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91.
扑草净降解菌的分离、筛选与鉴定及降解特性初步研究   总被引:2,自引:0,他引:2  
周际海  孙向武  胡锋  李辉信 《环境科学》2013,34(7):2894-2898
从安徽农药厂废水处理系统的活性污泥中筛选扑草净(prometryne)降解菌.通过富集驯化和选择性培养筛选纯化细菌,分离到2株细菌,分别命名为P-1、P-2.根据表型特征、生理生化特性和16S rDNA序列同源性分析:P-1为G-,鉴定为苍白杆菌属(Ochrobactrum);P-2为G+,鉴定为芽胞杆菌属(Bacillus).GenBank登录号分别为HM004554和HM004555.通过12 d液体降解实验,菌株P-1、P-2对40 mg.L-1扑草净降解率分别达到46.5%和65.4%.该研究为扑草净的生物降解与污染土壤的生物修复提供了依据.  相似文献   
92.
We report on the biodegradation of pure hydrocarbons and chemotaxis towards these compounds by an isolated chlorophenol degrader,Pseudomonas strain H.The biochemical and phylogenetic analysis of the 16S rDNA sequence identified Pseudomonas strain H as having 99.56% similarity with P.aeruginosa PA01.This strain was able to degrade n-hexadecane,1-undecene,1-nonene,1-decene,1-dodecene and kerosene.It grew in the presence of 1-octene,while this hydrocarbons is toxic to other hydrocarbons degraders.Pseudomonas strain H was also chemotactic towards n-hexadecane,kerosene,1-undecene and 1-dodecene.These results show that this Pseudomonas strain H is an attractive candidate for hydrocarbon-containing wastewater bioremediation in controlled environments.Since the classical standard techniques for detecting chemotaxis are not efficient at low bacterial concentrations,we demonstrate the use of the dynamic speckle laser method,which is simple and inexpensive,to confirm bacterial chemotaxis at low cell concentrations (less than 105 colony-forming unit per millilitre (CFU/mL)) when hydrocarbons are the attractants.  相似文献   
93.
To find a simple and economical way for treating the domestic wastewater in small counties and towns, a process combining chemically enhanced primary treatment and a trickling filter (CEPT-TF, representing the physical and biological effects) was constructed and operated in laboratory conditions. The characteristic behaviors of dissolved organic matter in raw wastewater and effluents were examined during steady-state operation. Experimental results showed that the process of CEPT and TF in series was beneficial for the removal of hydrophobic and hydrophilic organics. Specially, the hydrophobic and aromatic materials could be preferentially removed in the CEPT unit, and the hydrophilic fraction in the TF. Structural changes of the organic fractions during the operation of the different units were also characterized via spectrum analysis.  相似文献   
94.
Bacterial strain Enterobacter aerogenes TJ-D capable of utilizing 2-methylquinoline as the sole carbon and energy source was isolated from acclimated activated sludge under denitrifying conditions. The ability to degrade 2-methylquinoline by E. aerogenes TJ-D was investigated under denitrifying conditions. Under optimal conditions of temperature (35℃) and initial pH 7, 2-methylquinoline of 100 mg/L was degraded within 176 hr. The degradation of 2-methylquinoline by E. aerogenes TJ-D could be well described by the Haldane model (R2 > 0.91). During the degradation period of 2-methylquinoline (initial concentration 100 mg/L), nitrate was almost completely consumed (the removal efficiency was 98.5%), while nitrite remained at low concentration (< 0.62 mg/L) during the whole denitrification period. 1,2,3,4-Tetrahydro-2-methylquinoline, 4-ethyl-benzenamine, N-butyl-benzenamine, N-ethyl-benzenamine and 2,6-diethyl-benzenamine were metabolites produced during the degradation. The degradation pathway of 2-methylquinoline by E. aerogenes TJ-D was proposed. 2-Methylquinoline is initially hydroxylated at C-4 to form 2-methyl-4-hydroxy-quinoline, and then forms 2-methyl-4-quinolinol as a result of tautomerism. Hydrogenation of the heterocyclic ring at positions 2 and 3 produces 2,3-dihydro-2-methyl-4-quinolinol. The carbon-carbon bond at position 2 and 3 in the heterocyclic ring may cleave and form 2-ethyl-N-ethyl-benzenamine. Tautomerism may result in the formation of 2,6-diethyl-benzenamine and N-butyl-benzenamine. 4-Ethyl-benzenamine and N-ethyl-benzenamine were produced as a result of losing one ethyl group from the above molecules.  相似文献   
95.
A fungal consortium including Aspergillus niger, Mucor hiemalis and Galactomyces geotrichum was tested for the treatment of dairy wastewater. The bio-augmentation method was tested at lab-scale (4 L), at pilot scale (110 L) and at an industrial scale in Wastewater Treatment Plants (WWTP). The positive impact of fungal addition was confirmed when fungi was beforehand accelerated by pre-culture on whey (5 g/L lactose) or on the dairy effluent. Indeed, chemical oxygen demand (COD) removal yields increased from 55% to 75% for model medium, diluted milk. While after inoculation of an industrial biological tank from a dairy factory with the fungal consortium accelerated by pre-cultivation in a 1000 L pilot plant, the outlet COD values decreased from values above the standard one (100 mg/L) to values in the range of 50-70 mg/L. In addition, there was a clear impact of fungal addition on the ’hard’ or non-biodegradable COD owing to the significant reduction of the increase of the COD on BOD 5 ratio between the inlet and the outlet of the biological tank of WWTP. It was in the range of 451%-1111% before adding fungal consortium, and in the range of 257%-153% after bio-augmentation with fungi. An inoculated bioreactor with fungal consortium was developed at lab-scale and demonstrated successfully at pilot scale in WWTP.  相似文献   
96.
