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1.
HA(humic acids, 腐植酸)是一种难降解天然有机物,常规饮用水处理工艺很难将其去除. 采用水热合成法制备纳米管TiO2,并通过TEM(透射电镜)、XRD(X射线衍射)、XPS(X射线光电子能谱)和BET比表面积分析对催化剂进行表征,考察纳米管TiO2光催化臭氧化对HA的去除效果. 结果表明:①254 nm紫外光照射下,500 ℃煅烧纳米管TiO2催化臭氧化HA的工艺去除效果最佳,HA去除率可达42.1%,较单独臭氧化工艺提高92.2%. ②采用Fe3+掺杂纳米管TiO2催化臭氧化工艺时,Fe3+掺杂量为1.0%(原子百分含量),煅烧温度为550 ℃时,催化效果最好,HA去除率可达79.5%. ③HA去除率高于TOC,0~10min内该现象更为明显. ④考察陶粒和活性炭负载Fe3+掺杂纳米管TiO2的催化效果及催化次数对催化性能的影响发现,陶粒和活性炭负载Fe3+掺杂纳米管TiO2存在下,HA去除率分别为85.1%和97.7%,使用4次后,HA去除率分别为73.9%和82.8%.  相似文献   

2.
Mo-TiO2/AC光催化剂的制备及可见光降解L-酸的研究   总被引:3,自引:0,他引:3  
采用溶胶-凝胶法制备了Mo6 掺杂TiO2光催化剂,并将其负载于粒状活性炭上,以1-萘酚-5-磺酸(L-酸)为模型反应物,研究了对L-酸的光催化作用并讨论了不同光源以及负载次数对L-酸的去除率和溶液的总有机碳去除率的影响.结果表明,Mo6 掺杂扩大了TiO2催化剂的光谱响应范围.负载于活性炭上的掺杂二氧化钛为锐钛矿相,粒径约为17.8 nm.负载次数增多,催化剂的活性下降.Mo6 的掺杂不影响负载催化剂的紫外光活性及对L-酸的吸附能力.100 mg·L-1的L-酸溶液加0.4 g催化剂,在可见光下反应4 h,掺杂催化剂对L-酸和溶液总有机碳的去除率分别为57%和53%,而未掺杂的催化剂去除率分别为13%和10%.催化剂反复使用4次,催化活性没有变化.  相似文献   

3.
金属泡沫镍负载纳米TiO2光催化降解甲醛和VOCs   总被引:2,自引:1,他引:1  
采用溶胶-凝胶法制备了3种掺杂金属离子的纳米TiO2光催化剂,并将其负载于泡沫镍板上,以室内空气典型污染物甲醛和VOCs为模型反应物,研究了对甲醛和VOCs气体的光催化作用并讨论了La3+的最佳掺杂比例以及环境因素对光催化效率的影响.结果表明:该TiO2催化剂具有良好的锐钛矿型结构;负载掺La 1.5%TiO2的泡沫镍板90min对甲醛和VOCs的降解率分别为94%和87%,远高于未掺:83%和72%,掺Fe  相似文献   

4.
溴代甲烷在SO42-/TiO2上的光催化降解   总被引:24,自引:0,他引:24  
采用溶胶-凝胶法制备了SO42-/TiO2催化剂,运用XRD、BET比表面测定,FTIR等技术对催化剂进行了表征,并在微型常压连续反应装置上进行CH3Br光催化反应性能考察.结果表明,SO42-引入TiO2体系使得催化剂的结构和光催化性能得到显著改善.SO42-负载量为9%,烧结温度为450℃时,SO42-/TiO2催化剂的光催化活性最高;SO42-/TiO2催化剂对反应物料中的水汽有很好的耐受性;当反应温度低于85℃时,提高反应温度,有利于改善对CH3Br的光催化反应活性,表观活化能约为19.6kJ·mol-1,反应温度在85℃~105℃区间时,CH3Br的光催化降解表观活化能为0.  相似文献   

