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1.
采用化学共沉淀法,以聚乙烯亚胺(PEI)为改性剂,制备了聚乙烯亚胺改性的纳米四氧化三铁复合材料(Fe3O4/PEI).Zeta电位、透射电镜和FTIR表征结果显示,PEI修饰提高了纳米Fe3O4在水中的分散性和稳定性,同时也增强了其表面正电荷,从而提高了Fe3O4对水中磷酸根的去除能力.在磷酸根初始浓度为50 mg·L~(-1),Fe3O4/PEI投加量为200 mg,p H=3,温度为25℃的条件下,Fe3O4/PEI对100 m L磷酸根的吸附去除率达到91%.吸附过程在3 h内达到平衡.吸附等温数据表明,该吸附过程符合Langmuir吸附等温方程,可决系数R2达到0.99,最大吸附量为29.88 mg·L~(-1).Fe3O4/PEI复合材料重复利用性好,在第5次吸附-解析后还能保持对磷酸根75%以上的吸附去除率.磷的解析效率随着p H增加而增加,在p H=13时,解析效率达到65%.  相似文献   

2.
采用共沉淀法制备了一种新型铁钇氧化物(Fe3O4/Y2O3)磁性吸附剂,并对其表面特性及磷吸附行为进行了初步研究.扫描电镜(SEM)与X-射线衍射仪(XRD)表征结果表明,此吸附剂具有纳米结构,初级粒子平均粒径为15.2nm.振动样品磁强计(VSM)测得比饱和磁化强度为38.7emu·g-1,磁性较强,可方便地实现固液分离.吸附剂的等电点为6.8.磷吸附实验表明,25℃时,Langmuir吸附等温线可较好地拟合Fe3O4/Y2O3对溶液中磷的吸附(R2=0.989),最大吸附量(pH=5.0)为60.6mg·g-1(以P计);吸附速率较快,在120min内可完成吸附容量的80%以上,符合准二级动力学模型(R2=0.997);溶液pH对Fe3O4/Y2O3吸附磷的影响较为明显,离子强度则影响不大;共存阴离子对吸附影响的大小顺序为Cl-相似文献   

3.
吸附法是回收水中磷酸盐经济有效的方法之一,为提高四氧化三铁(Fe_3O_4)对磷酸盐的吸附能力,且保证其在外加磁场的作用下仍易于从水中分离,本研究选取过氧化钙(CaO_2)作为氧化剂部分氧化Fe~(2+)制备了磷回收吸附剂——Ca掺杂Fe3O4(CMIO),并利用XRD、XRF和VSM等技术对CMIO进行表征.结果表明,CMIO为嵌入Ca的Fe3O4晶型结构,其饱和磁化强度为38. 82 emu·g~(-1),在外加磁场作用下易从水中分离.CMIO对磷的吸附容量随pH增加而降低,在pH=2,T=25℃时达到最大吸附容量24. 10 mg·g~(-1),几乎是纯Fe3O4吸附容量的5倍.CMIO对磷的吸附符合Langmuir等温吸附模型,帒其吸附过程遵循准二级动力学模型.磷酸盐在CMIO内表面发生络合反应,形成了■Fe-Ca-P三元复合物,从而吸附磷.与水中其他阴离子相比,CMIO对PO_4~(3-)有良好的选择吸附性,且吸附的PO_4~(3-)可用NaO H溶液解吸; CMIO每循环利用一次质量减少不超过4%,可多次循环利用.  相似文献   

4.
磁性纳米Fe_3O_4对毒死蜱的增效和催化降解研究   总被引:1,自引:0,他引:1  
应用溶剂热法制备了磁性纳米Fe3O4(NMFO),并用聚乙二醇-6000对其进行改性,使纳米Fe3O4表面由亲水性转变为亲脂性,从而实现与亲脂性毒死蜱的复合。纳米Fe3O4的加入使毒死蜱的生物活性明显提高。室内毒力试验结果表明:含0.2%纳米Fe3O4的Fe3O4/毒死蜱制剂的毒力在室内和紫外光照下分别是同浓度纯毒死蜱的3.84倍和4.17倍;其降解率也显著提高,纳米Fe3O4/毒死蜱制剂在太阳光照下放置10 d,其降解率可达93.2%,相同条件下纯毒死蜱的降解率是10.14%,而将添加或未添加纳米Fe3O4的毒死蜱于暗处放置相同的时间,其降解率分别为1.21%和0.23%。  相似文献   

