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增强UV-B辐射和NaCl复合胁迫下绿豆光合作用的气孔和非气孔限制 被引量:39
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作者 贺军民 佘小平 +1 位作者 刘成 赵文明 《植物生理与分子生物学学报》 CAS CSCD 2004年第1期53-58,共6页
研究了0.35 W/m2的UV-B辐射、0.4%NaCl及其复合胁迫下绿豆(Phaseolus radiatus L.)幼苗光合作用的气孔和非气孔限制。发现各胁迫处理下,幼苗净光合速率、气孔导度、光合能力、羧化效率和Rubisco含量均明显降低;细胞间隙CO2浓度在各胁迫... 研究了0.35 W/m2的UV-B辐射、0.4%NaCl及其复合胁迫下绿豆(Phaseolus radiatus L.)幼苗光合作用的气孔和非气孔限制。发现各胁迫处理下,幼苗净光合速率、气孔导度、光合能力、羧化效率和Rubisco含量均明显降低;细胞间隙CO2浓度在各胁迫处理前期低于对照,后期高于对照;气孔限制值除复合处理第5天外,其余均高于对照;复合处理下上述指标的变化程度均大于两胁迫因子单独处理。表明各胁迫下光合速率的降低既有气孔因素也有非气孔因素,但前期以气孔限制为主,后期以非气孔限制为主;Rubisco含量的降低是各胁迫下光合速率降低的非气孔因素。 展开更多
关键词 增强UV—B辐射 NACL胁迫 限制 非气 限制 Rubisco含量 绿豆幼苗
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PEM燃料电池膜电极中的水传输行为 被引量:5
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作者 叶东浩 詹明 潘牧 《湖南大学学报(自然科学版)》 EI CAS CSCD 北大核心 2016年第12期50-55,共6页
为避免电池“水淹”,PEM燃料电池发生电化学反应产生的多余水必须及时排出.基于阴极催化层(CL)与气体扩散层(GDL)之间极易发生的“水淹”特点,建立实验模型,分析阴极催化层产生的水穿透碳纸气体扩散层材料到达气体流道的路径与... 为避免电池“水淹”,PEM燃料电池发生电化学反应产生的多余水必须及时排出.基于阴极催化层(CL)与气体扩散层(GDL)之间极易发生的“水淹”特点,建立实验模型,分析阴极催化层产生的水穿透碳纸气体扩散层材料到达气体流道的路径与阻力.在纵向传输过程中,GDL中最大孔中的最小孔径是限制水渗透的主要阻力.只有IV 水头压力足够大时,水才能进入并且穿过这些限制孔径的孔到达GDL材料表面.对于碳纸GDL材料,水在这些孔中流动时所需压力(~1kPa)显著小于水初始穿透这些孔所需压力(~6kPa).增加微孔层(MPL)会明显增加液态水的穿透阻力,MPL层中不同Teflon含量对水渗透压力影响不大.对碳纸GDL材料设置引导孔能显著降低液态水的渗透压力,有助于提升燃料电池中的水管理能力. 展开更多
关键词 燃料电池 水传输 气体扩散层 限制孔 渗透压力
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Impacts of Salinity and Nitrogen on the Photosynthetic Rate and Growth of Sunflowers(Helianthus annuus L.) 被引量:10
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作者 ZENG Wen-Zhi XU Chi +3 位作者 WU Jing-Wei HUANG Jie-Sheng ZHAO Qiang WU Mou-Song 《Pedosphere》 SCIE CAS CSCD 2014年第5期635-644,共10页
Understanding the interactions between salinity and fertilizers is of significant importance for enhancing crop yield and fertilizeruse efficiency. In this study a complete block design experiment was performed in the... Understanding the interactions between salinity and fertilizers is of significant importance for enhancing crop yield and fertilizeruse efficiency. In this study a complete block design experiment was performed in the Hetao Irrigation District of Inner Mongolia,China, to evaluate the effects of interactions between soil salinity and nitrogen(N) application rate on sunflower photosynthesis and growth and to determine the optimum N application rate for sunflower growth in the district. Four levels of soil salinity expressed as electrical conductivity(0.33–0.60, 0.60–1.22, 1.2–2.44, and 2.44–3.95 dS m-1) and three application rates of N fertilization(90, 135,and 180 kg ha-1) were applied to 36 micro-plots. Soil salinity inhibited the photosynthetic rate, stomatal conductance, transpiration rate, plant height, leaf area, and aboveground dry matter of sunflowers. The intercellular CO2 concentration first decreased and then increased with increasing soil salinity in the seedling stage, and the instantaneous leaf water-use efficiency fluctuated with soil salinity. The stomatal and non-stomatal limitations of sunflowers alternated in the seedling stage; however, in the bud, blooming,and mature stages, the stomatal limitation was prevalent when the salinity level was lower than 2.44 dS m-1, whereas the nonstomatal limitation was predominant above the salinity level. The application of N fertilizer alleviated the adverse effects of salinity on sunflower photosynthesis and growth to some extent. During some key growth periods, such as the seedling and bud stages, a moderate N application rate(135 kg ha-1) resulted in the maximum photosynthetic rate and yielded the maximum dry matter. We suggest a moderate N application rate(135 kg ha-1) for the Hetao Irrigation District and other sunflower-growing areas with similar ecological conditions. 展开更多
关键词 non-stomatal limitation N-use efficiency optimum N application rate soil salinization stomatal limitation
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