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谭厚章

教授 博士生导师 硕士生导师

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Personal Information
  • 学历: 博士研究生毕业
  • 学位: 博士
  • 职称: 教授
  • 毕业院校: 西安交通大学
  • 学科: 动力工程及工程热物理

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Effect of feedstock water leaching on ignition and PM 1.0 emission during biomass combustion in a flat-flame burner reactor

发布时间:2025-04-30
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发布时间:
2025-04-30
论文名称:
Effect of feedstock water leaching on ignition and PM 1.0 emission during biomass combustion in a flat-flame burner reactor
发表刊物:
Proceedings of the Combustion Institute
摘要:
In this work, the effects of feedstock water leaching on ignition and PM1.0 emission during biomass combustion were studied, for the first time, in a Hencken flat-flame burner reactor (HFFBR). A high-speed video camera and high-resolution electrical low-pressure impactor were respectively employed to diagnose ignition and PM1.0 along the height of the burner. The mineral composition of PM10+ was measured as a function of height to demonstrate the potassium release during the early stage of biomass combustion. The results show that water leaching does not change the functional group of the biomass (straw), but increases the BET surface area and pore volume. Water leaching removes 90% of the potassium and all the chlorine, reducing the same amount of PM1.0 emission. The effect of water leaching on ignition delay observed in the flat-flame burner reactor agrees with the delay of biomass-devolatilization in TGA. Profiles of mineral composition in the PM10+ with height shows that a large amount of the potassium is released before biomass ignition. This indicates that, at realistic heating rates, the catalytic promotion of water-soluble minerals on biomass ignition is primarily through promoting devolatilization. The ignition delay of biomass particles caused by water leaching is more significant at lower temperature, e.g., ignition is delayed from 20 to 24 ms at 1000 °C, and from 9.2 to 10.2 ms at 1300 °C.
合写作者:
Xuebin Wang, Adewale Adeosun, Zhongfa Hu... Houzhang Tan, Richard L.Axelbaum
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发表时间:
2019-12-04