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1.
锰过氧化物酶的固态发酵及其对染料的脱色作用   总被引:2,自引:1,他引:1  
采用稻壳作为基质,利用裂褶菌F17固态发酵产锰过氧化物酶(MnP),通过正交实验对发酵条件进行优化,并对5种不同结构类型的染料进行脱色.结果显示,含水率、温度、Mn2 、Cu2 对裂褶菌F17产MnP有显著影响;MnP发酵的最优化条件为稻壳27g、黄豆粉3g、MnSO40.4mg·g-1、含水率150%、接种量50%、培养温度22℃,pH不调节,优化后酶活达到16.39 U·g-1,比优化前的酶活9.20 U·g-1提高了78.2%.优化后的发酵体系对染料刚果红、茜素红、Poly R-478、中性红和结晶紫的24h脱色率分别达到92.6%、90.3%、93.1%、87.3%和95.6%.  相似文献   

2.
通过对西安市某污水处理厂活性泥的分离得到偶氮染料活性黑5的脱色菌株EWA2,经过生化试验和16S r DNA同源性比对分析,鉴定为奇异变形杆菌(Proteus mirabilis)。该菌在LB液体培养基中48 h内对300 mg/L以下的活性黑5脱色率高达94.7%~99.9%。在活性黑5模拟废水中,菌株EWA2可利用羧甲基纤维素钠和葡萄糖作为碳源显著提高对活性黑5的脱色率,在8%Na Cl条件下48 h内对活性黑5的脱色率达83.6%。该菌主要通过生物降解途径实现对活性黑5的脱色,降解产物的吸收峰位于近紫外光区。  相似文献   

3.
白腐真菌生物接触氧化法处理染料废水   总被引:8,自引:0,他引:8       下载免费PDF全文
利用聚酯纤维作载体,生物接触氧化法处理染料废水,白腐真菌-裂褶菌F17(Schizophyllum sp. F17)挂膜迅速、结合牢固且表现出良好的脱色性能.采用连续和间歇两种运行方式,考察了不同的水力停留时间(HRT)及进水浓度对染料废水脱色的影响.当进水浓度为15mg/L,停留时间24h,连续式运行,混合染料废水脱色率达到79.5%,刚果红脱色率为91.6%,结晶紫为65.4%,次甲基蓝为6.9%.  相似文献   

4.
从新疆地区土壤中经驯化、分离纯化得到一株极端嗜盐菌,并对其形态特征、生理生化特性及16S rDNA同源性进行了检索比较,鉴定该菌株为伸长盐单胞菌(Halomonas elogata);其次,考察了不同因素对菌株降解偶氮染料--活性兰BRF的影响,比较了不同盐度条件下的降解率,并在30℃、5%盐度生长条件下采用单因素实验考察了该菌接菌量、染料初始浓度、初始pH等因素对活性兰BRF72h降解率的影响,采用正交试验L9(33)获得适宜的降解条件;最后,通过紫外-可见吸收光谱分析了降解产物.结果表明,该菌株耐盐范围为0~32%,最适生长盐度为5%~20%;在盐度为3%~25%条件下该菌株对活性兰BRF的降解率随着盐度的升高先升后降,5%盐度下的降解效果最佳;在30℃、5%盐度下适宜降解条件为:染料浓度100mg·L-1,pH=7,接菌量5%,72h的降解率为88.62%.紫外-可见光谱结果显示,降解产物的光谱与活性兰BRF的明显不同,可见光区的吸收峰消失,正己烷萃取液无紫外吸收,二氯甲烷萃取液出现两个紫外吸收峰,推测为芳胺类及杂环类等极性化合物;质谱分析证实,降解产物合苯甲基二胺、2,6-氨基苯酚等极性化合物.  相似文献   

5.
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   

6.
通过控制培养基中Mn2+的浓度获得只含有木质素过氧化物酶(LiP)或锰过氧化物酶(MnP)的单一酶培养物,用于比较LiP和MnP对染料降解脱色的条件和能力的差异.结果表明,LiP对橙Ⅰ降解脱色的最佳条件为h2O20.15 mmol/L,pH 3.0,温度40 ℃;MnP为h2O20.15 mmol/L,pH 3.5,温度40 ℃.最佳条件下,考察LiP和MnP作用下染料浓度和染料类型对脱色的影响,发现LiP作用下脱色率明显高于MnP作用下的脱色率,表明LiP可作用的染料浓度比MnP高,可作用的染料范围比MnP大.由此认为LiP具有比MnP更强的脱色能力.   相似文献   

