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Iodine-containing aluminum-based fuels for inactivation of bioaerosols

机译:用于灭活生物气溶胶的含碘铝基燃料

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摘要

Inactivation of aerosolized biologically viable Bacillus atrophaeus endospores (stimulant of the 8. anthracis bio-agent) in combustion products of air-acetylene flames seeded with different aluminum-based powders was investigated. A flow of bioaerosol was introduced into the environment above the flame. The mixing of the combustion products with bioaerosol particles occurred when the combustion temperatures were cooled off to approximately 170-260 ℃ (the cross-sectional weighted average temperature). The flame was seeded with pure Al powder as well as with composite Al·I_2 and Al·B·I_2 powders prepared by mechanical milling. The iodine content was close to 20 and 15wt.% for Al·I_2 and Al·B·I_2 powders, respectively. The burn rate was highest for particles of pure Al and lowest for particles of Al·B·I_2. It was also observed that in the flame, particles of Al·B·I_2 had the lowest temperature compared to other materials. Despite a lower iodine concentration, the combustion products from the flame seeded with Al·B·I_2 exhibited the highest levels of inactivation of the aerosolized spores. The flame products of Al·I_2 have also shown an effective inactivation. The inactivation levels observed for the unseeded flame and flame containing pure Al, were much lower and similar to each other; these inactivation levels were consistent with relatively weak thermal stress experienced by the bioaerosol at the relatively low temperatures of the exhaust gas. The highest level of inactivation observed for the combustion products of Al·B·I_2 composite powder is attributed to its lower burn rate and respectively more homogeneous mixing of the iodine-containing products with the exhaust gases.
机译:研究了接种有不同铝基粉末的空气-乙炔火焰燃烧产物中气雾化的生物活性萎缩芽孢杆菌内生孢子(8.炭疽生物试剂的兴奋剂)的失活。生物气溶胶流被引入火焰上方的环境。当燃烧温度冷却到大约170-260℃(横截面加权平均温度)时,燃烧产物与生物气溶胶颗粒发生混合。用纯Al粉末以及通过机械研磨制备的复合Al·I_2和Al·B·I_2粉末播种火焰。 Al·I_2和Al·B·I_2粉末的碘含量分别接近20和15wt。%。纯Al颗粒的燃烧速率最高,而Al·B·I_2颗粒的燃烧速率最低。还观察到在火焰中,与其他材料相比,Al·B·I_2颗粒的温度最低。尽管碘浓度较低,但用Al·B·I_2播种的火焰燃烧产物对雾化孢子的灭活程度最高。 Al·I_2的火焰产物也显示出有效的失活。无种子火焰和含纯铝的火焰的失活水平要低得多,并且彼此相似。这些失活水平与在相对较低的废气温度下生物气溶胶经历的相对较弱的热应力相一致。 Al·B·I_2复合粉末燃烧产物中观察到的最高灭活水平归因于其较低的燃烧速率以及含碘产物与废气的更均匀混合。

著录项

  • 来源
    《Combustion and Flame》 |2014年第1期|303-310|共8页
  • 作者单位

    New jersey Institute of Technology, Newark, NJ, United States;

    New jersey Institute of Technology, Newark, NJ, United States;

    New jersey Institute of Technology, Newark, NJ, United States;

    New jersey Institute of Technology, Newark, NJ, United States;

    New jersey Institute of Technology, Newark, NJ, United States;

    University of Cincinnati, Cincinnati, OH, United States;

    University of Cincinnati, Cincinnati, OH, United States;

    University of Cincinnati, Cincinnati, OH, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Metal combustion; Reactive materials; Bio-agent; Inactivation;

    机译:金属燃烧;反应性材料;生物制剂失活;
  • 入库时间 2022-08-18 00:11:24

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