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1.
Transformation of chlorophenols by nanoscale bimetallic particles represents one of the latest innovative technologies for environmental remediation. Nanoscale Pd/Fe bimetallic particles were synthesized in the laboratory for treatment of o-chlorophenol. Most of the nanoscale particles are in the size range of 20-100 nm. BET specific surface area of the nanoscale Pd/Fe particles is 12.4 m2/g. In comparison, a commercially available Fe powder( < 100 mesh) has a specific surface area of just 0.49 m2/g. Batch experiments demonstrated that the nanoscale Pd/Fe bimetallic particles can effectively dechlorinate o-chlorophenol. Dechlorination efficiency is affected by the mass fraction of Pd in the bimetal, nanoscale Pd/Fe mass concentration and mixing intensity.  相似文献   

2.
Pd/Fe及纳米Pd/Fe对氯酚的脱氯研究   总被引:30,自引:4,他引:26       下载免费PDF全文
采用化学沉淀法制备得到了纳米Fe和纳米Pd/Fe(20~100nm),利用制备的纳米催化剂对氯酚进行了催化脱氯研究,并与常规的零价铁和Pd/Fe进行了对比分析.结果表明,纳米颗粒具有较高的比表面积和表面反应活性,所制备的纳米Pd/Fe双金属BET比表面积达到12.4m2/g,而商用铁颗粒(<10m)的比表面积只有0.49m2/g;当钯化率为0.0666%,纳米Pd/Fe用量在6g/L时,氯酚脱氯率达到90%以上,在相同的处理效果下,常规Pd/Fe的使用量为纳米Pd/Fe的20倍左右,纳米Pd/Fe催化氯酚的脱氯降解遵循一级反应动力学.  相似文献   

3.
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   

4.
纳米Pd/Fe双金属对2,4-二氯酚的脱氯机理及动力学   总被引:16,自引:1,他引:15  
采用纳米Pd Fe双金属对2,4 二氯酚(2,4 DCP)进行了催化还原脱氯处理.结果表明,纳米Pd Fe双金属具有较高的比表面积和反应活性,对2,4 DCP具有较好的脱氯效率.当纳米Pd Fe用量在6g·L-1时,2,4 DCP脱氯率达到90%以上;脱氯效率与pH值、温度、钯化率、Pd Fe投加量等因素有关.2,4 DCP在脱氯过程中先生成邻氯酚和对氯酚,而后继续脱氯生成苯酚,或由2,4 DCP直接降解成苯酚.2,4 DCP降解符合拟一级反应动力学.2,4 DCP催化还原脱氯反应的活化能为139 7kJ·mol-1.  相似文献   

5.
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   

6.
金属催化还原技术对p-二氯苯的脱氯   总被引:9,自引:0,他引:9  
研究了Pd/Fe双金属体系对p-二氯苯(p-DCB)的快速催化还原脱氯处理. 结果表明, 在Pd的催化作用下,零价Fe对p-DCB具有较好的还原脱氯效率. 当Pd/Fe双金属的钯化率为0.02%,催化还原剂的用量为4g/75mL,反应90min p-DCB脱氯率达到90%以上;p-DCB的脱氯效率与溶液初始pH值、反应温度、钯化率、Pd/Fe投加量等因素有关;p-DCB在催化还原脱氯过程中先生成氯苯,而后继续脱氯生成苯.  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.
Nanoscale bimetallic Ni/Fe particles were synthesized from the reaction of sodium borohydride (NaBH4) with reduction of Ni^2+ and Fe^2+ in aqueous solution. The obtained Ni/Fe particles were characterized by TEM (transmission electron microscope), XRD (X-ray diffractometer), and N2-BET. The dechlorination activity of the Ni/Fe was investigated using p-chlorophenol (p-CP) as a probe agent. Results demonstrated that the nanoscale Ni/Fe could effectively dechlorinate p-CP at relatively low metal to solution ratio of 0.4 g/L (Ni 5 wt%). The target with initial concentration ofp-CP 0.625 mmol/L was dechlorinted completely in 60 rain under ambient temperature and pressure. Factors affecting dechlorination efficiency, including reaction temperature, pH, Ni loading percentage over Fe, and metal to solution ratio, were investigated. The possible mechanism of dechlorination ofp-CP was proposed and discussed. The pseudo-first- order reaction took place on the surface of the Ni/Fe bimetallic particles, and the activation energy of the dechlorination reaction was determined to be 21.2 kJ/mol at the temperature rang of 287-313 K.  相似文献   

