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1.
《矿物冶金与材料学报》2021,28(12):2001-2007
Graphene oxide (GO) wrapped Fe3O4 nanoparticles (NPs) were prepared by coating the Fe3O4 NPs with a SiO2 layer, and then modifying by amino groups, which interact with the GO nanosheets to form covalent bonding. The SiO2 coating layer plays a key role in integrating the magnetic nanoparticles with the GO nanosheets. The effect of the amount of SiO2 on the morphology, structure, adsorption, and regenerability of the composites was studied in detail. An appropriate SiO2 layer can effectively induce the GO nanosheets to completely wrap the Fe3O4 NPs, forming a core-shell Fe3O4@SiO2@GO composite where Fe3O4@SiO2 NPs are firmly encapsulated by GO nanosheets. The optimized Fe3O4@SiO2@GO sample exhibits a high saturated adsorption capacity of 253 mg·g?1 Pb(II) cations from wastewater, and the adsorption process is well fitted by Langmuir adsorption model. Notably, the composite displays excellent regeneration, maintaining a ~90% adsorption capacity for five cycles, while other samples decrease their adsorption capacity rapidly. This work provides a theoretical guidance to improve the regeneration of the GO-based adsorbents.  相似文献   

2.
Japan started the national project “COURSE 50” for CO2 reduction in the 2000s. This project aimed to establish novel technologies to reduce CO2 emissions with partially utilization of hydrogen in blast furnace-based ironmaking by 30% by around 2030 and use it for practical applications by 2050. The idea is that instead of coke, hydrogen is used as the reducing agent, leading to lower fossil fuel consumption in the process. It has been reported that the reduction behavior of hematite, magnetite, calcium ferrite, and slag in the sinter is different, and it is also considerably influenced by the sinter morphology. This study aimed to investigate the reduction behavior of sinters in hydrogen enriched blast furnace with different mineral morphologies in CO–CO2–H2 mixed gas. As an experimental sample, two sinter samples with significantly different hematite and magnetite ratios were prepared to compare their reduction behaviors. The reduction of wustite to iron was carried out at 1000, 900, and 800°C in a CO–CO2–H2 atmosphere for the mineral morphology-controlled sinter, and the following findings were obtained. The reduction rate of smaller amount of FeO led to faster increase of the reduction rate curve at the initial stage of reduction. Macro-observations of reduced samples showed that the reaction proceeded from the outer periphery of the sample toward the inside, and a reaction interface was observed where reduced iron and wustite coexisted. Micro-observations revealed three layers, namely, wustite single phase in the center zone of the sample, iron single phase in the outer periphery zone of the sample, and iron oxide-derived wustite FeO and iron, or calcium ferrite-derived wustite 'FeO' and iron in the reaction interface zone. A two-interface unreacted core model was successfully applied for the kinetic analysis of the reduction reaction, and obtained temperature dependent expressions of the chemical reaction coefficients from each mineral phases.  相似文献   

3.
《矿物冶金与材料学报》2021,28(12):1940-1948
The evolution of inclusions and the formation of acicular ferrite (AF) in Ca–Ti treated steel was systematically investigated after Mg and La addition. The inclusions in the molten steel were Ca–Al–O, Ca–Al–Mg–O, and La–Mg–Ca–Al–O after Ca, Mg, and La addition, respectively. The type of oxide inclusion in the final quenched samples was the same as that in the molten steel. However, unlike those in molten steel, the inclusions were Ca–Al–Ti–O + MnS, Ca–Mg–Al–Ti–O + MnS, and La–Ca–Mg–Al–Ti–O + MnS in Mg-free, Mg-containing, and La-containing samples, respectively. The inclusions distributed dispersedly in the La-containing sample. In addition, the average size of the inclusions in the La-containing sample was the smallest, while the number density of inclusions was the highest. The size of effective inclusions (nucleus of AF formation) was mainly in the range of 1–3 μm. In addition, the content of ferrite side plates (FSP) decreased, while the percentage of AF increased by 16.2% due to the increase in the number of effective inclusions in the La-containing sample in this study.  相似文献   

