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Exploring the potential of olivine-containing copper-nickel slag for carbon dioxide mineralization in cementitious materials
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作者 Qianqian Wang Zequn Yao +1 位作者 Lijie Guo Xiaodong Shen 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2024年第3期562-573,共12页
Water-quenched copper-nickel metallurgical slag enriched with olivine minerals exhibits promising potential for the production of CO_(2)-mineralized cementitious materials.In this work,copper-nickel slag-based cementi... Water-quenched copper-nickel metallurgical slag enriched with olivine minerals exhibits promising potential for the production of CO_(2)-mineralized cementitious materials.In this work,copper-nickel slag-based cementitious material(CNCM)was synthesized by using different chemical activation methods to enhance its hydration reactivity and CO_(2) mineralization capacity.Different water curing ages and carbonation conditions were explored related to their carbonation and mechanical properties development.Meanwhile,thermogravimetry differential scanning calorimetry and X-ray diffraction methods were applied to evaluate the CO_(2) adsorption amount and carbonation products of CNCM.Microstructure development of carbonated CNCM blocks was examined by backscattered electron imaging(BSE)with energy-dispersive X-ray spectrometry.Results showed that among the studied samples,the CNCM sample that was subjected to water curing for 3 d exhibited the highest CO_(2) sequestration amount of 8.51wt%at 80℃and 72 h while presenting the compressive strength of 39.07 MPa.This result indicated that 1 t of this CNCM can sequester 85.1 kg of CO_(2) and exhibit high compressive strength.Although the addition of citric acid did not improve strength development,it was beneficial to increase the CO_(2) diffusion and adsorption amount under the same carbonation conditions from BSE results.This work provides guidance for synthesizing CO_(2)-mineralized cementitious materials using large amounts of metallurgical slags containing olivine minerals. 展开更多
关键词 copper-nickel slag FAYALITE CO_(2)sequestration cementitious material ADMIXTURES carbonation conditions
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Preparation of Ti-rich material from titanium slag by activation roasting followed by acid leaching 被引量:9
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作者 刘水石 郭宇峰 +2 位作者 邱冠周 姜涛 陈凤 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2013年第4期1174-1178,共5页
A method of activation roasting followed by acid leaching using titanium slag was introduced to prepare Ti-rich material. The effects of HaPO4 dosage, roasting temperature, and roasting time on TiO2 grade were investi... A method of activation roasting followed by acid leaching using titanium slag was introduced to prepare Ti-rich material. The effects of HaPO4 dosage, roasting temperature, and roasting time on TiO2 grade were investigated. A Ti-rich material containing 88.54% TiO2, 0.42% (CaO+MgO) was obtained when finely ground titanium slag was roasted with 7.5% H3PO4 at 1000 ℃ for 2 h, followed by a two-stage leaching in boiling dilute sulfuric acid for 2 h. The XRD patterns show that the product is titanium dioxide with a rutile structure. Mechanism studies show that structures of anosovite solid solution and silicate minerals are destroyed in the roasting process. As a result, titanium components in titanium slag are transformed into TiO2 (futile) while impurities are transformed into acid-soluble phosphate and quartz. 展开更多
关键词 titanium slag activation roasting acid leaching Ti-rich material futile
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Sintering preparation of porous sound-absorbing materials from steel slag 被引量:7
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作者 孙朋 郭占成 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2015年第7期2230-2240,共11页