5.
以高暴露{001}晶面的TiO2纳米片为载体,利用共还原法负载0.5%的Pt和一定量的Cu得到Pt-Cu/TiO2{001}催化剂,并在P=3.0 MPa,T=200~300℃,V(N2):V(H2):V(CO2)=8:69:23,空速(WHSV)=3600 mL·g-1·h-1反应条件下评价了催化剂催化CO2加氢制甲醇的反应性能.XRD、XPS、EPR和CO2-TPD等的表征表明,与催化剂Cu/TiO2相比,引入Pt后,催化剂由于金属Pt的电子促进作用使负载的金属与载体之间的相互作用更强,进而有利于稳定Cu颗粒尺寸且载体形成了更多缺陷(如氧空位、Ti3+).因此,Pt-Cu/TiO2{001}催化剂的金属与载体界面上的活性位点更多,从而表现出更好的CO2活化能力和甲醇生成性能.  相似文献   

6.
负载型催化剂光催化氧化五氯苯酚钠的效果   总被引:45,自引:1,他引:44  
研究以TiO2 为基本活性组分、空心玻璃珠为载体、硅酸钠为粘合剂的负载型催化剂的制备技术 .选取五氯苯酚钠 (PCP-Na)为处理对象 ,结合对催化剂比表面和晶型结构的表征 ,对制备的催化剂进行筛选评价 .实验结果表明 :在适当的条件下 (二氧化钛、空心玻璃珠、40%硅酸钠溶液重量比为 4∶20∶2,650℃下烧 3h)所制备的C3型催化剂不仅光催化活性高 ,且负载牢固 ,易与水分离 .对初始CODCr=400mg·L-1,PCP-Na=10mg·L-1的反应液 ,在光照强度为 30kW·m-2下 2hCODCr去除率大于 65% ,PCP-Na去除率大于 92%.试验进一步探讨C3型催化剂投加量、反应液初始浓度、供氧量对催化反应的影响 .  相似文献   

7.
通过空穴和自由基捕获剂的加入,首先研究了可见光激发下手性TiO2复合光催化剂降解罗丹明B和四环素的机理. 结果表明,可见光激发TiO2光催化剂降解罗丹明B和四环素的机理是相同的,其形成的光生空穴是降解有机物的关键影响因素.利用D型手性表面活性剂在低温时可以构建右旋非对称手性堆积结构的D-TiO2. 这种非对称结构在介孔TiO2内部引入氧空穴和Ti-N键,使D-TiO2也具有显著的可见光响应和可见光降解活性. La3+ 或者Fe3+的掺杂几乎不影响催化剂的形貌及其TiO2的结晶过程, 但可以在催化剂中形成光生空穴和电子的捕获中心,显著提升可见光激发下TiO2催化剂中光生空穴和电子的分离率,从而增强催化剂对四环素的光降解活性.  相似文献   

8.
四环素是一种常见抗生素,近些年来在地表水中被频繁检出,严重威胁水体安全及人类健康.采用水热法及浸渍焙烧法制备了Fe3O4-CeOx/AC催化剂,考察了利用该催化剂在臭氧氧化水中四环素中的性能,结果表明:在煅烧温度为600 ℃,煅烧时间为3 h,制备浸渍液中Fe3O4、Ce(NO33·6H2O、活性炭质量比为2∶1∶2的条件下,该催化剂效果最好,且持续实验90 min后仍可保持催化活性和较低的金属浸出率.当四环素初始浓度为20 mg·L-1,臭氧用量为4 mg·L-1·min-1,溶液初始pH为5,催化剂投加量为0.2 g·L-1时,10 min内四环素去除率可达99%以上,90 min内TOC去除率达到38%.利用SEM、XPS等多种手段对该催化剂进行了表征,通过淬灭实验证实在体系中·OH起到了催化作用.  相似文献   

