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RADICAL VERNACULAR: BACTERIAL ARCHITECTURE ON MARS

机译:自由基:火星上的细菌结构

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Our current speculative discourse on the colonisation of other planets tends to consider future buildings through the lens of hi-tech architecture. However, we suggest that developments in biotechnology will enable types of construction which are beyond even our current science fictions. The paper presents an argument for bioengineered building materials framed by the notion of constructing buildings on Mars. It introduces the concept of biomineralisation and its processes and applications, and focuses on the creation of calcium carbonate by certain strains of bacteria. We will suggest that by utilising this process in conjunction with synthetic biology (where bacteria are engineered to survive and respond to the environment on other planets) a building process emerges where the materials are adaptive and, to some extent, self-constructed in relation to their environments. The paper concludes by speculating about a building process involving the use of bioengineered bacteria to consolidate materials, found on the surface of Mars, to create materials and structures which are functionally graded.
机译:我们当前关于其他星球殖民的投机性讨论倾向于通过高科技建筑的角度来考虑未来的建筑。但是,我们建议生物技术的发展将使建筑类型成为可能,这甚至超出了我们目前的科幻小说。本文提出了一种以在火星上建造建筑物的概念为框架的生物工程建筑材料的论点。它介绍了生物矿化的概念及其过程和应用,并着重于某些细菌菌株产生碳酸钙的过程。我们将建议通过将这一过程与合成生物学(细菌被设计成能够生存并对其他星球的环境做出反应)结合起来,形成一种建筑过程,其中的材料是适应性的,并且在某种程度上是与他们的环境。本文通过推测建筑过程来结束,该过程涉及使用生物工程细菌来巩固在火星表面上发现的材料,以创建功能分级的材料和结构。

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