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首页> 外文期刊>Science of the total environment >Amendment for increased methane production rate in municipal solid waste landfill gas collection systems
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Amendment for increased methane production rate in municipal solid waste landfill gas collection systems

机译:城市固体废物垃圾填埋气收集系统中提高甲烷生产率的修改

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摘要

Optimization of methane production rate can potentially decrease the operational lifetime of the landfill site and assist with better management of methane harvesting from the landfill cells. Increased moisture content in landfill cells is known to increase the rate of methane production. Several natural biopolymers can sustain moisture content in a solid matrix while providing a scaffolding for microbial communities to grow. This research examined the effect of the biopolymer, produced by Rhizobium tropici, on bench-scale methane generation from municipal solid waste. The addition of the R. tropici biopolymer increased the rate of methane production from 27% to 78% when compared to the control study for low and high concentrations of biopolymer amendment, respectively. R. tropici biopolymer shortened the lag phase by up to six days over the control, depending on the level of biopolymer amendment added to the solid waste. The mechanism appears to be facilitating biofilm formation through the combination of increased moisture retention and surface modification of the solid waste. Incorporation of biopolymer amendment in the alternative daily cover activities at commercial landfills could provide a viable approach for full scale application.
机译:优化甲烷生产率可能会降低垃圾填埋场的运行寿命,并有助于更好地管理从垃圾填埋单元收获的甲烷。已知提高垃圾填埋细胞中的水分含量增加甲烷生产速率。几种天然生物聚合物可以在固体基质中维持水分含量,同时为微生物群落提供脚手架以生长。该研究检测了由Rozobium Tropici生产的生物聚合物的效果,从城市固体废物中的长凳甲烷生成。与低浓度的生物聚合物修正的对照研究相比,加入R.ropici Biople聚合物的增加从27%的甲烷产量增加到78%。 R.Tropici Biopolymer通过对照组缩短了滞后期,取决于加入固体废物的生物聚合物修正的水平。通过增加的水分保留和固体废物表面改性的组合,该机制似乎促进生物膜形成。在商业垃圾​​填埋场的替代日常覆盖活动中纳入生物聚合物修正案可以为全面申请提供可行的方法。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|145574.1-145574.10|共10页
  • 作者单位

    US. Army Engineer Research and Development Center Environmental Laboratory 3909 Halls Ferry Rd. Vicksburg MS 39180 USA;

    U.S. Army Engineer Research and Development Center Installation Support Division 3909 Halls Ferry Rd. Vicksburg MS 39180 USA;

    Department of Environmental Engineering Middle East Technical University Dumlupmar Bulvan No: 1 06800 Ankara Turkey Civil and Environmental Engineering Department Southern Methodist University Dallas TX 75275 USA;

    US. Army Engineer Research and Development Center Environmental Laboratory 3909 Halls Ferry Rd. Vicksburg MS 39180 USA;

    Department of Environmental Engineering Middle East Technical University Dumlupmar Bulvan No: 1 06800 Ankara Turkey;

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

    Biopolymer; Biofilm; Methane; Optimized; Moisture retention;

    机译:生物聚合物;生物膜;甲烷;优化;保湿;

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