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1.
通过两步溶剂热法成功制备了UiO-66/BiVO4复合光催化材料,考察其对四环素(TC)的光催化降解性能.在模拟可见光下,当锆(Zr):铋(Bi)物质的量投料比为2:1时,对TC的光解效果最好(85.8%).对TC的总去除率分别比纯UiO-66和纯BiVO4提高27.1%和23.5%,降解速率是纯BiVO4的47.9倍.通过X射线衍射仪(XRD)、扫描电子显微镜(SEM)、X射线光电子能谱(XPS)、紫外可见漫反射(UV-vis DRS)等对所制备的纳米光催化剂进行结构、形貌、组成及光电性能表征分析.结果表明:UiO-66与BiVO4紧密结合形成Ⅱ型异质结,复合材料性能的提升归因于比表面积的和光生载流子分离率的提升及孔隙结构的改善.  相似文献   

2.
许恒韬  付小航  丰卫华  王挺 《环境科学》2023,44(6):3260-3269
为了探明海水体系中多相光催化降解污染物的机制和路径,研究了在可见光激发下不同介孔TiO2光催化降解纯水和模拟海水中四环素(TC)的过程,明确了不同盐离子对光催化降解过程的影响.结合自由基捕获实验,电子自旋共振(ESR)光谱和中间产物分析研究了光降解污染物的主要活性物种和模拟海水中TC降解途径.结果表明,模拟海水中TC光催化过程会受到显著抑制,手性介孔TiO2催化剂对TC光降解反应速率相比其在纯水体系降低了70%左右,而非手性TiO2光催化剂在海水体系中几乎不能降解TC.模拟海水中阴离子对光降解过程影响较小,但Mg2+和Ca2+存在会显著抑制光催化过程.无论在纯水还是模拟海水中,可见光激发后催化剂产生的活性物种都是空穴为主,因此模拟海水中降解路径与纯水体系中相同.盐离子不会抑制活性物种的产生,但Mg2+和Ca2+会富集在TC分子中电负性强的原子周边,阻碍空穴等对TC分子中电负性强原子的攻击,从而抑制了光催化降解效率.  相似文献   

3.
为了获得适用于海水中有机污染物光降解催化剂,分别选用纳米SiO_2粒子和氧化石墨烯GO为载体,利用吸附相反应技术并结合热处理过程制备了基于TiO_2的复合催化剂,研究了弱光(光强小于1mW·cm~(-3))激发下复合催化剂光催化降解模拟海水中苯酚.结果表明,吸附相反应技术结合焙烧得到的La~(3+)掺杂TiO_2-SiO_2,表面亲水性较强和对苯酚吸附能力较弱,难以克服盐离子的干扰并有效降解模拟海水中高浓度苯酚.而吸附相反应技术结合醇溶剂热还原处理后,La~(3+)掺杂TiO_2-SiO_2催化剂表面亲水性显著减弱,但该催化剂在模拟海水中不能形成稳定的悬浮体系.吸附相反应技术得到的TiO_2-GO和La~(3+)掺杂TiO_2-GO中,TiO_2粒子粒径小于10nm且均匀负载于GO的表面.醇溶剂热还原处理可使TiO_2形成晶型结构,从而提高其催化活性,同时还能将GO表面的含氧基团还原,降低催化剂表面亲水性.从而提升催化剂对苯酚的吸附能力和对盐离子的抗干扰能力.另外,还原GO与小粒径TiO_2粒子紧密结合,使光生电子能很快转移至还原GO表面,增大光生电荷分离率,进一步提升催化剂的光降解性能.  相似文献   

