Arid
DOI10.1016/j.asr.2010.05.004
Closed bioregenerative life support systems: Applicability to hot deserts
Polyakov, Yuriy S.1; Musaev, Ibrahim2; Polyakov, Sergey V.1
通讯作者Polyakov, Yuriy S.
来源期刊ADVANCES IN SPACE RESEARCH
ISSN0273-1177
EISSN1879-1948
出版年2010
卷号46期号:6页码:775-786
英文摘要

Water scarcity in hot deserts, which cover about one-fifth of the Earth’s land area, along with rapid expansion of hot deserts into arable lands is one of the key global environmental problems. As hot deserts are extreme habitats characterized by the availability of solar energy with a nearly complete absence of organic life and water, space technology achievements in designing closed ecological systems may be applicable to the design of sustainable settlements in the deserts. This review discusses the key space technology findings for closed biogenerative life support systems (CBLSS), which can simultaneously produce food, water, nutrients, fertilizers, process wastes, and revitalize air, that can be applied to hot deserts. Among them are the closed cycle of water and the acceleration of the cycling times of carbon, biogenic compounds, and nutrients by adjusting the levels of light intensity, temperature, carbon dioxide, and air velocity over plant canopies. Enhanced growth of algae and duckweed at higher levels of carbon dioxide and light intensity can be important to provide complete water recycling and augment biomass production. The production of fertilizers and nutrients can be enhanced by applying the subsurface flow wetland technology and hyper-thermophilic aerobic bacteria for treating liquid and solid wastes. The mathematical models, optimization techniques, and non-invasive measuring techniques developed for CBLSS make it possible to monitor and optimize the performance of such closed ecological systems. The results of long-duration experiments performed in BIOS-3, Biosphere 2, Laboratory Biosphere, and other ground-based closed test facilities suggest that closed water cycle can be achieved in hot-desert bioregenerative systems using the pathways of evapotranspiration, condensation, and biological wastewater treatment technologies. We suggest that the state of the art in the CBLSS design along with the possibility of using direct sunlight for photosynthesis and recent advances in photovoltaic engineering can be used as a basis for building sustainable settlements producing food, water, and energy in hot deserts. (C) 2010 COSPAR. Published by Elsevier Ltd. All rights reserved.


英文关键词Hot desert Closed bioregenerative life support system Solar energy Water scarcity Water cycle Carbon cycle
类型Review
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:000281296600013
WOS关键词ARTIFICIAL ECOSYSTEMS ; ECOLOGICAL-SYSTEMS ; AQUATIC ECOSYSTEM ; GAS-EXCHANGE ; SPACE ; GROWTH ; BIOSPHERICS ; BASE ; MARS ; AIR
WOS类目Astronomy & Astrophysics ; Geosciences, Multidisciplinary ; Meteorology & Atmospheric Sciences
WOS研究方向Astronomy & Astrophysics ; Geology ; Meteorology & Atmospheric Sciences
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/162958
作者单位1.USPolyResearch, Ashland, PA 17921 USA;
2.Columbia Univ, Sch Int & Publ Affairs, New York, NY 10027 USA
推荐引用方式
GB/T 7714
Polyakov, Yuriy S.,Musaev, Ibrahim,Polyakov, Sergey V.. Closed bioregenerative life support systems: Applicability to hot deserts[J],2010,46(6):775-786.
APA Polyakov, Yuriy S.,Musaev, Ibrahim,&Polyakov, Sergey V..(2010).Closed bioregenerative life support systems: Applicability to hot deserts.ADVANCES IN SPACE RESEARCH,46(6),775-786.
MLA Polyakov, Yuriy S.,et al."Closed bioregenerative life support systems: Applicability to hot deserts".ADVANCES IN SPACE RESEARCH 46.6(2010):775-786.
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