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1.
钴/过一硫酸氢盐(Co/PMS)是为了克服Fenton技术的诸多缺陷而基于类Fenton思路(过氧化物+过渡金属)建立起来的一种高级氧化技术。该体系具有Co用量少(μg/L数量级),产生的SO4氧化还原电位高,能够在广泛的pH范围(2-9)降解有机污染物,反应后不产生污泥等优点,在环境污染治理领域具有广阔的应用前景。本文从自由基链式反应、溶液pH、阴离子效应、光照条件、反应气氛及固液两相交换六个方面分析了Co/PMS体系降解水中有机污染物的机理,并在此基础上综述了Co/PMS (黑暗条件)、UV/Co/PMS、Vis/Co/PMS三类均相Co/PMS体系以及Co氧化物催化、Co负载催化两类非均相Co/PMS体系降解水中有机污染物的国内外研究进展,并就存在的问题提出了展望。  相似文献   

2.
黄丹维  何佳  谷亚威  何锋 《化学学报》2017,75(9):866-872
报道了机械球磨方法制备的微米硫化零价铁(S-ZVI)可以快速活化H2O2降解各类有机污染物.S-ZVI/H2O2降解苯酚的单位比表面积反应速率常数是ZVI/H2O2的5倍以上,且苯酚的降解不存在初始抑制阶段.探针化合物乙醇的淬灭反应结合电子顺磁共振(EPR)实验证明S-ZVI/H2O2体系产生的氧化活性物质为·OH.反应前后S-ZVI颗粒的扫描电子显微镜(SEM)和X射线衍射(XRD)表征结合电化学测试和苯酚降解结果表明S-ZVI中FeS取代ZVI表面的钝化膜(铁氧化物),加速了电子从Fe0传递到H2O2,更快地释放Fe2+,引发Fenton反应.在这过程中FeS主要作为电子的导体而非Fe2+的释放源.  相似文献   

3.
传统芬顿(Fenton)法利用Fe2+催化H2O2产生具有强氧化性的羟基自由基(·OH),可以高效氧化降解水中有机污染物,但其操作pH范围窄(pH≈3)和易产生铁絮凝沉淀的缺点限制了其应用发展.原子氢H*作为一种单电子供体,可以将电子快速转移到H2O2中,生成·OH,适用于广泛的pH值,没有铁污泥产生,是一种新型高效绿色芬顿法.然而,原子H*更易相互结合形成H2,极不稳定,因此,探索合适的电催化剂对H*绿色Fenton的应用起着至关重要的作用.本文以炭黑作为载体,通过液相还原法制备了具有催化活性高、性能稳定的Ni/C@碳毡(Ni/C@CF)非贵金属电催化材料,制备的Ni纳米粒子均匀分散在炭黑上.以此电极材料为阴极,构建绿色Fenton催化体系,能够催化H2O和H+生成H*,进而催化H2O2产生·OH,高效降解去除水中抗生素污染物.通过调节制备方法、电压、溶液pH值及外加氧化剂量,确定了该体系...  相似文献   

4.
杨世迎  郑迪  常书雅  石超 《化学进展》2016,28(5):754-762
利用零价金属(ZVMs)处理环境污染物一直是环境治理领域的研究热点,其中以零价铁(ZVI)的研究最为广泛。近年来,零价铝(ZVAl)因其具有比ZVI更低的氧化还原电位(E0(Al3+/Al0)=-1.662 V, E0(Fe2+/Fe0)=-0.44 V)及其两性性质(反应pH可以拓展到碱性)而开始受到关注。目前环境领域关于ZVAl的研究主要集中于两类:以零价铝/氧/酸(ZVAl/O2/H+)体系为核心的氧化体系和以零价铝/无氧(ZVAl/anaerobic)体系为核心的还原体系,其中前者因原位产生过氧化氢构成类Fenton氧化体系而备受关注。研究已发现,基于ZVAl的氧化/还原技术可有效去除酚类、偶氮染料、有机卤化物等有机污染物和Cr(Ⅵ)、As(Ⅲ)等无机污染物,且超声、微波、外加多金属氧酸盐(POM)、Fe2+等辅助手段对该技术有一定辅助效果。本文分别就基于ZVAl的氧化体系和还原体系,对其反应机理及去除水中污染物的国内外最新研究进展进行了综述和展望,以期促进ZVAl水处理技术的发展。铝作为地壳中最丰富的金属元素,ZVAl不存在像ZVI高pH值时产生沉淀的问题,相信随着ZVAl表面氧化膜这一制约因素的逐渐解决,其在水处理领域将有更广泛的应用。  相似文献   