Porous sound-absorbing materials were prepared from steel slag using waste expanded polystyrene(EPS) particles as pore former.The influences of the experimental conditions such as fly ash content,sintering temperatu... Porous sound-absorbing materials were prepared from steel slag using waste expanded polystyrene(EPS) particles as pore former.The influences of the experimental conditions such as fly ash content,sintering temperature,sintering time,and pore former addition on the performance of the porous sound-absorbing materials were investigated.The results show that the porosity of the specimens can reach above 50.0%;the compressive strength and average sound-adsorption coefficient of the sintered specimens are above 3.0 MPa and 0.47,respectively.The optimum preparation conditions for the steel slag porous sound-absorbing materials are as follows:mass fraction of fly ash 50%,waste EPS particles 3.6 g,sintering temperature 1100℃,and sintering time 7.5h,which are determined by considering the properties of the sound-absorbing materials,energy consumption and cost. 展开更多
关键词 steel slag porous sound-absorbing material noise reduction coefficient POROSITY compressive strength
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Thermodynamic analysis and formula optimization of steel slag-based ceramic materials by FACTsage software 被引量:12
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作者 Xian-bin Ai Hao Bai +2 位作者 Li-hua Zhao Da-qiang Cang Qi Tang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2013年第4期379-385,共7页
Using steel slag as a main raw material of ceramics is considered as a high value-added way. However, the relationship among the initial composition, ceramic microstructure, and macroscopic properties requires further... Using steel slag as a main raw material of ceramics is considered as a high value-added way. However, the relationship among the initial composition, ceramic microstructure, and macroscopic properties requires further study. In this paper, a series of ceramics with different slag ratios (0-70wt%) were designed, and the software FACTsage was introduced to simulate the formation of crystalline phases. The simulation results indicate that mullite is generated but drastically reduced at the slag ratios of 0-25wt%, and anorthite is the dominant crystalline phase in the slag content of 25wt%-45wt%. When the slag ratio is above 45wt%, pyroxene is generated more than anorthite. This is because increasing magnesium can promote the formation of pyroxene. Then, the formula with a slag content of 40wt% was selected and optimized. X-ray diffraction results were good consistent with the simulation results. Finally, the water absorption and bending strength of optimized samples were measured. 展开更多
关键词 ceramic materials steel slag phase composition THERMODYNAMICS OPTIMIZATION
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Preparation of Ultra-light Xonotlite Thermal Insulation Material Using Carbide Slag 被引量:4
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作者 刘飞 曹建新 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2010年第2期295-297,共3页
Using carbide slag as the calcareous materials, xonotlite thermal insulation material was successfully prepared via dynamic hydrothermal synthesis. The experimental results show that the xonotlite thermal insulation m... Using carbide slag as the calcareous materials, xonotlite thermal insulation material was successfully prepared via dynamic hydrothermal synthesis. The experimental results show that the xonotlite thermal insulation material is made up of large numbers of "chestnut bur shape" particles. Optimum conditions of calcination temperature of carbide slag, synthesis reaction temperature and time, stirring rate, CaO/SiO2 mol ratio, water/solid weight ratio, amount of fiberglass, molding pressures, dryness temperatures and the presence of dispersant (glycol and polyvinyl alcohol) favor the preparation of xonotlite thermal insulation material. The evaluation of xonotlite thermal insulation material reveals that the product is ultra-light and excellent in physical performances. Such a little amount of impurities in carbide slag has no effect on the phase, morphology, stability at high temperature and physical performances of products. 展开更多
关键词 carbide slag ultra-light xonotlite hydrothermal synthesis thermal insulation material
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Synthesis of steel slag ceramics: chemical composition and crystalline phases of raw materials 被引量:3
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作者 Li-hua Zhao Wei Wei +2 位作者 Hao Bai Xu Zhang Da-qiang Cang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2015年第3期325-333,共9页
