Batten J H, Stutte G W, Wheeler R M
The Bionetics Corporation, Kennedy Space Center, FL 32899, USA.
Adv Space Res. 1996;18(4-5):189-92. doi: 10.1016/0273-1177(95)00876-g.
Atmospheres of enclosed environments in which 20 m2 stands of wheat, potato, and lettuce were grown were characterized and quantified by gas chromatography-mass spectrometry. A large number (in excess of 90) of volatile organic compounds (VOCs) were identified in the chambers. Twenty eight VOC's were assumed to be of biogenic origin for these were not found in the chamber atmosphere when air samples were analyzed in the absence of plants. Some of the compounds found were unique to a single crop. For example, only 35% of the biogenic compounds detected in the wheat atmosphere were unique to wheat, while 36% were unique to potato and 26% were unique to lettuce. The number of compounds detected in the wheat (20 compounds) atmosphere was greater than that of potato (11) and lettuce (15) and concentration levels of biogenic and non-biogenic VOC's were similar.
利用气相色谱 - 质谱联用技术对种植有20平方米小麦、马铃薯和生菜的封闭环境中的大气进行了表征和定量分析。在这些实验室内鉴定出了大量(超过90种)挥发性有机化合物(VOCs)。假定其中28种VOCs源自生物,因为在无植物的情况下分析空气样本时,这些化合物未在室内大气中被发现。所发现的一些化合物是单一作物特有的。例如,在小麦大气中检测到的生物源化合物中,只有35%是小麦特有的,而36%是马铃薯特有的,26%是生菜特有的。在小麦(20种化合物)大气中检测到的化合物数量多于马铃薯(11种)和生菜(15种),生物源和非生物源VOCs的浓度水平相似。