9.
Over Pd/Fe bimetallic catalyst, o-nitrochlorobenzene(o-NCB), at a concentration of 20 mg/L in aqueous solutions, is rapidly converted to o-chloroaniline(o-CAN) first, and then quickly dechlorinated to aniline(AN) and Cl^- , without other intermediate reaction products. The aminated and dechlorinated reactions are believed to take place on the surface site of the Pd/Fe. The o-NCB removal efficiency and the next dechlorination rate increase with an increase of bulk loading of palladium and catalysts addition due to the increase of both the surface loading of palladium and the total surface area. These results indicate that reduction, amination and dechlorination of o- NCB by palladium-catalyzed Fe^0 particles, can be designed for remediation of contaminated groundwater.  相似文献   

10.
凹凸棒土--粉煤灰颗粒吸附剂的制备及改性   总被引:9,自引:0,他引:9  
研究了凹凸棒土—粉煤灰颗粒吸附剂的制备方法并对其进行再生和改性,利用比表面积测定、X射线能谱等手段对所制吸附剂进行了表征。结果表明:制备颗粒吸附剂的优化条件为凹凸棒土:粉煤灰=100:40(质量比),比表面积的值为80.06m^2/g。该吸附剂可采用1mol/L磷酸进行改性,改性后的比表面积为155.6m^2/g。  相似文献   

11.
负载型纳米Pd/Fe对氯代烃脱氯机理研究   总被引:3,自引:1,他引:2  
采用实验室制备的负载型纳米Pd/Fe对几种常见的挥发性氯代烃:四氯乙烯(ICE)、三氯乙烯(TCE)、1,1-二氯乙烯(1,1-DCE)、氯乙烯(VC)和林丹(γ-HCH)进行了还原脱氯研究.负载型纳米Pd/Fe对PCE、TCE、1,1-DCE、VC和γ-HCH的还原脱氯符合准一级反应动力学方程,其反应速率常数分别为2.79 h-1、2.35 h-1、1.12 h-1、2.14 h-1和4.02 h-1.氯代烃降解过程中几乎没有中间产物生成,终产物主要为C2 H6和C2 H4,如对TCE进行降解时,生成的C2H6和C2 H4分别占总碳质量比的70%和10%.采用暴露在空气中24 h的负载型纳米Pd/Fe对PCE进行脱氯,8次循环后仍能对PCE快速完全降解,表明负载型纳米Pd/Fe的稳定性能良好.以γ-HCH为目标污染物对负载型纳米Pd/Fe的反应持久性进行了研究,200 h后负载型纳米Pd/Fe的反应性没有明显降低,表明负载型纳米Pd/Fe反应持久性能良好.温度对负载型纳米Pd/Fe的脱氯反应影响较大,测得各氯代烃脱氯反应的活化能均高于29 kJ·mol-1.对PCE、TCE进行了脱氯动力学模拟,模拟结果与试验数据基本吻合,表明负载型纳米Pd/Fe对氯代烃的脱氯,是连串、平行及多步骤反应的结合.  相似文献   

12.
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   

13.
镍/铁二元金属对莠去津脱氯特性的影响   总被引:14,自引:3,他引:11  
为了考察Ni/Fe二元金属对莠去津的催化还原特性,分别以Fe粉和Ni/Fe体系作为还原和催化剂,在酸性条件下对莠去津的脱氯特性进行比较,并讨论了pH值,Ni/Fe配比以及金属添加量等因素对莠去津脱氯效率的影响.结果表明:与Fe粉比较,Ni/Fe体系对莠去津具有很明显的催化脱氯特性.在pH=2时,1.22%(W/W)Ni/Fe体系30min对莠去津的脱氯效率大于90%,相同条件下用Fe粉还原时,90min脱氯效率仅为22.21%通过Fe粉和Ni/Fe表面形态的比较以及实验结果的分析,对Ni/Fe体系的催化还原脱氯机理进行了初步探讨.  相似文献   

