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月球基地蘑菇农场建模。

Modeling a lunar base mushroom farm.

机构信息

Institute of Biophysics of Siberian Branch of Russian Academy of Sciences Russian Federation.

Architect and civil engineer, Tulln, Austria.

出版信息

Life Sci Space Res (Amst). 2022 May;33:1-6. doi: 10.1016/j.lssr.2021.12.005. Epub 2022 Jan 1.

Abstract

To calculate the equivalent system mass of mushrooms, a conceptual configuration of a mushroom farm as part of a bioregenerative life support system on an inhabited lunar base was designed. The mushroom farm consists of two connected modules. Each module is a double-shell rigid pipe-in-pipe aluminum structure. The first module is used to prepare and sterilize the substrate, while the mushrooms are sown and grown in the second module. Planned productivity of the mushroom farm is 28 kg of fresh mushrooms per one process cycle lasting 66 days for 14 consumers. Mushroom production can be increased using additional modules. The calculated equivalent system masses of the mushroom farm and the mushrooms produced therein is 88,432 kg and 31,550 kg per 1 kg of dry mushrooms in one process cycle, respectively. At that, the biggest contributor to the equivalent system mass of mushrooms is the total pressurized volume of the farm - 68%. The results obtained may be a prerequisite for performing trade-off studies between different configurations of mushroom farm and calculating a space diet using the equivalent system mass of mushrooms.

摘要

为了计算蘑菇的等效系统质量,设计了一个作为载人月球基地生物再生生命支持系统一部分的蘑菇农场的概念配置。蘑菇农场由两个连接的模块组成。每个模块都是一个双壳刚性管中管铝结构。第一个模块用于准备和消毒基质,而蘑菇则在第二个模块中播种和生长。蘑菇农场的计划生产力为每个持续 66 天的过程周期为 14 名消费者生产 28 公斤新鲜蘑菇。可以使用额外的模块来增加蘑菇产量。在一个过程周期中,每生产 1 公斤干蘑菇,蘑菇农场及其生产的蘑菇的计算等效系统质量分别为 88432 公斤和 31550 公斤。在这方面,蘑菇等效系统质量的最大贡献者是农场的总加压体积-68%。获得的结果可能是在不同的蘑菇农场配置之间进行权衡研究以及使用蘑菇的等效系统质量来计算太空饮食的前提条件。

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