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Statistical analysis of trace contaminants measured in biogas

机译:沼气中测量的痕量污染物的统计分析

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摘要

Biogas is a renewable energy fuel that can be treated to increase purity so that the resulting "biomethane" can be injected into the natural gas pipeline grid. The trace contaminants in biogas and biomethane make up a small fraction of the total gas but they still have the potential to cause adverse health effects and pipeline corrosion. This study investigates the statistical distributions of 17 trace metals, six mercaptans, hydrogen sulfide, ammonia, and six additional trace organic compounds. Twelve of these 31 trace contaminants have been previously identified as constituents of concern based on their toxicity profiles and through health risk assessment studies. Untreated and treated samples of biogas were collected from 12 different biogas production facilities using diverse feedstocks throughout California. Results show that most biogas trace contaminants follow a single log-normal distribution or a bi-modal lognormal distribution depending on the type of production facility. Treatment of biogas demonstrates some removal for all trace contaminants, but four constituents of concern (copper, lead, hydrogen sulfide, and methyl mercaptan) are predicted to have a >1% probability of exceeding trigger levels even after common treatments. This finding suggests that enhanced monitoring may be warranted for these contaminants. Several trace metals and volatile organic compounds (VOCs) were found to have seasonal trends with greater concentrations in the summer and lower concentrations in the winter suggesting that seasonal variation should be considered in future monitoring plans.
机译:沼气是一种可再生能量燃料,可以治疗以增加纯度,使得所得“生物甲烷”可以注入天然气管道网格中。沼气中的痕量污染物和生物甲烷占总气体的一小部分,但它们仍然有可能导致不良的健康影响和管道腐蚀。本研究研究了17种痕量金属,六个硫醇,硫化氢,氨和六种另外的痕量有机化合物的统计分布。这些31种痕量污染物的12种已经被确定为基于毒性谱的关注的成分,并通过健康风险评估研究。在加利福尼亚州的各种原料中,从12种不同的沼气生产设施中收集了未经处理的沼气样品。结果表明,大多数沼气痕量污染物遵循单一的日志正态分布或双模算法分布,具体取决于生产设施的类型。沼气的治疗证明了所有痕量污染物的一些去除,但甚至在常见处理之后,预计甚至超过触发水平超过触发水平的4个成分。该发现表明,这些污染物可能需要增强的监测。发现几种痕量金属和挥发性有机化合物(VOC)在夏季的夏季和较低浓度下具有更高浓度的季节性趋势,旨在在未来的监测计划中考虑季节性变化。

著录项

  • 来源
    《The Science of the Total Environment》 |2020年第10期|138702.1-138702.14|共14页
  • 作者单位

    Department of Civil and Environmental Engineering University of California at Davis 1 Shields Avenue Davis CA 95616 United States of America;

    Department of Civil and Environmental Engineering University of California at Davis 1 Shields Avenue Davis CA 95616 United States of America;

    Department of Civil and Environmental Engineering University of California at Davis 1 Shields Avenue Davis CA 95616 United States of America;

    Department of Civil and Environmental Engineering University of California at Davis 1 Shields Avenue Davis CA 95616 United States of America Agricultural and Environmental Chemistry Graduate Group University of California at Davis 1 Shields Avenue Davis CA 95616 United States of America;

    Department of Civil and Environmental Engineering University of California at Davis 1 Shields Avenue Davis CA 95616 United States of America;

    Department of Civil and Environmental Engineering University of California at Davis 1 Shields Avenue Davis CA 95616 United States of America Agricultural and Environmental Chemistry Graduate Group University of California at Davis 1 Shields Avenue Davis CA 95616 United States of America;

    Department of Civil and Environmental Engineering University of California at Davis 1 Shields Avenue Davis CA 95616 United States of America;

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

    Biogas; Biomethane; Mercaptans; Metals; Constituents of concern;

    机译:沼气;生物甲烷;硫醇;金属;关注的成分;

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