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1.
3株细菌对土壤中芘和苯并芘的降解及其动力学   总被引:8,自引:0,他引:8  
苏丹  李培军  王鑫  许华夏 《环境科学》2007,28(4):913-917
研究了3株多环芳烃(PAHs)高效降解菌对土壤中芘和苯并芘(BaP)的降解动态,用Michaelis-Menton和Monod动力学模型对结果进行拟合.结果表明,3株细菌对芘和BaP的降解率有显著性差异.芽孢杆菌(Bacillus sp.SB02)42 d对芘和BaP的降解率均最高.当土壤中芘和BaP的初始浓度为50 mg/kg时,芽孢杆菌(Bacillus sp. SB02)、动胶杆菌(Zoogloea sp. SB09)、黄杆菌(Flavobacterium sp. SB10)42 d对芘的降解率分别为42.69%、32.88%、25.07%, 对BaP的降解率分别为33.04%、25.39%、22.02%.3株细菌对芘和BaP的降解速率也存在显著性差异.芽孢杆菌(Bacillus sp., SB02)最快,1周可降解20.88%芘和12.6%的BaP,动胶杆菌(Zoogloea sp.SB09)次之,黄杆菌(Flavobacterium sp.SB10)降解速率最慢.  相似文献   

2.
Two indigenous microorganisms, Bacillus sp. SB02 and Mucor sp. SF06, capable of degrading polycyclic aromatic hydrocarbons (PAHs) were co-immobilized on vermiculite by physical adsorption and used to degrade benzo[a] pyrene (BaP). The characteristics of BaP degradation by both free and co-immobilized microorganism were then investigated and compared. The removal rate using the immobilized bacterial-fungal mixed consortium was higher than that of the freely mobile mixed consortium. 95.3% of BaP was degraded using the co-immobilized system within 42 d, which was remarkably higher than the removal rate of that by the free strains. The optimal amount of inoculated co-immobilized system for BaP degradation was 2%. The immobilized bacterial-fungal mixed consortium also showed better water stability than the free strains. Kinetics of BaP biodegradation by co-immobilized SF06 and SB02 were also studied. The results demonstrated that BaP degradation could be well described by a zero-order reaction rate equation when the initial BaP concentration was in the range of 10--200 mg/kg. The scanning electronic microscope (SEM) analysis showed that the co-immobilized microstructure was suitable for the growth of SF06 and SB02. The mass transmission process of co-immobilized system in soil is discussed. The results demonstrate the potential for employing the bacterial-fungal mixed consortium, co-immobilized on vermiculite, for in situ bioremediation of BaP.  相似文献   

3.
1株苯并[a]芘高效降解菌的筛选与降解特性   总被引:4,自引:2,他引:2  
蔡瀚  尹华  叶锦韶  常晶晶  彭辉  张娜  何宝燕 《环境科学》2013,34(5):1937-1944
从广东省贵屿镇受污染河涌底泥中筛选出1株能利用苯并[a]芘(BaP)作为唯一碳源和能源生长的高效降解菌株.经生理生化试验和16S rRNA序列测定,鉴定该菌为短短芽胞杆菌(Brevibacillus brevis).该菌在7 d内对1 mg.L-1BaP的降解率达51.35%.降解性能研究表明,pH、温度、投菌量、BaP初始浓度和处理时间等是影响BaP降解的重要因素.B.brevis对pH与温度均有较广泛的耐受范围,在pH 2~12和温度为25~40℃的范围内对BaP均有降解能力,中性(pH=7)和室温(25℃)为最优条件.随着投菌量的增加,B.brevis对BaP的处理能力呈先增强后平缓的趋势;而BaP初始浓度的增加,则使降解量呈不断上升的趋势.水杨酸、琥珀酸和邻苯二甲酸的加入并不能明显提高B.brevis对BaP的降解效果.处理BaP后菌体表面褶皱增多,随着时间的延长,菌体出现表面凹陷、瘪塌变形的现象.  相似文献   

