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711.
苯系化合物好氧降解菌的驯化和筛选   总被引:35,自引:2,他引:35  
为了筛选降解苯系化合物的优势菌种,选用城市污水处理场和石化废水处理的活性污泥作为菌源,分别以甲苯,乙苯,邻二甲苯,间二甲苯,对二甲本,1,3,5-三甲苯作为底物,在好氧条件下,驯化,筛选和分离出了能以上述6种化合物作为生长的唯一碳源和能源的微生物25株,并对其进行了初步的鉴定,这些菌株的好氧生物降解研究结果表明,它们对苯系化合物具有良好生物降解能力。  相似文献   
712.
石油烃类降解菌分离筛选及其特性的实验   总被引:6,自引:1,他引:6  
通过选择性培养从被石油污染土壤中分离出2株能够以机油为碳源和能源的菌株LL1和LL2,测定了温度、底物浓度和pH值对其降解能力的影响,确定了最佳生长条件,并试验了菌株对正己烷、苯和甲苯的降解能力。实验表明,2种菌株都对机油有较强的降解能力,在实验最适条件下分别达到53%和77%,其中LL2菌株还对苯和甲苯有一定的降解能力,具有较好的应用前景。  相似文献   
713.
In the pilot study of treating the purified terephthalic acid(PTA) wastewater with the functional Strain Fhhh in the carrier activated sludge process(CASP), the ratio of COD:TN:TP and the concentrations of Cu, Mn, Se and Zn were controlled to improve the manganese peroxidase(MnP) levels for increasing the treatment efficiency. When the ratio of COD:TN:TP was 100:0.36:0.15 and the concentrations of Cu, Mn, Se and Zn were 0.54, 5.07, 0.00 and 0.08 mg/L, the MnP specific activity(MnP-SA) reached 689 U/L, and the sludge loading rate to COD(SLRC) was 1.09 d^-1, which was 4--7 fold of that in other processes reported. The data indicated that improving MnP level could enhance the degradability of Fhhh. And the potentials of Fhhh and CASP will be also discussed in this paper.  相似文献   
714.
红球菌J-5菌株降解聚乙烯醇的研究   总被引:8,自引:0,他引:8       下载免费PDF全文
从土壤样品中分离到一株能以聚乙烯醇(PVA)为唯一碳源、能源生长的纯菌株,经生理生化鉴定和16S rRNA基因序列分析,该菌株属于红球菌属(Rhodococcus sp.),对该菌株降解PVA的特性进行了研究.结果表明,该菌株降解PVA的适宜条件为10000mg/L PVA,25℃,摇床培养;此外,添加0.1%的酵母膏可以明显促进PVA的降解.在该条件下通气培养7d,可以降解58%的PVA,通过红外光谱分析PVA的代谢产物,说明PVA降解的中间产物带有羰基.  相似文献   
715.
A bacterium classified as Achromobacter xylosoxidans strain IR08 by phenotypic typing coupled with 16S rRNA gene analysis wasisolated from a soil contaminated with electrical transformer fluid for over sixty years using Aroclor 1221 as an enrichment substrate.The substrate utilization profiles revealed that IR08 could grow on all three monochlorobiphenyls (CBs), 2,4'- and 4,4'-dichlorobiphenylas well as 2-chlorobenzoate (2-CBA), 3-CBA, 4-CBA, and 2,3-dichlorobenzoate. Unusually, growth was poorly sustained on biphenyland benzoate. In growth experiments, IR08 degraded all CBs (0.27 mmol/L) in less than 96 h with concomitant stoichiometric release ofinorganic chloride and growth yields were 2-3 times higher than those observed on biphenyl. In contrast to most of the chlorobiphenyl-degrading strains described in the literature, which are reported to form CBA, no metabolite was identified in the culture broth byHPLC analysis. When co-incubated with respective CBs and biphenyl, strain IR08 preferentially utilized the chlorinated analoguesin less than 96 h while it took another 264 h before 90% of the initially supplied biphenyl could be degraded. The promotion of co-metabolic transformation of halogenated substrates by the inclusion of their non-halogenated derivatives may not therefore, result inuniversal benefits.  相似文献   
716.
In the deep high stress coal and rock mass, the efficiency of the ordinary blasting method is constantly affected by the high pressure. This study investigates the shaped blasting technology with increased blasting efficiency, develops a mechanical model for coal crack expansion during shaped blasting, and examines the force-energy action of energy-gathering jets during coal splitting. The established model was combined with experiments and simulations to reveal the damage and evolution of cracks in coal and rock masses. Experiments demonstrate that shaped blasting can create an energy-gathering jet that causes a directional fracture in the test block. The peak of compressive strain in the energy-gathering direction is 1.12 times greater than that of ordinary blasting, and the static action period of the explosive gas is prolonged by 1.3 μs according to the stress curve. Moreover, the peak pressure strain increased 3.2 times, and the pull strain peak increased 3.92 times. The damage amount was represented by the resistivity and ultrasonic wave speed, and shaped blasting causes 1.2 and 1.5 times greater damage than ordinary blasting. The research results provide technical methods for safe and rapid penetration blasting in deep high-ground stressed coal mines.  相似文献   
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