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Energetic and environmental sustainability of the co-digestion of sludge with bio-waste in a life cycle perspective

机译:从生命周期的角度来看,污泥与生物废物共同消化的能量和环境可持续性

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The integrated management of sludge and bio-waste by co-digestion and composting were investigated in a life cycle perspective. The working operations of a full-scale digester of an existing wastewater treatment plant for waste-mixed sludge (WMS) stabilization were reproduced using a pilot-scale apparatus. The effect of WMS co-digested with fruit and vegetable waste (FVW) was investigated at different organic loading rates (OLR), from 1.46 kg VS/m(3) day to 2.8 kg VS/m(3) day, and at reduced hydraulic retention time, from 14 days to about 10 days. Methane production per unit of digester volume increased from about 140 NL/m(3) day to a maximum of about 900 NL/m(3) day when OLR was increased from 1.46 kg VS/m(3) day to 2.1 kg VS/m(3) day. The maximum electrical energy producible from the full-scale anaerobic facility was about 3,500,000 kW h/year. In these conditions the electrical power output and the net efficiency of the co-generator were 470 kW and 37%, respectively. The life cycle analysis study highlighted the benefits achievable in terms of avoided resource depletion and ozone depletion potential. The best environmental performances were for an ORL of 2.1 kg VS/m(3) day. (C) 2016 Elsevier Ltd. All rights reserved.
机译:从生命周期的角度研究了通过共同消化和堆肥处理污泥和生物废物的综合管理方法。使用中试规模的设备复制了现有废水处理厂的全尺寸消化池的工作,以稳定废物混合污泥(WMS)。在不同的有机负荷率(OLR)下,从1.46千克VS / m(3)天到2.8千克VS / m(3)天,在降低的有机负荷率下,研究了WMS与果蔬废物(FVW)共同消化的WMS的效果。水力停留时间从14天到大约10天。当OLR从1.46 kg V​​S / m(3)天增加到2.1 kg V​​S /时,每消化池体积的甲烷生产量从约140 NL / m(3)天增加到最大约900 NL / m(3)天。 m(3)天。全面厌氧设施可产生的最大电能约为每年3,500,000 kW h。在这些条件下,联合发电机的电力输出和净效率分别为470 kW和37%。生命周期分析研究强调了避免资源消耗和臭氧消耗潜力方面可实现的好处。最佳的环境性能是ORL为2.1千克VS / m(3)天。 (C)2016 Elsevier Ltd.保留所有权利。

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