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磁场下铁/碳复合材料的制备及吸波性能研究
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作者 刘强春 穆啸楠 《纳米科技》 2015年第2期46-50,共5页
利用化学气相沉积(CVD)技术,在外加磁场(0.6T)和零磁场下,以二茂铁为原料,在高温下裂解获得铁/碳复合材料,在外加磁场(0.6T)下热解获得的铁/碳复合材料具有管状形貌,外径为50-60nm,内径为30-40nm,管状铁/碳复合吸波材料在2-18GHz... 利用化学气相沉积(CVD)技术,在外加磁场(0.6T)和零磁场下,以二茂铁为原料,在高温下裂解获得铁/碳复合材料,在外加磁场(0.6T)下热解获得的铁/碳复合材料具有管状形貌,外径为50-60nm,内径为30-40nm,管状铁/碳复合吸波材料在2-18GHz的范围内,吸收峰的位置在25GHz之间,最大吸收为18dB,随着材料厚度的增加,吸收峰向低频移动. 展开更多
关键词 铁/碳复合材料 纳米管 微波吸收材料 微波吸收性能
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市政污泥制备铁/碳复合材料的研究与应用 被引量:1
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作者 姚娟 石太宏 +2 位作者 刘金凤 赖颖姗 冯玉香 《环境工程》 CAS CSCD 北大核心 2016年第S1期674-678,共5页
实验研究了以市政污泥为碳源,将其与Fe SO4·7H2O相结合,通过"浸渍-低温炭化-高温活化"工艺制备出了新型铁/碳复合材料。将制备得到的最佳新型铁/碳复合材料进行XRD和SEM表征,同时应用于印刷线路板有机废水的预处理,发现... 实验研究了以市政污泥为碳源,将其与Fe SO4·7H2O相结合,通过"浸渍-低温炭化-高温活化"工艺制备出了新型铁/碳复合材料。将制备得到的最佳新型铁/碳复合材料进行XRD和SEM表征,同时应用于印刷线路板有机废水的预处理,发现该新型铁/碳复合材料对含重金属的高浓度有机废水具有良好的处理效果。 展开更多
关键词 污泥 铁/碳复合材料 印刷线路板有机废水
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过硫酸盐对电动-铁/碳复合材料联合修复多氯联苯污染土壤的强化作用 被引量:2
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作者 宋艳 林道辉 《环境科学学报》 CAS CSCD 北大核心 2022年第5期435-443,共9页
研究了3种浓度过硫酸盐溶液(2、20和200 g·L^(-1),以下分别表示为0.2%、2%、20%)作为电解液对电动-铁/碳复合材料(EK-Fe/C)联合修复多氯联苯(PCBs)污染土壤的强化作用,并探究了EK-Fe/C-PS修复技术对土壤理化性质的影响.结果表明,EK... 研究了3种浓度过硫酸盐溶液(2、20和200 g·L^(-1),以下分别表示为0.2%、2%、20%)作为电解液对电动-铁/碳复合材料(EK-Fe/C)联合修复多氯联苯(PCBs)污染土壤的强化作用,并探究了EK-Fe/C-PS修复技术对土壤理化性质的影响.结果表明,EK-Fe/C-PS修复7 d后,土壤温度和可溶性有机质含量增加,p H显著降低,电导率下降.PS对EK-Fe/C联合修复PCB28污染土壤具有显著的强化作用,修复效果整体随PS浓度增加而增加.在PS浓度为20%时,PCB28的7 d平均去除效率最高(60.9%),是EK-Fe/C处理组(20.5%)的3倍,EK-20%PS处理组(32.0%)的近2倍.阳极侧土壤PCB28去除效率显著高于阴极侧,达到92.7%±7.7%.在两个电极中间区域,PS浓度增加对修复效果的影响不显著.为降低修复成本和对土壤的影响,污染土壤修复实践中可先使用高浓度PS快速修复阳极和阴极侧土壤,再使用低浓度PS强化修复中间区域土壤. 展开更多
关键词 多氯联苯 电动修复 铁/碳复合材料 过硫酸盐 土壤污染
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生物炭负载零价铁复合材料对土壤中石油污染物的去除作用 被引量:14
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作者 徐文斐 任文海 +2 位作者 张秀霞 刘炳琨 陈杰 《石油学报(石油加工)》 EI CAS CSCD 北大核心 2020年第5期1069-1077,共9页
为了解决土壤中石油污染物去除效率低、费用高等问题,采用液相还原的方法,将零价铁负载于由菌糠制备的生物炭上,得到铁/碳复合材料;通过FTIR、SEM和电化学工作站等手段表征铁/碳复合材料的形貌结构及性质;将铁/碳复合材料用于土壤中石... 为了解决土壤中石油污染物去除效率低、费用高等问题,采用液相还原的方法,将零价铁负载于由菌糠制备的生物炭上,得到铁/碳复合材料;通过FTIR、SEM和电化学工作站等手段表征铁/碳复合材料的形貌结构及性质;将铁/碳复合材料用于土壤中石油污染物的去除,利用GC-MS方法考察其去除污染物的性能。结果表明:零价铁负载于菌糠生物碳上能明显抑制团聚,提高反应活性;铁/碳复合材料对土壤中石油污染物的吸附符合准二级动力学模型;铁/碳复合材料对土壤石油污染物的去除,除吸附作用外还有对污染物还原降解作用。 展开更多
关键词 石油污染 土壤修复 纳米零价 铁/碳复合材料 还原降解
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Na2FePO4F/C composite synthesized via a simple solid state route for lithium-ion batteries 被引量:3
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作者 HU Hai WANG Yu +2 位作者 HUANG Yan SHU Hong-bo WANG Xian-you 《Journal of Central South University》 SCIE EI CAS CSCD 2019年第6期1521-1529,共9页
Using low-cost FePO4·2H2O as iron source,Na2FePO4F/C composite is prepared by alcohol-assisted ball milling and solid-state reaction method.The XRD pattern of Na2FePO4F/C composite demonstrates sharp peaks,indica... Using low-cost FePO4·2H2O as iron source,Na2FePO4F/C composite is prepared by alcohol-assisted ball milling and solid-state reaction method.The XRD pattern of Na2FePO4F/C composite demonstrates sharp peaks,indicating high crystalline and phase purity.The SEM and TEM images reveal that diameter of the spherical-like Na2FePO4F/C particles ranges from 50 to 300 nm,and