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1.
考察了用于降解来自嘧啶家族的一种核酸—胸腺嘧啶(C5H6N2O2)的高级氧化过程.结果发现,在光催化剂TiO2作用下,胸腺嘧啶的光降解进行得很快,且在紫外光照射和水溶液中时更为明显.研究了胸腺嘧啶在TiO2催化剂上的吸附、降解动力学、以及pH值对光催化降解胸腺嘧啶性能的影响.另外,考察了胸腺嘧啶降解产物的矿化;比较和讨论了在光催化过程中胸腺嘧啶的消失和矿化速率.同时还研究了氮的矿化,确立了中间产物的识别方法.最后,采用电子密度计算提出了在紫外光照射下TiO2催化剂上胸腺嘧啶降解的可能化学途径.  相似文献   

2.
以自制的TiO2为催化剂,在间歇式光催化反应装置中考察了水中甲基叔丁基醚的光催化降解反应.结果表明,水中MTBE在TiO2催化剂、氧气和紫外光照射的条件下能被光催化转化成无毒产物并最终被矿化.MTBE光催化降解过程中产生的主要中间产物有甲酸叔丁酯、叔丁醇和丙酮,尽管降解速率不同,它们也都能被光催化降解.通过对反应物、中间物及产物的追踪分析,认为MTBE的光催化降解首先是通过羟基化过程来进行,进而提出MTBE光催化降解的可能反应历程.  相似文献   

3.
采用静电纺丝技术与真空离子溅射相结合的方法制备了TiO2∶Au复合纳米纤维,并采用SEM和X射线电子能谱仪对其进行了表征.结果表明TiO2∶Au纳米纤维的表面形态能通过Au沉积时间得到很好的控制.同时在紫外光照射下采用乙醛体系考察了TiO2纳米纤维和TiO2∶Au复合纳米纤维催化剂降解乙醛性能,结果证明TiO2∶Au复合纳米纤维具有更好的催化效率,紫外光照射70min后乙醛被完全降解.  相似文献   

4.
采用静电纺丝技术与真空离子溅射相结合的方法制备了TiO2∶Au复合纳米纤维, 并采用SEM和X射线电子能谱仪对其进行了表征. 结果表明TiO2∶Au纳米纤维的表面形态能通过Au沉积时间得到很好的控制. 同时在紫外光照射下采用乙醛体系考察了TiO2纳米纤维和TiO2∶Au复合纳米纤维催化剂降解乙醛性能, 结果证明TiO2∶Au复合纳米纤维具有更好的催化效率, 紫外光照射70 min后乙醛被完全降解.  相似文献   

5.
采用固相反应法制备出BiNbO4,将其与TiO2耦合,得到TiO2/BiNbO4复合光催化剂。考察了催化剂在紫外光照射下催化降解气相苯的活性。结果表明,TiO2与BiNbO4耦合后催化活性明显提高,其中36%TiO2/BiNbO4紫外光照5 h对苯的降解率是P-25的3.7倍。紫外-可见漫反射谱(UV-Vis DRS)、XRD、XPS和低温氮吸附-脱附等表征结果表明TiO2与BiNbO4的能级匹配,二者之间存在能带协同效应。耦合后的TiO2/BiNbO4的光生电子和空穴能有效分离,从而提高了催化剂催化活性。  相似文献   

6.
TiO2/膨润土光催化降解有机污染物   总被引:9,自引:0,他引:9  
用溶胶-凝胶法制备了一系列TiO2/膨润土光催化剂(不同负载量和不同焙烧温度), 以罗丹明B(RhB)为模型化合物, 通过测定染料吸光度和体系化学需氧量(COD)变化, 来研究它们在紫外光照射下降解有机污染物的性能. 评价结果表明, 负载量为50%和焙烧温度为400 ℃的催化剂Ti400样品降解RhB活性较好, 虽然其矿化活性略小于P25(光照4 h P25的COD变化为99.7%, 400 ℃焙烧的TiO2/膨润土催化剂Ti400的COD变化为97.0%), 但是TiO2/膨润土催化剂更易于回收再利用. 用Ti400做催化剂降解RhB, 连续循环使用7次, 其催化活性基本不变. 用XRD、BET和紫外可见漫反射(UV-Vis DRS)等方法对这些催化剂进行了表征. 表征结果表明催化剂比表面积大有利于催化活性的提高.  相似文献   