4.
真菌对土壤中苯并[a]芘的共代谢降解   总被引:21,自引:0,他引:21       下载免费PDF全文
研究了模拟生物泥浆法修复多环芳烃污染土壤.选择了几种从石油污染土壤中分离出来的真菌,研究它们对土壤内苯并[a]芘的降解,并研究了土壤内共存底物:菲、芘、邻苯二甲酸对苯并[a]芘降解的影响,及其之间的共代谢过程.结果表明,芘可以促进镰刀菌、毛霉对苯并[a]芘的降解,并认为这是共代谢作用的结果;菲也可以促进镰刀菌对苯并[a]芘的降解,但抑制了毛霉和青霉对苯并[a]芘的降解;而邻苯二甲酸对青霉和毛霉降解苯并[a]芘的过程均有抑制作用.   相似文献   

5.
李强  赵越  田雪  熊思  卢晓维  林爱军 《环境科学研究》2015,28(12):1917-1922
为降低PAHs对微生物的毒性,促进PAHs的降解,采用TPPB技术(two-phase patitioning bioreactor,两相分配生物反应器)对芘进行降解,研究了不同有机相(硅油、十二烷、十一醇、癸烷、十六烷、十八烷)、ρ(芘)、φ(有机相)和扰动速率对芘降解的影响. 结果表明:当φ(有机相)为10.0%、ρ(芘)为100~1 000 mg/L时,T0(纯水相)及T1(水-硅油)、T2(水-癸烷)、T3(水-十二烷)、T4(水-十一醇)、T5(水-十六烷)和T6(水-十八烷)体系中芘的降解率分别为92.5%~13.9%、69.3%~20.1%、79.6%~23.3%、81.9%~26.9%、86.7%~28.1%、87.7%~34.1%、89.6%~27.4%. ρ(芘)较低时,TPPB抑制了芘的降解;ρ(芘)较高时,TPPB则能促进芘的降解. 6种有机相中,十六烷对芘降解的促进效果最优. 最优φ(有机相)的确定和ρ(芘)有关,ρ(芘)为200 mg/L时,最优φ(十八烷)、φ(十六烷)、φ(十一醇)分别为5.0%、2.5%和5.0%;ρ(芘)为1 000 mg/L时,其均为20.0%. 液体扰动速率的提高能促进芘的降解,液体扰动速率为50~200 r/min时,T6和T5体系中的芘的降解率分别为50.1%~75.6%和54.1%~79.1%. 研究显示,TPPB技术是一种潜在治理高浓度PAHs污染的有效途径,TPPB的优化是多种影响因素综合作用的结果.   相似文献   

6.
敌敌畏降解真菌的分离及其特性研究   总被引:6,自引:0,他引:6  
从受过有机磷农药污染的污泥中分离到一株降解敌敌畏的真菌。经初步鉴定为木霉属,并命名为木霉FM10。该菌对敌敌畏的降解是同葡萄糖以共代谢方式进行的。葡萄糖浓度在1000μg/mL时,木霉FM10降解低地畏作用最强;敌敌畏初浓度越大降解率越低;菌株生长的最适pH为8.0,而pH9.0时,菌株降解率更高;37℃是菌株生长和降解敌敌畏的最适温度;增加接种量可以提高降解率;金属离子对所分离菌株一般表现为抑制作用。经分析,木霉FM10降解敌敌畏的酶多分布于胞外,属于分泌性酶。  相似文献   

7.
苯并[a]芘高效降解菌筛选及其降解特性研究   总被引:3,自引:2,他引:1  
为获得苯并[a]芘(BaP)污染修复的新菌株,通过梯度提高无机盐培养基(MSM)中BaP浓度的方法,本研究从北京焦化厂污染土壤中筛选出1株能够对液体中高浓度BaP(100 mg/L)降解的霉菌,鉴定结果为可可毛色二孢菌(Lasiodiplodiatheobromae).并首次对L.theobromae在液体中降解BaP...  相似文献   

