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韩星等:从腐泥土型红土镍矿制备共掺杂MgFε,0,物相转化规律及催化性能 ·609· [10]Sharma R,Bansal S,Singhal S.Tailoring the photo-Fenton ac- Supercrit Fluids,2010,53(1-3):92 tivity of spinel ferrites MFe2 O)by incorporating different cat- [23]Ghanbari D,Salavati-Niasari M.Hydrothermal synthesis of dif- ions (M=Cu,Zn,Ni and Co)in the structure.RSC Ade, ferent morphologies of MgFe2 and magnetic cellulose acetate 2015,5(8):6006 nanocomposite.Korean Chem Eng,2015,32(5):903 [11]Wu R C,Qu J H.Removal of water-soluble azo dye by the mag- [24]Robinson D,Medonald R,Zhang W S,et al.Developments in netic material MnFe2.J Chem Technol Biotechnol,2005,80 the hydrometallurgical processing of nickel laterites/COM017 (1):20 Conference of Metallurgists.Vancouver,2017:9526 [12]Rad L R,Ghazani B F,Irani M,et al.Comparison study of phe- [25]Quast K,Connor J N,Skinner W,et al.Preconcentration strate- nol degradation using cobalt ferrite nanoparticles synthesized by gies in the processing of nickel laterite ores Part 1:literature re- hydrothermal and microwave methods.Desalination Water Treat, view.Miner Eng,2015,79:261 2015,56(12):3393 [26]Yan Z K,Gao J M,Li Y,et al.Hydrothermal synthesis and [13]Tan P L.Active phase,catalytic activity,and induction period of structure evolution of metal-doped magnesium ferrite from sapro- Fe/zeolite material in nonoxidative aromatization of methane.J lite laterite.RSC Adv,2015,5(112):92778 Catal,2016,338:21 [27]Goh K H,Lim TT,Dong ZL.Application of layered double hy- [14]Dhiman M,Goyal A,Kumar V,et al.Designing different mor- droxides for removal of oxyanions:a review.Water Res,2008, phologies of NiFeO for tuning of structural,optical and magnet- 42(6-7):1343 ic properties for catalytic advancements.New J Chem,2016,40 [28]Theiss F L,Ayoko G A,Frost R L.Synthesis of layered double (12):10418 hydroxides containing Mg2,Zn2+,Ca2 and Al layer cat- [15]Zhang T Z,Li J,Wen B C,et al.Preparation and magnetization ions by co-precipitation methods-a review.Appl Surf Sci, behaviors of CoFe20-p-MgFe2O binary ferrofluids.South- 2016,383:200 cest Univ Nat Sci Ed,2009,31(7):88 [29]Kang D J,Yu X L,Tong S R,et al.Performance and mecha- (张廷珍,李建,文榜才,等.二元Cofe204-p-MgFea204磁 nism of Mg Fe layered double hydroxides for fluoride and arse 性液体的制备及磁化特性研究.西南大学学报(自然科学 nate removal from aqueous solution.Chem Eng 2013,228: 版),2009,31(7):88) 731 [16]Khot V M,Salunkhe A B,Thorat N D,et al.Induction heating [30]Sun Y Y.Ji G B.Zheng M B,et al.Synthesis and magnetic studies of combustion synthesized MgFe,0,nanoparticles for hy- properties of crystalline mesoporous CoFe2 with large specific perthermia applications./Magn Magn Mater,2013,332:48 surface area.J Mater Chem,2010,20(5):945 [17]Zhang CL,Yeo S,Horibe Y,et al.Coereivity and nanostruc- [31]Tshabalala K G,Cho S H,Park JK,et al.Luminescent proper- ture in magnetic spinel Mg(Mn,Fe)20.Appl Phys Lett,2007, ties and X-ray photoelectron spectroscopy study of ZnAl20: 90(13):133123 Ce3.,Th phosphor.J Alloys Compd,2011,509(41):10115 [18]Dillert R,Taffa D H,Wark M,et al.Research update:photo- [32]Zhang