5.
不同水分条件下铁基氧化物对土壤砷的稳定化效应研究   总被引:9,自引:3,他引:6  
应用等温吸附试验及室内模拟培养的方法,研究了Fe2O3、Nano-Fe2O3和铁锰双金属氧化物(FMBO)等铁基氧化物对砷的吸附特性和对不同含水量土壤中砷的稳定化效应.从等温吸附试验结果来看,3种铁基氧化物对As(V)和As(Ⅲ)的吸附过程符合准二级动力学方程,12 h后基本达到吸附平衡,吸附等温线符合Langmuir方程,FMBO对As(V)和As(Ⅲ)的吸附容量显著大于Fe2O3和Nano-Fe2O3,且对As(Ⅲ)的饱和吸附容量大于As(V),能够起到氧化和吸附的双重作用.从对不同含水量土壤中砷的稳定化效果来看,Nano-Fe2O3和FMBO在风干和田间持水量土壤中均能达到90%以上的稳定化效率,显著高于Fe2O3;在土壤水分饱和条件下,FMBO的稳定化效率仍保持在93.5%以上,且能够将土壤中As(Ⅲ)氧化成As(V),而Fe2O3和Nano-Fe2O3分别仅为29.4%、81.4%.3种铁基氧化物的添加会使土壤中砷的结合态发生变化,Fe2O3、NanoFe2O3主要使砷由F1非专性吸附态和F2专性吸附态向F4结晶铁锰或铁铝水化氧化物结合态转变,添加FMBO主要向F3无定形或弱结晶铁锰或铁铝水化氧化物结合态转变.总体看来,在非饱和状态的土壤,Nano-Fe2O3和FMBO均为良好的稳定化材料,而对于长期淹水的稻田或地下水位较高的地区,或者由于降雨造成土壤滞水等情况,FMBO可以作为一种优良的稳定化材料用于土壤砷污染修复.  相似文献   

6.
以纳米Fe3O4负载浮游球衣菌(Sphaerotilus natans)制备复合生物吸附剂,对此吸附剂进行表征并考察了其吸附水中重金属离子的性能.红外光谱分析表明,此复合生物吸附剂表面的主要活性基团为酰胺基(-CONH-)和羟基(-OH).吸附性能研究表明,菌含量和流量是影响复合生物吸附剂吸附重金属离子的主要因素,在Cu2 初始浓度c0<20 mg/L,菌含量1.5 g/L(菌/Fe3O4=3:2),流量0.96 L/h时吸附剂对Cu2 的吸附效果最好;用稀盐酸对复合生物吸附剂进行再生,吸附剂可重复使用10次以上,再生液可重复使用3次;吸附选择性为:Pb2 >Cu2 >Zn2 >Cd2 .  相似文献   

7.
给水厂污泥改良生物滞留填料除磷效果的研究   总被引:8,自引:5,他引:3  
王建军  李田  张颖 《环境科学》2014,35(12):4642-4647
通过静态吸附实验研究了土壤、给水厂污泥对磷的吸附特性,采用生物滞留模拟柱,考察生物滞留技术对城市径流中磷的去除效果,评价以给水厂污泥改良填料的可行性.结果表明,给水厂污泥对磷的吸附能力远大于土壤.在进水磷浓度为1.0 mg·L-1条件下,传统填料模拟柱出水总磷随着进水量的增加浓度逐渐增大,而改良填料模拟柱表现出稳定的长期去除效果,经7个月的连续运行,改良填料模拟柱出水总磷的浓度仍小于0.050 mg·L-1,满足地表水Ⅲ类水质标准.根据静态吸附实验估算结果,相同的控制条件下,添加4%给水厂污泥的改良填料对磷的吸附能力约为传统填料的4倍.无定型铁铝的沉淀、吸附作用是改良填料截留进水中磷的主要机制,工程应用中可在填料中添加4%~5%比例的给水厂污泥以提高生物滞留设施控制受纳水体富营养化的效果.  相似文献   

