一株对染料活性黑5(Reactive Black 5,RB5)具有高效降解活性的酵母菌—Debaryomyces polymor-phus,在传代培养过程中脱色能力及产锰依赖过氧化物酶(MnP)活性逐步降低。研究结果表明,采用向培养体系中反复投加新鲜染料的方法,可以对脱色...一株对染料活性黑5(Reactive Black 5,RB5)具有高效降解活性的酵母菌—Debaryomyces polymor-phus,在传代培养过程中脱色能力及产锰依赖过氧化物酶(MnP)活性逐步降低。研究结果表明,采用向培养体系中反复投加新鲜染料的方法,可以对脱色酵母菌的生长形成持续性选择压力,从而使菌株的脱色和产MnP活性得以显著提高。展开更多
Morphological structure and physicochemical properties of nanotube TiO2 were investigated. It was found that the TiO2 nanotube consisted of 2-5 monolayers of TiO2 molecules, and its inner diameter was between 4.2 and ...Morphological structure and physicochemical properties of nanotube TiO2 were investigated. It was found that the TiO2 nanotube consisted of 2-5 monolayers of TiO2 molecules, and its inner diameter was between 4.2 and 5.9 nm. The nanotube TiO2 powder had high specific surface area and pore volume (379 m2/g and 1.431 cm3/g respectively) and its decolorization activity for Reactive Brilliant Red X-3B was 2 times higher than that of raw TiO2(p-25). This new type of TiO2 was hopeful for application in photocatalysis and composite nanomaterial.展开更多
文摘一株对染料活性黑5(Reactive Black 5,RB5)具有高效降解活性的酵母菌—Debaryomyces polymor-phus,在传代培养过程中脱色能力及产锰依赖过氧化物酶(MnP)活性逐步降低。研究结果表明,采用向培养体系中反复投加新鲜染料的方法,可以对脱色酵母菌的生长形成持续性选择压力,从而使菌株的脱色和产MnP活性得以显著提高。
文摘Morphological structure and physicochemical properties of nanotube TiO2 were investigated. It was found that the TiO2 nanotube consisted of 2-5 monolayers of TiO2 molecules, and its inner diameter was between 4.2 and 5.9 nm. The nanotube TiO2 powder had high specific surface area and pore volume (379 m2/g and 1.431 cm3/g respectively) and its decolorization activity for Reactive Brilliant Red X-3B was 2 times higher than that of raw TiO2(p-25). This new type of TiO2 was hopeful for application in photocatalysis and composite nanomaterial.