排序方式: 共有158条查询结果,搜索用时 15 毫秒
61.
染料脱色菌与芳胺降解菌的筛选及降解染料研究 总被引:1,自引:0,他引:1
从印染厂废水处理系统的曝气池中分离到17株对多种染料有较高脱色能力的细菌,其脱色率都在80%以上,但偶氮染料脱色后产生的中间产物多数为无色的芳香胺类化合物,大多数细菌不能将其进一步降解。为此,通过富集培养和梯度驯化又筛选到一株以对硝基苯胺为唯一碳、氮源的菌株J18,该菌株虽对染料脱色能力很弱,却能够降解芳香胺类化合物。将芳香胺降解菌J18与染料脱色菌H两菌株混合培养,在最适条件下,结果使染料的脱色率和芳胺降解率均到达90%和85%以上,从而达到了彻底降解染料的目的。 相似文献
62.
Decolorization of reactive dyes by the white rot fungus Trametes versicolor in sequencing batch reactors 总被引:10,自引:0,他引:10
The white rot fungus Trametes versicolor was shown to be capable of decolorizing three reactive dyes in a sequencing batch process, using glucose as the carbon and energy source over an extended period without supplementation of new mycelium. Decolorization activity was related to the expression of extracellular peroxidases and could be continuously reactivated by sheering the suspended pellets. Pure culture experiments were carried out simultaneously in agitated Erlenmeyer flasks and in completely stirred tank reactors with two azo dyes, C.I. Reactive Black 5 and C.I. Reactive Red 198 as well as the anthraquinone dye C.I. Reactive Blue 19 (Brilliant Blue R). Results show high and stable degrees of decolorization of 91%-99% in both systems, which could be repeated without decrease in activity over time. Under nonsterile conditions only five cycles of decolorization could be achieved. An increasing bacterial population suppressed fungal growth and the formation of peroxidases. Copyright John Wiley & Sons, Inc. 相似文献
63.
定向进化提高灰盖鬼伞过氧化物酶染织废水脱色效率 总被引:1,自引:0,他引:1
【目的】获得染织废水脱色能力增强的灰盖鬼伞过氧化物酶。【方法】使用基因合成及定点突变平台合成突变灰盖鬼伞过氧化物酶基因CIPmt4(I49S、V53A、M166F和M242I),并调整密码子至毕赤酵母偏好性。以CIPmt4为模板进行定向进化,经过三轮易错PCR和高通量筛选得到一个酶学性质显著改善的突变体(CIPmt5)。通过3D建模和分子动力学模拟分析蛋白的结构及热稳定性,并进一步研究CIPmt5和野生型CIP对刚果红、氨基黑、甲基橙、次甲基蓝、苯胺蓝、结晶紫、溴酚蓝共7种染料的脱色能力。【结果】序列分析显示该突变体积累了I49S、V53A、T121A、M166F和Y272F共5个氨基酸突变,与野生型灰盖鬼伞过氧化物酶相比,以ABTS为底物酶活性是野生型的2.01倍(24.44 U/mg),最适反应p H由5.0提高到6.5,最适反应温度由25°C提高到45°C。除次甲基蓝外对其它染料脱色的最适p H都往中、碱性方向偏移,脱色率普遍高于野生型。模型分析显示CIPmt5活性中心更开放,热稳定性增强。【结论】突变体酶CIPmt5能够更好地替代野生型灰盖鬼伞过氧化物酶应用于染织业染料脱色、化工废水和染织废水的生物修复。 相似文献
64.
65.
固定化漆酶对染料酸性紫43的脱色和降解 总被引:2,自引:0,他引:2
采用自制复合型载体丙烯酸酯类聚合物固定的漆酶对染料酸性紫43进行脱色处理。研究了固定化酶的用量、底物浓度、温度、pH对其降解效果的影响。结果表明,固定化漆酶脱色降解酸性紫43的适宜条件为:酶用量12.5 U/mL,染料浓度150 mg/L,反应的温度范围在45~55℃,pH值范围在4.5~5.0。在上述条件下降解4h,染料酸性紫43脱色率能达到98.5%。重复分批使用固定化漆酶处理染料酸性紫43,在使用8批次后,脱色率仍然能保持在90%以上,其催化效率得到了很大提高。 相似文献
66.
