多孔磁性Ag掺杂MnFe2O4材料的制备与其降解聚乙烯醇织物废水的性能研究

翟爽, 葛明桥*

化工新型材料 ›› 2020, Vol. 48 ›› Issue (5) : 290 -297.

PDF (4768KB)
化工新型材料 ›› 2020, Vol. 48 ›› Issue (5) : 290-297.
开发与应用

多孔磁性Ag掺杂MnFe2O4材料的制备与其降解聚乙烯醇织物废水的性能研究

    翟爽, 葛明桥*
作者信息 +

Preparation of porous magnetic Ag-doped MnFe2O4 and its performance in degradation of polyvinyl alcohol fabric wastewater

  • Zhai Shuang, Ge Mingqiao
Author information +
文章历史 +
PDF (4881K)

摘要

采用溶胶-凝胶法制备了Ag掺杂MnFe2O4材料,并考察了以其为催化剂催化过氧化氢降解聚乙烯醇模拟废液的效果。采用X射线衍射(XRD)、扫描式电子显微镜(SEM)、能量色散X射线(EDS)、比表面积测试(BET)、傅里叶红外光谱(FT-IR)、磁滞回线(VSM)等检测方法对Ag掺杂MnFe2O4颗粒进行表征。实验表明,采用溶胶-凝胶法合成的Ag掺杂MnFe2O4催化剂,产生了具有良好磁性的高度多孔结构。通过XRD和SEM分析发现,Ag进入催化剂中,并且掺杂了Ag的材料能将更多的催化过氧化氢转变为羟基自由基。此外,通过吡啶红外法发现,0.6% Ag添加量的催化剂所产生的路易斯位点最多,可以说明其表面的羟基含量,从而体现催化剂与双氧水产生的羟基自由基的含量。通过VSM测定发现,催化剂属于软磁材料系列,并且随着Ag含量的增加,催化剂的饱和磁强会略微下降,但是其磁性都仍可以满足回收的需要,对织物废水的处理具有现实意义和经济意义。

Abstract

The Ag-doped MnFe2O4 material was prepared by sol-gel method,and the effect of the catalyst on the degradation of polyvinyl alcohol simulated waste liquid by hydrogen peroxide was investigated.The detection method such as X-ray diffraction (XRD),scanning electronic microscopy equipped with an energy dispersive X-ray spectrometer (SEM-EDS),fourier transform infrared spectroscopy (FT-IR),vibrating sample magnetometer (VSM).was used to characterize Ag-doped MnFe2O4 particles.The test shown that the Ag-doped MnFe2O4 catalyst synthesized by the sol-gel method produced a highly porous structure with good magnetic properties.It was found by XRD and SEM that Ag entered the catalyst,and it was found through experiments that the Ag-doped material can convert more catalytic hydrogen peroxide into hydroxyl radicals.In addition,it was found by pyridine infrared method that the catalyst with 0.6% Ag addition produced the most Lewis sites,which can explain the hydroxyl content of the surface,thereby reflecting the content of hydroxyl radicals generated by the catalyst and hydrogen peroxide.The catalyst was found to be a series of soft magnetic materials by VSM measurement,and as the content of Ag increased,the saturation magnetic strength of the catalyst decreased slightly,but its magnetic properties could still meet the needs of recycling.

关键词

Ag掺杂MnFe2O4 / 聚乙烯醇 / 羟基自由基 / 磁性 / 废水处理

Key words

Ag-doped MnFe2O4 / polyvinyl alcohol / hydroxyl radical / magnetic / wastewater treatment

引用本文

引用格式 ▾
多孔磁性Ag掺杂MnFe2O4材料的制备与其降解聚乙烯醇织物废水的性能研究[J]. 化工新型材料, 2020, 48(5): 290-297 DOI:

登录浏览全文

4963

注册一个新账户 忘记密码

参考文献

[1] Nunes M A P,Martins S,Rosa M E,et al.Improved thermostable polyvinyl alcohol electrospun nanofibers with entangled naringinase used in a novel mini-packed bed reactor[J].Bioresour Technol,2016,213:208-215.
[2] Dong Y,Bian L,Wang P.Accelerated degradation of polyvinyl alcohol via a novel and cost effective heterogeneous system based on Na2S2O8 activated by Fe complex functionalized waste PAN fiber and visible LED irradiation[J].Chemical Engineering Journal,2019,358:1489-1498.
[3] Perkins W S.Textile coloration and finishing[M].Beijing:China Textile press,2004.
[4] Giroto J A,Guardani R,Teixeira A C S C,et al.Study on the photoFenton degradation of polyvinyl alcohol in aqueous solution[J].Chem Eng Process,2006,45:523-532.
[5] Lin C C,Lee L T.Degradation of polyvinyl alcohol in aqueous solutions using UV/oxidant process[J].Ind Eng Chen,2015,21:569-574.
[6] Qu X,Brame J,Li Q,et al.Nanotechnology for a safe and sustainable water supply:enabling integrated water treatment and reuse[J].Acc Chem Res,2012,46:834-843.
[7] Zhang T,Chen Y,Leiknes T.Oxidation of refractory benzothiazoles with PMS/CuFe2O4:kinetics and transformation intermediates[J].Environ Sci Technol,2016,50:5864-5873.
[8] Mathew D S,Juang R S.An overview of the structure and magnetism of spinel ferrite nanoparticles and their synthesis in microemulsions[J].Chem Eng J,2007,129:51-65.
[9] Kefeni K K,Mamba B B,Msagati T A M.Application of spinel ferrite nanoparticles in water and wastewater treatment:a review[J].Sep Purif Technol,2017,188:399-422.
[10] Lv S S,Chen X G,Ye Y,et al.Rice hull/MnFe2O4 composite:preparation,characterization and its rapid microwave-assisted COD removal for organic wastewater[J].J Hazard Mater,2009,171:634-639.
[11] Radhakrishnan R,Oyama S T,Chen J G,et al.Electron transfer effects in ozone decomposition on supported manganese oxide[J].J Phys Chem B,2001,105:4245-4253.
[12] Zhao L,Sun Z,Ma J.Novel relationship between hydroxyl radical initiation and surface group of ceramic honeycomb supported metals for the catalytic ozonation of nitrobenzene in aqueous solution[J].Environ Sci Technol,2009,43:4157.
[13] Miller R D.Surface electron transfer processes[M].Hoboken:John Wiley & Sons,1995.
[14] Lv A,Hu C,Nie Y,et al.Catalytic ozonation of toxic pollutants over magnetic cobalt-doped Fe3O4 suspensions[J].Appl Catal B,2012,s117-118:246-252.
[15] Wang Z,Ma H,Zhang C,et al.Enhanced catalytic ozonation treatment of dibutyl phthalate enabled by porous magnetic Ag-doped ferrospinel MnFe2O4 materials:performance and mechanism[J].Chemical Engineering Journal,2018,354:42-52.
[16] Krejčíková S,Matějová L,Kočí K,et al.Preparation and characterization of Ag-doped crystalline titania for photocatalysis applications[J].Appl Catal B,2012,111:119-125.
[17] Ren Y,Chen Y,Zeng T,et al.Influence of Bi-doping on Mn1-xBixFe2O4 catalytic ozonation of di-n-butyl phthalate[J].Chem Eng J,2016,283:622-630.
[18] Ren Y,Lin L,Ma J,et al.Sulfate radicals induced from peroxymonosulfate by magnetic ferrospinel MFe2O4(M=Co,Cu,Mn,and Zn) as heterogeneous catalysts in the water[J].Appl Catal B,2015,165:572-578.
[19] Globus A,Pascard H,Cagan V.Distnace between magnetic ions and fundamental properties in ferrites[J].Le Journal De Physique Colloques,1997,38:163-168.
[20] Hou X,Feng J,Ren Y,et al.Synthesis and adsorption properties of spongelike porous MnFe2O4[J].Colloids Surf,2010,363:1-7.
[21] Brodu N,Manero M H,Andriantsiferana C,et al.Role of Lewis acid sites of ZSM-5 zeolite on gaseous ozone abatement[J].Chem Eng J,2013,231:281-286.
[22] Mathew D S,Juang R S.An overview of the structure and magnetism of spinel ferrite nanoparticles and their synthesis in microemulsions[J].Chem Eng J,2007,129:51-65.

基金资助

国家重点研发计划重点基础材料技术提升与产业化重点专项项目(2016YFB0302901);江苏高校优势学科建设工程资助项目(PAPD);生态纺织教育部重点实验室(江南大学)资助项目(KLET1501);国家级大学生创新创业训练计划(201610295029)

AI Summary AI Mindmap
PDF (4768KB)

1189

访问

0

被引

导航
相关文章

AI思维导图

/