8.
一株苯并[a]芘高效降解真菌的筛选与降解特性   总被引:2,自引:0,他引:2  
从长期受多环芳烃(PAHs)污染的土壤中分离出一株能够降解苯并[a]芘(B[a]P)的真菌,经鉴定为绿色木霉(Trichoderma viride)(命名为BF-1),并对其以B[a]P为唯一碳源进行反复驯化,考察了B[a]P浓度、不同重金属和培养基对其降解能力的影响.结果表明,菌株BF-1在B[a]P浓度为5mg.L-1,32℃振荡培养约6d的条件下,降解速度最快,B[a]P的降解率达68.28%.BF-1在B[a]P浓度分别为10与25mg.L-1,32℃振荡培养6d的条件下,B[a]P的降解率分别为73.29%与87.36%.Cu2+(50mg.L-1)基本不影响BF-1对B[a]P的降解率;Cd2+(100mg.L-1)、Pb2+(300mg.L-1)对BF-1降解B[a]P有一定影响,但仍表现出较高的耐受能力;而Zn2+(200mg.L-1)对BF-1有明显的抑制作用.选用含5mg.L-1B[a]P的土豆葡萄糖液体培养基,6d后B[a]P的降解率为71.31%.对比前述实验结果表明,培养基对B[a]P降解率的影响并不明显.因此,BF-1的应用价值较高.  相似文献   

9.
莲藕状固定化真菌(镰刀菌)对土壤中菲、芘的降解   总被引:12,自引:0,他引:12       下载免费PDF全文
采用莲藕状聚乙烯醇复合载体对镰刀菌(Fusarium sp.)固定化包埋,分别进行了不同接种量的固定化真菌对菲、芘的降解,固定化真菌对不同系列浓度菲、芘的降解试验,以及对固定化真菌在自然土壤中对菲、芘降解的各项参数作了测定,结果表明,固定化真菌具有较好的降解效果,同时用电镜观察研究了镰刀菌在固定化载体中的分布形态.自然土壤中固定化真菌在360h时,对菲、芘的降解效率分别为76.96%和20.69%,而土著菌仅达到33.37%和15.28%.  相似文献   

10.
芘高效降解菌的分离鉴定及其降解特性研究   总被引:10,自引:7,他引:3  
采用富集培养的方法从多环芳烃污染的土壤中分离到3株能高效降解四环芳烃芘的细菌J1、J2、J3,经形态观察、生理生化和16SrDNA鉴定,J1属于铜绿假单胞菌属(Pseudomonas aeruginosa),J2属于黄杆菌属(Flavobacterium mizutaii),J3属于短短芽孢杆菌属(Brevibacillus parabrevis).3株细菌均能以芘作为碳源生长,在含芘50、100、200、500、1 000 mg/L的无机盐液体培养基中培养7 d后细菌总数达到最高,在含芘200 mg.L-1的无机盐液体培养基中7d的降解效率分别达到53.04%、65.03%、51.02%.3株细菌对培养基具有较广泛的pH适应范围,在芘浓度200 mg/L,pH为4~9的液体条件下,均可生长,且对芘有很好的降解.虽然可以采用芘的二氯甲烷溶液或者N,N-二甲基甲酰胺(DMF)溶液向培养液中添加芘,但是以N,N-二甲基甲酰胺添加的方式芘在水溶液中起到很好的分散作用,更有利于3株细菌对芘的降解.  相似文献   

11.
几种芳香化合物对苯并芘在泥浆反应器中降解的影响   总被引:6,自引:0,他引:6  
苯并芘在土壤中难于被生物降解,其降解方式通常以共代谢方式进行.本研究考查了几种多环芳烃及2种单环芳香化合物对苯并芘降解的影响.先把几种芳香化合物投入到供试无污染土壤中进行3d的预培养,然后向土壤中加入苯并芘并使土壤在三角瓶内形成泥浆系统,放在摇床上培养.42d的实验表明,用菲对土壤进行预处Ζ理消除了苯并芘的降解滞后期,并提高了苯并芘的降解率.蒽、芘未能改变苯并芘的降解模式,而苯并蒽则相对抑制了苯并芘的降解.水杨酸和邻苯二甲酸同样消除了苯并芘降解的滞后阶段,且促进了苯并芘的降解,但质量差别未对苯并芘的降解产生影响.  相似文献   

