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Development of enclosed life support system for underground rescue employing a photocatalytic metal oxide thin film to generate oxygen from water and reduce carbon dioxide

机译:开发利用光催化金属氧化物薄膜从水中产生氧气并减少二氧化碳的地下救援封闭式生命支持系统

摘要

Despite major improvements in technology and safety regulations, coal mining continues to be a hazardous industry. Catastrophic accidents, related largely to underground explosions and generation of toxic gases, commonly result in the trapping of miners without oxygen for an extended period of time. As an example, in January 2006, an accident at the Sago Mine in West Virginia trapped 12 coal miners underground for 41 hours and resulted in the deaths of all but one. According to the account of the sole survivor, four of the emergency oxygen sources, or "air packs," failed. While devices capable of supplying oxygen to miners trapped underground exist, these systems are limited by the need for an exogenous gas supply, the large size of the devices, and unreliability. We propose here the design of an enclosed life support system functional for up to 12 hours, which employs photocatalytic mechanisms to generate oxygen from water and provides chemical reduction, or "fixation", of carbon dioxide. Oxygen is generated through a photolytic reaction involving the interaction of UV light and a titanium dioxide thin film, resulting in the generation of oxygen gas at a rate of 0.0507 L 02 / min per m2 of photolytic surface.
机译:尽管技术和安全法规有了重大改进,但煤炭开采仍然是一个危险的行业。灾难性事故主要与地下爆炸和有毒气体的产生有关,通常会导致长时间没有氧气的矿工被困。例如,2006年1月,西维吉尼亚州Sago矿发生的一次事故将12名煤矿工人困在地下41个小时,导致除一名矿工之外的所有人死亡。根据唯一幸存者的说法,其中四个紧急氧气源或“气袋”出现故障。尽管存在能够向困在地下的矿工提供氧气的设备,但是这些系统受到对外部气体供应的需求,设备的大尺寸以及不可靠性的限制。我们在这里提出了一个封闭的生命支持系统的设计,该系统的功能最多可使用12个小时,该系统采用光催化机制从水中生成氧气,并提供二氧化碳的化学还原或“固定”作用。氧气是通过涉及UV光和二氧化钛薄膜相互作用的光解反应产生的,从而以每平方米光解表面0.0507 L 02 / min的速率产生氧气。

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    Trivedi Meghna S;

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  • 年度 2006
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  • 原文格式 PDF
  • 正文语种 eng
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