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海丰鸟类自然保护区大型底栖动物群落特征 被引量:11
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作者 彭逸生 孙红斌 +3 位作者 谢荣如 谢钊毅 钟志强 陈桂珠 《生态环境》 CSCD 北大核心 2008年第3期1163-1169,共7页
于2006年夏季在海丰鸟类自然保护区内进行了大型底栖动物群落的研究。通过9个样点的样方取样,分析了保护区内大型底栖动物群落的种类、物种多样性和生物量。主要研究结果如下:(1)保护区内共录得大型底栖动物6门10纲112种,其中热带、亚... 于2006年夏季在海丰鸟类自然保护区内进行了大型底栖动物群落的研究。通过9个样点的样方取样,分析了保护区内大型底栖动物群落的种类、物种多样性和生物量。主要研究结果如下:(1)保护区内共录得大型底栖动物6门10纲112种,其中热带、亚热带分布的种类62种,温带、广温种46种,外来种4种;淡水生物22种,非淡水生物90种。(2)各样点生物量(以鲜重表示)在1.31~346.05g?m-2范围内,栖息密度为16~1136ind.?m-2,不同生境之间的差异极显著。(3)生境多样化、人为干扰小的样点α多样性较高,生境单一、人为干扰强烈的样点α多样性则较低。(4)保护区内的大型底栖动物群落差异较大,这是由不同生境的盐度差异造成的。聚类分析把该区的大型底栖动物群落划分为淡水、河口、滨海3个生物群落,非度量多维标度排序更直观地显示了各个样点大型底栖动物群落距离和相似的情况,并支持聚类分析的结果。讨论了保护区内大型底栖动物群落水平分布的特点及产生差异的原因。 展开更多
关键词 海丰鸟类自然保护区 大型底栖动物群落 区系 生物多样性 生物量
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Bifunctional S-scheme g-C3N4/Bi/BiVO4 hybrid photocatalysts toward artificial carbon cycling 被引量:20
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作者 Quan Xie Wanmei He +3 位作者 Shengwei Liu Chuanhao Li Jinfeng Zhang Po Keung Wong 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第1期140-153,共14页
Although both the aerobic photocatalytic oxidation of organic pollutants into CO2 and the anaerobic photocatalytic reduction of CO2 into solar fuels have been intensively studied,few efforts have been devoted to combi... Although both the aerobic photocatalytic oxidation of organic pollutants into CO2 and the anaerobic photocatalytic reduction of CO2 into solar fuels have been intensively studied,few efforts have been devoted to combining these carbon-involved photocatalytic oxidation-reduction processes together,by which an artificial photocatalytic carbon cycling process can be established.The key challenge lies in the exploitation of efficient bifunctional photocatalysts,capable of triggering both aerobic oxidation and anaerobic reduction reactions.In this work,a bifunctional ternary g-C3N4/Bi/BiVO4 hybrid photocatalyst is successfully constructed,which not only demonstrates superior aerobic photocatalytic oxidation performance in degrading an organic pollutant(using the dye,Rhodamine B as a model),but also exhibits impressive photocatalytic CO2 reduction performance under anaerobic conditions.Moreover,a direct conversion of Rhodamine B to solar fuels in a one-pot anaerobic reactor can be achieved with the as-prepared ternary g-C3N4/Bi/BiVO4 hybrid photocatalyst.The excellent bifunctional photocatalytic performance of the g-C3N4/Bi/BiVO4 photocatalyst is associated with the formation of efficient S-scheme hybrid junctions,which contribute to promoting the appropriate charge dynamics,and sustaining favorable charge potentials.The formation of the S-scheme heterojunction is supported by scavenger studies and density functional theory calculations.Moreover,the in-situ formed plasmonic metallic Bi nanoparticles in the S-scheme hybrid g-C3N4/Bi/BiVO4 photocatalyst enhances vectorial interfacial electron transfer.This novel bifunctional S-scheme g-C3N4/Bi/BiVO4 hybrid photocatalyst system provides new insights for the further development of an integrated aerobic-anaerobic reaction system for photocatalytic carbon cycling. 展开更多
关键词 S-scheme Plasmonic Bi nanoparticles Photocatalytic CO2 reduction Photocatalytic degradation of organic pollutants Carbon cycling
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Effects of fluorine on photocatalysis 被引量:4
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作者 Xiaofang Li Xiaofeng Wu +3 位作者 Shengwei Liu Yuhan Li Jiajie Fan Kangle Lv 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第10期1451-1467,共17页
Tailoring the microstructure of pristine TiO2 is essential to narrow its band gap and prolong the charge lifetime. In particular, strategies involving fluorine have been used successfully to tune the surface chemistry... Tailoring the microstructure of pristine TiO2 is essential to narrow its band gap and prolong the charge lifetime. In particular, strategies involving fluorine have been used successfully to tune the surface chemistry, electronic structure, and morphology of TiO2 photocatalysts to improve their photocatalytic activity based on the strong complexation between fluoride ions and TiO2 and the high electronegativity of fluorine. In this review, we summarize the strategies involving fluorine to establish highly efficient TiO2 photocatalytic systems or fabricate highly efficient TiO2 photocatalysts. The main fluorine effects(i.e. the effects of fluorine on photocatalysis) include the following four aspects:(1) Surface effects of fluoride on TiO2 photocatalysis,(2) effects of fluorine doping on TiO2 photocatalysis,(3) fluoride-mediated tailoring of the morphology of TiO2 photocatalysts, and(4) the effects of fluorine on non-TiO2 photocatalysis. Additionally, the unique applications of these fluorine effects in photocatalysis, including selective degradation of pollutants, selective oxidation of chemicals, water-splitting to produce H2, reduction of CO2 to produce solar fuels, and improvement of the thermostability of TiO2 photocatalysts, are reviewed. 展开更多
关键词 TIO2 FLUORINE PHOTOCATALYSIS DOPING Surface modification
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