共查询到19条相似文献,搜索用时 171 毫秒
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通过高温煅烧制备复合光催化剂Fe_2O_3/TiO_2,加入H_2O_2构建芬顿-光催化协同体系,对有机废水进行深度降解处理。实验结果表明,Fe_2O_3含量为3%的复合光催化剂投加量1.0 g/L,H_2O_2浓度30 mmol/L,紫外光照射3 min,20 mg/kg亚甲基蓝溶液降解率为88.6%,比TiO_2单体活性提高5倍,芬顿体系3 min对MB几乎无降解,芬顿-光催化协同极大地提高了处理有机污染物的降解能力。紫外光照射20 min,能降解98.2%的20 mg/kg苯酚溶液,分别是单体TiO_2和芬顿体系活性的3倍和24.5倍。 相似文献
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水中LAS的光催化氧化处理研究 总被引:4,自引:1,他引:3
本文研究了三聚磷酸钠(STPP)浓度变化和温度变化条件下,对水中直链十二烷基苯磺酸钠(LAS)光催化氧化降解的影响,并根据动力学研究的结果,充分说明了造成上述影响的原因。 相似文献
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通过开展TiO2/ACF与TiO2/BiWO6/ACF材料吸附光催化降解VOCs废气的室内模拟实验,探究反应环境(流量、初始浓度、温度、湿度)对吸附光催化降解效率的影响。结果表明:TiO2/ACF材料的最优降解条件为浓度1000 mg/m3,流量1.2 m3/h,湿度30%,温度33℃;TiO2/BiWO6/ACF材料的最优降解条件 为浓度1000 mg/m3,流量1.2 m3/h,湿度33%,温度34℃;两种材料在最优条件下均具有对高浓度污染物响应速度快、反应平衡后污染物转化率高的特点,TiO2/ACF材料三级反应总体转化率达到81.71%,TiO2/BiWO6/ACF材料三级反应总体转化率达到85.96%。因此,将吸附光催化技术与其他处理技术相结合作为一种预处理方法,针对储罐呼吸气排放源,在实现VOCs初步降解的同时还可以稳定平衡VOCs浓度,具有较好的缓冲、减排效果,该技术工艺流程简单,能耗低,具有很好的应用前景。 相似文献
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负载型TiO2薄膜光催化剂降解亚甲基蓝 总被引:2,自引:0,他引:2
采用溶胶-凝胶法制备了玻璃负载的TiO2薄膜光催化剂,研究了该催化剂对亚甲基蓝溶液的光催化降解,考察了反应时间、水样的初始浓度、溶液的pH等对光催化降解效果的影响。 相似文献
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Ashish Mohod Priscila H. Palharim Bruno Ramos Paulo F. Moreira Antonio Carlos S. C. Teixeira Reinaldo Giudici 《环境质量管理》2023,33(1):377-391
Hydrodynamic cavitation (HC)-based treatments have been proposed for the degradation of phenol as a toxic pollutant. The present work aimed to optimize the degradation of phenol using HC by means of Doehlert experimental design, which has not been previously addressed. Initially, operational parameters of hydraulic characteristics of the pump, inlet pressure, solution pH, and initial concentration were optimized; later, the effects of pH solution and H2O2 loading or initial pollutant concentration on phenol degradation were explored using the Doehlert experimental design. It was observed that phenol degradation is strongly dependent on the pH of the solution. Also, the acidic condition favors the formation of hydroxyl radicals and thus, the degradation of phenol. Based on the Doehlert matrix, the 94.1% phenol degradation and 68.60% total organic carbon (TOC) were obtained in 180 min at 304.5 mg/L of hydrogen peroxide at an initial concentration of 20 mg/L, 2.0 pH, and 90 psi inlet pressure, providing a cavitational yield of 6.33 × 10−6 mg/J and minimum treatment cost of US$/L 0.13. Overall, it has been observed that HC can be a promising route for the removal of pollutants (phenol) effectively using hydrogen peroxide as an additive. 相似文献
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超声-双氧水和亚铁离子体系处理含酚废水研究 总被引:3,自引:2,他引:3
在实验装置上对超声-双氧水和亚铁离子体系联合处理含酚废水进行了实验研究。主要考察了废水初始pH值、初始双氧水浓度、超声功率、反应时间等因素对酚去除率的影响。实验结果表明:超声辐射可以在双氧水和亚铁离子体系氧化过程中起加速反应的作用,而且随着超声功率的增大,加速反应的能力增强;实验条件下废水初始pH值为4~6.8,初始双氧水浓度为140mg/L时酚去除效果最佳;超声-双氧水和亚铁离子体系处理含酚废水过程中苯酚的降解规律符合表现一级反应。 相似文献
