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1.
从佛山某工业园印染废水处理厂曝气池中,经梯度驯化筛选出一株对多种染料具有较强脱色能力的菌株FS1,通过16S r DNA基因序列分析初步鉴定为Lysinibacillus sp.,研究了该菌株在不同营养条件(氮源、碳源、碳源浓度),不同培养条件(p H、温度、供氧条件),不同染料(甲基橙、亚甲基蓝、中性红、酸性红B)和染料浓度下的脱色性能。结果表明,该菌株的最佳脱色条件:温度30~40℃,p H 7~9,氯化铵1 g/L,葡萄糖2 g/L的厌氧条件下培养脱色效果最好,10 h时对酸性红B脱色率可达98.73%左右,且脱色过程符合一级反应动力学方程:-ln(At/A0)=0.0588t-0.0448。该菌株可降解多种染料,脱色率均随污染强度的升高先增大后减小,对高浓度染料和混合染料也表现出很好的脱色效果,是一株高效广谱的染料降解菌,具有处理印染废水的开发应用价值。  相似文献   

2.
采用双室方形微生物燃料电池(MFC),以葡萄糖作为共基质,研究了共基质浓度对典型偶氮染料甲基橙在MFC阳极室中脱色效率及同步产电的影响。结果表明,在0~1.5 g/L浓度范围内,共基质浓度越大,甲基橙脱色率、COD去除率和最大输出电压越高。在共基质浓度为1.5 g/L,进水甲基橙为300 mg/L的条件下,8 h的脱色率高达95%,且在1 000Ω外电阻下,最大输出电压达到662 m V;在无共基质条件下,8 h内对300 mg/L甲基橙的脱色率仅为7.5%,最大输出电压仅达到140 m V。厌氧对照实验表明,甲基橙在MFC中可以实现加速脱色,反应8 h后甲基橙在MFC中的脱色率提高了57%。该研究为开发新型MFC降解偶氮染料废水技术提供了理论依据。  相似文献   

3.
从纺织厂的工业废水排污口取样,分离筛选出了一株嗜热的高效偶氮染料脱色菌PDR2。通过形态学、生理生化特征以及16S r DNA基因序列分析等方法对该菌株进行鉴定,发现该菌为厌氧芽孢杆菌,与Anoxybacillus sp(GQ471935)同源性最高。此外,分别考察了菌株PDR2在不同碳源、氮源、p H以及培养温度等条件下对偶氮染料直接黑38脱色性能的影响,在此基础上进一步研究了菌株PDR2对不同浓度直接黑38染料的耐受性。结果表明,菌株PDR2在55℃、p H 6.0且以葡萄糖为碳源,牛肉膏和蛋白胨为混合氮源时其脱色效果最佳,且菌株对偶氮染料直接黑38有着较强的耐受能力,在染料浓度低于0.4 g·L~(-1)时其脱色效果良好。在最佳条件下静置培养24 h时,菌株PDR2对0.1 g·L~(-1)直接黑38染料的脱色率高达92.34%,展出了良好的应用潜力。  相似文献   

4.
灵芝漆酶对直接蓝86的催化脱色性能   总被引:1,自引:0,他引:1  
利用灵芝菌Ganoderma lucidum U-281漆酶对直接蓝86进行酶促氧化脱色,并对其降解机理进行了探讨。结果表明,染料-漆酶共反应体系在20~50℃及pH小于5.0范围内,直接蓝86均可脱色50%以上;漆酶对直接蓝86具有宽泛的浓度适应性,对300 mg/L的该染料仍具有耐受性。最优脱色工艺参数为温度40℃、pH 5.0、染料初始浓度200 mg/L、漆酶用量1 U/mL。在优化条件下,直接蓝863 h的脱色率达到54.54%,48 h脱色率达到91.54%。紫外-可见吸收光谱分析表明,漆酶的酶促氧化导致染料的分子结构产生了变化,是造成直接蓝86脱色的主要发生机制。  相似文献   

5.
分别用层状氢氧化镁铝(LDH)和焙烧层状氢氧化镁铝(CLDH)作为吸附剂吸附脱除水溶液中偶氮染料酸性黑10B.考察了脱色时间、pH值、吸附剂的投加量、温度、染料初始浓度和焙烧温度等因素对脱色率的影响.结果表明,LDH及CLDH对酸性黑10B染料具有良好的脱除效果,室温下,10g/L LDH和1g/L的CLDH对浓度为100mg/L的染料的脱色率分别达95.93%和99.97%.pH值是影响吸附能力的关键因素,吸附剂对溶液pH值有一定缓冲作用.LDH及CLDH对酸性黑10B吸附结果符合Langmuir吸附等温式.饱和吸附后的LDH及CLDH用高温热解法再生,吸附性能良好,随再生次数增多,脱色率下降.  相似文献   

