TECHNOLOGIES FOR THE NEXT GENERATION CLOSED-CIRCUIT ESCAPE RESPIRATORS.

R Fernando
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Abstract

The National Institute for Occupational Safety and Health (NIOSH) National Personal Protective Technology Laboratory (NPPTL) is leading an effort to develop the next generation of self-escape breathing apparatus for egress from confined spaces in emergency scenarios. A backpack style closed-circuit mine escape respirator design was one configuration explored as part of the research imperative directed by the 2006 MINER Act. Stakeholder feedback from MSHA and at the NIOSH Breathing Air Supply Partnership Meeting indicated a smaller belt worn unit that does not sacrifice performance is desirable. This paper outlines some further technology advancements that may be investigated toward developing such a small-sized respirator. Technologies being considered are novel chemicals for improved carbon dioxide (CO2) absorption and oxygen (O2) production, eliminating a dedicated CO2 scrubber by incorporating its function in the spaces of the respirator's breathing loop and storing O2 in a liquid form with long standby capabilities. When these technologies are applied to a future design, there is the possibility of having an escape respirator that can be belt worn and capable of being certified to 42 Code of Federal Regulations (CFR) Part 84 standards, including sub-part O for escape purposes including mine escape.

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新一代闭路逃生呼吸器技术。
国家职业安全与健康研究所(NIOSH)国家个人防护技术实验室(NPPTL)正在领导一项工作,开发用于紧急情况下从密闭空间出口的下一代自我逃生呼吸器。一种背包式的闭路矿井逃生呼吸器设计是一种配置,作为2006年MINER法案指导的研究任务的一部分。来自MSHA和NIOSH呼吸空气供应合作伙伴会议的利益相关者反馈表明,不牺牲性能的较小皮带磨损装置是可取的。本文概述了一些进一步的技术进步,可以研究开发这种小型呼吸器。正在考虑的技术是用于改善二氧化碳(CO2)吸收和氧气(O2)生产的新型化学品,通过将其功能整合到呼吸器呼吸回路的空间中,并将氧气以具有长时间备用能力的液体形式储存,从而消除了专用的二氧化碳洗涤器。当这些技术应用于未来的设计时,有可能有一种可以腰带佩戴的逃生呼吸器,能够通过42联邦法规(CFR)第84部分标准的认证,包括用于逃生目的的子部分O,包括矿井逃生。
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TECHNOLOGIES FOR THE NEXT GENERATION CLOSED-CIRCUIT ESCAPE RESPIRATORS. Effect of discontinuity dip direction on hard rock pillar strength. Analysis of extensometer, photogrammetry and laser scanning monitoring techniques for measuring floor heave in an underground limestone mine. Smart monitoring and control system test apparatus. CFD gas distribution analysis for different continuous-miner scrubber redirection configurations.
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