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Stable isotope signatures for characterising the biological stability of landfllled municipal solid waste

机译:稳定的同位素特征可表征填埋的城市固体废物的生物稳定性

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摘要

Stable isotopic signatures of landfill leachates are influenced by processes within municipal solid waste (MSW) landfills mainly depending on the aerobic/anaerobic phase of the landfill. We investigated the isotopic signatures of δ~(13)C, δ~2H and δ~(18)O of different leachates from lab-scale experiments, lysimeter experiments and a landfill under in situ aeration. In the laboratory, columns filled with MSW of different age and reactivity were percolated under aerobic and anaerobic conditions. In landfill simulation reactors, waste of a 25 year old landfill was kept under aerobic and anaerobic conditions. The lysimeter facility was filled with mechanically shredded fresh waste. After starting of the methane production the waste in the lysimeter containments was aerated in situ. Leachate and gas composition were monitored continuously. In addition the seepage water of an old landfill was collected and analysed periodically before and during an in situ aeration. We found significant differences in the δ~(13)C-value of the dissolved inorganic carbon (δ~(13)C-DIC) of the leachate between aerobic and anaerobic waste material. During aerobic degradation, the signature of δ~(13)C-DIC was mainly dependent on the isotopic composition of the organic matter in the waste, resulting in a δ~(13)C-DIC of 20‰ to 25‰. The production of methane under anaerobic conditions caused an increase in δ~(13)C-DIC up to values of +10‰ and higher depending on the actual reactivity of the MSW. During aeration of a landfill the aerobic degradation of the remaining organic matter caused a decrease to a δ~(13)C-DIC of about -20‰. Therefore carbon isotope analysis in leachates and groundwater can be used for tracing the oxidation-reduction status of MSW landfills. Our results indicate that monitoring of stable isotopic signatures of landfill leachates over a longer time period (e.g. during in situ aeration) is a powerful and cost-effective tool for characterising the biodegrad-ability and stability of the organic matter in landfilled municipal solid waste and can be used for monitoring the progress of in situ aeration.
机译:垃圾渗滤液的稳定同位素特征受城市固体垃圾(MSW)垃圾填埋场中工艺的影响,主要取决于垃圾填埋场的好氧/厌氧阶段。我们从实验室规模的实验,溶渗仪实验和现场曝气下的垃圾填埋场研究了不同渗滤液的δ〜(13)C,δ〜2H和δ〜(18)O的同位素特征。在实验室中,在好氧和厌氧条件下对装有不同年龄和反应性的城市固体废弃物的色谱柱进行渗滤。在垃圾填埋场模拟反应堆中,将有25年历史的垃圾填埋场的废物保持在有氧和厌氧条件下。溶渗仪设施充满了机械切碎的新鲜废物。甲烷生产开始后,将溶渗仪安全壳中的废物原位充气。连续监测渗滤液和气体成分。此外,在现场曝气之前和期间,对旧垃圾填埋场的渗水进行了收集和定期分析。我们发现,好氧和厌氧废料中渗滤液的溶解无机碳的δ〜(13)C值(δ〜(13)C-DIC)存在显着差异。在好氧降解过程中,δ〜(13)C-DIC的特征主要取决于废物中有机物的同位素组成,导致δ〜(13)C-DIC为20‰至25‰。厌氧条件下甲烷的产生导致δ〜(13)C-DIC的增加达到+ 10‰或更高,这取决于城市固体废弃物的实际反应性。在垃圾填埋场曝气期间,剩余有机物的需氧降解导致δ〜(13)C-DIC降低约-20‰。因此,渗滤液和地下水中的碳同位素分析可用于追踪生活垃圾填埋场的氧化还原状态。我们的结果表明,在较长时期内(例如在原位曝气期间)监测垃圾渗滤液的稳定同位素特征是表征垃圾掩埋城市固体废物中有机物的生物降解能力和稳定性的有力且具有成本效益的工具。可用于监测原位通气进度。

著录项

  • 来源
    《Waste Management》 |2013年第10期|2083-2090|共8页
  • 作者单位

    AIT Austrian Institute of Technology GmbH, Health and Environment Department, Environmental Resources and Technologies, Konrad-Lorenz-Strasse 24, 3430 Tulln, Austria;

    Institute of Waste Management, Department of Water-Atmosphere-Environment, University of Natural Resources and Life Sciences, Muthgasse 107, 1190 Vienna, Austria;

    Institute of Waste Management, Department of Water-Atmosphere-Environment, University of Natural Resources and Life Sciences, Muthgasse 107, 1190 Vienna, Austria;

    AIT Austrian Institute of Technology GmbH, Health and Environment Department, Environmental Resources and Technologies, Konrad-Lorenz-Strasse 24, 3430 Tulln, Austria;

    AIT Austrian Institute of Technology GmbH, Health and Environment Department, Environmental Resources and Technologies, Konrad-Lorenz-Strasse 24, 3430 Tulln, Austria;

    AIT Austrian Institute of Technology GmbH, Health and Environment Department, Environmental Resources and Technologies, Konrad-Lorenz-Strasse 24, 3430 Tulln, Austria;

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  • 正文语种 eng
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  • 关键词

    In situ aeration; Landfill leachate; δ~(13)C; Carbon isotope; Lysimeter;

    机译:原位通气垃圾渗滤液δ〜(13)C;碳同位素;测渗仪;

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