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1.
纳米镍/铁和铜/铁双金属对四氯乙烯脱氯研究   总被引:9,自引:2,他引:7  
以实验室合成的纳米双金属颗粒(Ni/Fe和Cu/Fe)为反应材料,对四氯乙烯(PCE)进行脱氯试验研究.纳米金属颗粒(直径范围在1~100nm)比表面积比微米级铁颗粒高数十倍.结果表明,纳米Ni/Fe和Cu/Fe对四氯乙烯有明显的脱氯作用,且脱氯反应符合准一级反应动力学方程;在作为还原剂的铁表面镀上一薄层起催化作用的金属Ni或Cu,催化剂的存在大大降低脱氯反应活化能,提高了脱氯速率,并减少氯代副产物的产量.与零价铁及微米级双金属系统(Ni/Fe,Cu/Fe)相比,纳米颗粒对PCE的脱氯速率有明显提高,尤其是纳米Ni/Fe,标准化反应速率常数KSA为4.283 mL·m-2·h-1,分别比零价铁和微米级Ni/Fe系统快33.23倍和11.59倍.纳米Cu/Fe标准化反应速率常数KSA为1.194 mL·m-2·h-1,分别比零价铁和微米级Cu/Fe双金属系统快9.26倍和5.24倍.在相同条件下,纳米Ni/Fe脱氯速率常数KSA是纳米Cu/Fe的3.59倍.  相似文献   
2.
The utility of nickel/iron in the remediation of atraz.ine-contaminated water was investigated. The experimental results showed that nickel/iron had effective catalytic activity in dechlorinating atraz.ine under acidic conditions. The dechlonnation reaction approximately followed the first-order kinetics under the experimental conditions( nickel/iron: 1.0 g/250 ml: Ca~r~ = 20.0 mg/L), the reaction rate increased with decreasing pH value of the reaction solution and increasing the proportion of Ni: Fe within 2.95 %. For condition with 2.95% nickel/iron, the reaction rate constants were 0.07518( R = 0.9927), 0.06212( R = 0.9846) and 0.00131 min^-1 ( R = 0.9.565) at pH = 2.0, 3.0 and 4.0, respectively. HPLC analysis was used to monitor the decline of atraz.ine concentration.  相似文献   
3.
铁铜双金属有机骨架MIL-101(Fe,Cu)活化双氧水降解染料性能   总被引:1,自引:0,他引:1  
梁贺  刘锐平  安晓强  刘会娟 《环境科学》2020,41(10):4607-4614
针对非均相芬顿传质效率低和Fe(Ⅲ)→Fe(Ⅱ)转化慢导致活性低等问题,采用溶剂热法制备铁铜双金属有机骨架材料[MIL-101(Fe,Cu)],并研究了材料界面性质、催化降解染料(亚甲基蓝)性能以及活化催化机制.结果表明,MIL-101(Fe,Cu)晶体结构完整且呈三维八面体形状;比表面积和平均孔径分别为667.2 m2·g-1和1.9 nm,可充分暴露反应活性位点.MIL-101(Fe,Cu)在广谱p H范围可活化H2O2高效降解亚甲基蓝.当p H=5、反应20 min,MIL-101(Fe,Cu)/H2O2对20mg·L-1亚甲基蓝的去除率为100%,较MIL-101(Fe)/H2O2和单独H2O2分别提高43.1%和88.9%.自由基猝灭实验与反应前后铁和铜价态变化结果表明,羟基自由基(·OH)是MIL-101(Fe,Cu)/H2<...  相似文献   
4.
Nanoscale palladized iron(Pd/Fe)bimetallic particles were prepared by reductive deposition method.The particles were characterized by X-ray diffraction(XRD),X-ray fluorescence(XRF),scanning electron microscope(SEM),transmission electron microscope(TEM),and Brunauer-Emmett-Teller-nitrogen(BET-N_2)method.Data obtained from those methods indicated that nanoscale Pd/Fe bimetallic particles containedα-Fe~0.Detected Pd to Fe ratio by weight(Pd/Fe ratio)was close to theoretical value. Spherical granules with di...  相似文献   
5.
以典型偶氮染料活性艳红X-3B为模型污染物,采用测定染料去除率、TOC去除率、苯胺生成量的方法及添加EDTA的对照试验,考察Al-Cu双金属体系对偶氮染料废水的脱色机理和脱色动力学.结果表明,在近中性条件下处理30min后脱色率就可达到83%左右;处理120min后脱色率高达96.4%,其中约为34%的色度去除是由于活性艳红X-3B被还原为苯胺,约为20%和30%的色度去除是由于铝离子混凝和铝刨花表面吸附.染料废水脱色是一个先大量吸附再进行内电解还原逐步降解的过程,铝离子的絮凝-吸附作用能有效促进色度的去除.脱色反应可视为表观一级反应,提高反应温度可以加快脱色速率.  相似文献   
6.
