Fruit and vegetable wastes as co-substrates in anaerobic co-digestion: Effect of storage temperature on physicochemical properties and biogas production

IF 9.5 Q1 ENERGY & FUELS Energy nexus Pub Date : 2025-03-01 Epub Date: 2024-12-25 DOI:10.1016/j.nexus.2024.100354
André Azevedo , Nuno Lapa , Margarida Moldão , Jorge Gominho , Elizabeth Duarte
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Abstract

Global population growth has led to a significant increase in food waste, including Fruit and Vegetable Waste (FVW). Anaerobic co-digestion offers a sustainable way to valorise FVW, especially when combined with Municipal Sewage Sludge (MSS) to mitigate imbalances in their mono-digestion. This study investigates the effects of storage temperatures (10 °C and 25 °C, which represent Mediterranean climates with an Atlantic influence like Portugal) on the degradation of apple, carrot, and banana peels. Changes in physicochemical properties were assessed and anaerobic co-digestion batch assays with purées of fresh and stored FVW alongside MSS were performed. Results indicated that apple peels purées, at a 1:2 peel-to-water ratio, achieved over the double of volatile solids concentration compared to MSS, with each FVW type having a C/N ratio above 40. Storage at 10 °C significantly reduced the degradation of total and volatile solids, as well as chemical oxygen demand, with apple peels retaining the highest carbohydrate concentrations. Anaerobic co-digestion with fresh FVW boosted biogas and CH4 production by 19.5% and 15.2%, respectively. FVW storage at 10 °C further enhanced CH4 yield and decreased H2S content by 71% relative to MSS mono-digestion. These findings demonstrate that mild storage temperatures can improve biogas quality and yield by facilitating controlled FVW degradation.

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水果和蔬菜废物作为厌氧共消化的共底物:储存温度对理化性质和沼气产量的影响
全球人口增长导致食物浪费显著增加,包括水果和蔬菜垃圾(FVW)。厌氧共消化提供了一种可持续的方式来增加FVW,特别是当与城市污水污泥(MSS)结合时,以减轻其单一消化的不平衡。本研究调查了储存温度(10°C和25°C,代表地中海气候,受大西洋影响,如葡萄牙)对苹果、胡萝卜和香蕉皮降解的影响。评估了理化性质的变化,并对新鲜和储存的FVW与MSS一起进行了厌氧共消化分批试验。结果表明,在皮水比为1:2的情况下,苹果皮的挥发性固体浓度比MSS提高了一倍以上,每种FVW的C/N比都在40以上。在10°C下储存显著降低了总固体和挥发性固体的降解,以及化学需氧量,苹果皮保留了最高的碳水化合物浓度。与新鲜燃料大众厌氧共消化使沼气和CH4产量分别提高19.5%和15.2%。与MSS单消化相比,FVW在10°C下储存进一步提高了CH4产量,H2S含量降低了71%。这些发现表明,温和的储存温度可以通过促进受控的FVW降解来改善沼气质量和产量。
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来源期刊
Energy nexus
Energy nexus Energy (General), Ecological Modelling, Renewable Energy, Sustainability and the Environment, Water Science and Technology, Agricultural and Biological Sciences (General)
CiteScore
7.70
自引率
0.00%
发文量
0
审稿时长
109 days
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