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1.
塔河油田成藏期次的地球化学示踪研究   总被引:14,自引:7,他引:7       下载免费PDF全文
应用油藏地球化学的方法对塔河油田的成藏期次进行了探讨。塔河油田稠油正构烷烃分布完整,但色谱基线不同程度抬升;原油非烃和沥青质碳同位素偏轻,族组成碳同位素发生倒转;原油中普遍含有25-降藿烷。这些特征表明该区油藏经历了至少两期成藏过程,早期充注原油遭受生物降解作用后又受到高成熟原油充注。塔河油田天然气为典型的油型气,成熟度较高,为成熟—过成熟阶段产物,亦显示了两期充注的特征:早期充注的为典型的原油伴生气,充注时间与后期原油的充注时间相同;晚期充注的为高温裂解气,充注方向为自东向西。因此,塔河油田至少存在着3次油气充注过程。   相似文献   
2.
The ability of indigenous microorganisms to degrade benzene, toluene, ethylbenzene and xylenes (BTEX) in laboratory scale flow-through aquifer columns was tested separately with hydrogen peroxide (110 mg/l) and nitrate (330 mg/l as NO3) amendments to air-saturated influent nutrient solution. The continuous removal of individual components from all columns relative to the sterile controls provided evidence for biodegradation. In the presence of hydrogen peroxide, the indigeneous microorganisms degraded benzene and toluene (> 95%), meta- plus para-xylene (80%) and ortho-xylene (70%). Nitrate addition resulted in 90% removal of toluene and 25% removal of ortho-xylene. However, benzene, ethylbenzene, meta- and para-xylene concentrations were not significantly reduced after 42 days of operation. Following this experiment, low dissolved oxygen (< 1 mg/l) conditions were initiated with the nitrate-amended column influent in order to mimic contaminated groundwater conditions distal from a nutrient injection well. Toluene continued to be effectively degraded (> 90%), and more than 25% of the benzene, 40% of the ethylbenzene, 50% of the meta- plus para-xylenes and 60% of the ortho-xylene were removed after several months of operation.  相似文献   
3.
邻苯二甲酸酯鼓泡生物降解   总被引:1,自引:0,他引:1  
该课题测试了邻苯二甲酸酯类化合物的鼓泡生物降解行为。结果表明,邻苯二甲酸酯的降解速率常数(kb)与其烷基链长度之间存在良好的相关性,kb=0.0009x^2-0.019x 0.1123,相关系数r=0.9906;浓度超过500mg/L时,邻苯二甲酸二乙酯可抑制自身的生物降解;中间产物邻苯二甲酸浓度超过50mg/L时,也对邻苯二甲酸二乙酯的生物降解有明显的抑制作用。  相似文献   
4.
聚α烯烃基础油的生物降解性和毒性   总被引:4,自引:0,他引:4  
低粘度聚α烯烃(PAO)基础油,在CEC-L-33-T-82试验程序的条件下是容易生物降解的。PAO基础油对哺乳动物是无毒和无刺激性的,在海洋微生物荧光细菌的Microtox试验中,对含有49000μg/g浓度的PAO水溶性馏分,没有发现明显的影响。  相似文献   
5.
骨折内固定材料的研究进展   总被引:1,自引:0,他引:1  
传统的骨折内固定材料在临床应用过程中出现了许多亟待解决的问题,如应力遮挡等,这些问题不但与材料的设计有关,而且与所采用的材料有密切关系.在概述骨折内固定材料的发展历史及目前所存在的主要问题的基础上,阐述了骨折内固定材料近些年来的新进展及今后的发展前景.  相似文献   
6.
Core–shell type nanoparticles of poly(L ‐lactide)/poly(ethylene glycol) (LE) diblock copolymer were prepared by a dialysis technique. Their size was confirmed as 40–70 nm using photon correlation spectroscopy. The 1H‐NMR analysis confirmed the formation of core–shell type nanoparticles and drug loading. The particle size, drug loading, and drug release rate of the LE nanoparticles were slightly changed by the initial solvents that were used. The drug release behavior of LE core–shell type nanoparticles showed an initial burst during the first 12 h and then a sustained release until 100 h. The degradation behavior of LE block copolymer nanoparticles was divided into three phases: the initial rapid degradation phase, the stationary phase, and the rapid degradation phase until complete degradation. It was suggested that lidocaine release kinetics were predominantly governed by the diffusion mechanism in the initial burst phase and after that by both of the diffusion and degradation mechanisms. © 2002 Wiley Periodicals, Inc. J Appl Polym Sci 85: 2625–2634, 2002  相似文献   
7.