8.
为提升再生水品质,以玉米芯耦合硫铁填料构造出固相纤维素碳源+硫铁填料复合脱氮除磷系统(简称SCSC-S/Fe复合系统),基于填料生物膜Miseq高通量测序构建了16S rRNA基因克隆文库,结合系统沉积物的X射线衍射(XRD)分析,探讨了该系统对模拟城市污水处理厂低C/N比尾水深度脱氮同步除磷特性及作用途径.结果表明,随温度升高,TN去除率逐渐增大,TP去除率增加不明显,在温度为30℃和水力停留时间HRT=9h时,NO_3~--N、TN、TP平均去除率分别为99.86%、92.70%和89.15%.固相纤维素碳源反硝化脱氮单元内具有降解纤维素类和反硝化作用类细菌分别占细菌总数的41.37%和54.02%,硫铁复合填料脱氮除磷单元内异养反硝化、硫自养反硝化和氬自养反硝化的细菌占细菌总数的91.53%;XRD结果表明,水中的PO_4~(3-)主要以FeP0_4、Fe_3(P0_4)_2·χH_20和Fe_3(P0_4)_3(0H)_2等物质形式去除.因此,复合系统脱氮以异养反硝化作用为主,协同硫自养反硝化和氢自养反硝化作用;复合系统具有"化学+生物"双重除磷作用,以化学除磷作用为主.SCSC-S/Fe复合系统实现了低C/N比城市污水处理厂尾水深度脱氮同步除磷的目的.  相似文献   

9.
采用高通量测序技术,研究秸秆、生物炭和纳米碳3种碳源添加对盐碱耕地土壤固碳细菌群落结构及多样性的影响,并分析土壤化学性质与固碳细菌群落多样性的关系.结果表明:3种碳源添加均降低土壤固碳细菌群落多样性,其中生物炭和纳米碳添加的土壤固碳细菌的Chao1指数、物种多样性、Shannon指数及系统多样性值均高于秸秆添加的.3种碳源添加均降低土壤固碳细菌群落的物种丰度,其中纳米碳添加的物种丰度大于秸秆和生物炭添加的.在群落组成方面及相对丰度上,3种碳源添加后的优势菌门为变形菌门(Proteobacteria),优势菌纲为γ-变形菌纲(Gammaproteobacteria),均在纳米碳添加后相对丰度最高,分别为90.38%、57.79%.群落组间差异分析结果显示,秸秆和纳米碳添加后土壤固碳细菌群落结构差异显著.冗余分析结果表明,土壤固碳细菌群落结构受土壤pH值、有机碳、全氮、全磷、碱解氮及有效磷的综合影响,其中土壤pH值和有效磷含量是影响土壤固碳细菌群落结构的主要化学性质.综合来看,在盐碱耕地中添加秸秆、生物炭或纳米碳,都抑制了土壤固碳细菌群落的多样性和物种丰度,但纳米碳能够增加土壤固碳细菌群落结构差异.  相似文献   

10.
采用高通量测序技术,研究秸秆、生物炭和纳米碳3种碳源添加对盐碱耕地土壤固碳细菌群落结构及多样性的影响,并分析土壤化学性质与固碳细菌群落多样性的关系.结果表明:3种碳源添加均降低土壤固碳细菌群落多样性,其中生物炭和纳米碳添加的土壤固碳细菌的Chao1指数、物种多样性、Shannon指数及系统多样性值均高于秸秆添加的.3种碳源添加均降低土壤固碳细菌群落的物种丰度,其中纳米碳添加的物种丰度大于秸秆和生物炭添加的.在群落组成方面及相对丰度上,3种碳源添加后的优势菌门为变形菌门(Proteobacteria),优势菌纲为γ-变形菌纲(Gammaproteobacteria),均在纳米碳添加后相对丰度最高,分别为90.38%、57.79%.群落组间差异分析结果显示,秸秆和纳米碳添加后土壤固碳细菌群落结构差异显著.冗余分析结果表明,土壤固碳细菌群落结构受土壤pH值、有机碳、全氮、全磷、碱解氮及有效磷的综合影响,其中土壤pH值和有效磷含量是影响土壤固碳细菌群落结构的主要化学性质.综合来看,在盐碱耕地中添加秸秆、生物炭或纳米碳,都抑制了土壤固碳细菌群落的多样性和物种丰度,但纳米碳能够增加土壤固碳细菌群落结构差异.  相似文献   

