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Creating Methane from Plastics: Recycling at a Lunar Outpost

机译:用塑料制造甲烷:在月球哨所回收

摘要

The high cost of re-supply from Earth demands resources to be utilized to the fullest extent for exploration missions. Recycling is a key technology that maximizes the available resources by converting waste products into useful commodities. One example of this is to convert crew member waste such as plastic packaging, food scraps, and human waste, into fuel. The ability to refuel on the lunar surface would reduce the vehicle mass during launch and provide excess payload capability. The goal of this project is to determine the feasibility of recycling waste into methane on the lunar outpost by performing engineering assessments and lab demonstrations of the technology. The first goal of the project was to determine how recycling could influence lunar exploration. Table I shows an estimation of the typical dried waste stream generated each day for a crew of four. Packaging waste accounts for nearly 86% of the dry waste stream and is a significant source of carbon on the lunar surface. This is important because methane (CH4) can be used as fuel and no other source of carbon is available on the lunar surface. With the initial assessment indicating there is sufficient resources in the waste stream to provide refueling capabilities, the project was designed to examine the conversion of plastics into methane.
机译:来自地球的高昂补给成本要求将资源最大程度地用于勘探任务。回收是一项关键技术,可通过将废物转化为有用的商品来最大程度地利用可用资源。这样的一个例子是将机组人员的废物,例如塑料包装,食物残渣和人类废物,转化为燃料。在月球表面加油的能力将减少发射期间的车辆重量,并提供超额的有效载荷能力。该项目的目的是通过对技术进行工程评估和实验室演示,确定在月球前哨将废物回收成甲烷的可行性。该项目的首要目标是确定回收利用如何影响月球探测。表I显示了四人一组每天产生的典型干废物流的估算值。包装废物占干废物流的近86%,是月球表面的重要碳源。这很重要,因为甲烷(CH4)可以用作燃料,而月球表面没有其他碳源。初步评估表明废物流中有足够的资源可提供加油能力,因此该项目旨在检查塑料向甲烷的转化。

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