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Growing mass building materials and buildings through cell cultivation to reduce greenhouse gases

机译:通过细胞培养来增加建筑材料和建筑物的数量,以减少温室气体

摘要

The invention enables the binding of very large amounts of greenhouse gases and fine dust from the atmosphere and their safe, long-term storage. There are no economic limits to the implementation of the invention, as no special resources or specialist personnel are required. The invention enables novel: materials, prefabricated and composite components, composite materials, raw material extraction, processes, as well as industrial production quality and automation on the construction site . In the right combination, these already represent an economical and profitable process for the production of mass building materials with cell cultivation. The invention solves 18 of the biggest problems in construction. Including an increase in the degree of automation and production on an industrial level, directly on the construction site. The invention offers 17 major innovations. Including growing building materials, components and floors based on cell cultivation. This enables a combination of the best material properties of steel, wood and fiber. E.g. the tensile strength of steel with the fire resistance of solid wood wall panels, or naturally grown super wood solid components with fiber reinforcement 3 times as tensile strength as structural steel.
机译:本发明使得能够结合来自大气的大量温室气体和细尘以及它们的安全,长期存储。本发明的实施没有经济上的限制,因为不需要特殊的资源或专业人员。本发明实现了新颖的:材料,预制构件和复合构件,复合材料,原材料提取,工艺以及工地上的工业生产质量和自动化。通过正确的组合,这些已经代表了通过细胞培养生产大量建筑材料的经济且有利可图的过程。本发明解决了建筑中最大的18个问题。直接在建筑工地上提高工业生产的自动化程度和生产水平。本发明提供了17项重大创新。包括基于细胞培养的建筑材料,组件和地板的生长。这样可以将钢,木材和纤维的最佳材料性能结合在一起。例如。钢的抗拉强度与实木墙板或具有纤维增强作用的自然生长的超级木固体成分的抗火强度是结构钢的3倍。

著录项

  • 公开/公告号DE102019007581A1

    专利类型

  • 公开/公告日2020-10-01

    原文格式PDF

  • 申请/专利权人 NICOL-ANDRÉ BERDELLÉ;

    申请/专利号DE20191007581

  • 发明设计人 GLEICH ANMELDER;

    申请日2019-10-31

  • 分类号C12N5/04;C12M3;E04B1;E04B1/35;

  • 国家 DE

  • 入库时间 2022-08-21 11:01:30

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