7.
碳含量对C/TiO2复合材料光催化活性的影响   总被引:5,自引:0,他引:5  
 通过热解单层分散在TiO2表面的蔗糖制得了碳均匀覆盖的C/TiO2复合材料,并采用X射线衍射、紫外-可见漫反射吸收光谱和N2物理吸附等方法对复合材料进行了表征. 以亚甲基蓝和罗丹明B为模型化合物评价了C/TiO2复合材料在紫外和可见光照射下的光催化性能,考察了碳含量对催化活性的影响. 结果表明,光源不同,污染物不同,碳含量不同对催化活性的影响均不相同. 对于考察的三个碳含量的C/TiO2催化剂,在紫外光照射下,前驱体中蔗糖/氧化钛质量比为0.1时制得的C/TiO2光催化降解亚甲基蓝的活性最高,蔗糖/氧化钛质量比为0.2时制得的C/TiO2光催化降解罗丹明B的活性最高; 在可见光照射下,蔗糖/氧化钛质量比为0.05时制得的C/TiO2光催化降解亚甲基蓝和罗丹明B的活性都最高.  相似文献   

8.
基于微波水热法和微乳液法合成SnO2/TiO2纳米管复合光催化剂.通过X射线衍射(XRD)、配有能量色散X射线光谱仪(EDX)的透射电镜(TEM)和电化学手段对光催化剂进行表征.以甲苯为模型污染物,考察光催化剂在紫外光(UV)和真空远紫外光(VUV)下的性能及失活再生.结果表明,SnO2/TiO2纳米管复合光催化剂形成三元异质结(锐钛矿相TiO2(A-TiO2)/金红石相TiO2(R-TiO2)、A-TiO2/SnO2和R-TiO2/SnO2异质结),促使光生电子-空穴对的有效分离,提高光催化活性.SnO2/TiO2表现出最佳的光催化性能,UV和VUV条件下的甲苯降解率均达100%,CO2生成速率(k2)均为P25的3倍左右.但由于UV光照矿化能力不足,中间产物易在催化剂表面累积.随着UV光照时间的增加,SnO2/TiO2逐渐失活,20 h后k2由138.5 mg·m-3·h-1下降到76.1 mg·m-3·h-1.利用VUV再生失活的SnO2/TiO2,过程中产生的·OH、O2-·、O(1D)、O(3P)、O3等活性物质可氧化吸附于催化剂活性位的难降解中间产物,使催化剂得以再生,12 h后k2恢复到143.6 mg·m-3·h-1.UV和VUV的协同效应使UV降解耦合VUV再生成为一种可持续的光催化降解污染物模式.  相似文献   

9.
掺氮二氧化钛可见光照射降解微囊藻毒素-LR   总被引:2,自引:0,他引:2  
采用溶胶凝胶法制备了N掺杂TiO2(N-TiO2)纳米粉体光催化剂,利用X射线光电子能谱(XPS)、X射线衍射(XRD)、紫外可见反射光谱及透射电镜(TEM)分析测定,对光催化剂N/TiO2进行了结构表征.发现N掺杂TiO2相对纯TiO2禁带宽度变窄,可见光区有明显吸收.在可见光照射下,利用纳米N/TiO2作为光催化剂降解微囊藻毒素(Microcystin-LR,MC-LR),通过高效液相色谱仪(HPLC)跟踪检测降解过程MC-LR浓度变化,液质联用仪(LC-MS)检测MC-LR降解中间产物变化.利用电子自旋共振法(ESR)及过氧化物酶催化氧化方法跟踪定性定量测定光催化过程中氧化物种的种类变化.采用总有机碳(TOC)测定仪测定了MC-LR光催化深度氧化矿化效果.结果表明,可见光(λ420nm)照射可有效激发光催化剂N-TiO2活化分子氧降解MC-LR,在反应条件下,光催化反应14h,MC-LR降解率达到100%,20h矿化率达到59%.其光催化反应体系中氧化物种主要为羟基自由基(·OH).质谱检测到13种降解产物,主要反应机理为光催化反应产生·OH进攻MC-LR结构四个易氧化部位,以及一些氨基酸之间的肽键的水解.  相似文献   