7.
以西安市某污水处理厂A~2/O工艺的好氧池活性污泥为雌二醇降解菌菌源,以MYE为筛选培养基,利用富集培养和平板划线分离法筛选出1株可以利用17β-雌二醇(E2)为唯一碳源和能源进行生长代谢的菌株Wu-SP1.该菌株经鉴定为镰刀菌属(Fusarium sp.),菌株的序列号为KY123915,该菌株降解E2的最适温度为30℃,最适pH值为6,在弱酸性范围内(pH4~6),菌株对E2呈现较好的降解活性.在最佳温度和pH条件下对浓度为2 mg·L~(-1)的雌二醇48 h降解率可达92.5%.对浓度为10、100、500 mg·L~(-1)雌二醇的降解过程符合一级动力学反应.利用紫外光谱法对代谢中间产物进行测定发现,与雌二醇单体相比,代谢产物的最大吸收峰强度减弱,并在230nm和350nm处出现了较大吸收峰.中间产物可能为雌酮(E1).  相似文献   

8.
木质素降解酶对四环素的降解可行性   总被引:1,自引:0,他引:1  
选取了使用广泛、在环境中残留量大、生物毒性大、不易被生物降解的四环素类抗生素中的四环素,考察了其被木质素过氧化物酶(LiP)和锰过氧化物酶(MnP)粗酶液体外降解的效果,证明2种酶对四环素均有较强的降解作用,并在此基础上比较了3个不同酶活(15 U·L-1、40U·L-1、70 U·L-1)下的降解率.结果表明,同等酶活(40 U·L-1)下,LiP比MnP的降解能力强,在适宜的反应条件下,LiP对50 mg·L-1四环素的降解率在5min内可达95%以上,而MnP在2h后仅达70%.对于LiP,当酶活从15 U·L-1升高至40 U·L-1时,降解率提高约15%,当酶活进一步升高至70 U·L-1时,降解率变化不大,而提高酶活可明显提高MnP对四环素的降解率.此外,通过反应进程中补加H2O2,可以明显提高MnP对四环素的降解率.  相似文献   

9.
简青霉Penicillium simplicissimum木质素降解能力   总被引:7,自引:1,他引:6  
从土壤中分离得到一株真菌经鉴定为简青霉Penicillium simplicissimum,将该菌用于木质素类化合物利用、染料脱色、天然木素降解及产酶特性等研究,充分证实该菌具有木质素降解能力.简青霉降解木质素是木质素过氧化物酶(LiP)、漆酶(Lac)和木聚糖酶共同作用的结果,降解主要发生在LiP与木聚糖酶活高产的初级代谢阶段,与白腐真菌表现出不同的作用机制.25d培养可使稻草木质素绝对量损失0.23g,降解率达14.94%,同时纤维素、半纤维素也有较高程度的降解.而pH值、Cu2+和Mn2+浓度对木质素的降解有较大影响.  相似文献   

10.
分别以印染废水污泥和生活污水污泥接种微生物燃料电池(MFC-I和MFC-M),以刚果红为模型染料,研究了接种源对MFC同步脱色偶氮染料和产电性能的影响.结果表明,接种源对MFC同步降解刚果红与产电性能影响显著.产电方面,MFC-I的启动电压高于MFC-M,但稳定运行后二者最大输出电压差别不大.稳定运行阶段,MFC-M最大功率密度达到29.09 mW·m-2,比MFC-I高2.11倍;阳极极化阻抗(R ct)为748.9Ω,比MFC-I低38.0%.脱色方面,MFC-I对刚果红的脱色速率比MFC-M高14.4%~20.3%;但脱色产物一样,均为2-氨基—1,4-萘醌、2,2'-二氨基联苯、4,4'-二氨基联苯.经分离、纯化和鉴定,二者阳极均存在优势菌Pseudomonas sp.,但MFC-M阳极还存在优势菌Bacillus sp.,而MFC-I的阳极还存在优势菌Aquamicrobium sp..  相似文献   

11.
IntroductionSyntheticdyesarewidelyusedinthefieldofprintinganddyeingoftextiles,paperprinting,leatherandasadditivesinpetroleumproducts.Withthelargeoutputofdyeingwastewater,thatdyesareaccumulatedintheenvironmentleadtoseriousenvironmentpollution .Becauseoft…  相似文献   

12.
青霉菌(Penicillium sp.)对三种活性染料的吸附和降解   总被引:14,自引:0,他引:14       下载免费PDF全文
通过14C标记底物的矿化实验发现青霉菌对多聚芳香族化合物有一定降解能力,本研究以3种偶氮和蒽醌型活性染料为作用底物,结果表明,青霉菌G-1 (Penicillium sp.)对染料进行吸附,吸附等温线符合Langmuir模型,最大理论吸附量(Qmax)可达169.5~243.9mg/g干重,被吸附染料最早在第4d完全脱色降解,有菌丝和去除菌丝的培养液中再次加入染料,均可在20~30h内使染料完全脱色降解.  相似文献   

