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关于真菌生物材料构建的综述:理想与可行

A review on architecture with fungal biomaterials: the desired and the feasible.

作者信息

Almpani-Lekka Dimitra, Pfeiffer Sven, Schmidts Christian, Seo Seung-Il

机构信息

, Wühlischstr. 26, 10245, Berlin, Germany.

Chair of Digital Design, Planning and Building, Department of Architecture, Bochum University of Applied Sciences, Am Hochschulcampus 1, 44801, Bochum, Germany.

出版信息

Fungal Biol Biotechnol. 2021 Nov 19;8(1):17. doi: 10.1186/s40694-021-00124-5.

Abstract

Fungal biomaterials are becoming increasingly popular in the fields of architecture and design, with a significant bloom of projects having taken place during the last 10 years. Using mycelium as a stabilizing compound for fibers from agricultural waste, new building elements can be manufactured according to the circular economy model and be used for architectural construction to transform the building industry towards an increased environmental and economic sustainability. Simultaneously, research on those materials and especially fungal biocomposites is producing knowledge that allows for the materials themselves to inspire and transform the architectural design. Novel research on those materials is not only allowing for their use as construction materials, but it inspires and affects the architectural design process through the discovery and variation of the materials' properties. Today, many interdisciplinary teams are working on this emerging field to integrate fungal biocomposites in the construction industry and to merge science, art, and architecture responsibly.This study provides an overview of the progress that has been made in this field during the last 10 years, focusing on six works that are presented in more detail. Those six works are spaces at an architectural scale which showcase unique elements and innovative aspects for the use of fungal biomaterials in architecture. Each work has followed different design strategies, different fabrication methods, or different post-processing methods. All of them together have produced significant technical knowledge as well as a cultural impact for the field of architecture but also for the field of fungal biotechnology.

摘要

真菌生物材料在建筑和设计领域越来越受欢迎,在过去十年中涌现出大量相关项目。利用菌丝体作为农业废弃物纤维的稳定化合物,可以根据循环经济模式制造新的建筑构件,并用于建筑施工,使建筑行业朝着更高的环境和经济可持续性转变。同时,对这些材料尤其是真菌生物复合材料的研究正在产生相关知识,使材料本身能够启发并改变建筑设计。对这些材料的新研究不仅使其能够用作建筑材料,还通过发现和改变材料特性启发并影响建筑设计过程。如今,许多跨学科团队正在这个新兴领域开展工作,以将真菌生物复合材料融入建筑行业,并负责任地融合科学、艺术和建筑。本研究概述了过去十年该领域取得的进展,重点介绍了六项进行了更详细阐述的作品。这六项作品均为建筑尺度的空间,展示了真菌生物材料在建筑中使用的独特元素和创新方面。每项作品都采用了不同的设计策略、不同的制造方法或不同的后处理方法。它们共同为建筑领域以及真菌生物技术领域产生了重要的技术知识和文化影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2846/8603577/8f4db4431489/40694_2021_124_Fig1_HTML.jpg

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