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201.
Nonylphenol(NP) residues, as a typical endocrine disrupting chemical(EDC), frequently exist in sewage, surface water, groundwater and even drinking water, which poses a serious threat to human health due to its bioaccumulation. In order to remove NP, a series of MIL-100(Fe)/Zn Fe2O4/flake-like porous carbon nitride(MIL/ZC) was synthesized through in-situ synthesis at room temperature. High performance of ternary MIL/ZC is used to degrade NP under visible light irradiation. ...  相似文献   
202.
为了探明自然光和紫外光(UV)对二级处理出水中溶解性有机物(DOM)及其毒性效应的削减特性,研究了在自然光和UV两种不同光源的辐照条件下,二级处理出水中DOM的光谱特性、遗传毒性和植物毒性变化,阐明了毒性效应变化的成因.结果表明:相比于自然光照,UV辐照可以明显降低二级处理出水的UV254,并达到21%矿化.自然光和U...  相似文献   
203.
紫外光降解水中痕量NDMA的效能研究   总被引:7,自引:6,他引:1  
徐冰冰  陈忠林  齐飞  马军 《环境科学》2008,29(7):1908-1913
采用紫外光降解水中痕量亚硝基二甲胺(NDMA),研究了NDMA初始浓度、溶液pH值、光照面积、紫外光辐射强度以及水质对紫外光降解NDMA的影响.结果表明,紫外光能够有效降解水中的NDMA,紫外光解反应5min, NDMA去除率可以达到97.5%.初始浓度对NDMA的光降解去除率影响不大.随着pH值升高,紫外光解NDMA的反应速率呈现下降趋势,低pH值条件下光量子产率较高,溶液pH=2.2时NDMA具有最大光降解速率.NDMA的去除率随着有效光照面积的增大而增大,紫外光辐射强度的增加有利于NDMA的去除.水质对紫外光降解NDMA具有一定的影响,在自来水和江水为背景的2种对比体系中,光解NDMA去除率分别为96.7%和94.8%  相似文献   
204.
Photocatalytic degradation of phenol selected as model compound of organic pollutant had been investigated in aqueous titanium dioxide (TiO2) dispersion under UV irradiation. The e ects of various parameters such as pH, catalyst concentration, phenol concentration, anions, metal ions, electron acceptors, and surfactants on the photocatalytic degradation of phenol were investigated. The degradation kinetics was determined by the change in phenol concentration employing UV-Vis spectrometry as a function of irradiation time. The degradation kinetics of phenol follows pseudo first-order kinetics. The results showed a significant dependence of the photocatalytic degradation of phenol on the functional parameters. The probable promising roles of the additives on the degradation process were discussed  相似文献   
205.
The photocatalytic degradation of dye pollutant sulforhodamine-B (SRB) in aqueous titanium dioxide (TiO2) dispersions was examined under three lighting regimes: UV light (330 nm〈λ〈 380 nm), sunlight, and visible light (λ〉450 nm), all investigated at pH=2.5. Total organic carbon (TOC) and chemical oxygen demand (CODer) assays show that the degradation rate of SRB is much higher when irradiated with UV and sunlight compared with visible light. The temporal concentration changes of SRB illustrated a first-order reaction and the rate constant, k, is 0.197 min^-1, 0.152 min^-1, 0.027 min^-1, respectively, under the three lighting conditions. The final mineralized products were amine compounds identified by infrared spectrophotometry. When irradiated with visible light, the photocatalytic degradation rate could be improved by lowering the H2O2 concentration and inhibited by increasing the H2O2 concentration, but results contrary to the above were obtained when UV light was used for irradiation.  相似文献   
206.
207.
通过微波辐照活性炭与废铁屑的混合物处理橡胶促进剂生产废水。考察了炭铁混合物投加量、炭铁质量比、废水初始pH值、微波功率和微波辐照时间等对废水COD去除率的影响。结果表明,工艺的最佳参数为:炭铁混合物投加量65 g/L,炭铁质量比2∶1,微波功率200 W,微波辐照5 min,此条件下的废水COD去除率为76%;反应的表观过程近似符合一级动力学规律,动力学方程为:ln(C0/C)=0.1012t+0.8887,速率常数k=0.1012 min-1,半衰期t1/2=6.85 min;橡胶促进剂生产废水的微波辐照活性炭/铁屑处理工艺比单纯微波辐照及活性炭/铁屑处理工艺有明显的优越性。  相似文献   
208.
Membrane fouling is one of the most important challenges faced in membrane ultrafiltration operations. The copolymers of polysulfone-graft-methyl acrylate were synthesized by homogeneous photo-initiated graft copolymerization. The variables affecting the degree of grafting, such as the time of UV(Ultraviolet-visible)irradiation and the concentrations of the methyl acrylate and photoinitiator, were investigated. The graft copolymer membranes were prepared by the phase inversion method. The chemical and morphological changes were characterized by attenuated total reflection-Fourier transform infrared spectroscopy(ATR/FT-IR), scanning electron microscopy, and water contact angles measurements. Results revealed that methyl acrylate groups were present on the membranes and the graft degree of methyl acrylate had remarkable effect on the performance of membranes. Pure water contact allgle on the membrane surface decreases with the increase of methyl acrylate graftdegree. which indicated that the hydrophilicity of graft copolymer membranes Was improved. The permeation fluxes of pure water and bovine serum albumin solution were measured to evaluate the antifouling property of graft copolymer membranes, the results of which have shown an enhancement of antifouling property for graft copoly mermembranes.  相似文献   
209.
目的 探究反应堆压力容器用钢中晶粒取向与辐照硬化的关系。方法 选用目前在反应堆压力容器中广泛应用的A508-3钢,首先,采用160 keV铁离子对RPV进行室温辐照,辐照损伤分别达0.2、0.5、1.0、10 dpa。然后,通过纳米压痕技术测量辐照前后样品标定区域的硬度。同时,结合电子背散射衍射对辐照前后样品的硬度标定区域进行晶体取向分析。结果 实验对不同晶粒取向的纳米压痕数据进行统计分析,发现当晶粒取向在[001]方向附近时硬度值最大,而当晶粒取向远离[001]方向,即取向距[001]的旋转角从0°增大到90°时,硬度值逐渐减小。结论 揭示了RPV辐照硬化可能存在较强的取向依赖性,为RPV的逆向设计提供基础。  相似文献   
210.
The removal of the natural organic matter present in coffee processing wastewater through chemical coagulation-flocculation and advanced oxidation processes (AOP) had been studied. The effectiveness of the removal of natural organic matter using commercial flocculants and UV/H202, UV/O3 and UV/H2O2/O3 processes was determined under acidic conditions. For each of these processes, different operational conditions were explored to optimize the treatment efficiency of the coffee wastewater. Coffee wastewater is characterized by a high chemical oxygen demand (COD) and low total suspended solids. The outcomes of coffee wastewater treatment using coagulation-flocculation and photodegradation processes were assessed in terms of reduction of COD, color, and turbidity. It was found that a reduction in COD of 67% could be realized when the coffee wastewater was treated by chemical coagulation-flocculation with lime and coagulant T-1. When coffee wastewater was treated by coagulation-flocculation in combination with UV/H2O2, a COD reduction of 86% was achieved, although only after prolonged UV irradiation. Of the three advanced oxidation processes considered, UV/H2O2, UV/O3 and UV/H2O2/O3, we found that the treatment with UV/H2O2/O3 was the most effective, with an efficiency of color, turbidity and further COD removal of 87%, when applied to the flocculated coffee wastewater.  相似文献   
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