H,Qi R,Evans D G,et al.Synthesis and characteriza- electrochemical water splitting and photocatalytic hydrogen pro- tion of a novel nano-scale magnetic solid base catalyst involving a duction using ferrites(MFe,O)under visible light irradiation. layered double hydroxide supported on a ferrite core.J Solid State APL4 later,2015,3(10):104001 Chem,2004,177(3):772 [19]Jiang J H,Fan W Q,Zhang X,et al.Rod-in-tube nanostructure [33]Tudorache F,Popa P D,Dobromir M,et al.Studies on the of MgFe,0:electrospinning synthesis and photocatalytic activi- structure and gas sensing properties of nickel-cobalt ferrite thin ties of tetracycline.New Chem,2016,40(1):538 films prepared by spin coating.Mater Sci Eng B,2013,178 [20]Fan W Q,Li M,Bai H Y,et al.Fabrication of MgFe2/MoS2 (19):1334 heterostructure nanowires for photoelectrochemical catalysis. [34]Babuponnusami A,Muthukumar K.A review on Fenton and im- Langmuir,2016,32(6):1629 provements to the Fenton process for wastewater treatment.J En- [21]Shen Y,Wu Y B,Li X Y,et al.One-pot synthesis of MgFe2O riron Chem Eng,2014,2(1):557 nanospheres by solvothermal method.Mater Lett,2013,96:85 [35]Pantopoulos K.Schipper H M,et al.Principles of Free Radical [22]Sasaki T,Ohara S,Naka T,et al.Continuous synthesis of fine Biomedicine.Ist Ed.New York:Nova Science Publishers Ine MgFe2O nanoparticles by supercritical hydrothermal reaction.J 2012韩 星等: 从腐泥土型红土镍矿制备共掺杂 MgFe2O4 物相转化规律及催化性能 [10] Sharma R, Bansal S, Singhal S. Tailoring the photo鄄Fenton ac鄄 tivity of spinel ferrites (MFe2O4 ) by incorporating different cat鄄 ions ( M = Cu, Zn, Ni and Co) in the structure. RSC Adv, 2015, 5(8): 6006 [11] Wu R C, Qu J H. Removal of water鄄soluble azo dye by the mag鄄 netic material MnFe2O4 . J Chem Technol Biotechnol, 2005, 80 (1): 20 [12] Rad L R, Ghazani B F, Irani M, et al. Comparison study of phe鄄 nol degradation using cobalt ferrite nanoparticles synthesized by hydrothermal and microwave methods. Desalination Water Treat, 2015, 56(12): 3393 [13] Tan P L. Active phase, catalytic activity, and induction period of Fe / zeolite material in nonoxidative aromatization of methane. J Catal, 2016, 338: 21 [14] Dhiman M, Goyal A, Kumar V, et al. Designing different mor鄄 phologies of NiFe2O4 for tuning of structural, optical and magnet鄄 ic properties for catalytic advancements. New J Chem, 2016, 40 (12): 10418 [15] Zhang T Z, Li J, Wen B C, et al. Preparation and magnetization behaviors of CoFe2O4 鄄鄄 p鄄鄄 MgFe2O4 binary ferrofluids. J South鄄 west Univ Nat Sci Ed, 2009, 31(7): 88 (张廷珍, 李建, 文榜才, 等. 二元 CoFe2O4 鄄鄄 p鄄鄄 MgFe2O4 磁 性液体的制备及磁化特性研究. 西南大学学报(自然科学 版), 2009, 31(7): 88) [16] Khot V M, Salunkhe A B, Thorat N D, et al. Induction heating studies of combustion synthesized MgFe2O4 nanoparticles for hy鄄 perthermia applications. J Magn Magn Mater, 2013, 332: 48 [17] Zhang C L, Yeo S, Horibe Y, et al. Coercivity and nanostruc鄄 ture in magnetic spinel Mg(Mn, Fe)2O4 . Appl Phys Lett, 2007, 90(13): 133123 [18] Dillert R, Taffa D H, Wark M, et al. Research update: photo鄄 electrochemical water splitting and photocatalytic hydrogen pro鄄 duction using ferrites (MFe2O4 ) under visible light irradiation. APL Mater, 2015, 3(10): 104001 [19] Jiang J H, Fan W Q, Zhang X, et al. Rod鄄in鄄tube nanostructure of MgFe2O4 : electrospinning synthesis and photocatalytic activi鄄 ties of tetracycline. New J Chem, 2016, 40(1): 538 [20] Fan W Q, Li M, Bai H Y, et al. Fabrication of MgFe2O4 / MoS2 heterostructure nanowires for photoelectrochemical catalysis. Langmuir, 2016, 32(6): 1629 [21] Shen Y, Wu Y B, Li X Y, et al. One鄄pot synthesis of MgFe2O4 nanospheres by solvothermal method. Mater Lett, 2013, 96: 85 [22] Sasaki T, Ohara S, Naka T, et al. Continuous synthesis of fine MgFe2O4 nanoparticles by supercritical hydrothermal reaction. J Supercrit Fluids, 2010, 53(1鄄3): 92 [23] Ghanbari D, Salavati鄄Niasari M. Hydrothermal synthesis of dif鄄 ferent morphologies of MgFe2O4 and magnetic cellulose acetate nanocomposite. Korean J Chem Eng, 2015, 32(5): 903 [24] Robinson D, Mcdonald R, Zhang W S, et al. Developments in the hydrometallurgical processing of nickel laterites / / COM2017 Conference of Metallurgists. Vancouver, 2017: 9526 [25] Quast K, Connor J N, Skinner W, et al. Preconcentration strate鄄 gies in the processing of nickel laterite ores Part 1: literature re鄄 view. Miner Eng, 2015, 79: 261 [26] Yan Z K, Gao J M, Li Y, et al. Hydrothermal synthesis and structure evolution of metal鄄doped magnesium ferrite from sapro鄄 lite laterite. RSC Adv, 2015, 5(112): 92778 [27] Goh K H, Lim T T, Dong Z L. Application of layered double hy鄄 droxides for removal of oxyanions: a review. Water Res, 2008, 42(6鄄7): 1343 [28] Theiss F L, Ayoko G A, Frost R L. Synthesis of layered double hydroxides containing Mg 2 + , Zn 2 + , Ca 2 + and Al 3 + layer cat鄄 ions by co鄄鄄 precipitation methods———a review. Appl Surf Sci, 2016, 383: 200 [29] Kang D J, Yu X L, Tong S R, et al. Performance and mecha鄄 nism of Mg / Fe layered double hydroxides for fluoride and arse鄄 nate removal from aqueous solution. Chem Eng J, 2013, 228: 731 [30] Sun Y Y, Ji G B, Zheng M B, et al. Synthesis and magnetic properties of crystalline mesoporous CoFe2O4 with large specific surface area. J Mater Chem, 2010, 20(5): 945 [31] Tshabalala K G, Cho S H, Park J K, et al. Luminescent proper鄄 ties and X鄄ray photoelectron spectroscopy study of ZnAl2O4 : Ce 3 + , Tb 3 + phosphor. J Alloys Compd, 2011, 509(41): 10115 [32] Zhang H, Qi R, Evans D G, et al. Synthesis and characteriza鄄 tion of a novel nano鄄scale magnetic solid base catalyst involving a layered double hydroxide supported on a ferrite core. J Solid State Chem, 2004, 177(3): 772 [33] Tudorache F, Popa P D, Dobromir M, et al. Studies on the structure and gas sensing properties of nickel鄄cobalt ferrite thin films prepared by spin coating. Mater Sci Eng B, 2013, 178 (19): 1334 [34] Babuponnusami A, Muthukumar K. A review on Fenton and im鄄 provements to the Fenton process for wastewater treatment. J En鄄 viron Chem Eng, 2014, 2(1): 557 [35] Pantopoulos K, Schipper H M, et al. Principles of Free Radical Biomedicine. 1st Ed. New York: Nova Science Publishers Inc, 2012 ·609·
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