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节杆菌属细菌处理有机物和重金属污染物的研究进展 被引量:24
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作者 李娟 constantine uwaremwe +3 位作者 冷艳 张晓华 李师翁 陈熙明 《环境科学与技术》 CAS CSCD 北大核心 2017年第10期89-97,共9页
有机污染物和重金属造成的环境问题日益严峻。节杆菌属细菌具有很强的环境适应性和抗逆性,广泛分布于各种环境特别是土壤和水体中。研究发现该属菌株具有高效降解环境中的有机污染物和吸附重金属的能力,被用于污染水体和土壤等的生物修... 有机污染物和重金属造成的环境问题日益严峻。节杆菌属细菌具有很强的环境适应性和抗逆性,广泛分布于各种环境特别是土壤和水体中。研究发现该属菌株具有高效降解环境中的有机污染物和吸附重金属的能力,被用于污染水体和土壤等的生物修复研究与应用。该文从节杆菌属降解污染物菌株、降解污染物的种类、降解机理和影响因素的研究等方面,介绍了节杆菌处理污染物的研究进展。 展开更多
关键词 节杆菌属 有机污染物 重金属 降解途径
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An Arthrobacter strain isolated from desert soils in the region of Shule River (China) can convert cellulose to potential biofuels
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作者 constantine uwaremwe ShiWeng Li +5 位作者 XiMing Chen Maurice Ngabire Tawheed Mohammed Elheesin Shareef Juan Li MingHui Wu GuoLi Li 《Research in Cold and Arid Regions》 CSCD 2017年第2期167-174,共8页
In this study, an Arthrobacter strain from desert soils in the Shule River Valley was isolated, China, which has a strong ability to convert cellulose to potential biofuel. In total, from five soil sample sites, six s... In this study, an Arthrobacter strain from desert soils in the Shule River Valley was isolated, China, which has a strong ability to convert cellulose to potential biofuel. In total, from five soil sample sites, six strains were isolated that grew well on CMC-Agar medium, with colony diameters ranging from 3~4 mm, among them, one strain had a strong ability to produce biofuels. Based on morphological and phylogenetic analyses, the isolate was identified as Arthrobacter nitroguajacolicus strain SLP1. The chemical properties of the biofuel extracted from the fermentation broth of strain SLP1 were analysed by gas chromatography and mass spectrometry. A total of 41 kinds of carbon compounds were identified, of those,five were detected at peak concentration and the carbon numbers ranged from C16–C22, which can be classified as alkanes,alkenes, and alcohols. Furthermore, biofuel-producing ability of strain SLP1 was enhanced using NTG mutagen. In a total of 94 mutant strains, four show the most enhanced biofuel production relative to the original strain. Biofuel production conditions were optimized by growing the four mutant strains on LB-Agar and SS-Agar medium. 展开更多
关键词 ARTHROBACTER CELLULOSE biofuels MUTAGENESIS
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