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两种营养状态下pH对轮叶黑藻(Hydrilla verticillata)生长和抗氧化酶活性的影响 被引量:15
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作者 张浏 陈灿 +2 位作者 高倩 王保忠 尹大强 《生态环境》 CSCD 北大核心 2007年第3期748-752,共5页
富营养化湖泊夏季藻类生长旺盛、光合作用强烈,湖水pH值普遍升高,因此相关生态因子变化对沉水植物生长影响的研究成为沉水植物组建和水生态恢复的基础。采用实验室模拟方法,研究了中营养(TN0.60mg·L-1;TP0.04mg·L-1)和富营养(... 富营养化湖泊夏季藻类生长旺盛、光合作用强烈,湖水pH值普遍升高,因此相关生态因子变化对沉水植物生长影响的研究成为沉水植物组建和水生态恢复的基础。采用实验室模拟方法,研究了中营养(TN0.60mg·L-1;TP0.04mg·L-1)和富营养(TN4.20mg·L-1;TP0.28mg·L-1)两种状态下不同pH(7,8,9,10)对轮叶黑藻(Hydrilla verticillata)生长、叶绿素含量、抗氧化酶和MDA含量的影响。研究发现,培养21d后,pH10时两种营养状态黑藻生长均受到明显抑制,富营养状态下抑制程度更加显著;pH7和pH8时富营养状态增加植物叶绿素含量,pH10时富营养状态叶绿素含量低于中营养状态。超氧化物岐化酶(SOD)和过氧化物酶(POD)在富营养状态下pH8时活性大幅上升,pH9时出现下降,而中营养状态下在pH9时活性才有所升高;过氧化氢酶(CAT)在两种营养状态下,pH9时活性均显著上升,pH10时在富营养状态下受到明显抑制;富营养状态下在pH7~9时,植物丙二醛(MDA)含量随着pH升高显著上升,并且均显著高于中营养状态,在pH9时与中营养状态差异达到最大。研究表明,pH对轮叶黑藻的影响与营养状态相关,当pH大于9时,两种营养状态下轮叶黑藻均受到一定胁迫,富营养状态下作用更加显著。 展开更多
关键词 轮叶黑藻 PH 富营养 生长 抗氧化系统
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Preparation of a p-n heterojunction BiFeO_3@TiO_2 photocatalyst with a core–shell structure for visible-light photocatalytic degradation 被引量:12
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作者 Yazi Liu Shanshan Ding +5 位作者 Jian Xu Huayang Zhang Shaogui Yang Xiaoguang Duan Hongqi Sun Shaobin Wang 《Chinese Journal of Catalysis》 EI CSCD 北大核心 2017年第6期1052-1062,共11页
Magnetically separable bismuth ferrite(BiFeO3)nanoparticles were fabricated by a citrate self‐combustion method and coated with titanium dioxide(TiO2)by hydrolysis of titanium butoxide(Ti(OBu)4)to form BiFeO3@TiO2cor... Magnetically separable bismuth ferrite(BiFeO3)nanoparticles were fabricated by a citrate self‐combustion method and coated with titanium dioxide(TiO2)by hydrolysis of titanium butoxide(Ti(OBu)4)to form BiFeO3@TiO2core-shell nanocomposites with different mass ratios of TiO2to BiFeO3.The photocatalytic performance of the catalysts was comprehensively investigated via photocatalytic oxidation of methyl violet(MV)under both ultraviolet and visible‐light irradiation.The BiFeO3@TiO2samples exhibited better photocatalytic performance than either BiFeO3or TiO2alone,and a BiFeO3@TiO2sample with a mass ratio of1:1and TiO2shell thickness of50-100nm showed the highest photo‐oxidation activity of the catalysts.The enhanced photocatalytic activity was ascribed to the formation of a p‐n junction of BiFeO3and TiO2with high charge separation efficiency as well as strong light absorption ability.Photoelectrochemical Mott-Schottky(MS)measurements revealed that both the charge carrier transportation and donor density of BiFeO3were markedly enhanced after introduction of TiO2.The mechanism of MV degradation is mainly attributed to hydroxyl radicals and photogenerated electrons based on energy band theory and the formation of an internal electrostatic field.In addition,the unique core-shell structure of BiFeO3@TiO2also promotes charge transfer at the BiFeO3/TiO2interface by increasing the contact area between BiFeO3and TiO2.Finally,the photocatalytic activity of BiFeO3@TiO2was further confirmed by degradation of other industrial dyes under visible‐light irradiation. 展开更多
关键词 Bismuth ferrite Titanium dioxide Core–shell structure Degradation Photocatalysis Visible light
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