5.
韩文亮  董林洋 《化学进展》2021,33(8):1426-1439
基于硫酸根自由基(SO4.-)的先进(高级)氧化法(AOPs)因其对新型有机污染物的高降解能力和高适应性而受到越来越多的关注。相比羟基自由基(·OH),SO4.-的选择性更好、还原电位更高、半衰期更长、pH范围更宽且成本更低,因而能更有效的降解污染物。SO4.-可由过一硫酸盐(PMS)或过二硫酸盐(PDS)等过硫酸盐(PS)通过热、机械化学、过渡金属、碳质材料、碱、紫外(UV)或电化学等方法活化产生。本文分析了不同活化方法的优缺点及其应用于有机污染物降解上的研究进展,总结了SO4.-降解含不同官能团污染物的三种机理(加成作用、夺氢作用和直接电子转移),并综述了SO4.-降解持久性有机污染物(POPs)、“伪持久性有机污染物”——药物和个人护理品(PPCPs)及有机染料三大类有机污染物的降解途径、降解产物及其研究进展,最后展望了该技术未来的研究方向。  相似文献   

6.
降解水中有机毒物的新型反应体系研究   总被引:6,自引:0,他引:6  
利用空气中的氧电化学合成H2O2,制备具有较高电流效率的空气电极.将空气电极用于构成降解有机毒物的新型反应体系电化学氧化体系、光激发氧化剂氧化体系和光电-Fenton氧化体系.实验测量了H2O2在不同体系不同条件下的分解速率,并与相应的传统式体系作了比较.实验测量了苯胺在新型体系中的矿化反应速率,发现H2O2的分解速率与苯胺的矿化速率有良好的平行关系,其中H2O2分解速率最快的光电-Fenton体系是氧化降解有机分子的最佳体系.通过光电-Fenton体系和光-Fenton体系的比较,揭示了空气电极/溶液界面在光电-Fenton体系中所起的重要作用.初步讨论了苯胺分子在光电-Fenton体系中矿化反应的机制.  相似文献   

7.
活性炭(AC)能够催化过氧化氢(H2O2)释放出强氧化性的羟基自由基•OH。过二硫酸盐(PS)与H2O2结构上相似,因此PS也有可能被AC催化产生强氧化性的硫酸根自由基SO4−•。AC催化无机过氧化物(H2O2或PS)将发展成为一类新型高级氧化技术。AC催化H2O2联合体系包括AC/H2O2,AC/Fenton,AC/H2O2/紫外光,,AC/H2O2/微波,AC/湿式H2O2氧化;AC催化AC/PS联合体系包括 AC/PS,AC/PS/金属离子, AC/PS/ 微波。AC过氧化联合体均可高效降解水中有机污染物。本文在首次综述AC/过氧化物联合体系处理有机污染物研究现状的基础上,分析了AC和过氧化物的相互作用,并对该类高级氧化技术的发展前景进行了展望。  相似文献   

8.
可见光/Fenton光催化降解有机染料   总被引:35,自引:0,他引:35  
采用Fenton试剂(Fe3+/H2O2)在可见光条件下(λ>450nm)光催化降解目标染料化合物罗丹明B(RhodamineB,RhB).在pH<3.0体系中用可见光照射,能使RhB染料在光敏化作用下有效降解,反应160min后矿化率达到71.8%.采用ESR和溴甲酚绿(Bromocresolgreen,BCG)法跟踪测定活性氧化物种,通过对RhB降解过程的紫外-可见光谱、红外光谱分析及总有机碳量(TOC)跟踪测定,结果表明,Fe3+/H2O2/RhB体系在可见光照射下主要的活性氧化物种为羟基自由基,能有效地降解RhB.  相似文献   