12.
以芘为唯一碳源,从公路旁污染土壤中分离得到一株芘降解真菌,经鉴定为Fusarium solani(命名为Py F-1),荧光显微镜观察发现其菌丝能吸收储存芘.对该菌株在芘浓度为50 mg·L-1的液体培养基中对芘的吸收储存和降解特性,具体包括芘的生物降解、菌体吸收、菌体吸附和消解总量进行了39 d的动态研究,结果表明:生物降解芘在培养0~14 d内逐渐增加,培养14 d时占芘添加量的15.9%,此后基本达到稳定,培养结束时生物降解芘为芘添加量的17.6%;菌体吸收芘在0~21 d内含量较少且变化不显著,低于芘添加量的3%;而在21~39 d内,菌体吸收芘变化显著,芘的消解总量随着菌体吸收量的变化产生显著波动;培养28 d时,芘的消解总量达到最大值,其中菌体吸收芘占芘消解总量的一半,达到芘添加量的16.0%,菌体吸附芘不足芘添加量的0.5%,在研究中可以忽略不计.因此,培养前期培养基中芘的消解以生物降解为主,培养后期菌体吸收芘的变化是芘消解总量变化的主要原因.  相似文献   

13.
从大庆石油污染土壤中分离得到14株石油降解丝状真菌,用以筛选可高效降解石油的菌群. 经过ITS(转录间隔区序列)分析,其中9株属于镰孢霉属(Fusarium sp.),2株属于黄白生丛赤壳菌属(Bionectria sp.),另外3株分别属于葡萄穗酶菌属(Stachybotrys sp.)、曲霉属(Aspergillus sp.)和雅致放射毛霉属(Actinomucor sp.);在固体培养基中各菌株的生长速率差异显著(P<0.01). 不同菌株能够特异降解不同的石油组分. 将筛选的优势菌株组成2个菌群,菌群1由菌株3、D2、D3和D52组成,菌群2由菌株3、6、D2和D3组成,分别考察单菌和2个菌群对原油的降解效果,结果表明:菌株原油降解试验30d后,单菌菌株D52对原油去除率最大,为64.25%;菌群1和菌群2对原油的去除率较高,分别达到74.55%和72.64%,可以考虑用于污油生物修复治理的工程菌群开发研究.   相似文献   

14.
The rates of photodegradation and photocatalysis of benzo [a]pyrene (BaP) on soil surfaces under UV light have been studied. Different parameters such as temperature, soil particle sizes, and soil depth responsible for photodegradation, catalyst loads and wavelength of UV irradiation blamed for photocatalysis have been monitored. The results obtained indicated that BaP photodegradation follows pseudo-first-order kinetics. BaP photodegradation was the fastest at 30℃ . The rates of BaP photodegradation at different soil particle size followed the order: less than 1 mm〉less than 0.45 mm〉less than 0.25 mm. When the soil depth increased from 1 mm to 4 ram, the half-life increased from 13.23 d to 17.73 d. The additions of TiO2 or Fe2O3 accelerated the photodegradation of BaP, and the photocatalysis of BaP follows pseudo-first-order kinetics. Changes in catalyst loads of TiO2 (0.5%, 1%, 2%, and 3% (wt)) or Fe203 (2%, 5%, 7%, and 10% (wt)) did not significantly affect the degradation rates. Both BaP photocatalysis in the presence of TiO2 and Fe2O3 were the fastest at 254 nm UV irradiation.  相似文献   

15.
两株假单胞菌对蒽菲芘的降解作用   总被引:10,自引:2,他引:10       下载免费PDF全文
从污染污泥中分离出两株假单胞菌PCN5及PCB2。研究了它们对蒽、菲、芘的降解性能及生长繁殖情况。结果表明,单基质存在下,10h,PCN5对蒽的降解转化率为91.8%,芘为75.6%,菲仅为26.25%;相反PCB2对菲的降解效果最好,蒽最差;混合基质体系中,两菌株都有良好的降解效果,对芘的降解效果较差;130h,PCN5对蒽、菲、芘混合体系中的TOC去除率为38.9%,PCB2对相应体系的去除率为73.7%;混合体系中两株的生长曲张相似,细菌浓度均呈指数增长趋势,PCN5的最大浓度约是原加入量的10000倍,PCB2是原加入量的8000倍。  相似文献   