9.
长期秸秆还田对水稻根系碳矿化与激发效应的影响   总被引:2,自引:1,他引:1  
长期秸秆还田改变水稻土环境条件,从而会影响水稻残留根系碳在土壤中的矿化和激发效应,其影响的方向和强度尚不明确.因此,基于长期定位施肥试验,采用13C-CO2同位素标记技术,结合室内模拟培养试验,研究不施肥(CK)、单施化肥(CF)和秸秆还田配施化肥(CFS)这3种长期处理下,水稻根系和土壤本身有机碳的矿化特征,分析根系的激发效应的强度与方向,以及各处理CO2释放量的来源组成.结果表明,经过120 d的室内淹水培养,根系残留(R)将CO2累积释放量增加了617.41~726.27 mg·kg-1.CFS+R和CF+R处理根系来源CO2累积释放量分别为470.82mg·kg-1和444.04 mg·kg-1,根系的矿化率分别为18.8%和17.8%,均显著高于CK+R处理(384.19 mg·kg-1,15.4%).3个处理的土壤本身有机碳产生的CO2累积排放量无显著差异,但CFS+R处理的土壤本身有机碳矿化率(4.2%)显著低于CF+R和CK+R处理(5.4%和5.8%).CFS+R处理中根系的CO2累积激发效应为29.6%,显著低于CK+R处理的42.5%,高于CF+R处理的14.4%.淹水水稻土CO2累积释放量中23.47%~27.59%来源于根系,其余来源于土壤,其中,激发效应引起的CO2释放量占比在CFS+R处理中比CK+R处理小,比CF+R处理大.综上,淹水水稻土长期秸秆还田会提高根系碳的矿化潜力,但是更有利于土壤本身有机碳的稳定.  相似文献   

10.
万奇  段雷  贺克斌  陈亮  李俊华 《环境科学》2011,32(9):2800-2804
制备了Ce掺杂的低矾V2O5-WO3/TiO2催化剂,在模拟燃煤烟气条件下开展Hg0的脱除实验.结果表明该催化剂具有很好的Hg0脱除能力,在200~500℃的温度范围内能脱除烟气中95%的Hg0.催化剂表征结果表明,比表面积、 孔容和孔径与汞脱除能力没有显著相关性.XPS的结果表明,催化剂表面的Ce是以Ce4+的形式存在,有利于Hg0的脱除反应.抗硫抗水实验表明,H2O会轻微抑制Hg0的脱除反应,主要原因是H2O和Hg0在样品表面的竞争吸附;SO2会促进Hg0的脱除反应,原因是SO2能增加样品表面的酸吸附位且增加表面Hg0的吸附量.  相似文献   

11.
Introduction Aromatic sulfonic acid, which is produced in large amounts in chemical industry since the end of 19th century, has been widely applied in many industrial processes, including the various steps of procedure (Alonso and Barcelo, 2000). Naphthalene- sulfonic acids are of importance as dye intermediates and commonly used in the textile auxiliary industry employing many azo dyes and pigments. Among them, 1-naphthol-5-sulphonic acid (L-acid) is widely used in the printing as the raw ma…  相似文献   

12.
A novel visible light-active photocatalyst formulation(NdT/OP) was obtained by supporting N-doped TiO_2(NdT) particles on up-conversion luminescent organic phosphors(OP). The photocatalytic activity of such catalysts was evaluated for the mineralization process of spiramycin in aqueous solution. The effect of NdT loading in the range 15–60 wt.% on bulk and surface characteristics of NdT/OP catalysts was investigated by several chemicophysical characterization techniques. The photocatalytic performance of NdT/OP catalysts in the removal of spyramicin from aqueous solution was assessed through photocatalytic tests under visible light irradiation. Total organic carbon(TOC) of aqueous solution,and CO and CO_2 gas concentrations evolved during the photodegradation were analyzed. A dramatic enhancement of photocatalytic activity of the photostructured visible active NdT/OP catalysts,compared to NdT catalyst,was observed. Only CO_2 was detected in gas-phase during visible light irradiation,proving that the photocatalytic process is effective in the mineralization of spiramycin,reaching very high values of TOC removal. The photocatalyst NdT/OP at 30 wt.% of NdT loading showed the highest photocatalytic activity(58%of TOC removed after 180 min irradiation against only 31% removal after 300 min of irradiation of NdT). We attribute this enhanced activity to the high effectiveness in the utilization of visible light through improved light harvesting and exploiting. OP particles act as "photoactive support",able to be excited by the external visible light irradiation,and reissue luminescence of wavelength suitable to promote NdT photomineralization activity.  相似文献   