9.
分别使用具有相似羧基含量的海藻纤维、 丙烯酸接枝改性聚四氟乙烯纤维和聚丙烯纤维(PAA-g-PP 和PAA-g-PTFE)3种含羧酸纤维与Fe3+进行配位反应, 研究和比较了反应的动力学特性及影响因素. 将3种含羧酸纤维铁配合物分别作为非均相Fenton反应催化剂应用于染料降解反应中, 分析和评价了其配位结构和表面性能对催化活性的影响. 结果表明, 在所涉及的温度和浓度范围内, 3种含羧酸纤维与Fe3+的反应均很好地符合Langmuir等温吸附模型和Lagergren准二级动力学方程. Fe3+初始浓度的增加会降低反应速率常数, 而反应温度的升高则会增加配合物中Fe3+的配合量. 在相同反应条件下, 海藻纤维比PAA-g-PP和PAA-g-PTFE更容易与Fe3+发生反应, 且反应速率常数和Fe3+配合量按照下列顺序排列: 海藻纤维>PAA-g-PP>PAA-g-PTFE. 3种含羧酸纤维铁配合物都能够在染料氧化降解反应中作为非均相Fenton催化剂, 且紫外光比可见光更能够提高其催化活性. 海藻纤维铁配合物比其它2种含羧酸纤维铁配合物具有更好的催化作用, 这与三者在配位结构和表面性能之间的显著差异有关.  相似文献   

10.
用溶胶-凝胶法在玻碳电极上制备了纳米多孔羟基磷灰石(HAp)-聚乙烯醇(PVA)涂层膜固定双链DNA,得到了一种新型DNA电化学传感器,检测了由Fenton反应引起的DNA氧化性损伤.结果表明,一定量浓度的抗坏血酸(AA)能加速Fenton反应的进行,使DNA损伤很快达到极限;损伤试剂中Fe2+的浓度越大,产生的羟基自由基(OH.)越多,对DNA的损伤就越严重;损伤试剂中EDTA的浓度越小,溶液中游离的Fe2+以及与DNA键合的Fe2+的浓度则相对越大,对DNA的损伤也就越严重.  相似文献   

11.
Recent interest in aminyl free radicals, especially in their electronic structure, has led to many investigations in this area. This report reviews the main features of the generation of aminyls, their reactivity, and electronic properties.  相似文献   

12.
Two atmospherically relevant dihalogenated methylperoxy radicals CHX2OO. (X=F and Cl) have been generated through O2-oxidation of the corresponding alkyl radicals CHX2. in the gas phase. The IR spectroscopic characterization of both radicals in cryogenic Ar- and N2-matrices (15 K) is supported by 18O-labeling and ab initio calculations at the UCCSD(T)/aug-cc-pVTZ level. Upon 266 nm laser irradiation, both radicals decompose mainly by releasing hydroxyl radicals (→HO.+X2CO) via the intermediacy of intriguing α-hydroperoxyalkyl radicals (.CX2OOH), implying that the photooxidation of dihalogenated hydrocarbons might serve as important sources of HO. radicals in the atmosphere.  相似文献   

13.
The first two persistent silenyl radicals (R2C=Si.?R), with a half‐life (t1/2) of about 30 min, were generated and characterized by electron paramagnetic resonance (EPR) spectroscopy. The large hyperfine coupling constants (hfccs) (a(29Siα)=137.5–148.0 G) indicate that the unpaired electron has substantial s character. DFT calculations, which are in good agreement with the experimentally observed hfccs, predict a strongly bent structure (?C=Si?R=134.7–140.7°). In contrast, the analogous vinyl radical, R2C=C.?R (t1/2≈3 h), exhibits a small hfcc (a(13Cα)=26.6 G) and has a nearly linear geometry (?C=C?R=168.7°).  相似文献   

14.
Stable organic radicals have received much attention as building blocks for the construction of molecular magnetic materials because they are readily functionalized using modern synthetic techniques. In this context, the nitroxide radical family has been the dominant class of radicals in molecular magnetochemistry. However, other stable radical systems have also been explored. One such example is the verdazyl family of radicals. Their high chemical stability and synthetic versatility make verdazyls one of the more attractive alternatives to nitroxides in molecular magnet design. This article reviews the magnetism of verdazyl-based systems, including through-bond coupling in polyradicals, coordination complexes and intermolecular interactions in the solid state.  相似文献   

15.
16.
Ab initio UHF wavefunctions for organic radicals have been obtained with different basis sets, before and after spin annihilation. It has been verified that the shapes of the electrostatic potential surfaces of these radicals are basis and spin contamination independent, at difference from hfs coupling constants.  相似文献   