6.
醌介体催化强化酸性红B生物脱色   总被引:3,自引:0,他引:3  
考察了5种结构相似的醌介体(AQS、2,7-AQDS、AQDS、1,5-AQDS和α-AQS)对酸性红B生物脱色的催化强化作用。结果表明,反应进行至5 h,在0~0.24 mmol/L AQS的浓度范围内,最高脱色率达89%(0.24 mmol/L),相对于空白组(28%)提高约3.2倍,且零级反应速率常数K与介体浓度呈正相关线性关系,K=56.571CAQS+22.616(R2=0.9012);最适实验条件为AQS浓度0.24 mmol/L,0.25%NaCl,温度35℃,pH 7;在此实验条件下,5种醌介体相对于空白组脱色效率分别提高了1.14~1.53倍,体系氧化还原电位降低了38~87 mV。本研究为解决偶氮染料生物脱色技术存在的降解速率低的问题提供了新的思路。  相似文献   

7.
以模拟酸性大红3R染料废水为对象,在单因素实验基础上,选取温度、初始染料浓度、酵母粉浓度三因素为影响因子,以染料脱色率为响应值,利用Box-Behnken设计及响应面分析法研究了各因素对一株广谱型染料脱色菌株Enterobacter cloacae strain M3脱色效果的影响及各因素间交互作用,建立了二次多项式回归方程的预测模型,确定了菌株脱色酸性大红3R废水的优化条件。结果表明:回归方程极显著,拟合性好。最优脱色条件为温度36℃,染料浓度121.12 mg/L,酵母粉浓度1.99%,在此条件下,染料脱色率可达99.21%。经实验验证,实际值与模型预测值拟合良好,偏差仅为0.79%。  相似文献   

8.
缺氧-好氧生物滤池中高效菌对活性红KN-3B的降解特性   总被引:1,自引:1,他引:0  
为了研究高效脱色菌在缺氧好氧生物滤池(A/O biofilter)中对偶氮染料的降解特性,以活性红KN-3B(C.I. reactive red 180)为降解对象,缺氧生物滤池以火山碎石为填料,接种高效脱色菌CK3柯氏柠檬酸杆菌启动,好氧生物滤池以牡蛎壳为填料,接种污水处理厂活性污泥启动。试验考察了不同工况下缺氧-好氧生物滤池对色度和COD的去除效果,结果表明:生物滤池中微生物对偶氮染料活性红KN-3B的脱色和对COD降解的最适pH条件为弱酸性;缺氧滤池中高效菌对色度的去除需要外加碳源,且增加外加碳源有助于脱色率的提高;该高效菌为耐盐菌,当进水NaCl浓度达30 g/L时,色度去除率仍可达93%以上;当染料负荷达500 mg/L时,脱色率仍可达95%。通过紫外-可见扫描图谱分析初步推断CK-3柯氏柠檬酸杆菌对偶氮染料活性红KN-3B的脱色主要是生物降解作用。  相似文献   

9.
白腐真菌F1对染料脱色特性的研究   总被引:1,自引:0,他引:1  
本研究从我国生物资源中筛选出一株白腐真菌F1,确定了其生长条件 ,实现了扩大培养 ,并研究了F1与黄孢原毛平革菌对 4种难降解染料的脱色效果。试验结果表明 ,F1对中性深黄GRL、酸性媒介漂蓝B和刚果红的脱色效率都超过 90 % ;白腐真菌能在短时间内将有毒染料酸性媒介漂蓝B降低到较低浓度 ;白腐真菌对染料脱色的同时 ,自身能够繁殖生长。  相似文献   

10.
真菌和细菌对染料吸附脱色的高效共培养体系研究   总被引:10,自引:1,他引:10  
在含有真菌G-1培养液中加入染料厂污水排放口的污泥样品,从发生快速脱色降解染料的混合培养液中分离出2株染料脱色细菌L-1和L-2,经API鉴定系统鉴定,确定菌株L-1为Enterobacter sp.,菌株L-2为Pseudomonas sp.,研究比较了单一和不同组合混合的真菌G-1菌株(Penicillium sp.),细菌L-1菌株(Enterobacter sp.)和L-2菌株(Pseudomonas sp.)对偶氮染料红M-3BE(C.I.Reactive Red 241)和蒽醌染料艳蓝KN-R(C.I.Reactive Blue 19)的去除情况,发现G-1真菌和2种细菌组合的共培养体系对50mg/L红M-3BE和艳蓝KN-R处理5h去除率达100%和97.9%,并且是以脱色降解作用为主,建立了染料脱色降解菌的最佳组合,进一步测定了此最佳共培养体系对另外13种不同结构染料的脱色降解,结果表明,除对蒽醌染料R-478脱色降解较差外,对其他染料均可在1h-3d被完全脱色降解,表现出脱色降解染料的广谱性,向培养4d的共培养体系中依次加入8种染料,菌体可对染料连续脱色,维持脱色能力达8d左右。  相似文献   