13.
TiO2/粉煤灰光催化降解双氯芬酸钠研究   总被引:1,自引:0,他引:1  
以燃煤电厂外排的废弃物粉煤灰(CFA)为载体,采用混合泥浆法将TiO2负载在CFA的表面,得到一种新型的复合光催化剂TiO2/CFA.对TiO2/CFA进行了扫描电镜分析、X射线衍射分析和氮吸附测试,并以双氯芬酸钠的光催化降解为评价手段,研究了TiO2负载量对TiO2/CFA光催化性能及重复使用性能的影响.结果表明,TiO2负载量的增加有助于提高TiO2/CFA的光催化性能,但当TiO2负载量过高时,CFA上的TiO2在水处理过程中容易脱落,对TiO2/CFA光催化剂的重复使用性能不利.本研究中,最佳的TiO2负载量约为50%,循环使用6次,其光催化降解效率没有明显降低,双氯芬酸钠的降解率均可达70%以上.  相似文献   

14.
Photocatalytic ozonation of phenol and oxalic acid (OA) was conducted with a Ag^+/TiO2 catalyst and different pathways were found for the degradation of different compounds. Ag^+ greatly promoted the photocatalytic degradation of contaminants due to its role as an electron scavenger. It also accelerated the removal rate of OA in ozonation and the simultaneous process for its complex reaction with oxalate. Phenol could be degraded both in direct ozonation and photolysis, but the TOC removal rates were much higher in the simultaneous processes due to the oxidation of hydroxyl radicals resulting from synergetic effects. The sequence of photo-illumination and ozone exposure in the combined process showed quite different effects in phenol degradation and TOC removal. The synergetic effects in different combined processes were found to be highly related to the properties of the target pollutants. The color change of the solution and TEM result confirmed that Ag+ was easily reduced and deposited on the surface of Tit2 under photo-illumination, and dissolved again into solution in the presence of ozone. This simple cycle of enrichment and distribution of Ag^+ can greatly benefit the design of advanced oxidation processes, in which the sequences of ozone and photo-illumination can be varied according to the needs for catalyst recycling and the different properties of pollutants.  相似文献   

15.
SiO2纳米粉掺杂对薄膜光催化剂结构和活性的影响   总被引:6,自引:0,他引:6  
针对固定膜光催化剂吸附能力差的缺陷,在催化剂的涂覆溶胶中掺杂具有较大比表面积的SiO2纳米粉制备了一种新的TiO2薄膜.通过X射线衍射(XRD)、扫描电镜(TEM)和红外光谱(FTIR)等手段对催化剂进行表征发现,催化剂的晶相以锐钛矿为主,并含有少量的金红石,平均晶粒尺寸为27nm左右.其中掺杂的SiO2以十几到几十纳米的无定型团簇形式分散于薄膜中,除了能增大薄膜的表面积外,对TiO2的晶体结构和表面基团等性质几乎没有影响.光催化降解试验表明,SiO2掺杂后薄膜的活性大大改善,并受掺杂SiO2的原始粒径和掺杂量影响很大.此外,该催化剂还具有很好的稳定性,在连续30多天的使用中,对活性艳红X-3B的去除率一直维持在80%左右,活性未见降低.  相似文献   

16.
TiO2 immobilized on SiO2 (TiO2/SiO2) have been prepared by sol-gel method and various ions of transition metals (Cr3+, Co2+, Ni2+, Cu2+, and Zn2+) were doped on the photocatalyst using wet impregnation method under reducing calcination atmosphere. The photocatalytic activity of metal doped TiO2/SiO2 towards phenol degradation under black light irradiation were investigated and compared with undoped TiO2/SiO2. The results showed that the photoresponse of Cu2+ and Zn2+ doped TiO2/SiO2 were larger than undoped TiO2/SiO2, indicating that the photogenerated carriers were separated more efficiently in Cu2+ and Zn2+ doped TiO2/SiO2. The reactivity was in the order of Cu2+ > Zn2+ > Ni2+ > Cr3+ > Co2+. The different photoreactivity was ascribed to combine effect of the different ionic radii and photocorrison tendency of the dopants. The sample was also characterized by surface analytical methods such as X-ray diffraction, scanning electron micrograph/electron dispersive X-ray analyzer and UV-Vis absorption spectrum.  相似文献   

