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气孔在葱莲不同器官分布的初步研究 被引量:3
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作者 姜兆玉 余君彤 +2 位作者 王永飞 谭建仪 容静妍 《华北农学报》 CSCD 北大核心 2010年第B12期140-143,共4页
以新鲜葱莲植株为材料,用光学显微镜对其花、花茎、鳞茎、叶、果实、种子和根等部位的表皮进行研究,对花瓣上表皮、花瓣下表皮、花茎的表皮、外果皮、叶近轴面和叶远轴面气孔指数、气孔密度和保卫细胞面积分别进行比较,并分别对花瓣和... 以新鲜葱莲植株为材料,用光学显微镜对其花、花茎、鳞茎、叶、果实、种子和根等部位的表皮进行研究,对花瓣上表皮、花瓣下表皮、花茎的表皮、外果皮、叶近轴面和叶远轴面气孔指数、气孔密度和保卫细胞面积分别进行比较,并分别对花瓣和叶的气孔密度与保卫细胞面积进行相关性分析。结果表明,只有根上未见到有气孔分布。除了在葱莲的叶和花茎等常规部位发现有气孔分布外,花瓣、雄蕊、雌蕊、子房、花梗、花茎、鳞片、果实和种子上均有气孔分布。气孔呈半月形,无副卫细胞。葱莲叶片近轴面的气孔指数和气孔密度显著大于远轴面(P<0.05)。花茎和叶上的气孔指数和气孔密度显著大于花瓣和果实(P<0.05)。外果皮的气孔指数和气孔密度最小。叶远轴面的保卫细胞面积最大(P<0.01),花瓣下表皮的保卫细胞面积最小(P<0.01)。花瓣的气孔密度和保卫细胞面积之间的相关性不显著(r=0.089,P>0.05),而叶片的气孔密度和保卫细胞面积呈极显著负相关(r=-0.535,P<0.01)。 展开更多
关键词 葱莲 气孔密度 气孔指数 保卫细胞面积
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漏电低短路能力强的3300V IGBT模块 被引量:2
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作者 高东岳 叶枫叶 +2 位作者 张大华 骆健 高晋文 《固体电子学研究与进展》 CAS 北大核心 2022年第2期81-85,98,共6页
为实现满足电网应用要求的短路能力强、反向偏置安全工作区大、工作结温高的3300 V高压绝缘栅场效应晶体管模块,提出了一种具有N型增强层的IGBT元胞结构,采用P型隔离区的元胞布局结构和台阶形场板的保护环结构的IGBT设计。基于203.2 mm(... 为实现满足电网应用要求的短路能力强、反向偏置安全工作区大、工作结温高的3300 V高压绝缘栅场效应晶体管模块,提出了一种具有N型增强层的IGBT元胞结构,采用P型隔离区的元胞布局结构和台阶形场板的保护环结构的IGBT设计。基于203.2 mm(8英寸)平面栅IGBT加工工艺,制作出的芯片封装成3300 V/1500 A的IGBT模块。模块常温下的饱和压降(VCEsat)为2.55 V,动态总损耗(Etot)为5236 mJ;高温150℃下的VCEsat为3.3 V,集电极和发射极间的漏电流(ICES)只有38 mA,Etot为7157 mJ。在常温时,当栅极和发射极电压(VGE)为18.5 V的条件下,模块通过了一类短路测试。在150℃下,模块通过了2.5倍额定电流的反向偏置关断测试。 展开更多
关键词 反向偏置安全工作区 元胞结构 保护环结构 短路测试 IGBT模块
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Interactive Effects of Elevated [CO<sub>2</sub>] and Soil Water Stress on Leaf Morphological and Anatomical Characteristic of Paper Birch Populations
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作者 Anjala Pyakurel Jian R. Wang 《American Journal of Plant Sciences》 2014年第5期691-703,共13页
The leaf morphological and stomatal characteristics of four paper birch (Betula papyrifera Marsh) populations, grown at four treatment conditions of carbon dioxide [CO2] and soil water levels were investigated to dete... The leaf morphological and stomatal characteristics of four paper birch (Betula papyrifera Marsh) populations, grown at four treatment conditions of carbon dioxide [CO2] and soil water levels were investigated to determine whether future increases in atmospheric [CO2] and water deficit affected the leaf characteristics. The populations from Cussion Lake, Little Oliver, Skimikin and Wayerton were grown for 12 weeks under ambient (360 ppm) and elevated (720 ppm) [CO2] at both high and low water levels. The populations significantly differed in leaf area and stomatal characteristics due to the interaction effects of [CO2], water levels and population differences. Most leaf morphological characteristics and stomatal density varied due to the effects of [CO2] and/or populations, but not due to the effect of water levels. Although elevated [CO2] alone barely affected stomatal area of the birch populations, simultaneous elevated [CO2] at both water levels had stimulated stomatal characteristics within and among the populations. Overall, elevated [CO2] reduced leaf area and increased stomatal density;and low water level resulted in smaller stomatal area, pore area and guard cell width. However, the populations responded differently to an increase in [CO2] and water levels. All populations showed plastic responses with respect to [CO2] and water levels either by decreasing stomatal area under low water level or by increasing stomatal density under elevated [CO2]. Hence, integration between and within leaf characteristics had helped paper birch populations maintain balance between [CO2] gain and water loss. 展开更多
关键词 Carbon Dioxide Levels Plasticity Leaf area STOMATAL area STOMATAL Density Pore area and guard cell Width
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