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Heterogeneous photocatalysed degradation of two selected pesticide derivatives, triclopyr (1) and daminozid (2), has been investigated in aqueous suspensions of titanium dioxide by monitoring the change in substrate concentration employing the UV Spectroscopic analysis technique and depletion of Total Organic Carbon (TOC) content as a function of irradiation time. The degradation kinetics were studied under different conditions such as reaction pH, substrate and catalyst concentration, different types of TiO2 and in the presence of electron acceptors such as hydrogen peroxide (H2O2), potassium bromate (KBrO3) and ammonium persulphate (NH4)2S2O8 in addition to molecular oxygen. The degradation rates were found to be strongly influenced by all the above parameters. The photocatalyst Degussa P25 was found to be more efficient as compared with other photocatalysts. The pesticide derivative triclopyr (1) was found to degrade faster as compared to daminozid (2). An attempt was also made to identify the intermediate products formed during the photooxidation process using GC/MS analysis. Probable pathways for the formation of products have been proposed. 相似文献
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Photocatalytic degradation of phenol on different phases of TiO2 particles was examined under 400-W UV irradiation. The effects of various operating parameters including TiO2 dosage, solution pH (4–10), and initial phenol concentration (0.13–1.05 mM) on phenol degradation were investigated. Three forms of TiO2 photocatalysts such as pure anatase phase, pure rutile phase, and the mixed phase were prepared by sol-gel method and followed annealing at different temperatures. The annealing temperature used were 500 °C, 700 °C and 900 °C for pure anatase phase, the mixed phase, and pure rutile phase, respectively. It was shown that pure anatase TiO2 exhibited higher photocatalytic activity than the physical mixture of pure anatase and rutile TiO2. Moreover, the TiO2 particle with a specific fraction of mixed anatase and rutile phases exhibited better performance than pure anatase TiO2. Finally, the degradation rate could be satisfactorily fitted by a pseudo-first-order kinetic model. 相似文献
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As a large and diverse group of secondary metabolites, phenolic compounds are one of the most common chemical pollutants present in water resources. these compounds can have toxic effects on ecosystems and humans. Therefore, their removal from water sources appears to be of great importance. In this study, a magnetic graphene oxide (MGO) photocatalyst was synthesized and used to remove phenol from water. The fabricated GO magnetic nanocomposites were determined by SEM and FTIR techniques. Afterward, these nanoparticles were used to remove phenol from aquatic media considering different operational parameters, including pH of the solution, initial concentration of phenol, contact time, and adsorbent dosage. The results showed that the magnetized GO nanoparticles could remove 90.83% of phenol molecules under the optimal conditions of solution pH = 3.0, initial phenol concentration of 20 mg/L, adsorbent concentration of 300 mg/L, and contact time of 120 min. additionally have compared the results of UV, Fe3O4/GO, and Fe3O4/GO/UV on the removal of phenol under optimum conditions. Accordingly, the phenol removal efficiencies for UV alone, Fe3O4/GO, and Fe3O4/GO/UV were obtained at 4.5, 65.73, and 90.83%, respectively. Based on the findings, the prepared magnetic GO nanoparticles have extended capabilities such as easy and rapid separation from sample and high potential in removing phenolic compounds, so, it can be introduced as an appropriate adsorbent for removal of this pollutant from water and wastewater. 相似文献