LABORATORY BIODEGRADATION OF POTENTIAL CELLULOSE WASTES GENERATED DURING LONG-TERM MANNED SPACE MISSIONS

H. Najdenski, V. Ilyin, P. Angelov, V. Hubenov, D. Korshunov, V. Kussovski, L. Dimitrova, I. Simeonov
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引用次数: 2

Abstract

Anaerobic microbial biodegradation of cellulose containing wastes generated during the long-term manned space missions is a key technological approach for resolving the problem of wastes accumulated onboard of the spacecraft. Herewith are presented data on the possibilities of structurally stable multispecies microbial consortia originating from methanogenic bioreactors to decompose different cellulose substrates – filter paper, medical gauze and vegetable mix as potential cellulose wastes during space missions. The rates of biodegradation processes carried out at mesophilic and thermophilic conditions are not only measured and compared but are providing new opportunities for development of technology for microbial biodegradation of cellulose-rich organic wastes. Moreover, the studies have shown that paper and gauze hydrolysis with the help of cellulolytic bacterial communities can be an effective component of utilization of cosmonaut hygiene items. Biodegradation of plant wastes by community of anaerobic bacteria is promising and applicable tool also under terrestrial conditions. Light microscopy of bacterial communities reveals the presence of Gram-positive spore forming bacilli (short and long forms, bipolar and dividing cells) and typical clostridia forms.
长期载人航天任务中产生的潜在纤维素废物的实验室生物降解
长期载人航天飞行过程中产生的含纤维素废弃物的厌氧微生物降解是解决航天器废弃物积累问题的关键技术途径。以下是关于产甲烷生物反应器产生的结构稳定的多物种微生物联合体在空间任务期间分解不同纤维素基质——滤纸、医用纱布和蔬菜混合物——作为潜在纤维素废物的可能性的数据。在中温和亲热条件下进行的生物降解过程的速率不仅被测量和比较,而且为开发富含纤维素的有机废物的微生物生物降解技术提供了新的机会。此外,研究表明,在纤维素水解菌群的帮助下,纸和纱布的水解可以成为宇航员卫生用品利用的有效组成部分。在陆地条件下,利用厌氧菌群对植物废弃物进行生物降解是一种很有前途的可行方法。光镜下细菌群落显示革兰氏阳性芽孢形成杆菌(短型和长型,双极性和分裂细胞)和典型梭状芽孢杆菌的存在。
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