10.
中孔石墨碳负载TiO2复合材料光催化降解罗丹明B和苯酚   总被引:3,自引:0,他引:3  
以26nm单分散的SiO2球为模板,苯乙烯为碳源,Ni为催化剂,在950℃合成了比表面积为298.2m2/g的中孔石墨碳材料.采用粉末X射线衍射、低温N2吸附、热重分析和透射电镜等对碳材料进行了结构表征.结果发现,通过Ni的催化作用,可在较低温度下得到高度石墨化的中孔碳材料.采用溶胶-凝胶法将TiO2负载在中孔石墨碳材料上,形成TiO2/石墨碳复合材料.以罗丹明B和苯酚的光催化降解为探针反应,考察了TiO2/石墨碳复合材料的光催化降解活性.结果表明,在紫外光照射下,罗丹明B和苯酚在该复合材料上的光催化降解反应遵循一级反应动力学,复合材料对罗丹明B和苯酚的光催化降解活性明显高于相同条件下制备的纯锐钛矿型TiO2.  相似文献   

11.
The photocatalytic degradation of two commercial textile azo dyes, namely C.I Reactive Black 5 and C.I Reactive Red 239, has been studied. TiO(2) P25 Degussa was used as catalyst and photodegradation was carried out in aqueous solution under artificial irradiation with a 125 W mercury vapor lamp. The effects of the amount of TiO(2) used, UV-light irradiation time, pH of the solution under treatment, initial concentration of the azo dye and addition of different concentrations of hydrogen peroxide were investigated. The effect of the simultaneous photodegradation of the two azo dyes was also investigated and we observed that the degradation rates achieved in mono and bi-component systems were identical. The repeatability of photocatalytic activity of the photocatalyst was also tested. After five cycles of TiO(2) reuse the rate of colour lost was still 77% of the initial rate. The degradation was followed monitoring the change of azo dye concentration by UV-Vis spectroscopy. Results show that the use of an efficient photocatalyst and the adequate selection of optimal operational parameters may easily lead to a complete decolorization of the aqueous solutions of both azo dyes.  相似文献   

12.
A magnetized nano‐photocatalyst based on TiO2/magnetic graphene was developed for efficient photodegradation of crystal violet (CV). Scanning electron microscopy, X‐ray diffraction, energy‐dispersive X‐ray spectroscopy and elemental mapping were used to characterize the prepared magnetic nano‐photocatalyst. The photocatalytic activity of the synthesized magnetic nano‐photocatalyst was evaluated using the decomposition of CV as a model organic pollutant under UV light irradiation. The obtained results showed that TiO2/magnetic graphene exhibited much higher photocatalytic performance than bare TiO2. Incorporation of graphene enhanced the activity of the prepared magnetic nano‐photocatalyst. TiO2/magnetic graphene can be easily separated from an aqueous solution by applying an external magnetic field. Effects of pH, magnetized nano‐photocatalyst dosage, UV light irradiation time, H2O2 amount and initial concentration of dye on the photodegradation efficiency were evaluated and optimized. Efficient photodegradation (>98%) of the selected dye under optimized conditions using the synthesized nano‐photocatalyst under UV light irradiation was achieved in 25 min. The prepared magnetic nano‐photocatalyst can be used in a wide pH range (4–10) for degradation of CV. The effects of scavengers, namely methanol (OH? scavenger), p‐benzoquinone (O2?? scavenger) and disodium ethylenediaminetetraacetate (hole scavenger), on CV photodegradation were investigated.  相似文献   

13.
以汞灯为光源,TiO2为催化剂,对菲的光催化降解途径进行了研究.将水溶性极小的菲预先吸附到TiO2上之后,菲可以在紫外线的照射下发生快速、完全的矿化.通过GC-MS手段检测到一些中间产物,给出了菲光催化降解的详细途径.另外,研究了菲在表面活性剂十六烷基三甲基溴化铵(HTAB)的助溶下TiO2催化的光降解过程,探讨了表面活性剂的浓度和溶液pH值对反应速率的影响.  相似文献   

14.
The photocatalytic degradation of a genotoxic azo dye Acid Violet 7 (AV 7) using ZnO as a photocatalyst in aqueous solution has been investigated under UV irradiation. The degradation is higher with UV/ZnO process than with UV/TiO(2)-P25 process at pH 9. The effects of different parameters such as pH of the solution, amount of catalyst, initial dye concentration and the influence of cations, anions and oxidants on photodegradation of AV 7 were analyzed. Addition of oxidants except H(2)O(2) has no significant effect on degradation. The degradation of AV 7 follows pseudo-first order kinetics according to the Langmuir-Hinshelwood model. The degradation of AV 7 has also been confirmed by COD and CV measurements.  相似文献   