17.
Radicals formed in γ-irradiated 1,3,5-trithiane (TT) and its three derivatives, α- and β-2,4,6-trimethyl-1,3,5-trithiane (α-TMT and β-TMT), and 2,4,6-trimethyl-2,4,6-triphenyl-1,3,5-trithiane (TMTPT), were studied by the electron paramagnetic resonance (EPR) method in the solid state. The sulfur radical cations (>S+•) were identified in all compounds at 77 K. In TT and its two derivatives, α-TMT and β-TMT, the >S+• decay via deprotonation-forming C-centered radicals. Further increase of temperature up to 293 K results in the appearance of thiyl-type radicals (RS). In TMTPT, the >S+• are stable up to 250 K. They formed the intermolecularly three-electron-bonded dimeric radical cations (S∴S)+ while RS radicals were not observed. Some of the radical assignments and their EPR parameters (g and a hyperfine splittings) obtained support from the DFT calculations.  相似文献   

18.
The rate constants of the reactions of DO2 + HO2 (R1) and DO2 + DO2 (R2) have been determined by the simultaneous, selective, and quantitative measurement of HO2 and DO2 by continuous wave cavity ring-down spectroscopy (cw-CRDS) in the near infrared, coupled to a radical generation by laser photolysis. HO2 was generated by photolyzing Cl2 in the presence of CH3OH and O2. Low concentrations of DO2 were generated simultaneously by adding low concentrations of D2O to the reaction mixture, leading through isotopic exchange on tubing and reactor walls to formation of low concentrations of CH3OD and thus formation of DO2. Excess DO2 was generated by photolyzing Cl2 in the presence of CD3OD and O2, small concentrations of HO2 were always generated simultaneously by isotopic exchange between CD3OD and residual H2O. The rate constant k1 at 295 K was found to be pressure independent in the range 25–200 Torr helium, but increased with increasing D2O concentration k1 = (1.67 ± 0.03) × 10−12 × (1 + (8.2 ± 1.6) × 10−18 cm× [D2O] cm−3) cm3 s−1. The rate constant for the DO2 self-reaction k2 has been measured under excess DO2 concentration, and the DO2 concentration has been determined by fitting the HO2 decays, now governed by their reaction with DO2, to the rate constant k1. A rate constant with insignificant pressure dependence was found: k2 = (4.1 ± 0.6) × 10−13 (1 + (2 ± 2) × 10−20 cm× [He] cm−3) cm3 s−1 as well as an increase of k2 with increasing D2O concentration was observed: k2 = (4.14 ± 0.02) × 10−13 × (1 + (6.5 ± 1.3) × 10−18 cm3 × [D2O] cm−3) cm3 s−1. The result for k2 is in excellent agreement with literature values, whereas this is the first determination of k1.  相似文献   

19.
In this study, magnetic spinel Co3O4/CoFe2O4 composite were synthesized by the mechanical mixing of both powdered pristine samples. Then the catalyst was characterized by TEM, SEM, XRD, BET, XPS and VSM measurement. Next, Co3O4/CoFe2O4 composite was applied to degrade rhodamine B (RhB) in water by activating persulfate. Results showed that Co3O4/CoFe2O4 composite exhibited high efficiency for removal of RhB, and 95.59% of it could be degraded in 45 min. Besides, the effects of parameters, such as initial pH, PS dosage, Co3O4/CoFe2O4 composite dosage, initial concentration of RhB and temperture were studied. Also, the effects of coexisting anions on RhB degradation were observed and explained. Furthermore, we conducted the quenching experiment and found that sulfate radical and hydroxyl radicals were the main active radicals in the degradation process. Finally, recycle experiments proved that Co3O4/CoFe2O4 had a good stability for RhB degradation. In short, Co3O4/CoFe2O4 composite is a promising catalyst for wastewater treatment.  相似文献   

20.
Silicon-containing compounds are widely used as synthetic building blocks, functional materials, and bioactive reagents. In particular, silyl radicals are important intermediates for the synthesis and transformation of organosilicon compounds. Herein, we describe the first protocol for the generation of silyl radicals by photoinduced decarboxylation of silacarboxylic acids, which can be easily prepared in high yield on a gram scale and are very stable to air and moisture. Irradiation of silacarboxylic acids with blue LEDs (455 nm) in the presence of a commercially available photocatalyst releases silyl radicals, which can further react with various alkenes to give the corresponding silylated products in good-to-high yields with broad functional-group compatibility. This reaction proceeds in the presence of water, enabling efficient deuterosilylation of alkenes with D2O as the deuterium source. Germyl radicals were similarly obtained.  相似文献   

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