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Evaluation of a sustainable remediation option: Beneficial reuse of petroleum-contaminated sediment as an energy source

机译:评估可持续的补救方案:有益地再利用石油污染的沉积物作为能源

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摘要

The characteristics of petroleum-contaminated sediment (PCS) have been evaluated to assess whether the practice of its beneficial reuse as a sole or supplemental energy source is sustainable relative to other sediment remediation options such as monitored natural recovery (MNR), capping, or off-site disposal. Some of these remediation options for PCS are energy-intensive and/or require land utilization. The energy and compositional analysis results indicate a low carbon content (15-17%(wt)) and corresponding low energy values of 5,200 kJ/kg (2,200 Btu/lb) to 5,600 kJ/kg (2,400 Btu/lb). However, given other decision-making criteria, the sediment may contain enough value to be added as a supplemental fuel given that it is normally considered a waste product and is readily available. The thermogravimetric profiles obtained under both combustion and pyrolytic conditions showed that the sulfur contents were comparable to typical low sulfur bituminous or lignite coals found in the United States, and most of the volatiles could be vaporized below 750℃. The heavy metal concentrations determined before and after combustion of the PCS indicated that further engineering controls may be required for mercury, arsenic, and lead. Due to the potential for reduction of public health and environmental threats, potential economic savings, and conservation of natural resources (petroleum and land), removal of PCS by dredging and beneficial reuse as a supplemental fuel clearly has merit to be considered as a sustainable remediation option.
机译:已对石油污染的沉积物(PCS)的特性进行了评估,以评估将其作为唯一或补充能源进行有益再利用的实践相对于其他沉积物补救方案(如监测的自然采收率(MNR),封顶或关闭)是否可持续。现场处置。 PCS的这些补救措施中有些是能源密集型的和/或需要土地利用的。能量和成分分析结果表明碳含量低(15-17%(wt)),相应的能量值低至5,200 kJ / kg(2,200 Btu / lb)至5,600 kJ / kg(2,400 Btu / lb)。但是,在给出其他决策标准的情况下,鉴于沉积物通常被视为废物并且易于获取,因此其含量可能足以添加为补充燃料。在燃烧和热解条件下获得的热重曲线表明,硫含量与美国发现的典型低硫烟煤或褐煤相当,并且大部分挥发物在750℃以下可以汽化。在PCS燃烧前后测定的重金属浓度表明,可能需要对汞,砷和铅进行进一步的工程控制。由于具有减少公共卫生和环境威胁,潜在的经济节约以及自然资源(石油和土地)保护的潜力,因此通过疏and和有益的再利用作为补充燃料去除PCS显然值得认为是可持续的补救措施选项。

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  • 来源
    《Journal of the Air & Waste Management Association》 |2012年第11期|1277-1284|共8页
  • 作者单位

    School of Energy, Environmental, Biological, and Medical Engineering, University of Cincinnati, Cincinnati, Ohio, USA;

    Chemical Engineering Program, School of Energy, Environmental, Biological, and Medical Engineering, University of Cincinnati, 2901 Woodside Drive (ERC), ML0012, Cincinnati, OH 45221-0012, USA;

    School of Energy, Environmental, Biological, and Medical Engineering, University of Cincinnati, Cincinnati, Ohio, USA;

    School of Energy, Environmental, Biological, and Medical Engineering, University of Cincinnati, Cincinnati, Ohio, USA;

    Office of Research and Development, National Risk Management Research Laboratory, U.S. Environmental Protection Agency, Cincinnati, Ohio, USA;

    Office of Research and Development, National Risk Management Research Laboratory, U.S. Environmental Protection Agency, Cincinnati, Ohio, USA;

    Office of Research and Development, National Risk Management Research Laboratory, U.S. Environmental Protection Agency, Cincinnati, Ohio, USA;

    Office of Research and Development, National Risk Management Research Laboratory, U.S. Environmental Protection Agency, Cincinnati, Ohio, USA;

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