4.
《矿物冶金与材料学报》2021,28(12):1908-1916
The effect of CaCO3, Na2CO3, and CaF2 on the reduction roasting and magnetic separation of high-phosphorus iron ore containing phosphorus in the form of Fe3PO7 and apatite was investigated. The results revealed that Na2CO3 had the most significant effect on iron recovery and dephosphorization, followed by CaCO3, the effect of CaF2 was negligible. The mechanisms of CaCO3, Na2CO3, and CaF2 were investigated using X-ray diffraction (XRD), scanning electron microscopy and energy dispersive spectrometry (SEM–EDS). Without additives, Fe3PO7 was reduced to elemental phosphorus and formed an iron–phosphorus alloy with metallic iron. The addition of CaCO3 reacted with Fe3PO7 to generate an enormous amount of Ca3(PO4)2 and promoted the reduction of iron oxides. However, the growth of iron particles was inhibited. With the addition of Na2CO3, the phosphorus in Fe3PO7 migrated to nepheline and Na2CO3 improved the reduction of iron oxides and growth of iron particles. Therefore, the recovery of iron and the separation of iron and phosphorus were the best. In contrast, CaF2 reacted with Fe3PO7 to form fine Ca3(PO4)2 particles scattered around the iron particles, making the separation of iron and phosphorus difficult.  相似文献   

5.
6.
Carbonated decomposition of hydrogarnet is one of the vital reactions of the calcification–carbonation method, which is designed to dispose of low-grade bauxite and Bayer red mud and is a novel eco-friendly method. In this study, the effect of the silica saturation coefficient (x) on the carbonation of hydrogarnet was investigated from the kinetic perspective. The results indicated that the carbonation of hydrogarnets with different x values (x = 0.27, 0.36, 0.70, and 0.73) underwent two stages with significantly different rates, and the kinetic mechanisms of the two stages can be described by the kinetic functions R3 and D3. The apparent activation energies at Stages 1 and 2 were 41.96–81.64 and 14.80–34.84 kJ/mol, respectively. Moreover, the corresponding limiting steps of the two stages were interfacial chemical reaction and diffusion.  相似文献   

7.
《矿物冶金与材料学报》2020,27(10):1347-1352
A new method of high-gravity combustion synthesis (HGCS) followed by post-treatment (PT) is reported for preparing high-performance high-entropy alloys (HEAs), Cr0.9FeNi2.5V0.2Al0.5 alloy, whereby cheap thermite powder is used as the raw material. In this process, the HEA melt and the ceramic melt are rapidly formed by a strong exothermic combustion synthesis reaction and completely separated under a high-gravity field. Then, the master alloy is obtained after cooling. Subsequently, the master alloy is sequentially subjected to conventional vacuum arc melting (VAM), homogenization treatment, cold rolling, and annealing treatment to realize a tensile strength, yield strength, and elongation of 1250 MPa, 1075 MPa, and 2.9%, respectively. The present method is increasingly attractive due to its low cost of raw materials and the intermediate product obtained without high-temperature heating. Based on the calculation of phase separation kinetics in the high-temperature melt, it is expected that the final alloys with high performance can be prepared directly across master alloys with higher high-gravity coefficients.  相似文献   

8.
Computational simulations and high-temperature measurements of velocities near the surface of a mold were carried out by using the rod deflection method to study the effects of various operating parameters on the flow field in slab continuous casting (CC) molds with narrow widths for the production of automobile exposed panels. Reasonable agreement between the calculated results and measured subsurface velocities of liquid steel was obtained under different operating parameters of the CC process. The simulation results reveal that the flow field in the horizontal plane located 50 mm from the meniscus can be used as the characteristic flow field to optimize the flow field of molten steel in the mold. Increases in casting speed can increase the subsurface velocity of molten steel and shift the position of the vortex core downward in the downward circulation zone. The flow field of liquid steel in a 1040 mm-wide slab CC mold can be improved by an Ar gas flow rate of 7 L·min?1 and casting speed of 1.7 m·min?1. Under the present experimental conditions, the double-roll flow pattern is generally stable at a submerged entry nozzle immersion depth of 170 mm.  相似文献   

9.
Electroslag remelting (ESR) gives a combination of liquid metal refining and solidification structure control. One of the typical aspects of liquid metal refining during ESR for the advanced steel and alloy production is desulfurization. It involves two patterns, i.e., slag–metal reaction and gas–slag reaction (gasifying desulfurization). In this paper, the advances in desulfurization practices of ESR are reviewed. The effects of processing parameters, including the initial sulfur level of consumable electrode, remelting atmosphere, deoxidation schemes of ESR, slag composition, melting rate, and electrical parameters on the desulfurization in ESR are assessed. The interrelation between desulfurization and sulfide inclusion evolution during ESR is discussed, and advancements in the production of sulfur-bearing steel at a high-sulfur level during ESR are described. The remaining challenges for future work are also proposed.  相似文献   