11.
In this work,we fabricated three kinds of Ag/Fe_2O_3 model catalysts with different morphologies to study the interfacial interactions between Ag and Fe_2O_3,and how they affected the catalytic activity in hydrogenation of p-nitrophenol was explored.The hydrothermal method was used to synthesize the metal oxide supported silver catalyst,with various morphologies including nanoplates(NPs),nanospheres(NSs),and nanocubes(NCs).The crystal structure,morphology and surface elements of the composite were investigated by various measurements,such as X-ray diffraction(XRD),scanning electron microscopy(SEM),transmission electron microscopy(TEM) and X-ray photoelectron spectroscopy(XPS).The catalytic activity was also evaluated by the reduction of p-nitrophenol to p-aminophenol.It was found that the activities of the above catalysts varied with the morphology of the support.Among them,Ag/Fe_2O_3 NPs promoted the highest performance,Ag/Fe_2O_3 NSs were slightly inferior,and Ag/Fe_2O_3 NCs were the worst.At last,we ascribed the remarkable activity of Ag/Fe_2O_3 NPs to the strong metal-support interactions between Ag and Fe_2O_3.  相似文献   

12.
王钧伟  杨建丽  刘振宇 《环境科学》2009,30(12):3455-3460
利用固定床反应器研究了模拟烟气(N_2、SO_2、O_2)气氛下,气态Hg~0在V_2O_5/AC催化剂上的吸附脱除行为.考察了V_2O_5担载量、SO_2浓度和吸附温度等对V_2O_5/AC吸附脱除Hg~0的影响,并对V_2O_5/AC上吸附汞的形态进行了XPS分析表征.研究发现,V_2O_5/AC对Hg~0的吸附能力远大于载体AC.汞的吸附量与V_2O_5/AC中V_2O_5的质量分数有关,随着V_2O_5质量分数从0.5%增加到1.0%,汞的吸附量从75.9 μg·g~(-1)增加到89.6 μg·g~(-1) (无氧) 和115.9 μg·g~(-1)增加到185.5 μg·g~(-1) (有氧),远高于相同吸附条件下的AC上的汞吸附量 (9.6 μg·g~(-1)和23.3 μg·g~(-1)).SO_2对Hg~0的吸附有促进作用,主要是由于SO_2和Hg~0在V_2O_5/AC上发生了化学反应.但是当SO_2体积分数从500×10~(-6)增加到2 000×10~(-6)时,V_2O_5/AC对汞的吸附量只增加了5%.不同温度下的实验结果表明,V_2O_5/AC催化剂在150℃左右的吸附脱除Hg~0的能力最高,汞的吸附量达到98.5 μg·g~(-1) (无氧) 和187.7 μg·g~(-1) (有氧).XPS 分析结果表明,在V_2O_5/AC催化剂表面有HgO和HgSO_4生成,证实了V_2O_5和SO_2的作用.  相似文献   

13.
以铝柱撑膨润土负载纳米Fe_3O_4制备出性能良好的复合型催化剂。结合X射线粉末衍射(XRD)、扫描电镜(SEM)和比表面孔隙分析(BET)对催化剂的晶相、比表面积和粒度进行表征。负载的纳米Fe_3O_4粒径约为20~30nm,均匀分散到膨润土表面,未发生明显的团聚。在紫外光作用下用该催化剂对焦化厂二沉池出水进行深度处理。结果表明,在催化剂投加量为0.7 g/L,pH为2.5,温度40℃,H_2O_2初始浓度为17.6mmol/L的反应条件下,二沉池出水(化学需氧量COD=140mg/L,色度=400度)经催化氧化降解后,COD和色度可分别降低到54.44 mg/L和10度,达到国家工业再生用水水质标准GB/T 19923-2005(COD≤60 mg/L,色度≤30度)。催化剂重复使用4次时,废水COD和色度去除率保持稳定。  相似文献   

