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南亚热带四种不同演化程度禾本科植物夏季光能利用策略差异分析
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作者 张雅芳 王海玲 +2 位作者 朱师丹 张小燕 朱俊杰 《广西植物》 CAS CSCD 北大核心 2022年第3期440-449,共10页
为了探究甘蔗、地毯草、芦苇、佛肚竹这四种禾本科植物的光能利用策略,该文以大田或原生境植株为材料,于炎夏伏天最热时节活体监测其叶绿素荧光和光合气体交换特性,并分析其色素含量。结果表明:(1)C_(4)甘蔗和C_(4)地毯草具有高净光合速... 为了探究甘蔗、地毯草、芦苇、佛肚竹这四种禾本科植物的光能利用策略,该文以大田或原生境植株为材料,于炎夏伏天最热时节活体监测其叶绿素荧光和光合气体交换特性,并分析其色素含量。结果表明:(1)C_(4)甘蔗和C_(4)地毯草具有高净光合速率(P_(n)),是消耗利用光能的主要手段,并且高P_(n)和高水分利用效率(WUE)、高量子效率(Φ_(i))耦合在一起;(2)C_(3)芦苇也具有较高的P_(n)、WUE和Φi,其较高的类胡萝卜素与非光化学淬灭热耗散(NPQ)相结合消耗多余光能;(3)C_(3)佛肚竹P_(n)、WUE和Φ_(i)值均最低,但具有最大的叶黄素库容和较高的叶黄素循环转换效率(DPS),通过叶黄素循环和NPQ的偶联消耗多余光能。此外,四种植物光能利用策略也与其生活型有密切关联。该研究结果对甘蔗、地毯草和佛肚竹培育具有重要的现实参考价值,对芦苇生境生态修复和生态规划有科学指导价值。 展开更多
关键词 光合演化 光适应 禾本科植物 高温 南亚热带
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Photocatalytic H_2 evolution activity of CuO/ZrO_2 composite catalyst under simulated sunlight irradiation 被引量:2
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作者 阎建辉 姚茂海 +2 位作者 张丽 唐有根 杨海华 《Journal of Central South University》 SCIE EI CAS 2011年第1期56-62,共7页
Zirconia-supported CuO (CuO/ZrO2) composite photocatalysts were successfully synthesized via citric acid-assisted sol-gel technique. For comparison, CuO/ZrO2 materials were also prepared by solid state reaction and ... Zirconia-supported CuO (CuO/ZrO2) composite photocatalysts were successfully synthesized via citric acid-assisted sol-gel technique. For comparison, CuO/ZrO2 materials were also prepared by solid state reaction and co-precipitation method. The as-prepared powders were characterized by X-ray diffractometry (XRD), transmission electron microscopy (TEM), and thermogravimetric-differential thermal analysis (TG-DTA). The photocatalytic activity of CuO/ZrO2 catalyst was investigated based on the H2 evolution from oxalic acid solution under simulated sunlight irradiation. The effects of molar ratio of CuO to ZrO2, preparation method, phase change with the calcination temperature and the durability on the photocatalytic activity of the photocatalyst were investigated in detail. It is found that the optimal activity of photocatalytic H2 evolution (2.41 mmol.h i.g-~) can be obtained when CuO/ZrO2 composite photocatalyst is synthesized by sol-gel technique and the mole ratio of CuO to ZrO2 is 40%. The activity of copper oxide supported on monoclinic ZrO2 calcined at higher temperature is much higher than that on tetragonal ZrO2 calcined at lower temperature, and the best calcination temperature is 900 ℃. 展开更多
关键词 CuO/ZrO2 photocatalytic activity hydrogen evolution simulated sunlight
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