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1.
以水溶性C60和TiO2粒子为前驱体,采用水热法制备了载有C60的锐钛矿型TiO2纳米粒子。应用X射线衍射、透射电子显微镜、红外光谱、紫外-可见漫反射光谱、荧光光谱对产物进行了表征。以对-硝基苯酚为模型污染物研究了产物的光催化活性,结果表明适量负载C60可以提高TiO2纳米粒子的光催化活性,C60起着传输电子、促进TiO2光生载流子分离的作用,且经7次循环使用后对-硝基苯酚的降解效率仍能达到74%。讨论了载有C60的TiO2纳米粒子光催化降解对-硝基苯酚的机理。  相似文献   

2.
以纳米TiO2作光催化剂,制备出环境友好的可光催化降解的纳米复合塑料是解决“白色污染”行之有效的方法之一。本文综述了近年来纳米TiO2固相光催化降解固体废弃塑料的研究进展,探讨了TiO2-聚合物复合膜的固相光催化反应机理及光催化降解情况,从对纳米TiO2表面改性以改善其在聚合物中的分散性,对纳米TiO2进行修饰处理以提高其对可见光的吸收,从而提高其光催化效率等方面探讨了可光降解塑料研究存在的问题及应用前景。  相似文献   

3.
为了解决TiO2纳米光催化剂易团聚、禁带宽度大的缺点,本文采用水热法制备了TiO2/电气石(3%)复合材料,研究了水热时间(2~10 h)和水热温度(120~200℃)对TiO2/电气石(3%)的光催化性能的影响。发现光催化降解罗丹明B的降解率由单独TiO2的60%提高到加入电气石后的99.4%。电气石具备自发极化电场效应,降低了TiO2的禁带宽度和光生电子和空穴的复合率。在水热温度160℃、水热时间4 h条件下制备的TiO2/电气石(3%)表现出最高的光催化降解罗丹明B的性能。说明TiO2与这种有自发极化的材料复合能够有效提高其光催化性能。  相似文献   

4.
以TiO2纳米管为模板,采用多组分自组装结合水热法制备Bi2WO6/TiO2纳米管异质结构复合材料。通过多种技术如X射线衍射(XRD),X射线光电子能谱(XPS),N2吸附-脱附,扫描电镜(SEM),高分辨透射电镜(HRTEM)和紫外可见漫反射吸收光谱(UV-Vis DRS)考察所制备样品的组成、结构、形貌、光吸收和电子性质。Bi2WO6纳米片或纳米粒子分布在TiO2纳米管上,形成异质结构。随后,通过在紫外、可见和微波辅助光催化模式下降解染料罗丹明B(RhB)来评价复合催化剂的光催化活性。与TiO2纳米管和Bi2WO6相比,Bi2WO6/TiO2-35纳米管在多模式下表现出更优异的光催化活性。与紫外和可见降解模式相比,Bi2WO6/TiO2-35纳米管在微波辅助光催化模式下对RhB的降解效率最高。这种增强的光催化活性源于适量Bi2WO6的引入、纳米管独特的形貌特征和降解模式所引起的增强的量子效率。降解过程中的活性物种被证明是h+,·OH和·O2-自由基。而且,在微波辅助光催化模式下,可产生更多的·OH和·O2-自由基。  相似文献   

5.
以TiO2纳米管为模板,采用多组分自组装结合水热法制备Bi2WO6/TiO2纳米管异质结构复合材料。通过多种技术如X射线衍射(XRD),X射线光电子能谱(XPS),N2吸附脱附,扫描电镜(SEM),高分辨透射电镜(HRTEM)和紫外可见漫反射吸收光谱(UV-Vis DRS)考察所制备样品的组成、结构、形貌、光吸收和电子性质。Bi2WO6纳米片或纳米粒子分布在TiO2纳米管上,形成异质结构。随后,通过在紫外、可见和微波辅助光催化模式下降解染料罗丹明B(RhB)来评价复合催化剂的光催化活性。与TiO2纳米管和Bi2WO6相比,Bi2WO6/TiO2-35纳米管在多模式下表现出更优异的光催化活性。与紫外和可见降解模式相比,Bi2WO6/TiO2-35纳米管在微波辅助光催化模式下对RhB的降解效率最高。这种增强的光催化活性源于适量Bi2WO6的引入、纳米管独特的形貌特征和降解模式所引起的增强的量子效率。降解过程中的活性物种被证明是h+,·OH和·O2-自由基。而且,在微波辅助光催化模式下,可产生更多的·OH和·O2-自由基。  相似文献   