11.
研究了真空紫外光(VUV,185 am)对于水溶液中五氯酚钠的降解,反应2 h后,初始浓度为10 mg/L的五氯酚钠的去除率达到99%以上,有机氯的脱除率达到70%以上,有效地实现了五氯酚钠的脱毒.溶液初始pH值对五氯酚钠的真空紫外光解有很大影响,pH=10.9时的降解速率常数是pH=3.1时的3倍.表观一级反应速率常数随初始浓度的增加而线性下降.在反应溶液中加入过硫酸盐,可有效提高五氯酚钠的真空紫外光降解速率和矿化速率,过硫酸盐和五氯酚钠摩尔比为24时,降解速率提高3倍,反应4 h后TOC去除率达到95%.  相似文献   

12.
Several organic compounds of high molecular weight present in soil interact with selenium and may act as active binding agents affecting its availability in soil, and, consequently, selenium uptake by plants. This study is aimed at investigating the effects of polysaccharides on selenium speciation in soil and on selenium absorption by Lactuca sativa L. plants. Three-week-old seedlings were transplanted into pots filled with soil, and sodium selenite at rates of 1.5 and 5mgSekg(-1) of soil, or sodium selenate at a rate of 1.5mgSekg(-1) of soil were applied. Carboxymethylcellulose (CMC) was added to the soil at rates of 0, 3 and 30mgkg(-1) of soil. After 48 and 110d from transplanting plants were harvested, separated into root and shoot, and fresh and dry matter weights were recorded. Total selenium was determined in both soil and plant samples. A sequential extraction was used to investigate the different Se oxidation states and assess the availability of Se in soil after the final harvesting. Both selenite and selenate were absorbed by roots, but plants amended with Se(VI+) showed higher selenium concentration than plants amended with Se(IV+). Selenite appears to be less mobile than selenate both in soil and plants. The addition of carboxymethylcellulose to soil decreased the amount of selenium absorbed by plants. CMC interacted with Se, making it less mobile as evidenced by the increase in the insoluble fractions. The insoluble Se forms in soil may represent environmental Se sinks potentially available for plants if the substrate is re-used for subsequent growth cycles and selenium species are mobilized as a result of biological and chemical processes.  相似文献   

13.
在不同pH值、Fe2浓度和过硫酸氢钾复合盐(PMS)浓度下,探究降解萘普生(NPX)的最佳条件,并通过分批投加Fe2+和改变投加顺序的方式,提高降解NPX的效率.结果表明,NPX在pH =3的条件下,降解效果最好;Fe2+浓度改变时,PMS/Fe2+/NPX=1/0.75/1条件下,NPX去除率最高;分批投加Fe2+和先投加Fe2+均可大幅提高NPX去除率.缓慢少量的产生硫酸根自由基(SO4--)更利于处理有机物,Fe2+的浓度则在产生自由基方面起着重要作用.  相似文献   

14.
Dalal S  Gupta MN 《Chemosphere》2007,67(4):741-747
Horseradish peroxidase was immobilized by bioaffinity layering and used for the treatment of wastewater containing p-chlorophenol. For this purpose, lectin Concanavalin A was bound to Sephadex beads. The glycoenzyme peroxidase was layered upon this Con A layer. Subsequently, alternate layers of the enzyme and Con A were applied. The most efficient design consisted of three layers of Con A and peroxidase each. This immobilized enzyme preparation retained 80% of the activity of the free peroxidase used for immobilization. PEG at the concentration of 0.1 mg ml(-1) was found to prevent enzyme inactivation by the products, although it increased the process time. Thus 60 U ml(-1) of enzyme completely converted the p-chlorophenol (into products) in 4 min in the absence of PEG. On the other hand, only 0.05 U ml(-1) of enzyme was required for this purpose in the presence of PEG but the process required 60 min. Peroxidase converts phenol molecules into free radicals. These free radicals then polymerize and get precipitated. As a further means of minimizing exposure of the enzyme to free radicals and enhancing the reusability, it was decided to remove the enzyme from reaction medium after 10 min. With this strategy, the bioaffinity layered peroxidase preparation could be reused five times without any loss of activity.  相似文献   

15.
悬浮态的光催化反应器相比固载的光催化反应器有更高的光催化效率。但是如何在光催化反应完成后使催化剂与水溶液的分离 ,成为了一个关键的问题。本研究采用溶胶 凝胶法将二氧化钛直接沉积在磁性颗粒的表面 ,制备出了磁载的光催化剂。这种催化剂在保留了磁性能具有可磁分离的基础上又具有很好的光催化降解效果。  相似文献   

