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Release and fate of fluorocarbons in a shredder residue landfill cell: 1. Laboratory experiments

机译:残渣堆填区中碳氟化合物的释放和去向:1.实验室实验

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摘要

The shredder residues from automobiles, home appliances and other metal-containing products are often disposed in landfills, as recycling technologies for these materials are not common in many countries. Shredder waste contains rigid and soft foams from cushions and insulation panels blown with fluorocarbons. The objective of this study was to use laboratory experiments to estimate fluorocarbon release and attenuation processes in a monofill shredder residue (SR) landfill cell. Waste from the open SR landfill cell at the AV Milj? landfill in Denmark was sampled at three locations. The waste contained 1-3% metal and a relatively low fraction of rigid polyurethane (PUR) foam particles. The PUR waste contained less blowing agent (CFC-11) than predicted from a release model. However, CFC-11 was steadily released in an aerobic bench scale experiment. Anaerobic waste incubation bench tests showed that SRSR produced significant methane (CH_4), but at rates that were in the low end of the range observed for municipal solid waste. Aerobic and anaerobic batch experiments showed that processes in SRSR potentially can attenuate the fluorocarbons released from the SRSR itself: CFC-11 is degraded under anaerobic conditions with the formation of degradation products, which are being degraded under CH4 oxidation conditions prevailing in the upper layers of the SR.
机译:汽车,家用电器和其他含金属产品的切碎残渣通常被丢弃在垃圾填埋场中,因为这些材料的回收技术在许多国家并不普遍。碎纸机的废料中含有软垫和硬质泡沫,这些软垫是由碳氟化合物吹制的垫子和隔热板制成。这项研究的目的是利用实验室实验来估算单填充碎纸机残渣(SR)垃圾填埋场中碳氟化合物的释放和衰减过程。来自AV Milj的开放式SR垃圾填埋场的废物?丹麦的垃圾填埋场在三个地点进行了采样。废物中含有1-3%的金属和相对较低比例的硬质聚氨酯(PUR)泡沫颗粒。 PUR废料中的发泡剂(CFC-11)少于释放模型中的预测值。但是,CFC-11在有氧实验台规模试验中稳定释放。厌氧废水培养台架试验表明,SRSR产生了大量的甲烷(CH_4),但速率处于观察到的城市固体废物范围的低端。有氧和厌氧分批实验表明,SRSR中的过程可能会减弱SRSR本身释放的碳氟化合物:CFC-11在厌氧条件下降解并形成降解产物,这些产物在CH4上层普遍存在的CH4氧化条件下降解。 SR。

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  • 来源
    《Waste Management》 |2010年第11期|p.2153-2162|共10页
  • 作者单位

    Deportment of Environmental Engineering, Miljovej - Building 113. Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark;

    Deportment of Environmental Engineering, Miljovej - Building 113. Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark;

    AV Miljo, DK-2650 Hvidovre, Denmark;

    Deportment of Environmental Engineering, Miljovej - Building 113. Technical University of Denmark, DK-2800 Kgs. Lyngby, Denmark;

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