Two types of porcelain tiles with steel slag as the main raw material (steel slag ceramics) were synthesized based on the CaO-A1203-SiO2 and CaO--MgO-SiO2 systems, and their bending strengths up to 53.47 MPa and 99.... Two types of porcelain tiles with steel slag as the main raw material (steel slag ceramics) were synthesized based on the CaO-A1203-SiO2 and CaO--MgO-SiO2 systems, and their bending strengths up to 53.47 MPa and 99.84 MPa, respectively, were obtained. The presence of anorthite, a-quartz, magnetite, and pyroxene crystals (augite and diopside) in the steel slag ceramics were very different from the composition of traditional ceramics. X-ray diffraction (XRD) and electron probe X-ray microanalysis (EPMA) results illustrated that the addition of steel slag reduced the temperature of extensive liquid generation and further decreased the firing temperature. The considerable contents of glass-modifying oxide liquids with rather low viscosities at high temperature in the steel slag ceramic adobes promoted element diffusion and crystallization. The results of this study demonstrated a new approach for extensive and effective recycling of steel slag. 展开更多
关键词 ceramic materials SYNTHESIS steel slag chemical composition crystalline phases solid waste recycling
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Application of Air-cooled Blast Furnace Slag Aggregates as Replacement of Natural Aggregates in Cement-based Materials:A Study on Water Absorption Property 被引量:1
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作者 王爱国 liu peng +3 位作者 liu kaiwei li yan zhang gaozhan 孙道胜 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2018年第2期445-451,共7页
The influence of air-cooled blast furnace slag aggregates as replacement of natural aggregates on the water absorption of concrete and mortar was studied, and the mechanism was analyzed. The interface between aggregat... The influence of air-cooled blast furnace slag aggregates as replacement of natural aggregates on the water absorption of concrete and mortar was studied, and the mechanism was analyzed. The interface between aggregate and matrix in concrete was analyzed by using a micro-hardness tester, a laser confocal microscope and a scanning electron microscope with backscattered electron image mode. The pore structure of mortar matrixes under different curing conditions was investigated by mercury intrusion porosimetry. The results showed that when natural aggregates were replaced with air-cooled blast furnace slag aggregates in mortar or concrete, the content of the capillary pore in the mortar matrix was reduced and the interfacial structure between aggregate and matrix was improved, resulting in the lower water absorption of mortar or concrete. Compared to the concrete made with crushed limestone and natural river sand, the initial absorption coefficient, the secondary absorption coefficient and the water absorption capacity through the surface for 7 d of the concrete made from crushed air-cooled blast furnace slag and air-cooled blast furnace slag sand were reduced by 48.9%, 52.8%, and 46.5%, respectively. 展开更多
关键词 air-cooled blast furnace slag aggregate cement-based materials water absorption coefficient interface structure
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Future Resources for Eco-building Materials:I. Metallurgical Slag
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作者 徐德龙 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2009年第3期451-456,共6页
In order to make an effectivily recycle use of iron and steel slags that are main industrial wastes generated in Chinese metallurgical industry, the current technologies for reprocessing and recycling these wastes int... In order to make an effectivily recycle use of iron and steel slags that are main industrial wastes generated in Chinese metallurgical industry, the current technologies for reprocessing and recycling these wastes into eco-building materials were reviewed, such as preparing cement-steel slag blended cement with steel slag after metal recovery, using the fine powder of blast furnace slag (BFS) for manufacturing slag cement and high performance concrete. A further research on using these available resources more efficiently were discussed. 展开更多
关键词 metallurgical slag REPROCESSING eco-building materials
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Feasibility Study on V Fe Alloy Slag as Abrasive Material
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作者 甄强 肖红 +2 位作者 陈厚生 吉红兵 王先陶 《Rare Metals》 SCIE EI CAS CSCD 1999年第4期270-274,共5页