4.
TiO2 and montmorillonite composite photocatalysts were prepared and applied in degrading γ-hexachlorocyclohexane (γ-HCH) in soils. After being spiked with γ-HCH, soil samples loaded with the composite photocatalysts were exposed to UV-light irradiation. The results indicated that the photocatalytic activities of the composite photocatalysts varied with the content of TiO2 in the order of 10%〈70%〈50% 〈30%, Moreover, the photocatalytic activity of the composite photocatalysts with TiO2 content 30% was higher than that of the pure P25 with the same mass of TiO2. The strong adsorption capacity of the composite photocatalysts and quantum size effect may contribute to its increased photocatalytic activities. In addition, effect of dosage of composite photocatalysts and soil pH on γ-HCH photodegradation was investigated. Pentachlorocyclohexene, trichlorocyclohexene, and dichlorobenzene were detected as photodegradation intermediates, which were gradually degraded with the photodegradation evolution.  相似文献   

5.
A series of graphene–TiO2photocatalysts was synthesized by doping TiO2 with graphene oxide via hydrothermal treatment. The photocatalytic capability of the catalysts under ultraviolet irradiation was evaluated in terms of sodium pentachlorophenol(PCP-Na) decomposition and mineralization. The structural and physicochemical properties of these nanocomposites were characterized by X-ray diffraction, N2adsorption–desorption, transmission electron microscopy, scanning electron microscopy, Ultraviolet–visible diffuse reflectance spectroscopy, X-ray photoelectron spectroscopy, electron paramagnetic resonance spectra, and Fourier-transform infrared spectroscopy. The graphene–TiO2nanocomposites exhibited higher photocatalytic efficiency than commercial P25 for the degradation of PCP-Na, and 63.4% to 82.9% of the total organic carbon was fully mineralized. The improved photocatalytic activity may be attributed to the accelerated interfacial electron-transfer process and the significantly prolonged lifetime of electron-hole pairs imparted by graphene sheets in the nanocomposites. However,excessive graphene and the inhomogeneous aggregation of TiO2 nanoparticles may decrease photodegradation efficiency.  相似文献   

6.
TiO2 and montmorillonite composite photocatalysts were prepared and applied in degrading γ-hexachlorocyclohexane(γ-HCH)in soils.After being spiked with γ-HCH,soil samples loaded with the composite photocatalysts were exposed to UV-light irradiation.The results indicated that the photocatalytic activities of the composite photocatalysts varied with the content of TiO2 in the order of 10%<70%<50%<30%.Moreover,the photocatalytic activity of the composite photocatalysts with TiO2 content 30% was higher than that of the pure P25 with the same mass of TiO2.The strong adsorption capacity of the composite photocatalysts and quantum size effect may contribute to its increased photocatalytic activities.In addition,effect of dosage of composite photocatalysts and soil pH on γ-HCH photodegradation was investigated. Pentachlorocyclohexene,trichlorocyclohexene,and dichlorobenzene were detected as photodegradation intermediates,which were gradually degraded with tlle phOtOdegradation evolution.  相似文献   

7.
Visible-light-driven photocatalysis as a green technology has attracted a lot of attention due to its potential applications in environmental remediation. Vesicle Cd Se nano-semiconductor photocatalyst are successfully prepared by a gas template method and characterized by a variety of methods. The vesicle Cd Se nano-semiconductors display enhanced photocatalytic performance for the degradation of tetracycline hydrochloride, the photodegradation rate of78.824% was achieved by vesicle Cd Se, which exhibited an increase of 31.779% compared to granular Cd Se. Such an exceptional photocatalytic capability can be attributed to the unique structure of the vesicle Cd Se nano-semiconductor with enhanced light absorption ability and excellent carrier transport capability. Meanwhile, the large surface area of the vesicle Cd Se nano-semiconductor can increase the contact probability between catalyst and target and provide more surface-active centers. The photocatalytic mechanisms are analyzed by active species quenching. It indicates that h+and UO_2~-are the main active species which play a major role in catalyzing environmental toxic pollutants. Simultaneously, the vesicle Cd Se nano-semiconductor had high efficiency and stability.  相似文献   

