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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.
《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   

3.
4.
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   

5.
《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   

6.
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   

7.
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   

8.
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   

9.
The mineral transition and formation mechanism of calcium aluminate compounds in CaO?Al2O3?Na2O system during the high-temperature sintering process were systematically investigated using DSC?TG, XRD, SEM?EDS, FTIR, and Raman spectra, and the crystal structure of Na4Ca3(AlO2)10 was also simulated by Material Studio software. The results indicated that the minerals formed during the sintering process included Na4Ca3(AlO2)10, CaO·Al2O3, and 12CaO·7Al2O3, and the content of Na4Ca3(AlO2)10 could reach 92wt% when sintered at 1200°C for 30 min. The main formation stage of Na4Ca3(AlO2)10 occurred at temperatures from 970 to 1100°C, and the content could reach 82wt% when the reaction temperature increased to 1100°C. The crystal system of Na4Ca3(AlO2)10 was tetragonal, and the cells preferred to grow along crystal planes (110) and (210). The formation of Na4Ca3(AlO2)10 was an exothermic reaction that followed a secondary reaction model, and its activation energy was 223.97 kJ/mol.  相似文献   

10.
Ore particles, especially fine interlayers, commonly segregate in heap stacking, leading to undesirable flow paths and changeable flow velocity fields of packed beds. Computed tomography (CT), COMSOL Multiphysics, and MATLAB were utilized to quantify pore structures and visualize flow behavior inside packed beds with segregated fine interlayers. The formation of fine interlayers was accompanied with the segregation of particles in packed beds. Fine particles reached the upper position of the packed beds during stacking. CT revealed that the average porosity of fine interlayers (24.21%) was significantly lower than that of the heap packed by coarse ores (37.42%), which directly affected the formation of flow paths. Specifically, the potential flow paths in the internal regions of fine interlayers were undeveloped. Fluid flowed and bypassed the fine interlayers and along the sides of the packed beds. Flow velocity also indicated that the flow paths easily gathered in the pore throat where flow velocity (1.8 × 10?5 m/s) suddenly increased. Fluid stagnant regions with a flow velocity lower than 0.2 × 10?5 m/s appeared in flow paths with a large diameter.  相似文献   

11.
研究了国家法的抽象正义观与民间法的情理正义观,认为西方国家法的抽象正义观与东方民间法的情理正义观存在实质的不同,原因在于思维方式、超验与经验传统、政治结构的差别。在现代法治理念下,传统民间法所代表的正义观将向混合正义观转型,西方法治所代表的国家法抽象正义观是其骨架。  相似文献   

12.
为了找出诱发高频机组基础不良振动的原因,从基础计算模型方面对基础激励与响应进行了分析,以两个高频机组基础为动测实例,经模态分析得出钢筋混凝土构架式基础竖向1阶振动与电机产生共振;应用功率谱法对动力机组及基础平台进行动测,得出平台异常响应频率66Hz为水泵工作频率,调整机器的工作频率可避开不良振源影响,达到明显的减振效果。由此而知,动力机器基础出现不良振动时,不可盲目改变结构的动力特性,应在机器不同工况比如:停机、起机及正常转速下,对机器及基础进行动测并对振动信号进行比较分析,以制定出行之有效的减振方法。  相似文献   

13.
对木粉酸水解残渣(WAHR)和木糖渣(XR)两种木质纤维水解残渣进行了基本物性分析,采用热重分析仪和自制的管式高温裂解炉探讨了这两种水解残渣及其母料的热解特性.结果表明:两种水解残渣较其母料有更高的碳含量,且WAHR的碳含量比XR高;两种水解残渣的组成和热解特性存在较大差异;XR的气相产物和液相产物产率在整个研究温度区间均高于WAHR,并且H2、CO、CO2、CH4、C2H4和C2H6的产率随温度变化的规律不同;两种水解残渣的液相产物种类相似,但相对含量存在差别;半焦样品的CO2气化反应活性随温度的升高而降低;原料的木质素含量越高,所得半焦样品的反应活性越低.  相似文献   

14.
老年人生活空间移动性影响要素研究进展   总被引:1,自引:0,他引:1  
 老年人生活空间移动性是老年人在日常生活中能动生活状态的重要表征。在梳理老年人生活空间移动性相关概念、测度方法基础上,分析了物质环境要素和非物质环境要素对老年人生活空间移动性的影响;提炼出有效支持老年人生活空间移动性的中观环境规划、微观环境设计和政策文化扶助层面的策略;指出了老年人生活空间移动性的研究建议和发展方向。  相似文献   

15.
文学发展的动力之一在于创新。在接受美学诞生之前,学者们往往从作家的角度讨论文学创新问题。本文用接受美学的理论探讨文学创新的问题。笔者将文学创新的标准与读者接受相结合,就创新的三个方式与期待视野的方法论进行了初步的探讨。最后得出的结论是:读者期待视野的提高是作家作品创新的主要依据,作家在文学创作中应该充分考虑读者的接受才能做到创新。  相似文献   

16.
法学本科教育应当引入研究性理念,培养具有创新思维能力和实践能力的博专并重的高素质人才。研究性理念要求尊重大学生的主体性、激发大学生的创造性、培养大学生的人文精神。应当正确认识法学本科教学中研究和实践的关系,在研究中实践,在实践中研究。在研究性理念指导下法学本科教育模式的创新应从课程体系、教学方法、师资队伍等方面展开。  相似文献   

17.
北平研究院植物学研究所是民国时期著名的植物学研究机构。抗战前主要从事我国北部、西北部植物调查与分类、植物地理学研究等工作。1936年11月,在陕西武功与西北农学院合作组建中国西北植物调查所,以调查西北植物和进行应用植物学研究。抗战爆发前夕,植物学研究所将大部分人员和设备迁往陕西武功继续工作,1944年一部分人员又南迁昆明。抗战期间,除继续纯粹学理研究外,还积极从事应用植物学研究。作者以原始档案以及相关文献为基础,叙述北平研究院植物所及其与西北农学院合办之中国西北植物调查所的创办缘起和沿革,各个时期的工作概况、成就,澄清一些历史事实,并初步分析北平研究院植物所在中国近代生物学史上的贡献。  相似文献   

18.
分析了蛋白质水解度参数在监测蛋白质酶解过程中的不足,并根据蛋白质酶解过程特点提出了酶解度的概念与测定方法。将酶解度定义为一个比值,用于描述蛋白质酶解体系中新增肽链数相对于原有肽链数的变化,可以有效反映酶对蛋白质的酶切过程。根据酶解度的定义,只要分别测定出酶解前的体系中肽链数目与酶解后体系中的肽链增量,通过计算两者的比值就可以计算出该条件下的酶解度。体系中的肽链数目可以通过甲醛滴定法测定出体系中的游离氨基数与新增自由氨基数来计算。  相似文献   

19.
对于行政许可违法的法律责任问题,人们往往是从行政许可实施违法的角度进行研究,而对于设定违法及其责任追究的探讨却相对薄弱。然而。行政许可设定一旦违法,其对相对人和社会公共利益的损害将会更大,因此,对许可设定的违法及其责任问题进行研究,以避免违法行政行为的发生,促进政府依法行政,不仅必要而且是非常有意义的。  相似文献   

20.
基于“前沿分支”的观点研究了圈幂补图的树宽,首先确定了它的树宽下界,又给出了达到此下界的标号,从而得到了它的树宽表达式。  相似文献   

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