HRTEM image shows that the surface of Na2FePO4F/C composite is uniformly coated by carbon layer with a average thickness of about 3.6 nm.The carbon coating constrains the growth of the particles and effectively reduces the agglomeration of nanoparticles.Using lithium metal as anode,the composite delivers a discharge capacities of 102.8,96.4 and 90.3 mA·h/g at rates of 0.5C,1C and 2C,respectively.After 100 cycles at 0.5C,a discharge capacity of 98.9 mA·h/g is maintained with capacity retention of 96.2%.The Li+diffusion coefficient(D)of Na2FePO4F/C composite is calculated as 1.71×10^–9 cm^2/s.This study reveals that the simple solid state reaction could be a practical and effective synthetic route for the industrial production of Na2FePO4F/C material. 展开更多
关键词 lithium-ion batteries Na2FePO4F/C composite alcohol-assisted ball milling solid state reaction spherical-like particles
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Comparison of wear behaviour of LM13 Al−Si alloy based composites reinforced with synthetic(B_(4)C)and natural(ilmenite)ceramic particles 被引量:5
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作者 Rahul GUPTA Tarun NANDA O.P.PANDEY 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第12期3613-3625,共13页
Dry sliding wear behaviour of stir-cast aluminium matrix composites(AMCs)containing LM13 alloy as matrix and ceramic particles as reinforcement was investigated.Two different ceramic particle reinforcements were used ... Dry sliding wear behaviour of stir-cast aluminium matrix composites(AMCs)containing LM13 alloy as matrix and ceramic particles as reinforcement was investigated.Two different ceramic particle reinforcements were used separately:synthetic ceramic particles(B_(4)C),and natural ceramic particles(ilmenite).Optical micrographs showed uniform dispersion of reinforced particles in the matrix material.Reinforced particles refined the grain size of eutectic silicon and changed its morphology to globular type.B_(4)C reinforced composites(BRCs)showed maximum improvement in hardness of AMCs.Ilmenite reinforced composites(IRCs)showed maximum reduction in coefficient of friction values due to strong matrix−reinforcement interfacial bonding caused by the formation of interfacial compounds.Dry sliding wear behaviour of composites was significantly improved as compared to base alloy.The low density and high hardness of B_(4)C particles resulted in high dislocation density around filler particles in BRCs.On the other hand,the low thermal conductivity of ilmenite particles resulted in early oxidation and formation of a tribo-layer on surface of IRCs.So,both types of reinforcements led to the improvement in wear properties of AMCs,though the mechanisms involved were very different.Thus,the low-cost ilmenite particles can be used as alternative fillers to the high-cost B_(4)C particles for processing of wear resistant composites. 展开更多
关键词 aluminium matrix composites ILMENITE boron carbide PARTICLE-REINFORCEMENT wear test TRIBOLAYER XRD analysis SEM−EDS
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Research on Preparation of the Composite Materials LiFePO4-Li3V2(PO4)3
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作者 Haoyu JIANG Jianrong Xiao Hang Zhao 《International Journal of Technology Management》 2014年第4期98-100,共3页