14.
Fe~0催化还原转化水中CCl_4的实验研究   总被引:2,自引:0,他引:2  
通过在Fe0表面化学沉积Cu、Ag、Pd、Ni构建了Cu/Fe、Ag/Fe、Pd,Fe、Ni/Fe多种双金属催化还原体系.通过序批实验研究了水体中毒性污染物CCl在Fe0以及上述双金属催化Fe0体系中的还原脱氯.结果表明,CCl4在上述5种Fe0还原体系中都能发生快速还原脱氯反应,Cu、Ag、Pd等催化剂的加入能明显提高反应速率.还原脱氯反应服从准一级反应动力学方程,CCl4水溶液在Fe0、Cu/Fe、Ag/Fe、Pd/Fe、Ni/Fe 5种还原体系中的反应速率常数分别为0.039 3、0.092 5、0.158、0.049 6和0.053 3 min-1.使用GC/MS分析了CCl4在各种还原体系中的还原脱氯产物,探讨了水体中CCl4还原脱氯降解的反应途径和可能中间产物.CCL4在不同反应体系中不但反应速率不同而且降解产物也不相同,在Cu/Fe、Ag/Fe体系产物以三氯甲烷、二氯甲烷为主,而在Pd/Fe体系主要为甲烷.逐步氢解是CCl4在Fe0还原体系中发生还原脱氯反应的最主要途径.  相似文献   

15.
为有效抑制纳米级Pd/Fe颗粒的团聚和钝化及改善其表面特性,将纳米SiO_2包覆在Pd/Fe颗粒表面,超声波辐照下液相还原法制备纳米级Pd/Fe@SiO_2复合颗粒,采用TEM、SEM、XRD、EDX及BET表征其物性,以2,4-二氯苯酚(2,4-DCP)为目标污染物,探究其对2,4-DCP的还原脱氯影响因素、降解机理和动力学,结果表明:制备的纳米级颗粒粒径均匀、分散性好,比表面积大;体系中纳米级Pd/Fe投加量、钯化率、TEOS投加量、反应温度及溶液初始pH均会对2,4-DCP的降解效果产生明显影响;并推测出纳米级Pd/Fe@SiO_2复合颗粒对2,4-DCP的降解机理即快速吸附—逐步脱氯—最终脱附释放,其降解符合拟一级动力学关系.  相似文献   

16.
何娜  李培军  任婉侠  范淑秀 《环境科学》2008,29(7):1924-1929
采用Fe0还原、钯催化法对土壤中2,2′,3,4,4′,5,5′-七氯联苯的的还原特性进行了实验研究.结果表明,Pd/Fe双金属能有效地进行2,2′,3,4,4′,5,5′-七氯联苯的催化脱氯.在钯化率为0.05%、钯/铁加入量1g、初始pH为5.6、反应时间5 d的条件下,钯/铁双金属对土壤中2,2′,3,4,4′,5,5′-七氯联苯去除率达54%.实验还考察了钯化率、初始pH、反应时间、钯/铁投加量、2,2′,3,4,4′,5,5′-七氯联苯初始浓度等参数对2,2′,3,4,4′,5,5′-七氯联苯脱氯效果的影响.研究表明,较高的钯化率、钯/铁加入量,较低的2,2′,3,4,4′,5,5′-七氯联苯初始浓度及弱酸性等条件更有利于Pd/Fe对2,2′,3,4,4′,5,5′-七氯联苯的还原脱氯.在Pd/Fe双金属表面,2,2′,3,4,4′,5,5′-七氯联苯的脱氯符合一级动力学反应,反应速率常数为0.014 2/h,其半衰期为49h.利用实验数据,对钯/铁双金属作用下的2,2′,3,4,4′,5,5′-七氯联苯还原脱氯的反应机制也进行了分析.  相似文献   

