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51.
52.
Mass exchange in an experimental new-generation life support system model based on biological regeneration of environment. 总被引:3,自引:0,他引:3
A A Tikhomirov S A Ushakova N S Manukovsky G M Lisovsky Yu A Kudenko V S Kovalev V G Gubanov Yu V Barkhatov I V Gribovskaya I G Zolotukhin J B Gros Ch Lasseur 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》2003,31(7):1711-1720
An experimental model of a biological life support system was used to evaluate qualitative and quantitative parameters of the internal mass exchange. The photosynthesizing unit included the higher plant component (wheat and radish), and the heterotrophic unit consisted of a soil-like substrate, California worms, mushrooms and microbial microflora. The gas mass exchange involved evolution of oxygen by the photosynthesizing component and its uptake by the heterotroph component along with the formation and maintaining of the SLS structure, growth of mushrooms and California worms, human respiration, and some other processes. Human presence in the system in the form of "virtual human" that at regular intervals took part in the respirative gas exchange during the experiment. Experimental data demonstrated good oxygen/carbon dioxide balance, and the closure of the cycles of these gases was almost complete. The water cycle was nearly 100% closed. The main components in the water mass exchange were transpiration water and the watering solution with mineral elements. Human consumption of the edible plant biomass (grains and roots) was simulated by processing these products by a unique physicochemical method of oxidizing them to inorganic mineral compounds, which were then returned into the system and fully assimilated by the plants. The oxidation was achieved by "wet combustion" of organic biomass, using hydrogen peroxide following a special procedure, which does not require high temperature and pressure. Hydrogen peroxide is produced from the water inside the system. The closure of the cycle was estimated for individual elements and compounds. Stoichiometric proportions are given for the main components included in the experimental model of the system. Approaches to the mathematical modeling of the cycling processes are discussed, using the data of the experimental model. Nitrogen, as a representative of biogenic elements, shows an almost 100% closure of the cycle inside the system. The proposed experimental model of a biological system is discussed as a candidate for potential application in the investigations aimed at creating ecosystems with largely closed cycles of the internal mass exchange. The formation and maintenance of sustainable cycling of vitally important chemical elements and compounds in biological life support systems (BLSS) is an extremely pressing problem. To attain the stable functioning of biological life support systems (BLSS) and to maintain a high degree of closure of material cycles in than, it is essential to understand the character of mass exchange processes and stoichiometnc proportions of the initial and synthesized components of the system. 相似文献
53.
54.
A.A. Galeev I.Ch. Chabibrachmanov 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》1983,3(3):71-75
The ionization of the gas ejections from the Io satellite into the Jovian magnetosphere by the corotating magnetospheric plasma flow is considered. It is shown that the plasma flow velocity at the Io orbit exceeds the critical velocity at which the anomalous electron ionization of the heavy gas components takes place due to collisionless energy transfer from ionized gas atoms to plasma electrons. The energy, number density and spatial distribution of suprathermal electrons is calculated using the quasilinear theory of newly ionized atoms instability in a moving plasma. Saturation of the plasma density build up in a plasma is considered in terms of the instability quenching by Coulomb collisions. 相似文献
55.
A review is made on the design philosophy of groundbased multichannel spectrometers for measurements of solar irradiation reflected from various natural formations within the visible and near infrared range of the electromagnetic spectrum. Important specifics of the new generation ground-based spectrometers are the improved functional possibilities for the scientific experiments, management and for the specialized data processing. The instruments enable the performance both of automated mode of operation and within the payload of complex measurement equipment. The incorporation of proper computer techniques accounts for the increased intelligence and adaptivity which provides for the precise resolution necessary for the scientific methodology and applicable tasks. 相似文献
56.
C h Lasseur D Massimino J L Renou C h Richaud 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》1989,9(8):111-116
Studies for every level of CELSS: Waste processing, food production, photosynthesis system, and so on ..., imply an automatic system to control, command and quantify gases, water and chemical compounds. Used for many years in plant physiology studies, the C23A system monitors the analysis and quantifies gases (O2, CO2. N2, ...), physical parameters (temperature, humidity, ...) and chemical compounds (NH4+, N03-, ...) on numerous experiments. In the new version, the architecture of the computing system is near of the space requirements. We have chosen a structure with three independent levels: acquisition, monitoring and supervision. Moreover, we use multiplexed analysers: IRGA, mass spectrometer and cheminal analyser. The multiplexing increases the accuracy of the measurements and could facilitate the spatialization. Thus the whole structure anticipates the entire separation between automation in space and control-command on ground. 相似文献