We have studied the integrated model of reaction rate equations with thermal energy balance in aerobic bioreactor for food waste decomposition and showed that the integrated model has the capability both of monitoring microbial activity in real time and of analyzing biodegradation kinetics and thermal-hydrodynamic properties. On the other hand, concerning microbial metabolism, it was known that balancing catabolic reactions with anabolic reactions in terms of energy and electron flow provides stoichiometric metabolic reactions and enables the estimation of microbial biomass yield (stoichiometric reaction model). We have studied a method for estimating real-time microbial biomass yield in the bioreactor during food waste decomposition by combining the integrated model with the stoichiometric reaction model. As a result, it was found that the time course of microbial biomass yield in the bioreactor during decomposition can be evaluated using the operational data of the bioreactor (weight of input food waste and bed temperature) by the combined model. The combined model can be applied to manage a food waste decomposition not only for controlling system operation to keep microbial activity stable, but also for producing value–added products such as compost on optimum condition.  相似文献   
97.
菌株DA-1被发现能在好氧和厌氧环境中将硝酸盐转化为气态氮。在以NO3-为唯一氮源的条件下研究了碳源、C/N和pH值对菌株DA-1好氧和厌氧反硝化脱氮的影响。结果表明:同等条件下,48 h内菌株DA-1的厌氧脱氮效率高于好氧脱氮率;菌株DA-1能在好氧和厌氧条件下利用乙酸、柠檬酸以及葡萄糖进行细胞增殖和反硝化。在厌氧条件下,三者作为碳源时的反硝化效率分别为(34.04±0.15)%、(22.72±0.32)%和(11.32±0.06)%,均低于好氧条件下的(25.38±0.14)%、(17.52±0.11)%和(8.06±0.01)%。2种条件下均是乙酸为碳源时反硝化效率最高。而丁二酸仅能在厌氧环境中作为电子供体参与反硝化反应。C/N越高越有利于菌株DA-1的厌氧反硝化,当C/N为10时,反硝化效率最高为(35.06±0.19)%。而在好氧条件下,菌株反硝化效率随着C/N的升高,先升高再降低,当C/N为8时,反硝化效率最高;好氧和厌氧脱氮的最适pH值为7.0。体系偏酸或者偏碱都会造成菌株DA-1脱氮效率的降低并出现亚硝酸盐累积。厌氧环境中pH=5.0时累积的亚硝酸盐浓度高达(8.95±2.05)mg/mL。  相似文献   
98.
比较了4种处理方法对从秸秆沼气干发酵基质中提取微生物总DNA纯度和产量的影响,以及添加PVP和使用试剂盒对DNA粗提液的纯化效果,试图寻找一种适用于从秸秆沼气干发酵基质中提取微生物总DNA的有效方法。结果表明:采用冻融处理和酶处理相结合的方法得到DNA提取液的A260/A230和A260/A280相对较高,与其它3种方法有显著性差异(P≤0.05);提取液中添加PVP对去除DNA粗提液中的腐殖酸有一定效果,但添加量1%6%的效果差异不显著;经细菌DNA纯化试剂盒纯化后A260/A230和A260/A280分别达到(1.223±0.156)和(1.737±0.120)。对吸附了磷酸盐的氢氧化钽进行解吸,当pH=12时解吸率为52.45%。研究结果表明,氢氧化钽能够有效地去除水溶液中磷酸盐的吸附剂。  相似文献   
99.
红球菌在石油烃类物质降解中的作用   总被引:1,自引:0,他引:1  
红球菌属是有机污染物降解的重要微生物之一。由于红球菌能够适应各种各样的底物环境,具有极强的有机溶剂耐受性和很宽的降解谱,同时它们还能通过产生表面活性剂和改变细胞表面组成结构来提升自身对于疏水性环境的适应能力,因此,红球菌在石油污染物降解及石油污染的生物修复等领域有着极其重要的应用价值。文章基于近年来在红球菌降解石油烃方面的研究进展,从红球菌适应疏水性环境的机制、石油烃中烷烃、环烷烃、芳香烃的降解途径等几个方面进行综述,同时对今后研究的方向进行了展望。  相似文献   
100.
对DAT-IAT工艺加以改良,在DAT池前端分隔出缺氧区和厌氧区,强化了系统脱氮除磷能力。并在不同运行条件下,对改良型DAT-IAT工艺的脱氮除磷效果进行研究,得出优化条件。结果表明:DAT池溶解氧浓度在1.82.2 mg/L之间;IAT池至DAT池的污泥回流比为300%;DAT池至缺氧区的混合液回流比为40%2.2 mg/L之间;IAT池至DAT池的污泥回流比为300%;DAT池至缺氧区的混合液回流比为40%50%;IAT池采用曝气1 h、沉淀1 h、排水1 h的运行工况;系统泥龄在1350%;IAT池采用曝气1 h、沉淀1 h、排水1 h的运行工况;系统泥龄在1316 d时,改良型工艺可以同时取得较好的脱氮和除磷效果,并且改良型工艺的脱氮除磷能力明显优于常规DAT-IAT工艺。  相似文献   
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