15.
中孔TUD负载的氧化铬掺杂氧化钛光催化降解苯酚   总被引:1,自引:0,他引:1  
中孔的TUD-1负载的氧化铬掺杂TiO2(Cr-TiO2)有望用于紫外光照射下光催化降解苯酚的催化剂.低角X射线衍射和红外结果证实该样品中TUD-1存在无定形和中孔硅酸盐框架. TUD-1的中孔结构进一步得到N2吸附-脱附的证实:为IV型等温线,并具有窄的孔径分布(3.9 nm)和高的比表面积(>490 m2/g).透射电镜结果表明,所制样品保持了纳米颗粒和多孔孔道结构. TUD-1中负载Cr-TiO2后使得带隙能量增加.与未负载的Cr-TiO2相比,所有TUD-1负载的Cr-TiO2光催化剂表现出更高的紫外光下降解苯酚的活性.其中Si/Ti摩尔比为30的Cr-TiO2/TUD-1样品的光催化活性最高(82%).苯酚的光催化降解遵循一级Langmuir吸附等温线.  相似文献   

16.
光催化甲胺磷降解效率和降解机理的研究   总被引:2,自引:0,他引:2  
本文以自制的纳米TiO2为光催化剂,研究了光催化条件(溶液pH值、催化剂浓度及甲胺磷浓度)对甲胺磷在水中降解率的影响。结果表明:通过优化催化条件,可以大大提高甲胺磷的降解率。在甲胺磷浓度为20 mg/L,反应液起始pH为10.00,催化剂用量为0.5 g/L,光照时间为3 h的条件下,甲胺磷的降解效率可达到71.8%。通过化学计算模拟了甲胺磷的分子构型,并结合离子色谱的检测结果初步探讨了甲胺磷光催化降解的反应机理。  相似文献   

17.
2-仲丁基-4,6-二硝基苯酚(DNBP)作为杀虫剂、除草剂和烯烃基芳香族化合物阻聚剂而被广泛地应用于工农业生产中.在 DNBP生产和使用过程中,会产生大量难以降解的有机废水,从而对人类和生态环境造成极大危害.因此,开展含 DNBP废水的处理技术和方法研究具有重要的现实意义. TiO2半导体材料由于具有良好的光化学特性和电化学行为,近几十年来一直是光催化领域的研究热点.在能量等于或大于 TiO2的带隙能级的辐照光照射下, TiO2可以产生光生电子/空穴对(e-/h+).光生电子和空穴分别与 TiO2表面被吸附的 H2O和 O2分子反应,生成具有强氧化性的活性羟基自由基(?OH),对硝基酚类有机污染物具有较强的降解能力. TiO2光催化反应属于非均相反应,反应在催化剂的表面进行,催化剂对污染物的吸附是影响其催化降解性能的重要因素.但是,传统 TiO2光催化剂存在比表面积小,对有机污染物吸附能力差,光生电子与空穴易于复合等缺陷,限制了 TiO2光催化技术的进一步发展和在水处理领域中的大规模应用.我们基于气凝胶具有多孔性、大比表面积和高孔隙率的特点,以富含硅、铝的工业废弃物粉煤灰为反应原料,首先利用碱熔法和常压干燥技术制备出 SiO2-Al2O3气凝胶.在此基础上,以钛酸四丁酯(TBOT)为反应前体, SiO2-Al2O3气凝胶为载体,利用酸催化溶胶-凝胶法(sol-gel)制备出 TiO2/SiO2-Al2O3气凝胶三元复合光催化剂.利用 X射线粉末衍射(XRD)、傅里叶变换红外光谱(FT-IR)、透射电子显微镜(TEM)、N2吸附-脱附(BET)、紫外-可见吸收光谱(UV-vis)等分析测试技术对所制备的 TiO2/SiO2-Al2O3气凝胶三元复合光催化剂结构进行了表征.结果显示,在 TiO2/SiO2-Al2O3气凝胶三元复合光催化剂中,粒径尺寸为10~30 nm的锐钛矿型 TiO2纳米颗粒均匀分散在 SiO2-Al2O3气凝胶载体上. TiO2/SiO2-Al2O3气凝胶三元复合光催化剂呈现典型介孔材料的 IV型等温线. SiO2-Al2O3气凝胶的加入极大提高了 TiO2光催化剂的比表面积和对有机污染物的吸附性能,但是对 TiO2光波吸收范围影响不大.在制备出 TiO2/SiO2-Al2O3气凝胶三元复合光催化剂基础上,进一步对其在可见光条件下的光催化性能进行了研究.以500 W的 Xe灯光源模拟自然太阳光, DNBP为探针污染物分子,系统考察了可见光照射条件下溶液 pH值、光催化剂用量、光反应时间、DNBP溶液初始浓度不同因素对 TiO2/SiO2-Al2O3气凝胶三元复合光催化剂催化活性的影响.结果表明, TiO2/SiO2-Al2O3气凝胶三元复合光催化剂对 DNBP有机污染物的吸附率和光降解率明显高于纯 TiO2样品.在 DNBP溶液初始浓度为0.167 mmol/L, pH =4.86,催化剂用量6 g/L,光照时间5 h的条件下, TiO2/SiO2-Al2O3气凝胶三元复合光催化剂对 DNBP的降解率几乎高达100%.根据 Langmuir-Hinshelwood方程,在低浓度下光催化降解反应符合一级反应动力学.所制备的 TiO2/SiO2-Al2O3气凝胶三元复合光催化剂具有良好的稳定性和重复利用性能.重复利用5次后, TiO2/SiO2-Al2O3气凝胶三元复合光催化剂对 DNBP的降解率仍高达90%以上.利用紫外-可见分光光度计、气相-质谱联用仪对 DNBP降解中间产物进行了分析,探讨了 DNBP的光催化降解机理.  相似文献   

