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971.
为制定合理检验测试策略,提高安全仪表系统(SIS)在低要求运行模式下的安全性,提出要求平均失效概率(PFDavg)通用计算模型,引入检验测试分布因子和共因失效修正因子,表征部分和完全检验测试对SIS安全性的影响。结果表明:该模型适用于所有同构koon架构系统,可应用于周期性、非周期性部分检验测试及共因失效影响较大的场景,可以为企业制定检验测试策略提供理论依据。 相似文献
972.
973.
以大连市1984年-2013年逐年7、8月的日平均温度、相对湿度及平均风速等气象数据为基础,基于模糊综合评价法,对大连市夏季人体舒适度现状进行分析与评价,得到结论如下:用模糊综合评判大连市气候舒适度最适合的评判标准为气温22℃、相对湿度70%和风速2 m/s;大连市总体气候舒适状况良好,夏季相对最舒适的时间段为第6旬(8月20日~8月31日),最不舒适的时间段为第4旬(8月1日~8月10日);由于大连市夏季经常伴有雷阵雨甚至暴雨天气以及湿度大等原因,使得炎热气温所造成的不舒适的天气状况常能得到改善,因此大连市夏季舒适程度所占比例较大。 相似文献
974.
975.
简述了有关放射性样品衰变平衡及平衡时间的基本理论,运用碘化钠γ谱仪对衰变时间介于0~27 d区间内的三组陶瓷样品进行放射性比活度测定,采取t检验法分析了同一样品在0d~7d、7d~12d、15 d、21 d等不同衰变时间条件下,放射性核素226Ra、232Th、40K比活度测试结果之间的差异程度,通过实验验证陶瓷样品衰变时间对其放射性测定结果准确性的影响.研究表明,当每组检测结果数据的显著性差异水平为5%,若兼顾科学性和经济性,则陶瓷样品的最佳放射性衰变时间应为至少21 d. 相似文献
976.
Final oocyte maturation is the key step to successful spawning and fertilization.Quantitative real-time PCR(q PCR) is the technique of election to quantify the abundance of functional genes in such study. Reference gene is essential for correct interpretation of q PCR data. However, an ideal universal reference gene that is stable under all experimental circumstances has not been described. Researchers should validate their reference genes while performing q PCR analysis. The expression of 6 candidate reference genes: 18 s r RNA,28 s r RNA, Cathepsin Z, Elongation factor 1-α, Glyceraldehyde-3-phosphate dehydrogenase andβ-actin were investigated during final oocyte maturation induced by different compounds(DES and DEHP) in common carp(Cyprinus carpio). Four softwares(Bestkeeper, ge Norm,Norm Finder and Ref Finder) were used to screen the most stable gene in order to evaluate their expression stability. The results revealed that EF1α was highly stable expressed when final oocyte maturation was induced by DES, while gapdh was the most stable gene when final oocyte maturation was induced by DEHP. Stable expressed reference gene selection is critical for all q PCR analysis to get accurate target gene m RNA expression information. 相似文献
977.
The adsorption of six kinds of chlorophenols on pristine, hydroxylated and carboxylated single-walled carbon nanotubes(SWCNTs) has been investigated. Pseudo-first order and pseudo-second order models were used to describe the kinetic data. All adsorption isotherms were well fitted with Langmuir, Freundlich and Polanyi–Manes models, due to surface adsorption dominating the adsorption process. The close linear relationship between log Kowand log Kdsuggested that hydrophobicity played an important role in the adsorption. The SWCNTs' adsorption capacity for chlorophenols was weakened by addition of oxygen-containing functional groups on the surface, due to the loss of specific surface area, the increase of hydrophilicity and the reduction of π–π interaction. The best adsorption capacity of pristine SWCNTs, SWCNT-OH and SWCNT-COOH for six chlorophenols varied from 19 to 84 mg/g, from 19 to 65 mg/g and from 17 to 65 mg/g,respectively. The effect of pH on the adsorption of 2,6-dichlorophenol(2,6-DCP), was also studied. When p H is over the pK aof 2,6-dichlorophenol(2,6-DCP), its removal dropped sharply. When ionic strength increased(Na Cl or KCl concentration from 0 to 0.02 mmol/L),the adsorption capacity of 2,6-DCP on pristine SWCNTs decreased slightly. The comparison of chlorophenols adsorption by SWCNTs, MWCNTs and PAC was made, indicating that the adsorption rate of CNTs was much faster than that of PAC. The results provide useful information about the feasibility of SWCNTs as an adsorbent to remove chlorophenols from aqueous solutions. 相似文献
978.
We explored the feasibility and removal mechanism of removing 2-chlorobiphenyl(2-Cl BP)from soil–water system using granular activated carbon(GAC) impregnated with nanoscale zerovalent iron(reactive activated carbon or RAC).The RAC samples were successfully synthesized by the liquid precipitation method.The mesoporous GAC based RAC with low iron content(1.32%) exhibited higher 2-Cl BP removal efficiency(54.6%) in the water phase.The result of Langmuir–Hinshelwood kinetic model implied that the different molecular structures between 2-Cl BP and trichloroethylene(TCE) resulted in more difference in dechlorination reaction rates on RAC than adsorption capacities.Compared to removing2-Cl BP in the water phase,RAC removed the 2-Cl BP more slowly in the soil phase due to the significant external mass transfer resistance.However,in the soil phase,a better removal capacity of RAC was observed than its base GAC because the chemical dechlorination played a more important role in total removal process for 2-Cl BP.This important result verified the effectiveness of RAC for removing 2-Cl BP in the soil phase.Although reducing the total RAC removal rate of 2-Cl BP,soil organic matter(SOM),especially the soft carbon,also served as an electron transfer medium to promote the dechlorination of 2-Cl BP in the long term. 相似文献
979.
980.