雁木西油田所产天然气在吐哈盆地有一定的特殊性,主要表现为含有一定量的硫化氢气体,部分样品的氮气含量高、甲烷含量低、烃类碳同位素值较重,并且重烃碳同位素值发生了倒转。探讨这些特殊性有助于全面认识吐哈盆地的天然气来源、成因与分布规律等,为此在天然气地球化学特征分析的基础上,结合具体的地质条件对天然气的来源、成因进行了系统地分析并取得了如下认识:①雁木西油田的原油溶解气分布在鄯善群和白垩系油藏中,成因上为腐殖型天然气,由烃类和非烃类组成;②烃类气体由甲烷和重烃组成,不同组分的含量与干燥系数均在较宽的范围内变化,但都表现为湿气特征;③非烃类气体主要由N2、H2S、CO2等组成,其中CO2含量普遍较低;④烃类气体、部分非烃气体及其伴生的原油主要来自侏罗系烃源岩,部分高含量的氮气为大气来源,硫化氢与深部石炭系海相碳酸盐岩有关;⑤部分天然气遭受了次生变化,烃类碳同位素值偏重、重烃碳同位素值倒转均与细菌的生物降解作用有关。  相似文献   
8.
绿色环保型水-乙二醇抗燃液   总被引:2,自引:1,他引:1  
王祖安 《润滑油》2002,17(2):10-12
介绍了环保型水一乙二醇液压液的发展状况及性能特点,对比了环保型水-乙二醇液压液与其它润滑材料的生物降解性,表明这类水-乙二醇液压液是极具发展的环境友好型的抗燃液介质。  相似文献   
9.
BACKGROUND: To investigate the microbial degradation performance of organic pollutants in the atmosphere using a biotrickling filter, two microorganism strains, Bacillus cereus S1 and Bacillus cereus S2, were selected, identified and inoculated into a twin biotrickling filter for comparison. RESULTS: Both strains showed good performance towards the degradation of model organic pollutants when gas flow rates ranged from 100 to 600 L h−1. For S1, the total maximum removal efficiency (RE) of toluene was maintained nearly 100% not only at gas flow rates of 100 L h−1 corresponding to empty bed residence time (EBRT) 199.44 s, but also at gas flow rates of 200 L h−1 (EBRT = 99.72 s) and 300 L h−1 (EBRT = 66.48 s). However, S2 had a much lower degradation capability; near 100% removal efficiency was obtained only at the gas flow rate of 100 L h−1 although both bacteria belong to the same Bacillus cereus. With further increase in gas flow rate, the total REs for both S1 and S2 decreased slightly at first and then dropped sharply to 46% and 35%, respectively, at an EBRT of 33.24 s, corresponding to a gas flow rate of 600 L h−1. Starvation for between 2 and 10 days resulted in the re‐acclimation times of both strains ranging between 1.0 and 15.5 h. CONCLUSION: Strain S1 would be a better choice for inoculation into a biotrickling filter than strain S2, because of its much higher toluene removal capacity and rapid recovery to full performance. Copyright © 2008 Society of Chemical Industry  相似文献   
10.
BACKGROUND: Trichloroethylene (TCE) and perchloroethylene (PCE) are considered among the most important groundwater pollutants around the world. These compounds are usually found together in polluted environments but little is known about the ability of microorganisms to simultaneously degrade TCE and PCE. RESULTS: Data showed that several species of white‐rot fungi, including Trametes versicolor, Ganoderma lucidum, and Irpex lacteus, degrade substantial levels of TCE in pure culture. T. versicolor was chosen for further study since it degraded higher levels of TCE than the other organisms. Initial glucose concentration and reoxygenation of samples increased the amount of TCE dechlorination, but no significant difference in percentage TCE degradation was observed. T. versicolor was able to degrade 34.1 and 47.7% of PCE and TCE added as mixtures (containing 5 and 10 mg L−1, respectively). CONCLUSIONS: The degradation ability of TCE was extended to other species of white‐rot fungi. Percentage degradation as well as chloride release from mixtures of TCE and PCE showed that T. versicolor degrades mixtures of TCE and PCE almost as well as its ability to degrade individually added TCE or PCE. The results suggest the potential promise of T. versicolor for bioremediation of TCE and PCE in the environment. Copyright © 2008 Society of Chemical Industry  相似文献   
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