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Technical evaluation of a tank-connected food waste disposer system for biogas production and nutrient recovery

机译:罐式食物垃圾处理器系统的技术评估,用于沼气生产和营养回收

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摘要

In this study, a tank-connected food waste disposer system with the objective to optimise biogas production and nutrient recovery from food waste in Malmoe was evaluated. The project investigated the source-separation ratio of food waste through waste composition analyses, determined the potential biogas production in ground food waste, analysed the organic matter content and the limiting components in ground food waste and analysed outlet samples to calculate food waste losses from the separation tank. It can be concluded that the tank-connected food waste disposer system in Malm6 can be used for energy recovery and optimisation of biogas production. The organic content of the collected waste is very high and contains a lot of energy rich fat and protein, and the methane potential is high. The results showed that approximately 38% of the food waste dry matter is collected in the tank. The remaining food waste is either found in residual waste (34% of the dry matter) or passes the tank and goes through the outlet to the sewer (28%). The relatively high dry matter content in the collected fraction (3-5% DM) indicates that the separation tank can thicken the waste substantially. The potential for nutrient recovery is rather limited considering the tank content. Only small fractions of the phosphorus (15%) and nitrogen (21%) are recyclable by the collected waste in the tank. The quality of the outlet indicates a satisfactory separation of particulate organic matter and fat. The organic content and nutrients, which are in dissolved form, cannot be retained in the tank and are rather led to the sewage via the outlet.
机译:在这项研究中,评估了一个与罐连接的食物垃圾处理器系统,该系统旨在优化马尔默地区的沼气生产和从食物垃圾中回收养分。该项目通过废物成分分析调查了食物垃圾的源头分离率,确定了地面食物垃圾中潜在的沼气产量,分析了地面食物垃圾中的有机物含量和限制成分,并分析了出口样本,以计算食物垃圾的损失。分离罐。可以得出结论,Malm6中与罐连接的食物垃圾处理器系统可用于能量回收和沼气生产的优化。收集到的废物中的有机物含量很高,并且含有大量能量丰富的脂肪和蛋白质,甲烷潜力很高。结果表明,大约38%的食物垃圾干物质收集在水箱中。剩余的食物残渣要么残留在残渣中(占干物质的34%),要么通过储罐并通过出口到达下水道(占28%)。收集的馏分中相对较高的干物质含量(3-5%DM)表明分离罐可以使废物大量浓缩。考虑到水箱的容量,营养回收的潜力相当有限。罐中收集的废物只能回收一小部分的磷(15%)和氮(21%)。出口的质量表明颗粒有机物和脂肪的分离令人满意。溶解形式的有机物和营养物不能保留在水箱中,而是通过出口排入污水。

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  • 来源
    《Waste Management》 |2017年第7期|153-158|共6页
  • 作者单位

    Department of Chemical Engineering, Lund University, P.O. Box 124, SE-221 00 Lund, Sweden;

    Centro de Cestao Tecnologica - CT2, Rua Moniz de Aragao, No. 360 - Bloco 2, Una do Fundao - Cidade Universitaria, Rio de Janeiro, RJ 21.941-972, Brazil;

    Department of Chemical Engineering, Lund University, P.O. Box 124, SE-221 00 Lund, Sweden;

    VA SYD, Box 191, SE-201 21 Malmoe, Sweden,Urban Studies, Malmoe University, 205 06 Malmoe, Sweden;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Food waste; Disposer; Tank system; Biogas; Sorting;

    机译:食物浪费;处理器;坦克系统;沼气排序;

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