8.
Pathogenic viruses in drinking water are great threats to public health. Visible-light-driven photocatalysis is a promising technology for virus inactivation. However, the existing photocatalytic antiviral research studies have mostly been carried out in single-component systems, neglecting the effect of natural organic matter, which exists widely in actual water bodies. In this paper, electrospun Cu-TiO2 nanofibers were prepared as photocatalysts, and their photocatalytic antiviral performance in the presence of humic acid (HA) was comprehensively studied for the first time. The properties of the reaction mixture were measured during the reaction. In addition, the safety, reliability and stability of photocatalytic disinfection in the mixed system were evaluated. The results showed that the virus removal efficiency decreased with the increase of the HA concentration. The type of reaction solution, such as PBS buffer solution or water, did not affect the removal efficiency noticeably. Under acidic conditions, the electrostatic forces between photocatalysts and viruses were strengthened, leading to higher virus removal efficiency. As the reaction time went on, the pH value in the solution increased first and then tended to be stable, the conductivity remained stable, and the dissolved oxygen increased first and then decreased. The safety test showed that the concentration of Cu ions released into the solution was lower than specified by the international standards. No photoreactivation was observed, and the addition of HA significantly reduced the reutilization efficiency of the photocatalysts.  相似文献   

9.
传统的光催化降解机制认为是光激发产生的氧化活性物质优先对吸附在催化剂表面的污染物分子进行降解,因此,弱吸附性有机物难以接触到光催化剂并发生降解.为探究提升弱吸附有机物光催化降解的机理,本文构建了一个高暴露{001}晶面TiO_2({001}-TiO_2)降解弱吸附间苯二酚(RE)的光催化体系.实验结果表明,所制备的{001}-TiO_2具有强亲水性,并能提供大量的F~-吸附位点.RE在{001}-TiO_2表面的吸附能力很弱,并且光催化降解效果很差.F~-的加入可使RE的光催化降解速率提升近3倍.通过自由基猝灭实验发现,RE的降解主要取决于溶液中游离羟基自由基(·OH)的作用,由于F~-能与{001}-TiO_2亲水表面的羟基及·OH形成强烈的竞争吸附,从而使·OH游离到溶液中氧化降解RE.EPR测试进一步证实了F~-不仅可以促使TiO_2产生更多的游离·OH,同时也能激发产生更多超氧自由基(·O~-_2),推测·O~-_2主要由有效分离的光生电子与O_2或·OH反应生成.综上,本研究明确了游离·OH对弱吸附RE的光催化降解效率起决定作用,F~-促使游离自由基产生的机制可为弱吸附有机污染物的降解提供新思路.  相似文献   

10.
采用溶胶凝胶法制备不同掺硼量的针铁矿和赤铁矿催化剂,并用X射线衍射图谱(XRD)、比表面积(BET法)、紫外可见漫反射光谱(DRS)及电荷零点(盐滴定法)对催化剂进行表征.结果表明:硼掺杂能改变催化剂的晶体结构,增大其比表面积和Lewis表面酸度,并能提高催化剂的紫外-可见光活性.在紫外光下,掺硼质量分数2%的赤铁矿对...  相似文献   

11.
Homogeneous and vertically aligned silicon nanowires (SiNWs) were successfully fabricated using silver assisted chemical etching technique. The prepared samples were characterized using scanning electron microscopy, transmission electron microscopy and atomic force microscopy. Photocatalytic degradation properties of graphene oxide (GO) modified SiNWs have been investigated. We found that the SiNWs morphology depends on etching time and etchant composition. The SiNWs length could be tuned from 1 to 42 µm, respectively when varying the etching time from 5 to 30 min. The etchant concentration was found to accelerate the etching process; doubling the concentrations increases the length of the SiNWs by a factor of two for fixed etching time. Changes in bundle morphology were also studied as function of etching parameters. The SiNWs diameter was found to be independent of etching time or etchant composition while the size of the SiNWs bundle increases with increasing etching time and etchant concentration. The addition of GO was found to improve significantly the photocatalytic activity of SiNWs. A strong correlation between etching parameters and photocatalysis efficiency has been observed, mainly for SiNWs prepared at optimum etching time and etchant concentrations of 10 min and 4:1:8. A degradation of 92% was obtained which further improved to 96% by addition of hydrogen peroxide. Only degradation efficiency of 16% and 31% has been observed for bare Si and GO/bare Si samples respectively. The obtained results demonstrate that the developed SiNWs/GO composite exhibits excellent photocatalytic performance and could be used as potential platform for the degradation of organic pollutants.  相似文献   

