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荷兰瓦赫宁根大学的教学管理制度及启示 被引量:5
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作者 谭淑豪 周超纲 《高等农业教育》 2001年第3期88-90,共3页
关键词 荷兰瓦赫宁根大学 教学管理 教学体系 学时制度
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浅谈编辑继续教育培训——基于科技期刊编辑视角
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作者 潘薇 《黄冈师范学院学报》 2022年第6期182-186,共5页
编辑的继续教育培训是提高编辑素养和能力的重要途经。自2001年我国建立出版专业技术人员职业资格制度以来,经过近二十年的发展和规范化历程,出版行业逐步建立起严格的职业资格制度和明确的编辑继续教育培训制度。随着时代发展和科技的... 编辑的继续教育培训是提高编辑素养和能力的重要途经。自2001年我国建立出版专业技术人员职业资格制度以来,经过近二十年的发展和规范化历程,出版行业逐步建立起严格的职业资格制度和明确的编辑继续教育培训制度。随着时代发展和科技的进步,出版行业发生了巨大变化,对编辑的素质和能力提出了新的要求。然而继续教育培训市场不规范、培训内容针对性不强等问题的存在,严重制约了编辑继续教育培训的实施和编辑职业能力的提升。通过梳理出版专业技术人员职业资格制度与编辑继续教育规范化历程,总结调研分析文章,结合自身经历探讨编辑继续教育培训中存在的主要问题,从科技期刊编辑的视角提出对策和建议。 展开更多
关键词 编辑继续教育培训 培训内容 学时制度
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Auto-ignition of biomass synthesis gas in shock tube at elevated temperature and pressure 被引量:2
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作者 Linqi Ouyang Hua Li +2 位作者 Shuzhou Sun Xiaole Wang Xingcai Lu 《Science Bulletin》 SCIE EI CAS CSCD 2015年第22期1935-1946,共12页
Ignition delay times of multi-component biomass synthesis gas (bio-syngas) diluted in argon were measured in a shock tube at elevated pressure (5, 10and 15 bar, 1 bar = 105 Pa), wide temperature ranges (1,100-1,7... Ignition delay times of multi-component biomass synthesis gas (bio-syngas) diluted in argon were measured in a shock tube at elevated pressure (5, 10and 15 bar, 1 bar = 105 Pa), wide temperature ranges (1,100-1,700 K) and various equivalence ratios (0.5, 1.0, 2.0). Additionally, the effects of the variations of main constituents (H2:CO = 0.125-8) on ignition delays were investigated. The experimental results indicated that the ignition delay decreases as the pressure increases above certain temperature (around 1,200 K) and vice versa. The ignition delays were also found to rise as CO concentration increases, which is in good agreement with the literature. In addition, the ignition delays of bio-syngas were found increasing as the equivalence ratio rises. This behavior was primarily discussed in present work. Experimental results were also compared with numerical predictions of multiple chemical kinetic mechanisms and Li's mechanism was found having the best accuracy. The logarithmic ignition delays were found nonlinearly decrease with the H2 concentration under various conditions, and the effects of temperature, equivalence ratio and H2 concentration on the ignition delays are all remarkable. However, the effect of pressure is rela- tively smaller under current conditions. Sensitivity analysis and reaction pathway analysis of methane showed that R1 (H +O2= O -9 OH) is the most sensitive reaction promot- ing ignition and R13 (H +O2 (+M) = HO2 (+M)), R53(CH3+H (+M)= CH4 (+M)), R54 (CH4+H= CH3 + H2) as well as R56 (CH4 + OH = CH3 + H2O) are key reactions prohibiting ignition under current experimental conditions. Among them, R53 (CH3 + H (+M) = CH4 (+M)), R54 (CH4 + H = CH3 + H2) have the largest posi- tive sensitivities and the high contribution rate in rich mixture. The rate of production (ROP) of OH of R1 showed that OH ROP of R1 decreases sharply as the mixture turns rich. Therefore, the ignition delays become longer as the equiva- lence ratio increases. 展开更多
关键词 Shock tube Biomass synthesis gas Ignition delay time Sensitivity analysis Reactionpathway analysis
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