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Hydrogen enrichment of landfill gas for enhanced combustion in internal-combustion reciprocating engines.

机译:填埋气中的氢气富集,可增强内燃机在往复式发动机中的燃烧。

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摘要

An investigation was made to determine the effect of hydrogen enrichment (HLFG) on NOx and CO emissions, power, efficiency, and lean operating limit on a normally-aspirated landfill gas-fueled spark-ignition engine. In this investigation a 0.745 liter 2-cylinder Kawasaki engine was modified to operate with simulated landfill gas (60% CH4 and 40% CO2 by volume) containing hydrogen concentrations of 0, 30%, 40%, and 50% (by volume of the CH4 in the fuel). Empirical data was generated and compared with predictions from three existing semi-empirical engine models, using a first law-based finite heat release model to correlate measured pressure data and burn rate for each fuel mixture. Constant-rpm empirical results showed that engine-out NOx emissions could be lowered to the predicted future best available control technology targets for landfill gas to-energy projects of 0.20 g/kWh with 40% hydrogen enrichment, while retaining 95% of the baseline power and keeping CO emissions under 630 ppm. Of the three simulation models tested only "WAVE" software yielded good correlation with the experimental data for HLFG mixtures under the operating conditions in this study. In a cost comparison performed it was determined that only hydrogen enrichment with an in-stream autothermal fuel reformer has the potential to be more cost-effective than current strategies at reaching the NOx reduction target in IC engines.
机译:进行了一项调查以确定富氢对正常吸气垃圾填埋式燃气火花点火式发动机的NOx和CO排放,功率,效率和稀薄运行极限的影响。在这项研究中,对0.745升2缸川崎发动机进行了改装,使其能够使用模拟的垃圾填埋气(体积百分比为60%的CH4和40%的CO2)运行,其氢气浓度分别为0、30%,40%和50%(按体积计算)燃料中的CH4)。生成了经验数据,并将其与来自三个现有的半经验发动机模型的预测进行比较,使用基于第一定律的有限放热模型来关联每种燃料混合物的实测压力数据和燃烧率。恒定转速的经验结果表明,对于0.20 g / kWh,氢含量40%的垃圾填埋气发电项目,可以将发动机排出的NOx排放降低至预计的未来最佳可用控制技术目标,同时保留95%的基准功率并将CO排放保持在630 ppm以下。在测试的三个仿真模型中,只有“ WAVE”软件与本研究中的运行条件下的HLFG混合物的实验数据具有良好的相关性。在进行的成本比较中,确定了仅使用流内自热燃料重整器进行氢气富集,才能达到实现IC发动机NOx减排目标所需的成本效益。

著录项

  • 作者

    Kornbluth, Kurt Lawrence.;

  • 作者单位

    University of California, Davis.;

  • 授予单位 University of California, Davis.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2008
  • 页码 156 p.
  • 总页数 156
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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