18.
To elucidate the roles of graphene in photoelectric events and mass transfer during photocatalytic process is important for engineering graphene-semiconductor hybrid photocatalyst. Here, we demonstrated reduced graphene oxide (RGO) capturing dyes and photoinduced electrons during photocatalytic degradation of organic dyes in water. It captures dyes from water through adsorption and desorption irreversible hysteresis, and captures photoinduced electrons from semiconductor through surface junction. The RGO was attached to the surface of TiO(2) in the form of surface wrapping. After one-step photocatalytic reduction of graphene oxide (GO) and TiO(2) in ethanol-water solvent under UV irradiation, the RGO wrapped TiO(2) hybrid (graphene-w-TiO(2)) photocatalyst was obtained. Using visible absorption spectroscopy, we also demonstrated these captured dyes were degraded during photocatalysis. The photocatalytic test showed the RGO significantly improved the photocatalytic activity of this hybrid photocatalyst.  相似文献   

19.
The photocatalytic degradation of two reactive dyes has been investigated by UV/TiO2/H2O2 using an immobilized TiO2 photocatalytic reactor. Reactive Blue 8 (RB 8) and Reactive Blue 220 (RB 220) textile dyes were used as model compounds. Photocatalytic degradation processes were performed using a 5-L solution containing dyes. The initial concentrations of dyes were 50 mg/L. The radiation source was two 15 W UV-C lamps. A batch mode immersion photocatalytic reactor was utilized. UV-vis and ion chromatography (IC) analyses were employed to obtain the details of the photodegradation of the selected dyes. Colored synthetic waters were completely decolorized in relatively short time after UV irradiation in the presence of various concentrations of hydrogen peroxide. Formate, acetate, oxalate, and glyoxylate anions were detected as dominant aliphatic intermediates where they were further oxidized slowly to CO2. The UV/TiO2/H2O2 process was able to oxidize the dyes with partial mineralization of carbon, nitrogen, and sulfur heteroatoms into CO2, NO3-, and SO4(2-), respectively. Kinetics analysis indicates that the photocatalytic decolorization rates of the dye can be approximated by a pseudo-first-order model. The UV/TiO2/H2O2 process proved to be capable of decolorization and mineralization of the reactive dyes (RB 8 and RB 220).  相似文献   

20.
A series of nano-titania (TiO2) photocatalytic materials with a hollow fiber structure were successfully prepared using tetra-n-butyl titanate (Ti(OC4H9)4) as precursor and cotton fiber as the template. Scanning electron microscopy (SEM), X-ray diffraction (XRD), and N2 adsorption-desorption measurements were employed to characterize the morphology, crystal structure, and surface structure of the samples. The photocatalytic activities of the samples were studied by phenol photodegradation in water under UV irradiation. The effect of calcination temperature, photocatalyst dosage, initial concentration of phenol and irradiation time on the photodegradation of phenol was studied. Results showed that the TiO2 fiber materials have hollow structures, indicating that these materials had a large specific surface area. The fiber structure material showed better photocatalytic properties for the degradation of phenol than pure TiO2 under UV light, and the sample calcined at 500°C exhibited the highest phenol photodegradation efficiency. In addition, the possibility of cyclic usage of the photocatalyst was also confirmed, the photocatalytic activity of TiO2 fiber remained ca. 90% of photocatalytic activity of the fresh sample after being used four times. Moreover, TiO2 fiber was easily recovered by centrifugal separation from water.  相似文献   

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