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Control of Effluent Gases from Solid Waste Processing using Impregnated Carbon Nanotubes

机译:使用浸渍碳纳米管控制固体废物处理过程中的废气

摘要

One of the major problems associated with solid waste processing technologies is effluent contaminants that are released in gaseous forms from the processes. This is a concern in both biological as well as physicochemical solid waste processing. Carbon dioxide (CO2), the major gas released, does not present a serious problem and there are currently in place a number of flight-qualified technologies for CO2 removal. However, a number of other gases, in particular NOx, SO2, NH3, and various hydrocarbons (e.g. CH4) do present health hazards to the crew members in space habitats. In the present configuration of solid waste processing in the International Space Station (ISS), some of these gases are removed by the Trace Contaminant Control System (TCCS), demands a major resupply. Reduction of the resupply can be effective by using catalyst impregnated carbon nanotubes. For example, NO decomposition to N2 and O2 is thermodynamically favored. Data showing decomposition of NO on metal impregnated carbon nanotubes is presented. Comparisons are made of the existing TCCS systems with the carbon nanotube based technology for removing NOx based on mass/energy penalties.
机译:与固体废物处理技术相关的主要问题之一是从过程中以气态形式释放的废水污染物。这是生物和物理化学固体废物处理中的一个问题。释放的主要气体二氧化碳(CO2)并不构成严重问题,并且目前已经有许多飞行合格的技术可以去除CO2。但是,许多其他气体,特别是NOx,SO2,NH3和各种碳氢化合物(例如CH4)确实对太空栖息地的机组人员构成健康危害。在国际空间站(ISS)的固体废物处理的当前配置中,其中的一些气体被痕量污染物控制系统(TCCS)去除,需要大量补充。通过使用催化剂浸渍的碳纳米管可以减少再供应。例如,从热力学上讲,NO分解为N2和O2是有利的。呈现了显示在金属浸渍的碳纳米管上NO分解的数据。将现有的TCCS系统与基于碳纳米管的基于质量/能量损失的NOx去除技术进行了比较。

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