10.
We report the picosecond laser ablation of aluminum targets immersed in a polar organic liquid (chloroform, CHCl3) with ~2 ps laser pulses at an input energy of ~350 μJ. The synthesized aluminum nanoparticles exhibited a surface plasmon resonance peak at ~340 nm. Scanning electron microscopy images of Al nanoparticles demonstrated the spherical morphology with an average size of (27 ± 3.6) nm. The formation of smaller spherical Al nanoparticles and the diminished growth could be from the formation of electric double layers on the Al nanoparticles. In addition to spherical aluminum nanoparticles, triangular/pentagonal/hexagonal nanoparticles were also observed in the colloidal solution. Field emission scanning electron microscopy images of ablated Al targets demonstrated laser induced periodic surface structures (LIPSSs), which were the high spatial frequency LIPSSs (HSF-LIPSSs) since their grating period was ~280 nm. Additionally, coarse structures with a period of ~700 nm were observed.  相似文献   

11.
以纳米非晶-Si3N4、微米α-Si3N4、微米AlN、纳米Al2O3和纳米Y2O3为初始原料,采用放电等离子烧结工艺制备了Sialon陶瓷。通过调整配方中Si3N4对应原料的种类,研究了不同结构的Si3N4对合成Sialon陶瓷的影响。通过XRD和SEM对试样的物相和显微结构进行了表征,同时测试了试样的体积密度、抗弯强度、断裂韧性和维氏硬度。实验结果表明,配方中的Si3N4全部采用α-Si3N4,经SPS烧结后可获得α/β-Sialon陶瓷,当用纳米非晶-Si3N4逐步替换α-Si3N4时,所合成的Sialon陶瓷中的α-Sialon晶相的相对含量减少;当全部采用纳米非晶-Si3N4时,则试样中仅含有β-Sialon相。  相似文献   

12.
YCe-TZP陶瓷的低温时效   总被引:2,自引:2,他引:0  
对化学共沉淀法制备的3Y-TZP,3Y2Ce-TZP(3%Y2O3-2%CeO2-ZrO2)和3Y4Ce-TZP(3%Y2O3-4%CeO2-ZrO2)纳米粉末进行了1450℃无压烧结,研究了这3种TZP陶瓷在250℃水蒸汽中时效150h前后抗弯强度和显微结构的变化.此外,结合红外光谱和EDAX能谱分析,探讨了3Y-TZP的时效老化机理.结果表明随着CeO2含量增加,TZP时效后抗弯强度的降低幅度减小,3Y4Ce-TZP几乎不发生时效老化现象;在时效过程中,3Y4Ce-TZP表面形成了CeO2保护层,防止了Y-OH键的形成,从而有效地抑制了t→m时效相变.  相似文献   

13.
Monoclinic SrAl2Si2O8 ceramics for Sr immobilization were prepared by a liquid-phase sintering method. The sintering temperature, mineral phase composition, microstructure, flexural strength, bulk density, and Sr ion leaching characteristics of the SrAl2Si2O8 ceramics were investigated. A crystalline monoclinic SrAl2Si2O8 phase formed through liquid-phase sintering at 1223 K. The introduction of four flux agents (B2O3, CaO·2B2O3, SrO·2B2O3, and BaO·2B2O3) to the SrAl2Si2O8 ceramics not only reduced the densification temperature and decreased the volatilization of Sr during high-temperature sintering but also impacted the mechanical properties of the ceramics. Product consistency tests showed that the leaching concentration of Sr ions in the sample with flux agent B2O3 was the lowest, whereas that of Sr ions in the sample with flux agent BaO·2B2O3 was the highest. These results show that the leaching concentration of Sr ions depends largely on the amorphous phase in the ceramics. Meanwhile, the formation of mineral analog ceramics containing Sr is an important factor to improve Sr immobilization.  相似文献   

14.
Sialon/SiC复相材料的组织与性能   总被引:1,自引:1,他引:0  
研究了利用粘土、SiC为主要原料,直接合成的Sialon/SiC复相耐火材料的相组成和显微组织,并研究了材料中Sialon含量对复相材料的密度、抗折强度、耐压强度和热震稳定性的影响·结果表明,复相材料的抗折强度和耐压强度均随Sialon相含量的增加而增加,最大抗折强度为876MPa,最大耐压强度为193MPa;材料的体积密度随材料中Al2O3残余相含量的增加而增加,材料的最大体积密度为265g/cm3;材料的热震稳定性随Sialon相含量的增加而下降;材料的显微组织为Sialon和Al2O3形成的连续基质相包裹着SiC颗粒的显微复合组织·  相似文献   