16.
海藻酸钠固化香蕉皮粉吸附染料废水   总被引:1,自引:0,他引:1  
利用海藻酸钠固化农业废弃物-香蕉皮粉制备成吸附剂,以甲基紫为例,对有机染料废水进行吸附研究,考察吸附时间,温度和甲基紫/吸附剂用量比对吸附的影响。实验结果表明,该吸附剂能有效地吸附掉溶液中的甲基紫,其吸附率随温度的增加而下降,最佳吸附时间为2 h,甲基紫/吸附剂的最佳用量比为1∶5。在25℃、pH 7、甲基紫起始浓度10 mg/L,吸附剂浓度50 mg/L的条件下,吸附2 h,吸附率为92.64%,吸附量为185.3 mg/g。研究了相应的Langmuir、Freundlich吸附等温线和准一级、准二级动力学方程,结果表明甲基紫的吸附动力学数据与Freundlich吸附等温线和准二级动力学方程有更好的相关性,同时该吸附剂具有较好的重复利用率。  相似文献   

17.
Microbial inhibitors such as mercuric chloride are frequently used to sterilize soil or soil-water slurries in experimental studies on the fate of xenobiotics in the environment. This study examined the influence of mercuric chloride additions to soil-water slurries on the sorptive behaviour of a phenoxy herbicide (2,4-D) in soil. The results demonstrated that mercuric chloride strongly decreased the capacity of the soil to retain herbicides, and that the interference of mercuric chloride with herbicide sorption increased with increasing soil organic carbon contents. Because of the competitive sorption between mercuric chloride and the phenoxy herbicide, we conclude that mercuric chloride may not be a good soil sterilization procedure for use in xenobiotic fate studies.  相似文献   

18.
This study was undertaken to investigate the adsorption capacity of carbaryl on four Indian soils with different physiochemical properties. A batch adsorption study was carried out in order to evaluate the maximum adsorption capacity of carbaryl using a Response Surface Methodology (RSM). The effects of operating parameter such as initial carbaryl concentration (1–20 mgL?1), adsorbent dosage (0.5–6 g) and contact time (10–180 min) were examined. The proposed quadratic model for Box-Behnken design fits very well to the experimental data because it may be used to navigate design space according to ANOVA results. The regression co-efficient (R2) of the models developed and the results of validation experiments conducted at optimal conditions strongly suggests that the predicted values are in good agreement with experimental results. Contour and response surface plots are used to determine the interactions effects of main factors and optimal conditions of the process. The experiment can be utilized as a guideline for better understanding of carbaryl adsorption onto soil under different operating conditions. The results show that the forest soil is most efficient in binding carbaryl (Sevin) than the other types of soil tested.  相似文献   

19.
Adsorption of phenol by bentonite   总被引:51,自引:0,他引:51  
The potential of bentonite for phenol adsorption from aqueous solutions was studied. Batch kinetics and isotherm studies were carried out to evaluate the effect of contact time, initial concentration, pH, presence of solvent, and the desorption characteristics of bentonite. The adsorption of phenol increases with increasing initial phenol concentration and decreases with increasing the solution pH value. The adsorption process was significantly influenced by the solvent type in which phenol was dissolved. The affinity of phenol to bentonite in the presence of cyclohexane was greater than that in water and was lowest in the presence of methanol. Methanol was used to extract phenol from bentonite. The degree of extraction was dependent on the amount of phenol adsorbed by bentonite. X-ray diffraction analysis showed that the crystalline structure of bentonite was destroyed when cyclohexane was used. The ability of bentonite to adsorb phenol from cyclohexane decreased as the water to cyclohexane ratio was increased. Furthermore, hysteresis was observed in phenol desorption from bentonite in aqueous solutions. The equilibrium data in aqueous solutions was well represented by the Langmuir and Freundlich isotherm models. The removal of phenol from aqueous solutions was observed without surface modification.  相似文献   

20.
The capability of biotransformation of 11 microalgae strains was tested on ethinylestradiol (EE). Seven strains were ineffective whilst Selenastrum capricornutum, Scenedesmus quadricauda, Scenedesmus vacuolatus and Ankistrodesmus braunii biotransformed the substrate. EE was converted by S. capricornutum in three products (ethinylestradiol glucoside, 3-β-d-glucopyranosyl-2-hydroxyethinylestradiol, and 3-β-d-glucopyranosyl-6β-hydroxyethinyl estradiol) in 40%, 5%, and 5% yields, respectively. S. quadricauda transformed EE into 17-ethinyl-1,4-estradien-10,17β-diol-3-one (12%) and A. braunii transformed EE into 6--hydroxy-ethinylestradiol (25%).

It is noteworthy that EE is converted in 92% yield in ethinylestradiol glucoside by S. capricornutum when using optimal algal density conditions.  相似文献   


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