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On-Line Analysis of Gas-Phase Composition in the Combustion Chamber and Particle Emission Characteristics during Combustion of Wood and Waste in a Small Batch Reactor

机译:小型反应釜中燃烧室中气相组成的在线分析以及木材和废物燃烧过程中的颗粒排放特性

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摘要

The emission of particulate matter and gaseous compounds during combustion of wood and refuse-derived fuel in a small batch reactor is investigated by laser mass-spectrometric on-line measurement techniques for gas-phase analysis and simultaneous registration of physical aerosol properties (number size distribution). The gas-phase composition is addressed by a laser-based mass spectrometric method, namely, vacuum-UV single-photon ionization time-of-flight mass spectrometry (VUV-SPI-TOFMS). Particle-size distributions are measured with a scanning mobility particle sizer. Furthermore, a photoelectric aerosol sensor is applied for detection of particle-bound polycyclic aromatic hydrocarbons. The different phases of wood combustion are distinguishable by both the chemical profiles of gas-phase components (e.g., polycyclic aromatic hydrocarbons, PAH) and the particle-size distribution. Furthermore, short disturbances of the combustion process due to air supply shortages are investigated regarding their effect on particle-size distribution and gas-phase composition, respectively. It is shown that the combustion conditions strongly influence the particle-size distribution as well as on the emission of particle-bound polycyclic aromatic hydrocarbons.
机译:通过激光质谱在线测量技术研究了小批量反应堆中木材和垃圾衍生燃料燃烧过程中颗粒物和气态化合物的排放,用于气相分析和同时记录物理气溶胶特性(数量分布) )。气相组成通过基于激光的质谱方法解决,即真空-UV单光子电离飞行时间质谱(VUV-SPI-TOFMS)。用扫描迁移率粒度仪测量粒度分布。此外,光电气溶胶传感器被用于检测颗粒结合的多环芳烃。木材燃烧的不同阶段可以通过气相成分(例如多环芳烃,PAH)的化学分布图和粒度分布来区分。此外,研究了由于空气供应不足而引起的燃烧过程的短暂扰动,分别影响了它们对粒度分布和气相组成的影响。结果表明,燃烧条件极大地影响了粒度分布以及与颗粒结合的多环芳烃的排放。

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