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广东省镇海湾红树林根域中氟喹诺酮类(FQs)抗生素残留特征 被引量:1
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作者 任珂君 孙勤寓 +2 位作者 刘玉 方旭婷 彭逸生 《中山大学学报(自然科学版)》 CAS CSCD 北大核心 2017年第2期102-111,共10页
对广东省江门市镇海湾红树林自然保护区两种优势红树植物——桐花树Aegiceras corniculatum、秋茄Kandelia candel的根域(根际土、非根际土)中氟喹诺酮类(Fluoroquinolones,FQs)抗生素展开分析。采用高效液相质谱联用法测定14个根域土... 对广东省江门市镇海湾红树林自然保护区两种优势红树植物——桐花树Aegiceras corniculatum、秋茄Kandelia candel的根域(根际土、非根际土)中氟喹诺酮类(Fluoroquinolones,FQs)抗生素展开分析。采用高效液相质谱联用法测定14个根域土样品、6个排污口沉积物和3个光滩沉积物样品中4种FQs—氧氟沙星(Ofloxacin,OFL)、诺氟沙星(Norfloxacin,NOR)、环丙沙星(Ciprofloxacin,CIP)、恩诺沙星(Enrofloxacin,ENR)的残留特征,并与根域土理化因子pH、有机质(Soil organicmatter,SOM)、阳离子交换量(Cationex changecapacity,CEC)、过氧化氢酶(Catalase,CAT)、蔗糖酶(Sucrase,SUC)、土壤有效态Cu、Zn、Fe进行典范对应分析(canonical correspondence analysis,CCA)。结果表明:桐花树、秋茄根际土中4种FQs质量分数均值分别为55.22、29.25μg·kg^(-1),非根际土中4种FQs均值分别为22.45、18.66μg·kg^(-1),两种红树根域中4种FQs含量桐花树>秋茄(P<0.05),4种FQs含量均为根际土>非根际土;对FQs残留影响程度的环境因子权重排序为:p H>Fe>SOM≥CEC>Zn>SUC≥CAT;研究结果对阐释红树林对有机污染物(包括抗生素)的吸收净化作用具有重要理论意义。 展开更多
关键词 红树林 根域 抗生素 氟喹诺酮类 环境因子 残留特征
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六种红树植物原位根系及根际土酚酸总量比较分析 被引量:2
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作者 刘玉 李艳萍 +2 位作者 黄雄飞 彭逸生 夏北成 《中山大学学报(自然科学版)》 CAS CSCD 北大核心 2014年第5期92-97,共6页
植物根系分泌物中酚酸类物质具有较强化感活性,但对红树植物相关研究很少,特别是对原位状况的研究。本研究采集广东湛江国家级自然保护区内六种建群红树植物的根系、根际土与非根际土样品,采用铁氰化钾与三氯化铁显色法进行酚酸总量的测... 植物根系分泌物中酚酸类物质具有较强化感活性,但对红树植物相关研究很少,特别是对原位状况的研究。本研究采集广东湛江国家级自然保护区内六种建群红树植物的根系、根际土与非根际土样品,采用铁氰化钾与三氯化铁显色法进行酚酸总量的测定,对结果进行比较:红海榄根系酚酸总量最高,平均值为8 837.28μg/g。木榄根际土与非根际土酚酸总量平均值最高,分别为13.20μg/g、20.12μg/g。在18个样品中,只有8个样品根际土酚酸总量高于非根际土。根际土中酚酸含量有可能因微生物分解或土壤吸附及降解的综合作用而低于非根际土中含量。红树植物根系酚酸百分释放量很低,红海榄仅为0.0504%。该领域的研究对厘清红树林生态机制尤其是根系微生态的作用机制具有重要意义。 展开更多
关键词 红树植物 酚酸 根系分泌物 根际土 非根际土 含量 原位
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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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