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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Analysis of MSW full-scale facilities based on anaerobic digestion and/or composting using respiration indices as performance indicators
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Analysis of MSW full-scale facilities based on anaerobic digestion and/or composting using respiration indices as performance indicators

机译:基于Anaerobic消化的MSW全尺度设施分析和/或使用呼吸指数作为绩效指标

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The Landfill Directive (1999/31/EC) forces European States to reduce the amount of biodegradable municipal waste landfilled to 35% of 1995 levels. Mechanical-Biological Treatment (MBT) plants are the main alternative to waste incineration and landfilling. In this work, the waste treatment efficiency of six full-scale MBT facilities has been analysed using respiration indices (Dynamic Respiration Index and Cumulative Oxygen Consumption) to monitor plant performance. MBTs relying on anaerobic digestion plus composting achieved a high grade of stability on final compost (0.24 +/- 0.09 mg O-2 g(-1) DM h(-1) and 20 9 mg O-2 g(-1) DM for dynamic respiration and cumulative consumption, respectively). On the contrary, MBTs relying only on composting showed a poor performance (1.3 +/- 0.2 mg O-2 g(-1) DM h(-1) and 104 +/- 18 mg O-2 g(-1) DM for dynamic respiration and cumulative consumption, respectively). These results highlight the usefulness of respirometric balances to assess the performance of MBT full-scale plants. (C) 2017 Elsevier Ltd. All rights reserved.
机译:垃圾填埋指令(1999/31 / EC)迫使欧洲国家将可生物降解的市政废物量减少到1995年的35%。机械生物处理(MBT)植物是垃圾焚烧和填埋的主要替代品。在这项工作中,使用呼吸指数(动态呼吸指数和累积氧气消耗)分析了六种全规模MBT设施的废物处理效率以监测植物性能。依赖于厌氧消化加堆肥的MBT达到最终堆肥的高等级稳定性(0.24 +/- 0.09 mg O-2g(-1)DM H(-1)和20 9 mg O-2 g(-1)DM用于动态呼吸和累积消费)。相反,仅依赖于堆肥的MBT表现出差的性能(1.3 +/- 0.2mg O-2 g(-1)Dm H(-1)和104 +/- 18 mg O-2 g(-1)DM用于动态呼吸和累积消费)。这些结果突出了呼吸率余额的有用性,以评估MBT全尺寸植物的性能。 (c)2017 Elsevier Ltd.保留所有权利。

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