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Life cycle assessment and sustainable engineering in the context of near net shape grown components: striving towards a sustainable way of future production

机译:在接近最终形状的部件中进行生命周期评估和可持续工程:努力朝着可持续的未来生产方式发展

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摘要

Technical product harvesting (TEPHA) is a newly developing interdisciplinary approach in which bio-based production is investigated from a technical and ecological perspective. Society‘s demand for ecologically produced and sustainably operable goods is a key driver for the substitution of conventional materials like metals or plastics through bio-based alternatives. Technical product harvesting of near net shape grown components describes the use of suitable biomass for the production of technical products through influencing the natural shape of plants during their growth period. The use of natural materials may show positive effects on the amount of non-renewable resource consumption. This also increases the product recyclability at the end of its life cycle. Furthermore, through the near net shape growth of biomass, production steps can be reduced. As a consequence such approaches may save energy and the needed resources like crude oil, coal or gas. The derived near net shape grown components are not only considered beneficial from an environmental point of view. They can also have mechanical advantages through an intrinsic topology optimization in contrast to common natural materials, which are influenced in their shape after harvesting. In order to prove these benefits a comprehensive, interdisciplinary scientific strategy is needed. Here, both mechanical investigations and life cycle assessment as a method of environmental evaluation are used.
机译:技术产品收获(TEPHA)是一种新兴的跨学科方法,从技术和生态的角度研究基于生物的生产。社会对生态生产和可持续生产的商品的需求是通过生物替代品替代金属或塑料等传统材料的关键驱动力。接近净形生长的成分的技术产品收获描述了通过影响植物在生长期间的自然形态,将合适的生物质用于技术产品的生产。天然材料的使用可能对不可再生资源的消耗量产生积极影响。这也提高了产品生命周期的可回收性。此外,通过生物质的接近净形生长,可以减少生产步骤。结果,这种方法可以节省能源和所需的资源,例如原油,煤炭或天然气。所获得的接近净形的生长成分不仅从环境角度来看被认为是有益的。与通常的天然材料相比,它们通过固有的拓扑优化还具有机械优势,而天然材料在收获后会受到形状的影响。为了证明这些好处,需要一种综合的,跨学科的科学策略。在这里,机械研究和生命周期评估都被用作环境评估的一种方法。

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