新月弯孢霉菌丝球对染料脱色作用的研究 总被引:1,自引:1,他引:1
研究了新月弯孢霉Curvularia lunata JQH-100液体培养时产生的菌丝球对多种染料的脱色能力。结果表明,多种染料在24h内的脱色率均达到80%以上,且菌丝球稳定性良好,可重复使用6次;以菌丝球对孔雀绿脱色效果为优化指标,正交实验优化获得制备菌丝球的最佳条件为:葡萄糖20g/L、硫酸铵5g/L、马铃薯200g/L、KH2PO43g/L、MgSO45mg/L、CuSO40.5mg/L、VB15mg/L及pH5、摇床转速120r/min。在上述优化后的基础培养基(不含MgSO4、CuSO4)中分别添加微量元素Cu2+、Mn2+、Mg2+或Ca2+制备的菌丝球,对孔雀绿脱色能力增强;添加Fe2+制备的菌丝球,对孔雀绿脱色能力下降;分别添加Zn2+、Al3+或Na+制备的菌丝球对孔雀绿脱色能力与对照相近。应用优化后培养条件制备的菌丝球处理含多种染料的混合废水,也获得了较好的脱色效果。 相似文献
67.
Lu L Zhao M Zhang BB Yu SY Bian XJ Wang W Wang Y 《Applied microbiology and biotechnology》2007,74(6):1232-1239
The white rot fungus Pycnoporus sanguineus produced high amount of laccase in the basal liquid medium without induction. Laccase was purified using ultrafiltration,
anion-exchange chromatography, and gel filtration. The molecular weight of the purified laccase was estimated as 61.4 kDa
by sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The enzyme oxidized typical substrates of laccases including
2,2′-azino-bis(3-ethylbenzthiazoline-6-sulfonate), 2,6-dimethoxyphenol, and syringaldazine. The optimum pH and temperature for the purified
laccase were 3.0 and 65°C, respectively. The enzyme was stable up to 40°C, and high laccase activity was maintained at pH 2.0–5.0.
Sodium azide, l-cysteine, and dithiothreitol strongly inhibited the laccase activity. The purified enzyme efficiently decolorized Remazol
Brilliant Blue R in the absence of added redox mediators. The high production of P. sanguineus laccase as well as its decolorization ability demonstrated its potential applications in dye decolorization. 相似文献
68.
69.
一色齿毛菌Cerrena unicolor是分离自野外的一株能够降解木质素的白腐真菌。为明确一色齿毛菌对染料的脱色能力及脱色前后染料毒性的变化,本研究利用一色齿毛菌对固体条件下4种染料进行脱色能力的检测,筛选出较易脱色的染料后,对该染料的脱色条件进行优化,并以3种豆类发芽率为指标测定该染料脱色前后的毒性变化。结果表明,一色齿毛菌对4种染料均可脱色,其中对刚果红的脱色效果最为明显;一色齿毛菌对刚果红脱色条件的优化结果为:20g/L麦芽糖,1g/L硝酸铵,1mmol/L硫酸镁,接种9块直径1cm菌饼,10mg/L染料浓度,pH 7时脱色效果最好;刚果红染料脱色前后毒性测试结果显示:染料脱色前发酵液毒性>染料脱色后发酵液毒性>清水处理毒性,表明刚果红染料存在一定的毒性,但在被一色齿毛菌脱色后,染料毒性有所降低。本研究为一色齿毛菌在染料废水脱色方面的应用及降低染料废水毒性提供一定的参考依据。 相似文献
70.