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Incineration of Inedible Biomass in a Regenerative Life Support System-Development Efforts at NASA Ames Research Center

机译:在NASA AMES研究中心的再生寿命支持系统开发努力中焚烧不可食用的生物量

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Of the many competing technologies for resource recovery from solid wastes for long duration manned missions such as a lunar or Mars base,incineration technology is one of the most promising and certainly the most well developed in a terrestrial sense.An incinerator was used to recover and recycle part of the waste produced during the Early Human Testing Initiative Phase 3 (EHTI 3) at Johnson Space Center.The fluidized bed incinerator developed for the EHTI testing was a joint initiative between Ames Research Center,University of Utah and Johnson Space Center.Thuogh in no way an optimized system at that time,the fluidized bed combustor fulfilled the basic requirements of a resource recovery system.Valuable data was generated and problem areas,technology development issues and future research directions were identified during the EHTI testing.This paper seeks to document the reserach and developmental efforts at Ames Research Center in this area,the ongoing tests and future goals to develop incineration as a solid resource recovery technology for space-based applications.
机译:众多相互竞争的技术,用于从长时间载人飞行任务固体废物资源化,如月球或火星基地,焚烧技术是一个最有前途的,当然最充分的地面sense.An焚化炉开发了用于恢复和对于EHTI测试开发的早期人体试验阶段行动3(EHTI 3)约翰逊航天中心。流化床垃圾焚烧过程中产生的废料再循环的部分是艾姆斯研究中心,美国犹他州大学和约翰逊航天Center.Thuogh之间的联合倡议绝不当时的优化系统,该流化床燃烧器实现一个资源回收system.Valuable数据的基本要求生成和问题领域,技术发展的问题和未来的研究方向在EHTI testing.This本文旨在鉴定记录在该领域的艾姆斯研究中心的启发式算法和发展的努力,目前正在进行测试和未来的目标,以开发埃洛普焚烧的固体资源回收技术的空间应用。

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