The article developed a lithium iron phosphate - composite cathode material of lithium vanadium phosphate. Using X-ray diffraction (XRD), electronic scanning electron microscopy surface (SEM), laser particle size ... The article developed a lithium iron phosphate - composite cathode material of lithium vanadium phosphate. Using X-ray diffraction (XRD), electronic scanning electron microscopy surface (SEM), laser particle size analyzer, carbon and sulfur analyzer, and X-ray photoelectron spectroscopy, etc. for the prepared composites were characterized and found the material is mainly crystalline structure of lithium iron phosphate, and lithium vanadium, wherein a small amount of impurities; finer particle size of the material, the particle size distribution is narrow and uniform, smooth particle surface, wrapping in good carbon composite with other materials prepared in comparison the case has a carbon content of about optimum conductivity. To assemble the material into a cell after the 0.1C, IC, 2C when and 5C, the first discharge capacity were 160,145,127 and 109 mA·h·g^-1, after 50 cycles, the discharge capacity of 162, respectively, 144,126 and 106 mA·h·g^-1, which showed good rate characteristics and cycle characteristics. 展开更多
关键词 Lithium iron phosphate lithium vanadium phosphate GRAPHENE composite materials
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磁性有序介孔炭的制备及药物吸附行为研究 被引量:8
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作者 邢伟 禚淑萍 +1 位作者 司维江 袁勋 《化学学报》 SCIE CAS CSCD 北大核心 2009年第8期761-766,共6页
采用纳米共铸法将磁性纳米粒子包埋到有序介孔炭的骨架中,制成含有磁性纳米粒子的有序介孔炭(Fe/OMCs).实验通过氮气吸附、扫描电镜、X射线衍射、磁性测试等手段对Fe/OMCs进行了系统的表征.研究表明,Fe/OMCs基本保持了有序介孔结构,磁... 采用纳米共铸法将磁性纳米粒子包埋到有序介孔炭的骨架中,制成含有磁性纳米粒子的有序介孔炭(Fe/OMCs).实验通过氮气吸附、扫描电镜、X射线衍射、磁性测试等手段对Fe/OMCs进行了系统的表征.研究表明,Fe/OMCs基本保持了有序介孔结构,磁性粒子在材料中以纳米α-Fe粒子的形式存在,并且具有超顺磁特性.盐酸四环素(TH)在Fe/OMCs上的吸附研究表明,Fe/OMCs的介孔表面积和介孔孔容是决定TH吸附量的关键因素.脱附动力学研究表明,Fe/OMCs的孔尺寸是影响脱附速率的关键因素,孔径越大,TH的脱附速率就越大. 展开更多
关键词 磁性 铁/碳复合材料 药物输送 吸附 脱附
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Sulfur/nickel ferrite composite as cathode with high-volumetric-capacity for lithium-sulfur battery 被引量:13
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作者 Ze Zhang Di—Hua Wu +2 位作者 Zhen Zhou Guo—Ran Li Sheng Liu and Xue—Ping Gao 《Science China Materials》 SCIE EI CSCD 2019年第1期74-86,共13页
Low volumetric energy density is a bottleneck for the application of lithium-sulfur (Li-S)battery.The low- density sulfur cooperated with the light-weight carbon sub- strate realizes electrochemical cycle stability,bu... Low volumetric energy density is a bottleneck for the application of lithium-sulfur (Li-S)battery.The low- density sulfur cooperated with the light-weight carbon sub- strate realizes electrochemical cycle stability,but leads to worse volumetric energy density.Here,nickel ferrite (NiFe2O4)nanofibers as novel substrate for sulfur not only anchor lithium polysulfides to enhance the cycle stability of sulfur cathode,but also contribute to the high volumetric capacity of the S/nickel ferrite composite.Specifically,the S/ nickel ferrite composite presents an initial volumetric capacity of 1,281.7mA h cm^-3-composite at 0.1C rate,1.9times higher than that of S/carbon nanotubes,due to the high tap density of the S/nickel ferrite composite. 展开更多
关键词 lithium-sulfur battery sulfur cathode nickel ferrite nanofibers tap density volumetric capacity
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