12.
Ag掺杂改性TiO_2催化降解水体中的邻苯二甲酸二甲酯   总被引:1,自引:0,他引:1  
邻苯二甲酸酯是环境中普遍存在的有机污染物(内分泌干扰物)之一。通过湿式机械混合法制备Ag掺杂改性TiO2催化剂。光催化降解实验的结果表明Ag掺杂浓度为1×10-4mol/g,焙烧温度为400℃下所得的催化剂活性较好。对降解体系的研究表明,当催化剂的投加量为0.1~0.3 g/L、pH=5~8时降解效率较高(62.0%)。相对于催化剂的降解过程而言,其吸附作用是比较小的,而是以光催化反应为主。并利用荧光光谱对催化剂的性能进行了初步表征。  相似文献   

13.
为了将光催化技术应用于有机物污染海水的治理,本文首先利用水热还原得到了具有可见光响应的还原商用P25光催化剂,而后将还原后的P25作为活性组分负载在透明的有机玻璃空心微球表面,制成漂浮式微球光催化剂.还原后的P25的表征结果表明,水热条件下金属还原作用会将P25中少量Ti~(4+)还原成Ti~(3+),同时催化剂表面还形成了无序化-内部结晶的核壳结构.这两种结构变化都会显著拓展还原P25催化剂的可见光响应.含苯酚模拟污染海水的光降解实验发现,降解低浓度苯酚时,漂浮型微球光催化剂显示了优异的降解效率,降解5 h的去除率达到了95%以上.由于还原P25光催化剂的稳定性并且漂浮式微球光催化剂能简易回收,在多次重复实验中微球光催化剂都可以保持较高的催化活性.  相似文献   

14.
施周  张茜  张伟  徐舜开  张骅 《环境科学》2012,33(11):3840-3846
在微波辐照干化的条件下用溶胶-凝胶法制备了MWNTs/TiO2复合光催化剂.对该复合材料的表征表明:随着微波功率逐渐增大至400 W,MWNTs/TiO2复合材料管径逐渐变小,且在400 W时制备的MWNTs/TiO2复合材料分散性较好.进一步增大微波功率导致复合材料的管径增大,分散性降低.研究了不同微波辐照条件下制备的MWNTs/TiO2复合光催化剂对1,2,3-三氯苯的光催化降解效果,结果表明,该复合光催化剂对1,2,3-三氯苯的光降解遵循一级反应动力学;在微波功率为400 W、辐照时间为5 min情况下制备的复合光催化剂对1,2,3-三氯苯的降解速率最快,其反应常数为0.023 7 min^-1,该值比非微波加热干化的同样复合材料的反应速率常数值提高了52%.  相似文献   

15.
制备方法对纳米TiO2光催化活性的影响   总被引:2,自引:1,他引:1  
分别用化学沉淀法、溶胶-凝胶法和微乳液法制备了纳米级TiO2粉体。用XRD、TEM、TG-DTA对其进行了研究与表征,以次甲基兰溶液的光催化降解为模型反应,考察了制备方法对粉体的晶型、形貌、粒径及其光催化活性的影响。结果表明:从工业化生产目的出发,在相近实验条件下,化学沉淀法制备的TiO2粉体颗粒均匀、粒径小、光催化能力强,产品综合性能最好。此项研究在光催化剂应用领域具有一定的理论和实际意义。  相似文献   

16.
通过水热法制备了暴露(001)晶面的Bi2WO6纳米片,利用光还原法将Pt纳米颗粒负载于其表面.选择苯甲醇氧化和罗丹明B(RhB)降解为探针反应,评价了催化剂的光催化性能.在苯甲醇氧化实验中,Pt负载暴露001晶面的Bi2WO6样品的苯甲醇转化率为20.7%,约为未负载样品的2倍.在RhB降解实验中,Pt负载样品在光照40min后对RhB的矿化率可达81.1%,而未负载样品RhB矿化率仅为55.8%,表明Pt负载样品具有更优的降解速率和矿化能力.催化剂性能的提升归因于高能晶面暴露和Pt负载的协同作用.Pt纳米颗粒的负载作为助催化剂增加了催化剂表面的活性位点,同时提高了晶面光生电子空穴对的分离和迁移效率.  相似文献   