17.
A spiral photoreactor system (SPS) was developed for the degradation of 4-tert-octylphenol (4-t-OP) in aqueous phase. 4-t-OP was previously considered as a endocrine disrupting compound frequently present in water. The direct photodegradation reaction caused by the SPS was found to accord with the characteristic of apparent first-order reaction with reaction rate constantk= 4.8 × 10-2 min-1. However, the direct photodegradation reaction could not make the 4-t-OP mineralized. The photodegradation efficiency increased from 88% to 91.2% in 45 min irradiation period after the internal surface of SPS was sintered with TiO2 thin film as catalyst. Catalyst concentration, number of catalyst coating layers and initial concentration of 4-t-OP were proven to be the factors affecting the photocatalytic degradation performance of the SPS on aqueous 4-t-OP. The degradation mechanism was investigated and the byproducts were analyzed using total organic carbon analyzer (TOC) and LC-MS. The possible chemical structures of the products were suggested. SPS with single layer of TiO2 prepared by sintering 13.6% of TiO2 precursor was proven to be more efficient than most of previous systems for removal of 4-t-OP from aqueous phase. 28.3% of the 4-t-OP was mineralized in 45 min according to the decreased amount of TOC value.  相似文献   

18.
秦航道  肖榕  王勇  李慧 《环境科学学报》2019,39(11):3786-3793
实验对活性炭(activated carbon,AC)进行了氧改性、氮改性、硫改性和氮-硫共改性,考查AC的表面性质对CeO_x/AC催化臭氧氧化苯甲酸性能的影响.结果表明,相比氧改性活性炭ACO、硫改性活性炭ACS和氮改性活性炭ACN,氮-硫共改性活性炭ACNS由于含氮官能团和含硫官能团的引入,提高了对苯甲酸的吸附性能和催化臭氧氧化性能.采用氮-硫共改性活性炭为载体制备的CeO_x/ACNS催化剂表面Ce~(3+)含量最高,因而具有最高的催化活性,反应30 min,苯甲酸的去除率由单独臭氧氧化的22%提高到88%,TOC的去除率单独臭氧氧化的7%提高到55%.CeO_x/ACNS催化剂具有良好的稳定性,循环使用6次,苯甲酸的去除率仅从88%降低到82%,整个过程中活性组分Ce的流失只占负载量的0.32%,是一种很有应用潜力的臭氧氧化催化剂.  相似文献   

19.
Heterogeneous photocatalytic oxidation is a water reclamation technology which avoids chemical consumption and can be powered by solar radiation. Because this generally sustainable process is of limited efficiency for the treatment of biologically pretreated greywater, it was combined with activated carbon adsorption. The effluent of a constructed wetland for treatment of separately collected greywater was subjected to photocatalytic oxidation using the photocatalyst titanium dioxide (TiO2) “P25” in both the absence and the presence of powdered activated carbon (PAC). Photocatalytic oxidation alone with UV fluences of about 10 Wh L?1 was not capable of reducing total organic carbon (TOC) from an initial concentration of 5.5 mg L?1 safely below 2 mg L?1 as a prerequisite for high-quality water reuse purposes. However, when PAC was added, TOC concentrations subsequent to photocatalytic oxidation were less than 2 mg L?1 even after reusing the TiO2/PAC mixture 10 times. PAC addition is estimated to reduce the insolation area necessary to achieve this target by solar photocatalytic oxidation of biologically treated greywater by a factor 7. This combination process represents an innovative chemical-free technology within wastewater reuse schemes.  相似文献   

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