14.
Hydrogels have attracted large attention in wastewater treatment fields due to their low-cost and good interaction with pollutants, among which novel double network hydrogel is an outstanding class. To expand the application of double network hydrogel in water treatment, in this study, eco-friendly physically cross-linked double network polymer hydrogel beads (DAP) are prepared and studied in depth on the mechanism of Methylene Blue (MB) adsorption; and then the polymer hydrogels are further functionalized by inorganic materials. MB adsorption on DAP favors alkaline condition which is due to the increase of electrostatic attraction and adsorption site, and it reaches equilibrium within 10?hr, which is faster than that of the single network hydrogel beads (SAP). Through thermodynamics study, the process shows to be an exothermic and spontaneous process. The adsorption isotherms are well fitted by Langmuir model, with a maximum monolayer adsorption capacity of 1437.48?mg/g, which is larger than SAP (1255.75?mg/g). After being functionalized with common inorganic materials including activated carbon, Fe3O4 and graphene oxide (GO), the composites show to have larger pore sizes and have obvious increases in adsorption capacity especially the one contains GO. Then the composites contains Fe3O4 are used as heterogeneous Fenton catalyst which shows to have excellent performance in MB degradation. The results indicate the potential of polymer double network to be functionalized in environmental areas.  相似文献   

15.
低温磁性铁基SCR烟气脱硝的实验研究   总被引:3,自引:2,他引:1  
姚桂焕  张琦  秦烨  王芳  陆芳  归柯庭 《环境科学》2009,30(10):2852-2857
在流化床反应器中,以磁性铁氧化物(Fe3O4、γ-Fe2O3)颗粒为床料,氨为还原剂,进行了中低温SCR烟气脱硝实验研究,然后对反应辅加磁场,初步研究磁场对磁性γ-Fe2O3催化剂SCR脱硝的影响,并对床料进行了XRD分析.结果表明,Fe3O4的SCR活性较差,γ-Fe2O3的SCR活性较佳,在250℃其催化脱硝效率能达到90%,但在250℃以上Fe2O3会对氨的氧化起作用,因而在250℃及以下的邻近温度区间是最佳催化温度区间.此外,在150~290℃,外加磁场能促进γ-Fe2O3对NO的吸附,提高脱硝效率,使250℃时的脱硝效率达到95%左右,但在290℃以上,则会降低脱硝效率.为了抑制氨的氧化,发挥磁场对γ-Fe2O3脱硝的作用,适合在200~250℃低温区间内采用γ-Fe2O3催化剂进行SCR脱硝.  相似文献   

16.
Elimination of formaldehyde over Cu-Al2O3 catalyst at room temperature   总被引:2,自引:0,他引:2  
Catalytic elimination of formaldehyde (HCHO) was investigated over Cu-Al2O3 catalyst at room temperature. The results indicated that no oxidation of HCHO into CO2 occurs at room temperature, but the adsorption of HCHO occurs on the catalyst surface.With the increase of gas hourly space velocity(GHSV) and inlet HCHO concentration, the time to reach saturation was shortened proportionally. The results of the in situ DRIFTS, Density functional theory calculations and temperature programmed desorption(TPD) showed that HCHO was completely oxidized into HCOOH over Cu-Al2O3 at room temperature. With increasing the temperature in a flow of helium, HCOOH was completely decomposed into CO2 over the catalyst surface, and the deactivated Cu-Al2O3 is regenerated at the same time. In addition, although Cu had no obvious influence on the adsorption of HCHO on Al2O3, Cu dramatically lowered the decomposition temperature of HCOOH into CO2. It was shown that Cu-Al2O3 catalyst had a good ability for the removal of HCHO, and appeared to be promising for its application in destroying HCHO at room temperature.  相似文献   

