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排序方式: 共有907条查询结果,搜索用时 31 毫秒
1.
为了有效处理低浓度抗生素残留废水,以水热法制备的BiOBr为载体,诺氟沙星(NOR)为模板,通过表面分子印迹法制备了BiOBr分子印迹材料(MIP).同时,采用SEM与XRD对制备的材料进行相分析及显微结构分析,并利用XPS、FTIR、BET和UV-Vis DRS对所合成材料的微观结构进行观察.最后,以诺氟沙星(NOR)为目标污染物,对MIP在暗反应下的吸附性能及300 W Xe灯照射下的光催化性能进行测定,并探讨pH、投加量、初始浓度、是否印迹处理对NOR去除的影响.实验结果表明,在pH为中性,MIP投加量为2.5 g·L-1的条件下,MIP对5 mg·L-1 NOR溶液的去除率达到96.2%,且对低浓度(1 mg·L-1)NOR溶液的去除率达到99%.综合表明,本文所制备的MIP适用于低浓度诺氟沙星废水的处理.  相似文献   
2.
通过水热法合成Bi2WO6,并利用XPS,XRD,BET,UV-Vis和SEM等方法对样品进行了表征;通过光催化性能实验考察了Bi2WO6投加量,溶液pH值对普伐他汀(PR)降解效果的影响;通过自由基捕获实验及中间产物的鉴定探明了Bi2WO6光催化降解PR过程的主要活性自由基,中间产物及降解机理,并采用发光细菌急性毒性试验评估了PR降解前后的毒性.结果表明,所制备的Bi2WO6是由大量纳米片组成的正交晶系花瓣状微球,各元素物质的量比为Bi:W:O=2.5:1:6.7,比表面积为26.67m2/g,带隙能为2.74eV;光催化性能结果表明,对于10mg/L PR,当溶液pH=6.5,Bi2WO6投加量为0.4g/L时降解效果最佳,降解率可达80.6%,矿化度为40.2%;自由基捕获实验结果表明降解过程中h+起主要的氧化作用,·OH和·O2-的氧化起辅助作用.基于活性自由基和中间产物的鉴别结果提出了Bi2WO6光催化降解PR的机理,即以h+为主,·OH和·O2-为辅联合攻击PR分子中C-C键,C=C双键,酯键等化学键,进而将其分解为易降解小分子有机物.另外,毒性测试结果表明PR经光催化降解后的小分子产物与PR原液相比毒性并没有增强.  相似文献   
3.
目的制备硫离子响应杀菌材料,研究它在不同浓度铜离子条件下的封装效果,以及在不同浓度硫离子条件下的释放行为。方法选择埃洛石纳米管为载体并用透射电镜进行表征、采用真空负载的方式,将甲硝唑和苯骈三氮唑(BTA)分步填充到埃洛石纳米管内部,使用紫外分光光度法测试不同浓度铜离子对纳米管中甲硝唑的封堵效果,以及材料在不同浓度硫离子条件下的释放情况。结果实验中通过调整铜离子浓度发现,铜离子浓度越大对甲硝唑的封堵效果越好,当铜离子浓度达到160 mmol/L时,对甲硝唑的封堵效果最好。杀菌材料在外界硫离子达到0.1mmol/L后,甲硝唑的释放浓度迅速提高,进一步提高硫离子浓度,释放情况改变不明显。结论铜离子浓度达到160 mmol/L时,材料的封装效果是最好的。材料能够对硫离子实现响应释放,且对应的临界浓度为0.1 mmol/L。  相似文献   
4.
Photocatalytic degradation of phenol   总被引:3,自引:0,他引:3  
In this study photocatalytic degradation of phenol in thepresence of UV irradiated TiO2 catalyst andH2O2was investigated. Effects of TiO2 andH2O2concentrations and pH on photocatalytic degradation were examined. The rate constants for photocatalytic degradation wereevaluated as a function of TiO2 and H2O2 concentrations and pH of the solution. It was found thatphotodegradation is an effective method for the removal of phenoland disappearance of phenol obeyed first order kinetics. The amount of CO2h produced during photocatalytic degradation wascorresponding to the complete mineralization. Photodegradationcan be an alternative method for the treatment of phenol containing wastewaters.  相似文献   
5.