13.
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   

14.
Calcium-alginate pectin entrapped bitter gourd peroxidase (BGP) has been employed for the treatment of disperse dyes: Disperse Brown 1 (DB 1) and Disperse Red 17 (DR 17). Peroxidase alone was unable to decolorize DR 17 and DB 1. However, the investigated dyes were decolorized maximally by BGP in the presence of 0.2 mmol/L redox mediator, violuric acid (VA). A slow decrease in percent decolorization was observed when VA concentration was higher than 0.2 mmol/L which could likely be due to the high reactivity of its aminoxyl radical (> N–O.) intermediate, that might undergo chemical reactions with aromatic amino acid side chains of the enzyme thereby inactivating it. Maximum decolorization of the dyes was observed at pH 3.0 and 40°C within 2 hr of incubation. Immobilized peroxidase decolorized 98% DR 17 and 71% DB 1 using 35 U of BGP in batch process in 90 min. Immobilized enzyme decolorized 85% DR 17 and 51% DB 1 whereas soluble enzyme decolorized DR 17 to 48% and DB 1 to 30% at 60°C. UV-visible spectral analysis was used to evaluate the degradation of these dyes and their toxicity was tested by Allium cepa test. The generally observed higher stability of the bioaffinity bound enzymes against various forms of inactivation may be related to the specific and strong binding of enzyme with bioaffinity support which prevents the unfolding/denaturation of enzyme. Thus entrapped peroxidase was found to be effective in the decolorization of the investigated dyes.  相似文献   

15.
糠醛废渣制备活性炭对糠醛废水的脱色研究   总被引:1,自引:0,他引:1  
以水蒸气为活化剂,用热解糠醛废渣制备活性炭,着重研究了所制备的活性炭对糠醛废水的脱色性能. 结果表明:糠醛废渣制备的活性炭对糠醛废水脱色的最佳温度为50 ℃,并且在很短的时间内即可完成,该活性炭与糠醛废水混合搅拌15 min后,脱色率几乎不再变化. 由于采用糠醛废渣制备活性炭的成本较低,可以适当增加活性炭的投加量以提高糠醛废水的脱色率. 当活性炭投加量为10 g/L时,50 ℃条件下搅拌10 min,糠醛废水脱色率可达到86.65%. 经活性炭脱色后的糠醛废水无色、透明,以去离子水为参比溶液测定其吸光度,与自来水相当.   相似文献   

16.
To evaluate decolorization and detoxification of Azure B dye by a newly isolated Bacillus sp. MZS10 strain, the cultivation medium and decolorization mechanism of the isolate were investigated. The decolorization was discovered to be dependent on cell density of the isolate and reached 93.55%(0.04 g/L) after 14 hr of cultivation in a 5 L stirred-tank fermenter at 2.0 g/L yeast extract and 6.0 g/L soluble starch and a small amount of mineral salts. The decolorization metabolites were identified with ultra performance liquid chromatography-tandem mass spectroscopy(UPLC-MS). A mechanism for decolorization of Azure B was proposed as follows: the C=N in Azure B was initially reduced to –NH by nicotinamide adenine dinucleotide phosphate(NADPH)-dependent quinone dehydrogenase, and then the –NH further combined with –OH derived from glucose to form a stable and colorless compound through a dehydration reaction. The phytotoxicity was evaluated for both Azure B and its related derivatives produced by Bacillus sp. MZS10 decolorization, indicating that the decolorization metabolites were less toxic than original dye. The decolorization efficiency and mechanism shown by Bacillus sp. MZS10 provided insight on its potential application for the bioremediation of the dye Azure B.  相似文献   

17.
沿海地区大气扩散参数的初步分析   总被引:2,自引:0,他引:2  
  相似文献   

18.
曲霉HD_1的分离及其对染料脱色特性的研究   总被引:7,自引:0,他引:7  
曲霉HD1的分离及其对染料脱色特性的研究李孱白景华文艺辉陈怀新(湖北大学生命科学系,武汉430062)李林(华中农业大学微生物系,武汉430070)关键词虎红;偶氮染料;曲霉;脱色;降解.高效的染料脱色菌是解决染料对环境污染的基础和关键.虽然已有许...  相似文献   

19.
In order to search the degradability of kraft lignin, the potential bacterial strains Bacillus subtilis (GU193980) and Klebsiella pneumoniae (GU193981) were isolated, screened and applied in axenic and co-culture conditions. Results revealed that mixed culture showed better decolorization efficiency (80%) and reduction of pollution parameters (COD 73% and BOD 62%) than axenic culture. This indicated syntrophic growth of these two bacteria rather than any antagonistic effect. The HPLC analysis of degraded samples of kraft lignin has shown the reduction in peak area compared to control, suggesting that decrease in color intensity might be largely attributed to the degradation of lignin by isolated bacteria. Further, the GC–MS analysis showed that most of the compounds detected in control were diminished after bacterial treatment. Further, the seed germination test using Phaseolus aureus has supported the detoxification of bacterial decolorized kraft lignin for environmental safety. All these observations have revealed that the developed bacterial co-culture was capable for the effective degradation and decolorization of lignin containing rayon grade pulp mill wastewater for environmental safety.  相似文献   

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