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Volatile organic compounds (VOCs) in solid waste landfill cover soil: Chemical and isotopic composition vs. degradation processes

机译:固体废物填埋覆盖土壤中的挥发性有机化合物(VOC):化学和同位素组成与降解过程

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摘要

Landfills for solid waste disposal release to the atmosphere a large variety of volatile organic compounds (VOCs). Bacterial activity in landfill cover soils can play an important role in mitigating VOC emission. In order to evaluate the effects of degradation processes and characterize VOCs composition in landfill cover soil, gases from 60 sites and along 7 vertical profiles within the cover soil were collected for chemical and isotopic analysis at two undif-ferentiated urban solid waste disposal sites in Spain: (ⅰ) Pinto (Madrid) and (ⅱ) Zurita (Fuerteventura, Canary Islands). The CO_2/CH_4 ratios and δ~(13)C-CO_2 and δ~(13)C-CH_4 values were controlled by either oxidation or reduction processes of landfill gas (LFG). VOCs were dominated by aromatics, alkanes and O-substituted compounds, with minor cyclics, terpenes, halogenated and S-substituted compounds. Degradation processes, depending on both (ⅰ) waste age and (ⅱ) velocity of the uprising biogas through the soil cover, caused (ⅰ) an increase of degradation products (e.g., CO_2, O-substituted compounds) and (ⅱ) a decrease of degradable components (e.g., CH_4, alkanes, alkylated aromatics, cyclic and S-substituted compounds). Terpenes, halogenated compounds, phenol and furans were unaffected by degradation processes and only depended on waste composition. These results highlight the fundamental role played by microbial activity in mitigating atmospheric emissions of VOCs from landfills. Nevertheless, the recalcitrant behaviour shown by compounds hazardous for health and environment remarks the importance of a correct landfill management that has to be carried out for years after the waste disposal activity is completed, since LFG emissions can persist for long time.
机译:固体废物处理的垃圾填埋场释放到大气中的大量挥发性有机化合物(VOC)。垃圾填埋场覆盖土壤中的细菌活性可以在减轻VOC排放中发挥重要作用。为了评估垃圾填埋场覆盖土壤中的劣化过程和表征VOCS组合物的影响,在两个杂交的城市固体废物处理场所的化学和同位素分析中收集来自60个位点和覆盖土壤中的7个垂直曲线的气体:(Ⅰ)PINTO(马德里)和(Ⅱ)Zurita(Fuerteventura,加那利群岛)。通过填埋气体(LFG)的氧化或还原过程来控制CO_2 / CH_4比和δ〜(13)C-CO_2和δ〜(13)C-CH_4值。 VOC由芳烃,烷烃和O-取代的化合物支配,具有次要的循环,萜烯,卤代和S-取代的化合物。取决于(Ⅰ)通过土壤覆盖的起义沼气速度和(Ⅱ)速度(Ⅱ)速度,导致(Ⅰ)降解产物(例如,CO_2,O-取代的化合物)和(Ⅱ)降低可降解成分(例如,CH_4,烷烃,烷基化芳烃,环状和S取代的化合物)。萜烯,卤代化合物,苯酚和呋喃不受降解过程的影响,并且仅取决于废物组合物。这些结果突出了微生物活动在减轻垃圾填埋场大气排放的微生物活动所发挥的基本作用。尽管如此,化合物危害健康和环境危害的顽固行为致谢了在废物处理活动完成后必须进行的正确垃圾填埋场管理的重要性,因为LFG排放长时间可以持续存在。

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  • 来源
    《The Science of the Total Environment》 |2020年第jul15期|138326.1-138326.14|共14页
  • 作者单位

    Department of Earth Sciences University of Florence Via G. La Pira 4 50121 Firenze Italy;

    Instituto Volcanologico de Canarias (INVOLCAN) 38320 La Laguna Tenerife Canary Islands Spain;

    Instituto Volcanologico de Canarias (INVOLCAN) 38320 La Laguna Tenerife Canary Islands Spain Instituto Tecnologico y de Energias Renovables (ITER) 38600 Granadilla de Abona Tenerife Canary Islands Spain;

    Department of Earth Sciences University of Florence Via G. La Pira 4 50121 Firenze Italy Institute of Geosciences and Earth Resources (IGG) National Research Council of Italy (CNR) Via G. La Pira 4 50121 Firenze Italy;

    Instituto Volcanologico de Canarias (INVOLCAN) 38320 La Laguna Tenerife Canary Islands Spain Instituto Tecnologico y de Energias Renovables (ITER) 38600 Granadilla de Abona Tenerife Canary Islands Spain Agencia Insular de la Energia de Tenerife (AIET) 38600 Granadilla de Abona Tenerife Canary Islands Spain;

    Instituto Volcanologico de Canarias (INVOLCAN) 38320 La Laguna Tenerife Canary Islands Spain Instituto Tecnologico y de Energias Renovables (ITER) 38600 Granadilla de Abona Tenerife Canary Islands Spain Agencia Insular de la Energia de Tenerife (AIET) 38600 Granadilla de Abona Tenerife Canary Islands Spain;

    Instituto Volcanologico de Canarias (INVOLCAN) 38320 La Laguna Tenerife Canary Islands Spain Instituto Tecnologico y de Energias Renovables (ITER) 38600 Granadilla de Abona Tenerife Canary Islands Spain Agencia Insular de la Energia de Tenerife (AIET) 38600 Granadilla de Abona Tenerife Canary Islands Spain;

    Department of Earth Sciences University of Florence Via G. La Pira 4 50121 Firenze Italy Institute of Geosciences and Earth Resources (IGG) National Research Council of Italy (CNR) Via G. La Pira 4 50121 Firenze Italy;

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

    VOCs; Landfill; Interstitial soil gas; Biogas;

    机译:VOCS;垃圾填埋;间质土壤;沼气;

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