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1.
真菌和细菌对染料的吸附脱色及再生能力的研究   总被引:9,自引:0,他引:9  
进行了真菌和细菌共培养对染料的吸附脱色和吸附脱色能力再生的研究。结果表明,青霉菌G-1首先对偶氮染料S-119、蒽醌染料艳紫KN-B(C.I.Reactive violet 22)水溶液中染料进行快速吸附去除,菌丝对同种染料的吸附速度随菌丝培养液中葡萄糖浓度的增加而加快,吸附染料的G-1菌丝在与细菌的共培养中完成对染料的脱色降解,脱色速度受培养液中葡萄和氮源浓度影响较大,从吸附速率和完全脱色时间综合评价,以葡萄糖浓度为5g/L、酒石酸铵为20mmol/L的培养基中培养的菌丝对染料的吸附脱色效果最好,吸附在菌丝上的艳紫KN-B脱色后菌丝吸附脱色能力得到再生,菌丝对100mg/L的艳紫KN-B染料水溶液可重复处理4次。青霉菌G-1对酸性染料废水处理3h,色度去除率为75.9%,吸附染料的菌丝在与细菌共培养中完成对染料的脱色,对试验所用染料废水,菌丝的处理能力获得1次再生。  相似文献   

2.
Introduction Synthetic dyestuffs are extensively used for textile dyeing as well as other industrial applications. According to chemical structure of the chromophoric group, dyestuffs are classified as azo dyes, anthra- quinone dyes, triarylmethine dyes, …  相似文献   

3.
非灭菌环境投加染料时间对白腐真菌降解活性染料的影响   总被引:6,自引:0,他引:6  
应用氮限制液体培养基(C/N=56/8.7)研究了非灭菌环境投加染料时间对白腐真菌Phanerochaete chrysosporium降解活性艳红K-2BP染料的影响.试验结果表明,纯培养2d和3d后,在非灭菌环境投加活性艳红K-2BP染料的体系脱色率与在灭菌环境投加该染料的体系基本相当,其5d脱色率在90%以上;而纯培养ld时在非灭菌环境投加染料体系的脱色率却只有8l%.引起纯培养ld体系脱色率降低的主要原因是活性艳红K-2BP对白腐真菌Phanerochaete chrysosporium的生长有抑制作用和反应体系感染了酵母菌.但是,如果纯培养延长至2d以后,由于白腐真菌菌丝体已在体系内占优势,尽管在非灭菌环境下还有酵母菌侵入,但它不会占优势,从而也就不会影响白腐真菌对染料的降解作用.因此,在氮限制液体培养基中,只要白腐真菌Phanerochaete chrysosporium在反应体系占优势,就可以适当缩短纯培养时间,提前在非灭菌环境投加染料,使白腐真菌Phanerochaete chrysosporium的培养和对活性染料的脱色同步进行.  相似文献   

4.
生化调控对白腐真菌处理染料废水脱色效果的影响研究   总被引:7,自引:0,他引:7  
研究了白腐真菌处理染料废水过程中的培养液类型。初始pH值,废水的投加量,替代碳源和氮源类型。浓度及木素酶诱导物等生化调控措施及其效果。在优化调控条件下,HSU-13和云芝2种白腐真菌对实际活性染料废水的脱色率可以达到98%左右。在保证良好脱色效果的前提下,使用淀粉替代查氏培养液中的蔗糖可以降低碳源的费用;使用20mmol/L天冬酰胺和酒石酸铵替代查氏培养液中的硝酸钠可以明显提高脱色效果。说明2种白腐真菌对富氮条件的依赖性;投加丁香酸,Mn^2 和Cu^2 等酶的诱导物后可以显著提高脱色速度;苯甲醇在浓度较低(2mmol/L)时对云芝的脱色性能有一定促进作用。而浓度提高到8mmol/L后对云芝的脱色性能几乎没有影响。  相似文献   

5.
白腐菌对焦化废水中喹啉的降解及机理研究   总被引:9,自引:0,他引:9  
选用白腐菌BP降解喹啉,研究了白腐菌在不同培养基中对喹啉的降解过程和机理,以及喹啉的降解与白腐菌漆酶活力、生物量比增长速率、培养基pH值的关系。结果显示秸秆滤出液培养基中生长的白腐菌对喹啉具有最高的去除率89%;喹啉的相对去除率与白腐菌漆酶活力、生物量比增长速率具有较好的相关性;白腐菌BP最适pH为6~7;2-羟基喹啉是喹啉降解过程中首先出现的中间产物。  相似文献   

