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41.
A method was developed to determine the concentration of methyl tert-butyl ether(MTBE) in gasoline,diesel and heating oil by gas chromatography(GC) with mass spectrometry(GC-MS) or flame ionization detection(FID). The diluted gasoline was directly injected into the GC, and the complete separation of MTBE from co-eluting hydrocarbons was not required. GC/MS or GC/FID method can be used to analyze MTBE in different concentration range and have good consistency. 相似文献
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建立了直接固相微萃取与气相色谱-质谱联用技术测定污水中辛基酚聚氧乙烯醚(OPEO_n)低聚物的方法.在最优实验条件下,测定辛基酚(OP)、辛基酚二乙氧醚(OPEO_2)、辛基酚三乙氧醚(OPEO_3)、辛基酚四乙氧醚(OPEO_4)、辛基酚五乙氧醚(OPEO_5)的线性范围分别为10~100,10-1 000,10~500,10~1 000,10~1 000 ng/L;检出限分别为10.4,7.7,8.1,9.0,8.5 ng/L;回收率为78.4%~114.0%,相对标准偏差小于10.4%.以正二十烷为内标,测定污水处理厂出水中的OPEO_n,实验结果表明,OPEO_2质量浓度高且变化范围较大,为133~2 412 ng/L. 相似文献
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Methyl ten-butyl ether (MTBE), a gasoline additive, possesses serious problems to the environmental health. In the present study, a bacterial culture named A-3 which could effectively degrade MTBE was isolated from the MTBE contaminated soil. The isolate was identified as Chryseobacterium sp., a new species capable of degrading MTBE. In order to enhance its degradation ability, selected environment factors were investigated. The results showed that the optimal temperature was in the range of 25-30℃, the pH was 7.0, the inoculum size was 2 × 10^8 CFU/ml and the optimal concentration of MTBE was from 50 to 100 mg/L. The maximum MTBE utilization rate (Vmax) was 102 nmol MTBE/(mg cell protein.h). Furthermore, it was found that the isolate could also degrade tert-butyl alcohol (TBA). The degradation rates of TBA were much faster than those of MTBE. The additional TBA would lead to the decrease of the initial MTBE degradation rate and the inhibitory effect of TBA increased with the increase of TBA concentration. Similar protein profiles at least seven peptides were demonstrated after SDS-PAGE analysis of crude extracts obtained from the cells growing in MTBE and TBA culture. 相似文献
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An experimental research into the aqueous photocatalytic oxidation (PCO) of organic groundwater pollutants, methyl-tert-butyl ether (MTBE), tert-butyl alcohol, phenol, humic substances, 2-ethoxy ethanol and ethylene glycol was undertaken using visible light-sensitive
nitrogen-doped titanium dioxide photocatalysts. Nitrogen-doped titania proved to be an effective photocatalyst for MTBE with
its action comparable to and even surpassing that of Degussa P25. In contrast, with the other substances the photocatalysts
showed negligible activity. This difference was explained by the poor adsorption properties of N-doped catalysts. The predominance
of different PCO mechanisms dependent of the surface properties of N-TiO2 catalysts was elucidated. 相似文献
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目的 研究特种工程塑料聚醚醚酮(PEEK)在紫外光照射实验室加速条件下的老化行为。方法 对PEEK塑料采取紫外线光老化方式进行试验,对老化前后的样品进行外观变化、力学性能、热性能、微观结构表征与分析,明确紫外环境因素对材料的性能影响,进而确定PEEK塑料在紫外光条件下的老化行为。结果 随着紫外光老化时间的增加,PEEK样品表面变黄,颜色加深,出现鼓包与裂纹等宏观与微观损伤。样品内部力学性能、热性能、红外特征吸收峰、元素含量与价态没有明显变化,样品表面热性能下降,傅里叶变换衰减全反射红外光谱(ATR-FTIR)特征吸收峰变化明显。结论 PEEK塑料表面对紫外光比较敏感,在紫外光的照射下容易发生表层的分解,短时间内不会引起材料整体热性能及力学性能的明显变化。 相似文献
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