The possibility of using V-Fe alloy slag as abrasive material was investigated. The chemical constitution and microstructure of the V-Fe alloy slag were examined. It is found that the slag contains about 90% Al2O3 exi... The possibility of using V-Fe alloy slag as abrasive material was investigated. The chemical constitution and microstructure of the V-Fe alloy slag were examined. It is found that the slag contains about 90% Al2O3 existing as corundum with high hardness (> 30 GPa) and high bulk density (> 3.6 g/cm(3)). The V-Fe alloy slag can be applied to abrasive material instead of brown alumina (or black alumina). 展开更多
关键词 V-Fe alloy slag corundum abrasive material
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Mechanical properties of gangue-containing aluminosilicate based cementitious materials 被引量:14
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作者 Huajian Li Henghu Sun +1 位作者 Xuejun Xiao Hongxia Chen 《Journal of University of Science and Technology Beijing》 CSCD 2006年第2期183-189,共7页
High performance aluminosilicate based cementitious materials were produced using calcined gangue as one of the major raw materials. The gangue was calcined at 500℃. The main constituent was calcined gangue, fly ash ... High performance aluminosilicate based cementitious materials were produced using calcined gangue as one of the major raw materials. The gangue was calcined at 500℃. The main constituent was calcined gangue, fly ash and slag, while alkali-silicate solutions were used as the diagenetic agent. The structure of gangue-containing aluminosilicate based cementitious materials was studied by the methods of IR, NMR and SEM. The results show that the mechanical properties are affected by the mass ratio between the gangue, slag and fly ash, the kind of activator and additional salt. For 28-day curing time, the compressive strength of the sample with a mass proportion of 2:1:1 (gangue: slag: fly ash) is 58.9 MPa, while the compressive strength of the sample containing 80wt% gangue can still be up to 52.3 MPa. The larger K^+ favors the formation of large silicate oligomers with which AI(OH)4- prefers to bind. Therefore, in Na-K compounding activator solutions more oligomers exist which result in a stronger compressive strength of aluminosilicate-based cementitious materials than in the case of Na-containing activator. The reasons for this were found through IR and NMR analysis. Glauber's salt reduces the 3-day compressive strength of the paste, but increases its 7-day and 28-day compressive strengths. 展开更多
关键词 GANGUE slag fly ash aluminosilicate based cementitious materials mechanical properties
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Binding Materials of Dehydrated Phases of Waste Hardened Cement Paste and Pozzolanic Admixture 被引量:5
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作者 吕林女 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2009年第1期140-144,共5页
Fly ash (FA) and ground granulated blast-furnace slag (GGBFS) were added to improve the performances of regenerated binding materials (RBM) which refer to dehydrated phases with rebinding ability of waste harden... Fly ash (FA) and ground granulated blast-furnace slag (GGBFS) were added to improve the performances of regenerated binding materials (RBM) which refer to dehydrated phases with rebinding ability of waste hardened cement paste. Flowability tests, compressive strength tests, SEM, TG-DSC, and non-evaporable water content tests were employed to study the performances of the combined binding materials and the interactions between RBM, FA, and GGBFS. Results show that adding FA or GGBFS can improve the workability of RBM paste, and GGBFS has positive effects on strength of RBM. Pozzolanic reactions happen between RBM, FA, and GGBFS. And the activation effect of RBM to FA and GGBFS is superior to that of P.O grade-32.5 cement, especially at earlier ages, because of the high reactive f-CaO existing in RBM. On the advantages of the synergetic effects of RBM and pozzolanic admixtures such as FA and GGBFS, new combined binding materials can be prepared by blending them together. 展开更多
关键词 combined binding materials dehydrated phase fly ash granulatedblast-furnace slag
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Optimization of SO_3 Content in Blended Cementitious Materials
