Gòdia F, Albiol J, Montesinos J L, Pérez J, Creus N, Cabello F, Mengual X, Montras A, Lasseur Ch
Departament d'Enginyeria Química, Escola Tècnica Superior d'Enginyeria, Universitat Autònoma de Barcelona, Bellaterra 08193, Barcelona, Spain.
J Biotechnol. 2002 Nov 13;99(3):319-30. doi: 10.1016/s0168-1656(02)00222-5.
The development of a loop of interconnected continuous bioreactors, aimed to provide life support in space, is reported. The complete loop concept consists of four bioreactors and one higher plant compartment. For its realization the continuous and controlled operation of the bioreactors is characterized, up to the pilot scale level, first for each individual reactor, second for the interconnected reactor operation. The results obtained with the two more advanced bioreactors in the Micro Ecological Life Support System Alternative (MELISSA) loop are described more specifically. These reactors consist of a packed-bed reactor working with an immobilized co-culture of Nitrosomonas and Nitrobacter cells, and an external loop gas-lift photobioreactor for the culture of the cyanobacteria Spirulina platensis. Their individual operation for long duration runs has been achieved and characterized, and their interconnected operation at pilot scale is reported.
据报道,旨在为太空提供生命支持的相互连接的连续生物反应器回路已研发成功。完整的回路概念由四个生物反应器和一个高等植物隔室组成。为实现这一目标,首先对每个单独的反应器进行了表征,直至中试规模水平,以确定生物反应器的连续和可控运行情况;其次对相互连接的反应器运行情况进行了表征。更具体地描述了在微生态生命支持系统替代方案(MELISSA)回路中使用的两个更先进的生物反应器所获得的结果。这些反应器包括一个填充床反应器,该反应器与亚硝化单胞菌和硝化杆菌细胞的固定化共培养物一起运行,以及一个用于培养钝顶螺旋藻的外部回路气升式光生物反应器。已经实现并表征了它们的长时间单独运行,并报道了它们在中试规模下的相互连接运行情况。