17.
含铬废水的直接排放会对自然环境造成严重危害.为探究零价铁-生物炭材料(Fe0-BC)与Cr(Ⅵ)的反应效能,以木质垃圾与印染行业废铁泥两种亟需处理的固体废物作为原料,在不同温度下通过碳热还原制备Fe0-BC,并将其应用于水中Cr(Ⅵ)的去除.材料表征结果表明,1 200℃下制备的Fe0-BC材料(Fe0-BC-1200)性能最佳,其比表面积为105.6 m3/g,孔径为6.23 nm,物相主要由Fe0、Cu0、C以及少量杂质构成,其中Fe0以球状的颗粒形式分散附着在碳的孔结构中,且大小均匀,粒度基本达到纳米级.通过静态试验考察了Fe0-BC材料对Cr(Ⅵ)的去除过程,发现Fe0-BC-1200对Cr(Ⅵ)的去除效果最好,在初始浓度为20 mg/L、初始pH为3.5、投加量为2.5 g/L的条件下,Cr(Ⅵ)的去除率达到95.2%. Cr(Ⅵ)的去除过程符合准二级反应动力学过程和Langmui...  相似文献   

18.
In this study, bimetallic nanoscale zero-valent iron particles(nZVI), including copper/nanoscale zero-valent iron particles(Cu/nZVI) and nickel/nanoscale zero-valent iron particles(Ni/nZVI), were synthesized by one-step liquid-phase reduction and applied for oxytetracycline(OTC) removal. The effects of contact time and initial p H on the removal efficiency were studied. The as-prepared nanoscale particles were characterized by scanning electron microscopy(SEM), energy dispersive spectroscopy(EDS) and X-ray diffraction(XRD). Finally, the degradation mechanisms of OTC utilizing the as-prepared nanoparticles were investigated by using X-ray photoelectron spectroscopy(XPS) and mass spectrometry(MS). Cu/n ZVI presented remarkable ability for OTC degradation and removed71.44% of OTC(100 mg/L) in 4 hr, while only 62.34% and 31.05% of OTC was degraded by Ni/nZVI and nZVI respectively. XPS and MS analysis suggested that OTC was broken down to form small molecules by ·OH radicals generated from the corrosion of Fe0. Cu/nZVI and Ni/n ZVI have been proved to have potential as materials for application in OTC removal because of their significant degradation ability toward OTC.  相似文献   

19.
混合硫酸盐还原菌与Cu/Fe颗粒协同处理含铬废水的研究   总被引:2,自引:2,他引:0  
贺气志  陈辉  王丹  李华  丁兴华  邓乐 《环境科学》2011,32(7):2000-2005
利用化学沉淀法制备Cu/Fe双金属颗粒,并从工业污泥中驯化得耐Cr(Ⅵ)硫酸盐还原菌厌氧混合菌群(SRB),将两者协同处理含Cr(Ⅵ)废水.研究比较了SRB-Cu/Fe体系与传统SRB体系、Cu/Fe体系处理废水的效果,并探讨了不同QCu/Fe、pH值对SRB-Cu/Fe体系处理效果的影响.结果表明,SRB-Cu/Fe...  相似文献   

20.
Solubilization of perchloroethylene (PCE) in a nonionic (Triton X-100) and a cationic (cetyltrimethylammonium bromide (CTAB)) surfactant solutions and the degradation of surfactant solubilized PCE using fine to nanosize Fe and bi-metallic Fe-Ni particles were investigated. Micelle partition coefficients (Km) and molar solubility ratio (MSR) for PCE in 10 g/L of surfactant solutions have been quantified and the solubility of PCE (100 mg/L in water) in the surfactant solutions increased by about ten fold. Of the two surfactants studied, Triton X-100 solubilized the higher amount of PCE per gram of surfactant. To degrade solubilized PCE, both iron and bimetallic Fe-Ni particles were used in continuously stirred batch reactors. The iron and bi-metallic particles were synthesized using the solution method and the particles were characterized using the SEM, EDS, TEM and XRD. The PCE solubilized up to 500 mg/L in both surfactant solutions were totally degraded at various rates by 200 g/L of bi-metallic Fe-Ni particles in less than 20 hr, which is the highest concentration of PCE degraded in the shortest time compared to data in the literature. The degradations of PCE solubilized in surfactant solutions were represented by nonlinear kinetic relationships which depended on the type of surfactant used for solubilizing the PCE.  相似文献   

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