17.
Bacterial community structure and iron corrosion were investigated for simulated drinking water distribution systems(DWDSs) composed of annular reactors incorporating three different treatments: ozone, biologically activated carbon and chlorination(O_3-BAC-Cl_2);ozone and chlorination(O3-Cl_2); or chlorination alone(Cl_2). The lowest corrosion rate and iron release, along with more Fe_3O_4 formation, occurred in DWDSs with O_3-BAC-Cl_2 compared to those without a BAC filter. It was verified that O_3-BAC influenced the bacterial community greatly to promote the relative advantage of nitrate-reducing bacteria(NRB)in DWDSs. Moreover, the advantaged NRB induced active Fe(III) reduction coupled to Fe(II) oxidation, enhancing Fe_3O_4 formation and inhibiting corrosion. In addition, O_3-BAC pretreatment could reduce high-molecular-weight fractions of dissolved organic carbon effectively to promote iron particle aggregation and inhibit further iron release. Our findings indicated that the O_3-BAC treatment, besides removing organic pollutants in water, was also a good approach for controlling cast iron corrosion and iron release in DWDSs.  相似文献   

18.
In situ DRIFTS study of hygroscopic behavior of mineral aerosol   总被引:2,自引:1,他引:1  
In situ difflusion reflectance infrared Fourier transform spectroscopy was used to study the water adsorption on mineral oxides(SiO2,α-Al2O3,MgO,Fe2O3,TiO2).The results showed that all the water adsorption isotherms were well fitted with the Brunauer-EmmettTeller(BET)-Ⅲ type equation,with the calculated monolayers occurring at 24%-30% relative humidity.It showed that about 1-5 layers of water adsorbed on oxides surfaces in ambient relative humidity(20%-90%).The measured deliquescence relative humidity of NaCl was(74 ± 1)%,which demonstrated that DRIFTS is a useful method for the study the hygroscopic behavior of mineral dust.In addition,the limits of DRIFTS were also discussed.  相似文献   

19.
采用纳米Fe3O4降解溶液中的2,4-D,考察了2,4-D初始浓度、纳米Fe3O4的投加量、溶液pH对2,4-D降解效率的影响,并探讨了2,4-D的降解机理。实验结果表明,Fe3O4对2,4-D有明显的降解作用,纳米Fe3O4的降解效果优于微米级Fe3O4,降解过程中溶液中的氯离子浓度随着2,4-D的降解而升高,Fe3O4对2,4-D的降解机理是还原脱氯。当2,4-D初始浓度在0~10mg/L、纳米Fe3O4投加量0~300mg/L的范围内,2,4-D降解率随初始浓度和纳米Fe3O4投加量的增加而增大。在2,4-D初始浓度为10mg/L、pH3.0、纳米Fe3O4投加量300mg/L时降解效率最高,48h内2,4-D的降解率可达40%。  相似文献   

20.
将海藻酸钠(SA)、Fe3O4和La(Ⅲ)离子通过溶液反应法制得一种新型磁性海藻酸镧复合凝胶微球(Fe3O4@SA/La),采用扫描电子显微镜(SEM)、X射线衍射(XRD)及红外光谱(FT-IR)等进行表征.以直接红棕RN(DRB RN)和直接深棕2M(DDB 2M)2种直接染料为吸附对象,考察了染料溶液pH值、吸附时间和温度对吸附剂性能的影响.结果表明:在吸附剂投加量为0.1g、染料溶液自然pH值条件下,Fe3O4@SA/La复合凝胶微球室温下对DDB 2M和DRB RN均有良好的吸附性,120min即可达吸附平衡,吸附量分别可达678和688mg/g.吸附过程符合拟二级吸附动力学方程,等温吸附符合Freundlich模型.吸附剂对2种染料的吸附热力学参数(ΔG<0、ΔH<0、ΔS>0)表明吸附反应均为混乱度增加的自发放热反应.  相似文献   

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