6.
黄孢原毛平革菌对6种染料的脱色降解   总被引:45,自引:3,他引:42  
在黄孢原毛平革菌与6种染料的液体静培养体系中,不同浓度的染料均发生脱色降解。共培育30 d时,刚果红、直接冻黄G和活性翠蓝KN-G达到92%~99%的脱色率。10,50,100 mg/L活性翠蓝KN-G,50,100 mg/L金莲橙O与天青蓝A,100 mg/L活性艳蓝KN-R的降解率达70%以上;18个样品中60%的降解率超过50%。生物吸附和生物降解是2个重要过程。研究表明,黄孢原毛平革菌对各种染料类群具有广谱有效的脱色降解能力。   相似文献   

7.
研究了稻草固体介质中侧耳属白腐菌BP对喹啉的降解。实验结果表明,浓度分别为250mg/L和150mg/L喹啉的降解率能达到93.47%和97.40%。白腐菌BP可以有效对喹啉进行降解。漆酶和锰过氧化物酶在降解过程中起着较重要的作用,但酶活的高低与降解率大小并不完全成正比。高效液相色谱分析表明降解过程中没有中间代谢物的积累,喹啉能得到彻底矿化。  相似文献   

8.
利用本实验室新构建的白腐菌Trametes sp.SQ01和毛壳菌Chaetomium sp.R01混合培养体系,对刚果红、酸性红、橙黄G和溴酚蓝4种染料进行了脱色研究.结果表明,SQ01与R01混合培养所产生的锰过氧化物酶(MnP)酶活比菌株SQ01单独培养时提高了约5.5倍.菌株R01的接种量、接种时间对混合培养中...  相似文献   

9.
肠杆菌对偶氮染料活性黑5的脱色研究   总被引:2,自引:0,他引:2  
从实验室处理印染废水的改良厌氧-缺氧-好氧系统的活性污泥中分离出对偶氮染料具有脱色活性的菌体,研究了不同pH值、脱色温度、接菌量以及装液量等条件对菌株降解活性黑5的影响,并设计正交实验,获得其降解模拟偶氮染料废水的最佳反应条件.研究结果表明,菌株Enterobacter sp.Gl在30℃、pH为6、装液量为100 m...  相似文献   

10.
稻草基质中白腐菌降解三苯甲烷类染料机制探讨   总被引:4,自引:1,他引:4  
通过研究稻草固体基质及其不同处理形式、木质素酶、木质纤维素共降解等对染料降解的影响,探讨了侧耳属白腐菌BP在稻草固体基质中对三苯甲烷类染料的降解及作用机制.结果表明,稻草固体基质中染料降解主要是以木质素酶系作用为基础的共降解过程.但对不同染料起降解作用的因素不同,其中溴酚蓝的降解主要依靠木质素酶系作用,孔雀绿的降解依靠以木质素酶系为基础的共降解作用,而结晶紫的降解则主要随木质纤维素的降解作用而共降解.  相似文献   

11.
真菌降解技术中载体固定和表面活性剂的作用   总被引:4,自引:0,他引:4  
采用载体固定技术和加入表面活性剂的方法,以乙基橙和比布列希猩红为底物,建立黄孢原毛平霸菌-染料共培养体系。实验结果表明:聚乙烯泡沫小块和玻璃棉,可有效地固定菌体细胞,加速染料的脱色降解;在接种的同时加入0.1%~0.2%Tween80,能有效地保护降解酶的性;培养方式、菌团大小、培养体系的生理特性等,和解体系的反应效率均有明显的影响。采用本方法能克服动培养系统对真菌反应体系的破坏,乙基橙和比布列希  相似文献   

