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Control of Effluent Gases From Solid Waste Processing Using Impregnated Carbon Nanotubes

机译:使用浸渍的碳纳米管从固体废物加工控制流出气体

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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 (CO{sub}2), the major gas released, does not present a serious problem and there are currently in place a number of flight-qualified technologies for CO{sub}2 removal. However, a number of other gases, in particular NO{sub}x, SO{sub}2, NH{sub}3, and various hydrocarbons (e.g., CH{sub}4) 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 N{sub}2 and O{sub}2 is thermodynamically favored. Data showing decomposition of NO on metal-impregnated carbon nanotubes is presented.
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流出污染物。这是生物学以及物理化学固体废物处理的关注。释放的主要气体(Co {Sub} 2),发布的主要气体并不存在严重的问题,目前还有一些用于CO {Sub} 2的飞行合格技术。然而,许多其他气体,特别是没有{sub} x,所以{sub} 2,nh {sub} 3,以及各种烃(例如,ch {sub} 4)对空间中的船员构成呈现健康危险栖息地。在目前的国际空间站(ISS)中的固体废物加工配置中,一些这些气体被痕量污染物控制系统(TCC)除去,要求重新补给。通过使用催化剂浸渍的碳纳米管可以减少补给可以是有效的。例如,对于N {Sub} 2和O {Sub} 2没有分解是热力学上的。介绍了显示在金属浸渍碳纳米管上的不分解的数据。

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