6.
阳极氧化法制备TiO2纳米管及其光催化性能   总被引:1,自引:0,他引:1  
纳米TiO2对诸多环境污染物有显著的光催化降解作用,光催化已发展成为新型环境污染治理技术。本文采用阳极氧化法制备出TiO2纳米管,对比了四种电解液组成(A氟化铵+硫酸铵+水;B氟化铵+硫酸铵+乙酸+水;C氟化铵+硫酸铵+甘油+水;D氢氟酸+二甲基亚砜(DMOS)+乙醇)对催化剂表面形貌及光催化性能的影响。结果表明,电解液A和C都制备出了形貌清晰的TiO2纳米管,管径约为60~74 nm。样品经400 ℃煅烧,TiO2晶型主要为锐钛矿相;经500 ℃煅烧,出现少量金红石相;经700 ℃煅烧,晶型全部为金红石相。具有良好形貌的TiO2纳米管同时具有良好的紫外光吸收能力。当亚甲基蓝初始浓度为10 mg·L-1,经500 ℃煅烧的TiO2纳米管光催化活性最佳,光照30 min亚甲基蓝的降解率达89.98%。亚甲基蓝光催化降解反应符合一级反应动力学,反应速率常数为0.079 30。  相似文献   

7.
本工作采用改进的溶胶-凝胶法和浸渍法制备了TiO2掺杂稀土离子La3+的La/TiO2光催化剂,运用XRD、N2吸附脱附、紫外可见漫反射光谱(DRS)、表面光电压谱(SPS)等手段进行表征,同时利用原位红外技术考察了La/TiO2样品光催化降解乙烯、丙酮、苯的气-固相光催化氧化反应,对其光催化降解有机污染物的过程进行了研究。结果表明,TiO2经适量La3+掺杂后,锐钛矿晶型的含量增加,晶粒度减小,比表面积增大,禁带宽度增加,表面光电压信号增强,光生电子-空穴对有效分离;La/TiO2样品对乙烯、丙酮、苯的光催化性能与纯TiO2相比均有不同程度的改善,乙烯可以被光催化氧化完全矿化生成CO2,而丙酮被光催化氧化可能生成中间产物丙酸,苯被光催化氧化可能生成中间产物苯酚和苯醌。  相似文献   

8.
庄惠芳  赖跃坤  李静  孙岚  林昌健 《化学学报》2007,65(21):2363-2369
采用电化学阳极氧化法在钛表面构筑了一种结构有序、微米级的TiO2纳米管阵列膜层. 考察了制备电压、氧化时间、溶液搅拌等实验参数对TiO2纳米管阵列形貌和尺寸的影响. 应用SEM和XRD对膜层的形貌和晶型进行了分析和表征, 并通过TiO2纳米管阵列膜对甲基橙的光催化降解, 研究了TiO2纳米管阵列膜层结构与光催化活性的关系. 结果表明: 阳极电压和溶液搅拌对制备TiO2纳米管阵列的结构起到关键的作用. 控制20 V电压制备的TiO2纳米管阵列膜, 管长达2.6~3.3 μm, 经500 ℃热处理后具有最高的光催化活性, 其光催化性能明显优于一般的TiO2纳米颗粒膜.  相似文献   

9.
为了提升微污染水体中抗生素的降解效率,利用过硫酸钠(PDS)激活协同手性介孔TiO2可见光催化(PDS/vis-TiO2)对四环素(TC)进行降解。详细对比研究了以手性TiO2作为催化剂的PDS激活(PDS/TiO2)、可见光催化(vis-TiO2)和PDS/vis-TiO2三种体系中,降解污染物的活性物种和污染物降解路径等的差异。结果表明,不对称的螺旋堆积结构在手性介孔TiO2中引入了丰富的Ti3+,不仅提升了其可见光响应,同时能够激活PDS生成自由基。PDS/vis-TiO2体系中光生空穴h+和·OH等多种自由基可以同时参与TC的降解,5 h内其对TC去除率可达到95%以上,远超PDS/TiO2体系(TC去除率为48.9%)和vis-TiO2体系(TC去除率为71.1%)。PDS加入到光催化体系中,会受到光生电子的激活而产生自由基,从而消耗光生电子,提升光生空穴和电子的分离率,达到协同增强污染物的降解能力。另外PDS激活后产生自由基也会大大增加体系对TC的降解性能。密度泛函理论计算和中间产物分析结果表明,TC在PDS/vis-TiO2体系中的降解路径包含了光生空穴h+攻击TC的降解路径,同时也包括自由基攻击TC的降解路径。  相似文献   