16.
Several main metabolites of benzo[a]pyrene (BaP) formed by Penicillium chrysogenum, Benzo[a]pyrene-1,6-quinone (BP 1,6- quinone), trans-7,8-dihydroxy-7,8-dihydrobenzo[a]pyrene (BP 7,8-diol), 3-hydroxybenzo[a]pyrene (3-OHBP), were identified by high-performance liquid chromatography (HPLC). The three metabolites were liable to be accumulated and were hardly further metabolized because of their toxicity to microorganisms. However, their further degradation was essential for the complete degradation of BaP. To enhance their degradation, two methods, degradation by coupling Penicillium chrysogenum with KMnO4 and degradation only by Penicillium chrysogenum, were compared; Meanwhile, the parameters of degradation in the superior method were optimized. The results showed that (1) the method of coupling Penicillium chrysogenum with KMnO4 was better and was the first method to be used in the degradation of BaP and its metabolites; (2) the metabolite, BP 1,6-quinone was the most liable to be accumulated in pure cultures; (3) the effect of degradation was the best when the concentration of KMnO4 in the cultures was 0.01% (w/v), concentration of the three compounds was 5 mg/L and pH was 6.2. Based on the experimental results, a novel concept with regard to the bioremediation of BaP-contaminated environment was discussed, considering the influence on environmental toxicity of the accumulated metabolites.  相似文献   

17.
从南京炼油厂原油污染的土壤中筛选得到2株高效降解原油的菌株,OBD-LM2和OBD-HQM,经初步鉴定菌株OBD-LM2为木霉属,菌株OBD-HQM为曲霉属。原油液体培养基中添加N、P营养盐、温度为25~35℃、盐度<3%时7d菌株OBD-LM2原油降解率为40%~68%,菌株OBD-HQM为35%~55%。采用GC、GC/MS对两株霉菌的原油降解前后组分进行测定,结果表明:菌株OBD-LM2的原油组分降解范围为C11~C28并有许多种类的短链烃(C10)产生,菌株OBD-HQM的原油降解范围仅为C11~C20。  相似文献   

18.
Degradation of pyrene by immobilized microorganisms in saline-alkaline soil   总被引:4,自引:0,他引:4  
Biodegradation of polycyclic aromatic hydrocarbons (PAHs) is very difficult in saline-alkaline soil due to the inhibition of microbial growth under saline-alkaline stress. The microorganisms that can most effectively degrade PAHs were screened by introducing microorganisms immobilized on farm byproducts and assessing the validity of the immobilizing technique for PAHs degradation in pyrene-contaminated saline-alkaline soil. Among the microorganisms examined, it was found that Mycobacterium sp. B2 is the best, and can degrade 82.2% and 83.2% of pyrene for free and immobilized cells after 30 days of incubation. The immobilization technique could increase the degradation of pyrene significantly, especially for fungi. The degradation of pyrene by the immobilized microorganisms Mucor sp. F2, fungal consortium MF and co-cultures of MB+MF was increased by 161.7% (P < 0.05), 60.1% (P < 0.05) and 59.6% (P < 0.05) after 30 days, respectively, when compared with free F2, MF and MB+MF. Scanning electron micrographs of the immobilized microstructure proved the positive effects of the immobilized microbial technique on pyrene remediation in saline-alkaline soil, as the interspace of the carrier material structure was relatively large, providing enough space for cell growth. Co-cultures of different bacterial and fungal species showed different abilities to degrade PAHs. The present study suggests that Mycobacterium sp. B2 can be employed for in situ bioremediation of PAHs in saline-alkaline soil, and immobilization of fungi on farm byproducts and nutrients as carriers will enhance fungus PAH-degradation ability in saline-alkaline soil.  相似文献   

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