15.
以碳化硼微粉作为原料,选用SiC和C为烧结助剂,研究了SiC和C对无压烧结B4C材料的体积密度、硬度、抗折强度和断裂韧性等性能的影响.结果表明,最佳烧结温度为1975℃,保温时间是30min.SiC和C的质量分数对材料密度、硬度和抗折强度的影响都是先增大后减小.烧结助剂SiC和C的最佳添加量分别为6%和5%(质量分数)时,得到相应的无压烧结B4C陶瓷材料的最佳力学性能:体积密度为2.45g/cm3,维氏硬度为35GPa,抗折强度为240MPa,断裂韧性为3.0MPa.m1/2  相似文献   

16.
采用冷压成型和常压烧结工艺制备CuO掺杂10NiO-NiFe2O4陶瓷,研究CuO掺杂量对10NiO-NiFe2O4陶瓷的致密度、抗折强度及热震稳定性的影响。结果表明,在1 300℃烧结温度下,掺杂CuO能够有效提高10NiO-NiFe2O4陶瓷的致密度,其中添加6%CuO试样的相对密度(95.55%)最大;掺杂CuO可大幅提高10NiO-NiFe2O4陶瓷的抗折强度,其中添加8%CuO试样的抗折强度(139MPa)最高,且在800℃下经过1次和3次热循环后,该试样的抗折强度损失率仅分别为5.7%和8.6%,表现出良好的抗热震性能。  相似文献   

17.
研究炭泡沫预制体中Si添加量的变化对碳化硅多孔陶瓷的组织及性能的影响. 以中间相沥青添加一定质量分数的Si粉为原料,经发泡工艺制备含Si的炭泡沫预制体并结合反应烧结工艺制得碳化硅多孔陶瓷. 对碳化硅多孔陶瓷的微观形貌、相组成、孔隙率、孔筋密度和抗弯强度进行分析与测试. 结果表明:随着炭泡沫预制体中Si量的增加,碳化硅多孔陶瓷的孔隙率下降,孔筋密度增加,抗弯强度提高. 当Si的质量分数为50%时,多孔陶瓷孔筋完全由SiC相组成,孔筋密度为3.14g/cm3,多孔陶瓷的抗弯强度达到23.9MPa,对应孔隙率为55%.  相似文献   

18.
成型工艺对CBS系微晶玻璃结构与性能的影响   总被引:1,自引:0,他引:1  
采用干压成型和流延成型工艺制备CaO-B2O3-SiO2(CBS)系生坯。考察成型工艺对CBS微晶玻璃的烧结性能与介电性能的影响;用X线衍射仪(XRD)、扫描电镜(SEM)对试样进行表征。结果表明:与干压成型相比,流延成型体系中没有出现新的晶相,流延成型试样的体积密度和收缩率有所增加,有利于介电常数提高和介质损耗的降低;850℃烧结的流延成型试样,体积密度达到2.58 g/cm3,X、Y轴收缩率均为15.35%,10 GHz时介电常数和介电损耗分别为6.45和8×10-4,300℃的热膨胀系数为12.02×10-6K-1,抗弯强度为161.18 MPa,热导率为1.9 W/(m.K)。CBS微晶玻璃与Ag电极高温烧结后金属Ag布线断裂。金属Ag电极浆料与生料带共烧时,Ag+能够沿着基片表面不致密部分扩散,而相对致密的晶相,能够在一定程度上阻碍Ag+扩散。  相似文献   

19.
Solid-phase-sintered SiC-based composites with short carbon fibers (Csf/SSiC) in concentrations ranging from 0 to 10wt% were prepared by pressureless sintering at 2100°C. The phase composition, microstructure, density, and flexural strength of the composites with different Csf contents were investigated. SEM micrographs showed that the Csf distributed in the SSiC matrix homogeneously with some gaps at the fiber/matrix interfaces. The densities of the composites decreased with increasing Csf content. However, the bending strength first increased and then decreased with increasing Csf content, reaching a maximum value of 390 MPa at a Csf content of 5wt%, which was 60 MPa higher than that of SSiC because of the pull-out strengthening mechanism. Notably, Csf was graphitized and damaged during the sintering process because of the high temperature and reaction with boron derived from the sintering additive B4C; this graphitization degraded the fiber strengthening effect.  相似文献   

20.
研究了一步工艺合成Sialon/刚玉复合材料中Sialon相Z值的控制,以及SialonZ值对Sialon/刚玉复合材料的机械强度、抗热震性、抗化学侵蚀性、抗氧化性和显微组织的影响规律·结果表明:Sialon/刚玉复合材料随着材料中Sialon相Z值的升高,材料的强度降低,热震稳定性下降,抗氧化性提高,抗化学侵蚀性得到显著改善,Sialon柱状晶体尺寸增大;Sialon相Z值选择在3时该材料能够获得优良的抗氧化性和抗侵蚀性并均衡得到适宜的强度和热震稳定性·  相似文献   

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