10.
为了提升微污染水体中抗生素的降解效率,利用过硫酸钠(PDS)激活协同手性介孔TiO2可见光催化(PDS/vis-TiO2)对四环素(TC)进行降解。详细对比研究了以手性TiO2作为催化剂的PDS激活(PDS/TiO2)、可见光催化(vis-TiO2)和PDS/vis-TiO2三种体系中,降解污染物的活性物种和污染物降解路径等的差异。结果表明,不对称的螺旋堆积结构在手性介孔TiO2中引入了丰富的Ti3+,不仅提升了其可见光响应,同时能够激活PDS生成自由基。PDS/vis-TiO2体系中光生空穴h+和·OH等多种自由基可以同时参与TC的降解,5 h内其对TC去除率可达到95%以上,远超PDS/TiO2体系(TC去除率为48.9%)和vis-TiO2体系(TC去除率为71.1%)。PDS加入到光催化体系中,会受到光生电子的激活而产生自由基,从而消耗光生电子,提升光生空穴和电子的分离率,达到协同增强污染物的降解能力。另外PDS激活后产生自由基也会大大增加体系对TC的降解性能。密度泛函理论计算和中间产物分析结果表明,TC在PDS/vis-TiO2体系中的降解路径包含了光生空穴h+攻击TC的降解路径,同时也包括自由基攻击TC的降解路径。  相似文献   

11.
TiO_2/SBA-15的快速合成法及其催化性能   总被引:1,自引:0,他引:1  
本文针对传统方法合成TiO2/SBA-15的诸多不足,提出了一种简单而快速合成TiO2/SBA-15的方法。利用孔道内水解法快速合成了不同负载量的TiO2/SBA-15。利用XRD、N2-吸脱附、TEM和UV-Vis对样品的晶体结构、微观形貌、光学吸收特性进行了表征,并研究了不同TiO2负载量催化剂对罗丹明B(RhB)光降解活性的影响。结果表明:利用该方法合成的TiO2/SBA-15光催化活性优于传统浸渍方法合成的TiO2/SBA-15与工业上使用的TiO2纳米颗粒。  相似文献   

12.
TiO2 has received tremendous attention owing to its potential applications in the field of photocatalysis for solar fuel production and environmental remediation. This review mainly describes various modification strategies and potential applications of TiO2 in efficient photocatalysis. In past few years, various strategies have been developed to improve the photocatalytic performance of TiO2, including noble metal deposition, elemental doping, inorganic acids modification, heterojunctions with other semiconductors, dye sensitization and metal ion implantation. The enhanced photocatalytic activities of TiO2-based material for CO2 conversion, water splitting and pollutants degradation are highlighted in this review.  相似文献   

13.
徐艳  王晓辉  李靖  宋明  周俊 《化学通报》2016,79(10):914-920
等离子体技术在材料制备和改性方面的优势得到众多研究者的认可。Ti O2具有化学稳定性高、氧化活性强、生产成本低等优势,被广泛应用于太阳能电池和光催化领域。本文综述了近年来介质阻挡放电等离子体在强化制备Ti O2光催化材料方面的研究成果,包括等离子体辅助制备Ti O2光催化薄膜和Ti O2的等离子体法掺杂两个方面,并分析了其作用机理。从目前的研究成果来看,等离子体技术制得的Ti O2光催化材料具有更好的均匀性和催化活性,这主要得益于等离子体中的高能电子,一方面,Ti O2粒子吸附电子,彼此之间产生静电场的斥力作用,可以抑制颗粒的团聚,另一方面,电子的强还原能力,能够打断Ti-O键,形成氧空位,从而提高其催化性能。  相似文献   

14.
Semiconductor photocatalysis is a process that harnesses light energy in chemical conversions. In particular, its applications to environmental remediation have been intensively investigated. The characteristics of TiO2, the most popular photocatalyst, is briefly described and selected studies on the degradation/conversion of various recalcitrant pollutants using pure and modified TiO2 photocatalysts, which were carried out in this group, are reviewed. Photocatalytic reactions are multi-phasic and take place at interfaces of not only water/TiO2 and air/TiO2 but also solid/TiO2. Examples of photocatalytic reactions of various organic and inorganic substrates that are converted through the photocatalytic oxidation or reduction are introduced. TiO2 has been modified in various ways to improve its photocatalytic activity. Surface modifications of TiO2 that include surface platinization, surface fluorination, and surface charge alteration are discussed and their applications to pollutants degradation are also described in detail.  相似文献   

15.
Photocatalytic inactivation of algae, Anabaena, Microcystis and Melosira, was carried out with the TiO2-coated pyrex hollow glass beads under the illumination of UV-A light. After being irradiated with UV-A light in the presence of the TiO2-coated pyrex glass beads, Anabaena and Microcystis, known as typical cyanobacteria, lost their photosynthetic activity, and the string of Anabaena cells and the colonies of Microcystis cells were completely separated into individual spherical one. In the case of Melosira, which is a typical diatom, however, somewhat lower photocatalytic inactivation efficiency was obtained, which was believed to be due to the presence of the inorganic siliceous wall surrounding the cells of Melosira. The TiO2-coated hollow glass beads could successfully be employed for the practical application at the eutrophicated river under sunlight. More than 50% of the chlorophyll-a concentration could be reduced by the action of TiO2 photocatalysis.  相似文献   