17.
通过水热法制备了暴露(001)晶面的Bi2WO6纳米片,利用光还原法将Pt纳米颗粒负载于其表面.选择苯甲醇氧化和罗丹明B(RhB)降解为探针反应,评价了催化剂的光催化性能.在苯甲醇氧化实验中,Pt负载暴露001晶面的Bi2WO6样品的苯甲醇转化率为20.7%,约为未负载样品的2倍.在RhB降解实验中,Pt负载样品在光照40min后对RhB的矿化率可达81.1%,而未负载样品RhB矿化率仅为55.8%,表明Pt负载样品具有更优的降解速率和矿化能力.催化剂性能的提升归因于高能晶面暴露和Pt负载的协同作用.Pt纳米颗粒的负载作为助催化剂增加了催化剂表面的活性位点,同时提高了晶面光生电子空穴对的分离和迁移效率.  相似文献   

18.
沈楠  李川  贾青竹  王昶 《环境工程》2015,33(1):154-158
为了考察煅烧温度对TiO2结构和光催化活性的影响,以酞酸丁酯作为前驱体,利用溶胶-凝胶法在不同煅烧温度下制备TiO2,并用亚甲基蓝测试其光催化活性。TG热重分析表明,450~700℃时TiO2有晶型变化,XRD表征说明,TiO2晶型受煅烧温度影响显著,其中450~600℃煅烧制备的TiO2为锐钛矿型,650℃煅烧时TiO2出现金红石晶型;亚甲基蓝光解实验结果表明,煅烧温度显著影响TiO2的光催化活性,其中,450~600℃煅烧TiO2对亚甲基蓝光解效果较好,光降解2.5h后降解率高达95%~97%;550℃煅烧制备的锐钛矿型TiO2对2-氯苯甲酸有一定光解催化效果,紫外光解4h后降解率高达80%左右,光解过程符合零级动力学模式。  相似文献   

19.
以膨胀珍珠岩为载体,采用溶胶-凝胶法制备硼、氮共掺杂漂浮型Ti O_2,采用XRD、BET、SEM、UV-vis DRS、XPS等分析手段进行材料表征并考察其对柴油的光降解性能.结果表明,B-N-Ti O_2/EP复合光催化剂表面有明显的Ti O_2覆层,晶型为锐钛矿型Ti O_2,Ti O_2负载有利于比表面积的提升.制得的B-N-Ti O_2/EP的可见光区响应高于N-Ti O_2/EP和Ti O_2/EP,该结果与3种材料的柴油光降解效果相一致.B-N-Ti O_2/EP对柴油的9h降解率将近50%,GC-MS分析表明,光降解过程中柴油各特征组分(C_9~C_(23))均得到不同程度降解,其中C_(11)以下的短链有机分子降解效果明显.  相似文献   

20.
为发展低耗和环境友好的有机物降解技术,采用光催化还原制备微米级碳化硅(SiC)/石墨烯复合材料,XRD、FTIR、Raman光谱、XPS和SEM等手段表征其物相组成和形貌结构,并以罗丹明B(RhB)为模拟污染物,研究了复合材料在可见光照射下的光催化活性和稳定性;通过活性物种捕获实验初步探讨了RhB的光催化降解机制.结果表明,SiC与石墨烯复合延长了光生电子和光生空穴的寿命,提高了材料的光催化活性与稳定性.当SiC/石墨烯配比为1∶0. 8时,光照60 min时RhB的降解率可以达到92. 7%,降解过程符合一级反应动力学方程.光催化降解RhB过程中,主要活性物种的贡献依次为:光生空穴(h~+)超氧阴离子自由基(·O_2~-)光生电子(e~-)羟基自由基(·OH).  相似文献   

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