12.
不同共代谢基质对白腐菌降解吲哚的作用研究   总被引:1,自引:0,他引:1  
选用氨氮、苯酚和喹啉作为吲哚的共代谢基质,通过白腐菌BP对共基质体系的降解研究了白腐菌在秸秆滤出液培养基中对不同共基质体系的代谢过程,并进行了动力学分析,考察了不同共代谢基质物质对白腐菌漆酶分泌和吲哚降解的影响.结果显示,不同降解体系中的白腐菌都可去除99%以上的吲哚.充分的氮源可提高白腐菌的活性和漆酶酶活的峰值;共基质苯酚和喹啉可以增加白腐菌漆酶产量,为吲哚的降解提供较多的电子,同时苯酚和喹啉也能得到较高的去除.在秸秆滤出液中,白腐菌在pH为6~8之间对吲哚都具有较强的降解能力.吲哚在白腐菌的代谢过程中,可能首先在吡啶环的2和3位发生一步羰基化.  相似文献   

13.
反硝化菌的偶氮染料脱色研究   总被引:14,自引:0,他引:14  
从活性污泥中分离到几株反硝化能力的偶氮染料脱色菌。它们在合成培养基吧有使大多数所试偶氮染料脱色,而在反硝化条件下很难使偶氮染料脱色,只有菌株17在培养20d后才有较好的脱色效果。酵母粉等有机物作为生长因子时,对菌株17反硝化条件下的偶氮染料脱色有非常明显的促进作用;  相似文献   

14.
The effects of interspecific fungal interactions between Trametes versicolor and Phanerochaete chrysosporium on laccase activity and enzymatic oxidation of polycyclic aromatic hydrocarbons (PAHs) were investigated. A deadlock between the two mycelia rather than replacement of one fungus by another was observed on an agar medium. The laccase activity in crude enzyme extracts from interaction zones reached a maximum after a 5-day incubation, which was significantly higher than that from regions of T. versicolor or P. chrysosporium alone. The enhanced induction of laccase activity lasted longer in half nutrition than in normal nutrition. A higher potential to oxidize benzo[a]pyrene by a crude enzyme preparation extracted from the interaction zones was demonstrated. After a 48 hr incubation period, the oxidation of benzo[a]pyrene by crude enzyme extracts from interaction zones reached 26.2%, while only 9.5% of benzo[a]pyrene was oxidized by crude extracts from T. versicolor. The oxidation was promoted by the co-oxidant 2,2'-azinobis-3-ethylbenzthiazoline-6-sulphonate diammonium salt (ABTS). These findings indicate that the application of co-culturing of white-rot fungi in bioremediation is a potential ameliorating technique for the restoration of PAH-contaminated soil.  相似文献   

15.
于存  吴烨欣 《环境科学学报》2017,37(12):4617-4622
从野外倒木上分离得到一株对直接染料具有高效脱色能力的白腐真菌CB1,采用形态学与分子生物学鉴定法对菌株CB1进行鉴定.结果表明,菌株CB1为变色栓菌(Trametes versicolor);在固体培养基上,利用T.versicolor CB1对5种直接染料进行脱色,结果显示,T.versicolor CB1对5种直接染料均可脱色,其中对直接大红的脱色效果最为明显;采用单因素分析方法对T.versicolor CB1脱色直接大红的培养条件进行优化,结果显示,以果糖为碳源、硝酸铵为氮源、p H=5、添加Cu SO_4和Ca Cl_2利于T.versicolor CB1对直接大红的脱色;通过正交试验优化T.versicolor CB1对直接大红的脱色条件,优化结果为:果糖10 g·L~(-1)、硝酸铵2 g·L~(-1)、Cu SO_41 mmol·L~(-1)、Ca Cl_23 mmol·L~(-1)、p H=5.优化条件下第7 d时的脱色率为78.23%,与优化前相比,脱色率提高了24.04%.  相似文献   

16.
Decolorization of oxygen-delignified bleaching effluent (abbreviated as OBE) and biobleaching of oxygen-delignified kraft pulp (OKP) were conducted using a non-white rot fungus Geotrichum candidum Dec 1 (abbreviated as Dec 1) which has ability to decolorize various synthetic dyes and molasses. Dec 1 decolorized up to 77% of OBE for 6 days. In addition, Dec 1 increased the brightness of OKP from 47.8% to 51.2% and decreased the kappa value of OKP from 12.4 to 10.4 points during a 6-day incubation period at a 25% of pulp-concentration. At 2% pulp-concentration, the brightness of OKP increased by 13% and the kappa value of OKP decreased by 4 points only for a 3-day incubation period. When the decolorized OBE was used for bleaching of OKP, the brightness of OKP increased to 62.7% under the shaking culture to a 2% pulp-concentration using culture fluid of decolorized OBE. It was revealed that Dec 1 is a potential to apply for decolorization of wastewater and biobleaching of pulp in paper-mills.  相似文献   