16.
TiO2形态结构与光催化活性关系的研究   总被引:1,自引:0,他引:1  
本文介绍了TiO2多相光催化剂的作用机理及其结构特性对光催化活性的影响,并对TiO2的晶相组成、晶粒尺寸、比表面积、表面形态与光催化活性的关系作了综述。  相似文献   

17.
以硝酸银、钛酸四丁酯、无水氯化锌、六水氯化铁为原料,采用溶胶-凝胶法与溶剂热相结合的方法制备了ZnFe2O4/Ag/TiO2复合材料,通过扫描电子显微镜、能谱分析仪、X射线粉末衍射仪、X射线光电子能谱仪、振动样品磁强计、紫外可见分光光度计对样品进行表征及测试。结果表明: ZnFe2O4/Ag/TiO2-10具有最佳的光催化效果,在紫外和可见光下对染料的降解率都能达到90%以上,具有优异的紫外可见光光催化活性。ZnFe2O4/Ag/TiO2具有独特的磁性,能在外部磁场作用下进行回收利用,这使其在实际应用中成为可能。通过磁分离技术重复回收利用5次后仍然保持优良的光催化性能,说明ZnFe2O4/Ag/TiO2-10具有优异的磁性及较高的光催化循环稳定性。  相似文献   

18.
以硝酸银、钛酸四丁酯、无水氯化锌、六水氯化铁为原料,采用溶胶-凝胶法与溶剂热相结合的方法制备了ZnFe2O4/Ag/TiO2复合材料,通过扫描电子显微镜、能谱分析仪、X射线粉末衍射仪、X射线光电子能谱仪、振动样品磁强计、紫外可见分光光度计对样品进行表征及测试。结果表明:ZnFe2O4/Ag/TiO2-10具有最佳的光催化效果,在紫外和可见光下对染料的降解率都能达到90%以上,具有优异的紫外可见光光催化活性。ZnFe2O4/Ag/TiO2具有独特的磁性,能在外部磁场作用下进行回收利用,这使其在实际应用中成为可能。通过磁分离技术重复回收利用5次后仍然保持优良的光催化性能,说明ZnFe2O4/Ag/TiO2-10具有优异的磁性及较高的光催化循环稳定性。  相似文献   

19.
In view of the situation that environmental issues become more serious day by day, recent studies on practical applications of TiO2 photocatalysis for environmental purification are reviewed. Although the fundamental aspects and the mechanisms of TiO2 photocatalysis have recently become quite well understood, effective photocatalytic environmental purifier, especially water purifier, could not be developed to the stage of real industrial technology. The removal rate of gaseous or aqueous contaminants is influenced by numerous parameters; UV light intensity, substrate concentration, O2 partial pressure, humidity, substrate type, and so on. Moreover, TiO2 photocatalyst essentially has a difficulty in decomposition of large amount of contaminants or refractory chemicals. As the solutions of these problems, combination with other processes such as advanced oxidation processes and improvement of the design of photocatalytic environmental purification systems are described. During the past several years, the strategies for effective design of the system are well discussed and evaluated. The reactor design for air- or water-purification can be classified into two main strategies: (1) enlargement of reactive surface area and (2) improvement of mass transfer. Based on these insights, very recent achievements for development of photocatalytic environmental purification system with our contribution in each aspect and future research directions are reviewed.  相似文献   

20.
Semiconductor photocatalysis has the potential for achieving sustainable energy generation and degrading organic contaminants. In TiO2, the addition of carbonaceous nanomaterials has attracted extensive attention as a means to increase its photocatalytic activity. In this study, composites of TiO2 and carbon nanotubes (CNT) in various proportions were synthesized by the hydrothermal method. The crystalline structures, morphologies, and light absorption properties of the TiO2/CNT photocatalysts were characterized by PXRD, TEM and UV–Vis absorption spectra. The photocatalytic efficiency of the composites was evaluated by the degradation of Sudan (I) in UV–Vis light. Introducing 0.1–0.5 wt% CNT was shown to substantially improve the photoactivity of TiO2. The composite with 0.3 wt% CNT showed the best catalytic activity, and its reaction activation energy was calculated as 39.57 kJ mol?1 from experimental rates. The degradation products of Sudan (I) with different irradiation durations were characterized by Fourier transform infrared spectroscopy, and a degradation reaction process was proposed.  相似文献   

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