The feasibility of the rapid degradation of hexachlorobenzene (HCB) by micron-size silver (Ag)/iron (Fe) particles was investigated.Ag/Fe particles with different ratios (0,0.05%,0.09%,0.20%,and 0.45%) were prepared by electroless silver plating on 300 mesh Fe powder,and were used to degrade HCB at different pH values and temperatures.The dechlorination ability of Fe greatly increased with small Ag addition,whereas too much added Ag would cover the Fe surface and reduce the effective reaction surface,thereby decreasing the extent of dechlorination.The optimal Ag/Fe ratio was 0.09%.Tafel polarization curves showed that HCB was rapidly degraded at neutral or acidic pH,whereas low pH levels severely intensified H2 production,which consumed the reducing electrons needed for the HCB degradation.HCB degradation was more sensitive to temperature than pH.The rate constant of HCB dechlorination was 0.452 min-1 at 85℃,50 times higher than that at 31℃.HCB was degraded in a successive dechlorination pathway,yielding the main products 1,2,4,5-tetrachlorobenzene and 1,2,4-trichlorobenzene within 2 hr.  相似文献   
7.
Ni/Fe二元金属脱氯降解对氯苯酚的研究   总被引:10,自引:0,他引:10  
研究了Ni/Fe二元金属脱氯降解对氯苯酚的催化性能.结果表明,吸附氢原子是对氯苯酚脱氯降解的主要还原剂,发生在催化剂表面的化学反应为整个过程的速率控制步骤.质量分数为2.96%Ni的催化剂具有最大的比表面积,在相同条件下也具有最好的脱氯性能,90min时的脱氯效率达64%.对不同Ni含量催化剂脱氯的动力学研究表明,对氯苯酚脱氯的表观动力学方程为一级反应,而且反应速率常数正比于催化剂的比表面积.通过计算表明,Ni/Fe单位比表面的表观速率常数为(κ′)为7.61×10-4min-1·m-2.当体系温度小于43℃时,脱氯效率随着温度的上升而加快,超过这一温度后,升高温度反而会使体系的脱氯效率下降.  相似文献   
8.
海藻酸钠固定化Fe-Cu双金属去除Cr(Ⅵ)的作用机制   总被引:2,自引:0,他引:2       下载免费PDF全文
通过运用海藻酸钠(SA)固定化Fe-Cu双金属(SAB)来克服Fe0-PRB利用率低、易板结、堵塞的缺陷.结果表明,SA和Fe-Cu双金属的运用能极大地提高Fe0的利用率,SA的运用可以使Fe-Cu双金属以较低的镀铜量获得较高的Cr(Ⅵ)去除率,SAB镀铜0.9%(SAB0.9)为最佳的填料.FEI电镜扫描结果表明,SA跟2价金属阳离子Ca2+交联形成孔隙结构,为双金属的附着提供了大量的吸附点位,增大了金属颗粒的比表面积;场发射扫描电子显微镜(FESEM)及X-射线光电子能谱(XPS)结果表明,Cu负载于Fe0表面,呈疏松层状结构,在Fe0与Cr(Ⅵ)反应中起催化剂作用,通过自身化合态变化传递Fe0失去的电子,从而提高了Fe0的利用率.渗透系数实验结果表明,SAB0.9能控制Fe0与Cr(Ⅵ)反应产物的释放,缓解Fe0-PRB易板结、堵塞的缺陷.  相似文献   
9.
Heterobimetallic complexes of the type Ni[Cu(SCN)2]2 · L (where L = acetophenone benzoylhydrazone, acetophenone isonicotinoyl hydrazone, acetophenone salicyloylhydrazone (ash), acetophenone anthraniloylhydrazone, p-hydroxy acetophenone benzoylhydrazone, p-hydroxy acetophenone isonicotinoyl hydrazone p-hydroxy acetophenone salicyloylhydrazone (phash), p-hydroxy acetophenone anthraniloyl hydrazone), were synthesized and characterized. The complexes are polymeric, insoluble in common organic solvents and are nonelectrolytes. Magnetic moments and electronic spectral studies suggest a spin-free octahedral geometry for the complexes. IR spectra show the bidentate nature of all the ligands bonding through >C=O and >C=N–groups. The SCN group acts as a bridge between two metal centers. X-ray powder diffraction parameters for Ni[Cu(SCN)2]2 · ash and Ni[Cu(SCN)2]2 · phash correspond to orthorhombic and tetrahedral crystal lattices, respectively, for these complexes. The complexes show a significant antifungal activity against Rizoctonia, Stemphylium and Aspergillus sp. and antibacterial activity against Clostridium and Pseudomonas sp. The metal complexes are more active than the ligands.  相似文献   
10.
Polybrominated diphenyl ethers (PBDEs) have been widely used as fire-retardants. Due to their high production volume, widespread usage, and environmental persistence, PBDEs have become ubiquitous contaminants in various environments.Nanoscale zero-valent iron (ZVI) is an effective reductant for many halogenated organic compounds. To enhance the degradation efficiency, ZVI/Palladium bimetallic nanoparticles (nZVI/Pd) were synthesized in this study to degrade decabromodiphenyl ether (BDE209) in water. Approximately 90% of BDE209 was rapidly removed by nZVI/Pd within 80 min, whereas about 25% of BDE209 was removed by nZVI. Degradation of BDE209 by nZVI/Pd fits pseudo-first-order kinetics. An increase in pH led to sharply decrease the rate of BDE209 degradation. The degradation rate constant in the treatment with initial pH at 9.0 was more than 6.8 × higher than that under pH 5.0. The degradation intermediates of BDE209 by nZVI/Pd were identified and the degradation pathways were hypothesized. Results from this study suggest that nZVI/Pd may be an effective tool for treating polybrominated diphenyl ethers (PBDEs) in water.  相似文献   
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