Thin-film technique is becoming an industry standard for the preparation of TiO2-based photocatalyst for organic destruction. The catalyst provides several advantages over the conventional powder TiO2 in the treatment of wastewater and groundwater. In this study, a continuous stir flow reactor model is developed capable of describing the photocatalytic process. The model incorporates the following fundamental mechanisms: adsorption, diffusion, liquid-film transfer, UV attenuation, and photocatalytic reaction. All of the simulation results indicate that there exists a highly nonlinear relation between each of these parameters and the destruction rate. Various incident light intensities also are incorporated to simulate the energy efficiency. The simulations illustrate that the photocatalytic model can be used to elucidate the effect of process variables. It is also possible to “custom-design” a catalyst for the treatment of a particular waste stream.  相似文献   
6.
液相加热法制备了Al2O3作为光催化剂,研究了不同光源、光照时间、催化剂用量和溶液酸度等条件对常见有机染料光催化降解性能影响。结果表明,用太阳光作为光源照射3h,50mL染料溶液中加入Al2O3 30mg,溶液pH8~10,孔雀石绿,酚藏花红,甲基紫等染料脱色率达93%以上。将使用过的Al2O3经过简单处理,孔雀石绿溶液脱色率仍达到94.1%,催化性能稳定,可以重复利用。通过紫外可见光谱分析,表明染料分子在催化剂和光照条件下发生了降解。  相似文献   
7.
水解-好氧系统处理生活污水的特性研究   总被引:1,自引:0,他引:1  
采用新型 Yakult填料和中心导流式曝气方式 ,设计制作了新型生活污水净化装置 ,试验表明 ,停留时间 16 h左右 ,CODCr去除率 >80 % ,BOD5去除率 >90 % ,SS去除率 >85 % ,NH3 - N去除率 >87% ,出水水质达到国家一级排放标准  相似文献   
8.
In order to fulfill the current WEEE directives, the traditional approach to manage thin film transistor-liquid crystal display (TFT-LCD) waste glass is inadequate. It is a serious opportunity to achieve resource conservation, reduction, stabilization and safety of management of TFT-LCD in the near future. To assist in achieving these goals, this study investigated the sintering characteristics and material properties of TFT-LCD waste glass, which can be pulverized and ground and subsequently blended with clay, at various substitution levels (0–40%) and finally fired from 800 °C to 1000 °C to make eco-brick. The brick thus produced was analyzed to determine variations in weight losses on ignition, 24-h absorption, bulk density, shrinkage, compressive strength and microstructure changes. The results for specific gravity, water adsorption, and compressive strength revealed that bricks made from mixtures containing TFT-LCD waste glass met the general requirements for bricks. The advantages of less water absorption, less weight loss on ignition, and a gain in compressive strength in the clay-TFT-LCD waste glass bricks should encourage the use of TFT-LCD waste glass as a brick additive.  相似文献   
9.
The degradation of fulvic acid(FA) by nanoparticle TiO2 in a submerged membrane photocatalysis(SMPC) reactor was studied. In this reactor, photocatalytic oxidation and membrane separation co-occured. The continuous air supplier provided O2 for the photocatalytical reaction and mixed the solution through an airflow controller. The particle TiO2 could automatically settle due to gravity without particle agglomeration so it could be easily separated by microfiltration(MF) membrane. It was efficient to maintain high flux of membranes. The effects of operational parameters on the photocatalytic oxidation rate of FA were investigated. Results indicated that photocatalyst at 0.5 g/L and airflow at 0.06 m^3/h were the optimum condition for the removal of fulvic acid, the removal efficiency was higher in acid media than that in alkaline media. The effects of different filtration duration on permeate flux rate of MF with P25 powder and with nanoparticle TiO2 were compared. Experimental results indicated that the permeate flux rate of MF was improved and the membrane fouling phenomenon was reduced with the addition of nanoparticle TiO2 catalyst compared with conventional P25 powder. Therefore, this submerged membrane photocatalysis reactor can faciliate potential application of photocatalytic oxidation process in drinking water treatment.  相似文献   
10.
定影漂白废话水用铁蓝法预处理,结果表明,以硫酸亚铁为沉淀剂,投加量为铁氰化物理论值的1.3倍,CN去除率为98%,反应生成的普鲁士蓝纯度较高,可供综合利用,铁蓝法除CN后的出水与显影冲洗废水混合,再经生炭生物膜法处理,CODcr去除率为80%;  相似文献   
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