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首页> 外文期刊>Indoor Air >Identification using versatile sampling and analytical methods of volatile compounds from Streptomyces albidoflavus grown on four humid building materials and one synthetic medium
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Identification using versatile sampling and analytical methods of volatile compounds from Streptomyces albidoflavus grown on four humid building materials and one synthetic medium

机译:使用通用采样和分析方法鉴定生长在四种潮湿建筑材料和一种合成培养基上的链霉菌链霉菌挥发性化合物

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摘要

The Streptomyces spp. form a common group of bacteria found in the indoor air of water-damaged buildings. They are known for their capability to produce compounds, like geosmin, with low odor thresholds. In this study, two strains of Streptomyces albidoflavus were cultivated on pinewood, gypsum board, particleboard, sand and tryptone glucose extract agar (TGEA). Air samples from the cultures were collected on six different adsorbents and chemosorbents to sample a wide range of compounds such as VOCs, aldehydes, amines and lightweight organic acids. The samples were analyzed with gas chromatography, high-pressure liquid chromatography and ion chromatography. Mass spectr-ometry was used for identification of the compounds. Metabolites were found and identified in air samples from cultures on all materials except sand. Alcohols and ketones were the dominating compound groups produced by cultures grown on pinewood and gypsum board. Few metabolites were produced on particle-board. The culture growing on TGEA produced mainly sulfur compounds and sesquiterpenes. Ammonia, methylamine, diethylamine, ethylamine and one unidentifiable amine were also found from cultivation on TGEA. The growth medium was of crucial importance to the production of potentially irritating metabolites.
机译:链霉菌属。会在被水损坏的建筑物的室内空气中形成常见的细菌群。它们以产生气味阈值低的化合物(如土臭味素)的能力而闻名。在这项研究中,在松木,石膏板,刨花板,沙子和胰蛋白glucose葡萄糖提取琼脂(TGEA)上培养了两株链霉菌链霉菌。来自培养物的空气样品被收集在六种不同的吸附剂和化学吸附剂上,以采样各种化合物,例如VOC,醛,胺和轻质有机酸。用气相色谱法,高压液相色谱法和离子色谱法分析样品。质谱法用于鉴定化合物。在除沙子以外的所有材料上的培养物的空气样本中发现并鉴定了代谢物。酒精和酮是在松木和石膏板上生长的培养物产生的主要化合物基团。在刨花板上很少产生代谢产物。在TGEA上生长的培养物主要产生硫化合物和倍半萜。在TGEA上培养也发现了氨,甲胺,二乙胺,乙胺和一种无法识别的胺。生长培养基对潜在刺激性代谢物的产生至关重要。

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