首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Pretreatment and co-digestion of microalgae, sludge and fat oil and grease (FOG) from microalgae-based wastewater treatment plants
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Pretreatment and co-digestion of microalgae, sludge and fat oil and grease (FOG) from microalgae-based wastewater treatment plants

机译:微藻的微藻,污泥和脂肪油和润滑脂(雾)的预处理和共消化,从基于微藻的废水处理厂

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The aim of this study was to assess the co-digestion of residual biomass flows generated in microalgae-based wastewater treatment plants: microalgae, primary sludge and fat, oil and grease (FOG), with and without microalgae thermal pretreatment. The results evidenced the high methane yield of FOG (563 mL CH4/g VS) as compared to microalgae (140 mL CH4/gVS) and sludge (299 mL CH4/g VS). The methane yield of microalgae and sludge co-digestion (50-50% VS) was increased by 25 and 42% by adding 10 and 20% VS of FOG, respectively. Moreover, co-digestion trials improved the anaerobic digestion first-order kinetics by up to 67%. Regarding the thermal pretreatment, it increased the methane yield of microalgae by 60%, and 15% upon co-digestion with sludge and FOG. Therefore, co-digestion of microalgae, primary sludge and FOG appears as a promising strategy to enhance the biogas production, hence bioenergy recovery from wastewater, even without pretreatment.
机译:本研究的目的是评估微藻基废水处理厂中产生的残留生物质流动的共消化:微藻,初级污泥和脂肪,油和油脂(雾),有和没有微藻热预处理。 与微藻(140mL CH 4 / GVS)和污泥(299mL CH 4 / G Vs)相比,结果证明了雾(563ml CH4 / g Vs)的高甲烷产率。 通过加入10%和20%vs雾,微藻和污泥共消化(50-50%Vs)的甲烷产量分别增加25%和42%。 此外,共消化试验将厌氧消化一阶动力学改善高达67%。 关于热预处理,它在与污泥和雾共消化时,将微藻的甲烷产率增加了60%,15%。 因此,微藻的共消化,初级污泥和雾似乎是增强沼气生产的有希望的策略,因此即使没有预处理,生物能量也从废水中恢复。

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