17.
Decolorization of oxygen-delignified bleaching effluent (abbreviated as OBE) and biobleaching of oxygen-delignified kraft pulp (OKP) were conducted using a non-white rot fungus Geotrichum candidum Dec 1 (abbreviated as Dec 1) which has ability to decolorize various synthetic dyes and molasses. Dec 1 decolorized up to 77% of OBE for 6 days. In addition, Dec 1 increased the brightness of OKP from 47.8% to 51.2% and decreased the kappa value of OKP from 12.4 to 10.4 points during a 6-day incubation period at a 25% of pulpconcentration. At 2% pulp-concentration, the brightness of OKP increased by 13% and the kappa value of OKP decreased by 4 points only for a 3-day incubation period. When the decolorized OBE was used for bleaching of OKP, the brightness of OKP increased to 62.7% under the shaking culture to a 2% pulp-concentration using culture fluid of decolorized OBE. It was revealed that Dec 1 is a potential to apply for decolorization of wastewater and biobleaching of pulp in paper-mills.  相似文献   

18.
A phyllosphere bacterial strain EBL-06 was isolated from wheat leaves. The morphology, cultural characteristics, phospholipid fatty acids, physiological and antagonistic fungus activities of this strain were investigated. A phylogenetic tree was constructed by comparing with the published 16S rDNA sequences of the relevant bacteria. The results showed that the isolate EBL-06 was a strain of Paenibacillus polymyxa; this strain performed a high level of antagonistic fungus activity toward a broad spectrum of phytopathogens, such as Botrytis cinerea, Cladosporium cucumerinum, Fusarium spp. The isolate EBL-06 can grow well using monosodium glutamate wastewater (MGW) and potato wastewater (PW) as culture medium. The maximum yield of 6.5 × 10 9 CFU/mL of the isolate EBL-06 anti-fungus biocontrol agent was reached in 15 hr cultivation at 28°C, pH 6.0–7.5 using the mixture of MGW and PW (1:9).  相似文献   

19.
黄孢原毛平革菌对三苯甲烷染料的生物脱色降解   总被引:2,自引:0,他引:2  
李慧蓉  陈武  陈和谦 《上海环境科学》2003,22(11):738-742,749
利用黄孢原毛平革菌对代表性三苯甲烷染料进行处理。菌的3种品系BKM-F-767.ME446和OGC101对10.50.100mg/L不同浓度的碱性紫5BN,碱性副品红、甲酚红.溴酚蓝和孔雀绿等5种染料具有不同程度的脱色降解能力。碱性副品红和溴酚蓝最为敏感.低浓度(10~30mg/L)孔雀绿的脱色降解效果最好.碱性紫5BN则一般.而甲酚红似乎抵御菌的进攻。紫外一可见光测定表明:碱性紫5BN在BKM-F-1767的作用下。培养液发生吸收峰朝短波方向的移动.标志着染料分子结构发生变化。  相似文献   

20.
Most of the hazardous pollutants are phenolic in nature and persists in the environment. The ability of laccases to oxidize phenolic compounds and reduce molecular oxygen to water has led to intensive studies of these enzymes. Therefore the fungal strains with high laccase activity and substrate affinity that can tolerate harsh environmental conditions have a potential for biotechnological applications. Salt tolerant laccase secreting fungi can be utilized in treatment of saline and phenolic rich industrial effluents such as coir effluent and textile effluent that needed to be diluted several fold before microbial treatment. This is the first study describing the isolation and optimization of a salt tolerant strain of Trichoderma sp. potential for industrial applications. The fungus was identified based on morphological characteristics and was subsequently confirmed with molecular techniques and deposited at National Fungal Culture Collections of India (NFCCI) under the Accession No. Trichoderma viride NFCCI 2745. In contrast to other laccase secreting fungi, light conditions did not exert much influence on laccase production of this strain and salinity enhanced its laccase secretion. The fungus effectively removed the phenolic content of the textile effluent, coir-ret liquor and wood processing effluent within 96 hr of incubation. The tolerance of the fungus to high salinity and phenolic compounds makes this strain ideal for treating saline and phenolic rich industrial effluents.  相似文献   

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