation was carried out at room temperature without mixing and at natural light cycle. The batch assays were performed at the influent substrate concentration of 36.7 g VS/l (OMW 100%), 18,4 g VS/l (OMW 50%) and 9.2 g VS/l (OMW 25%). The methane production was performed at 37°C in mixing condition. The results of methane production were compared with those obtained using untreated OMW . The results of this study showed that the self fermentation process is a very effective pretreatment to produce methane. Only the self-fermented samples have produced methane from undiluted OMW and a maximum cumulative methane production of 7583 ± 138 mlCH_4/L and a yield of 246 ± 10 mlCH_4/ gVS were obtained. A yield increase of +13.5% at OMW dilution of 50% was also achieved as compared to untreated OMW results. Interestingly, in the anaerobic digestion of untreated OMW, high hydrogen yields, with an average value of 46.8 ± 1.9 mlH_2/gVS, were obtained. Moreover a depletion around 20% v/v of polyphenols was recorded for all experimental set.
机译:本研究旨在评估自发酵对甲烷产量作为橄榄磨废水(OMW)的生物预处理的影响。自发酵在室温下进行而不混合和自然光循环。分批测定以36.7g Vs / L(OMW 100%),18,4g Vs / L(OMW 50%)和9.2g Vs / L(OMW 25%)的影响。甲烷生产在37℃下在混合条件下进行。将甲烷产量的结果与使用未处理的OMW获得的结果进行比较。本研究的结果表明,自发酵过程是一种非常有效的预处理,以产生甲烷。只有自发酵样品已经产生甲烷来自未稀释的OMW,并且获得最大累积甲烷产量为7583±138mLCH_4 / L,得到246±10mLCH_4 / GV的产率。与未处理的OMW结果相比,OMW稀释度的产量增加+ 13.5%也取得了50%。有趣的是,在未处理的OMW的厌氧消解中,获得了平均值为46.8±1.9mLh_2 / GV的高氢产率。此外,所有实验组记录了约20%v / v的多酚的耗尽。

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