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作者 陈美祝 《Journal of Wuhan University of Technology(Materials Science)》 SCIE EI CAS 2003年第3期89-93,共5页
Experimental investigation was conducted on the effects of gypsum types and SO 3 content on the fluidity and strengths of different cementitious systems.The experimental results show that influences of gypsum in vari... Experimental investigation was conducted on the effects of gypsum types and SO 3 content on the fluidity and strengths of different cementitious systems.The experimental results show that influences of gypsum in various cementitious materials are different.For cementitious materials blended with various proportions of slag fly ash and 5% gypsum content,influences of gypsum and calcined gypsum on the fluidity and flexural/compressive strength are similar.It is revealed that 'combination effect' and 'synergistic effect' of slag and fly ash play an important role during hydration.For cementitious materials with 45% clinkers,30%slag,20%fly ash and 5%limestone,the optimized SO 3 contents in gypsum and calcined gypsum are 3.13% and 3.51% respectively and the optimized gypsum content is 6.5%.While both of them are blended,the optimum ratio of gypsum to calcined gypsum is 40%∶60%(total gypsum content 6.5%),correspondingly the optimum ratio of SO 3 is 19.3%∶32.4%. 展开更多
关键词 GYPSUM calcined gypsum slag fly ash cementitious material
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钢渣-矿渣基胶凝材料的协同水化机理 被引量:1
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作者 南雪丽 杨旭 +2 位作者 张宇 唐维斌 张富强 《建筑材料学报》 EI CAS CSCD 北大核心 2024年第4期366-374,共9页
通过胶砂强度试验及X射线衍射仪(XRD)、热失重分析(TG-DTG)、扫描电镜-能谱仪(SEM-EDS)等微观测试技术,对不同配合比钢渣-矿渣基胶凝材料的力学性能、水化产物及其水化硬化过程进行了研究.结果表明:当胶凝材料的n(CaO+MgO)/n(SiO2+Al2O3... 通过胶砂强度试验及X射线衍射仪(XRD)、热失重分析(TG-DTG)、扫描电镜-能谱仪(SEM-EDS)等微观测试技术,对不同配合比钢渣-矿渣基胶凝材料的力学性能、水化产物及其水化硬化过程进行了研究.结果表明:当胶凝材料的n(CaO+MgO)/n(SiO2+Al2O3)=0.90时,其水化后期有较多的水化硅酸钙、水化铝酸钙凝胶生成,微观结构更加致密,力学性能表现最优,28 d抗压强度和抗折强度分别达到20.20、7.25 MPa;pH值的变化反映出协同水化效应的关键在于钢渣活性矿物的溶解和矿渣的二次火山灰反应,钢渣和矿渣的最佳配合比可以保证水化程度有较高的水平. 展开更多
关键词 钢渣 高炉矿渣 胶凝材料 协同水化效应 水化反应
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Unveiling the Carbonation Behavior and Microstructural Changes of Magnesium Slag at 0℃
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作者 Junhao Ye Songhui Liu +2 位作者 Jingrui Fang Xuemao Guan Hui Guo 《Journal of Building Material Science》 2023年第2期37-50,共14页
Magnesium slag(MS)is an industrial byproduct with high CO_(2)sequestration potential.This study investigates the carbonation behavior and microstructural changes of MS during wet carbonation at 0℃.XRD,TG,FTIR,SEM,and... Magnesium slag(MS)is an industrial byproduct with high CO_(2)sequestration potential.This study investigates the carbonation behavior and microstructural changes of MS during wet carbonation at 0℃.XRD,TG,FTIR,SEM,and BET techniques were used to characterize the phase composition,microstructure,and porosity of MS samples carbonated for different durations.The results showed that the main carbonation products were calcite,vaterite,and highly polymerized silica gel,with particle sizes around 1μm.The low-temperature environment retarded the carbonation reaction rate and affected the morphology and crystallization of calcium carbonate.After 480 min of carbonation,the specific surface area and porosity of MS increased substantially by 740%and 144.6%,respectively,indicating improved reactivity.The microstructure of carbonated MS became denser with calcite particles surrounded by silica gel.This study demonstrates that wet carbonation of MS at 0℃significantly enhances its properties,creating an ultrafine supplementary cementitious material with considerable CO_(2)sequestration capacity. 展开更多
关键词 Wet carbonation Ultrafine supplementary cementitious materials Calcium carbonate Magnesium slag
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铅冶炼渣基生态胶凝材料的研发及重金属固化
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作者 刘文欢 胡静 +4 位作者 赵忠忠 杜任豪 万永峰 雷繁 李辉 《材料导报》 EI CAS CSCD 北大核心 2024年第6期139-146,共8页
铅冶炼渣(LSS)是一种含有重金属(Cr、Ni、Cu、Zn、As和Pb)的危险废物,其不当处置会对生态系统造成不可挽回的危害。本工作采用化灰渣(LAS)、水氯镁石(BF)、矿粉(SP)及适量水泥(CM)协同激发铅冶炼渣制备生态胶凝材料。通过正交试验得到... 铅冶炼渣(LSS)是一种含有重金属(Cr、Ni、Cu、Zn、As和Pb)的危险废物,其不当处置会对生态系统造成不可挽回的危害。本工作采用化灰渣(LAS)、水氯镁石(BF)、矿粉(SP)及适量水泥(CM)协同激发铅冶炼渣制备生态胶凝材料。通过正交试验得到胶凝材料的最优配比,阐述了不同因素对生态胶凝材料抗压强度的影响;采用XRD、SEM、FTIR、硫酸和硝酸法等方法分析了胶凝材料水化产物的特性及重金属浸出规律。研究结果表明:当铅冶炼渣和水泥的质量比为3∶1,化灰渣、水氯镁石、矿粉的外掺量分别为铅冶炼渣和水泥质量总量的20%、10%、10%时,制备出的生态胶凝材料抗压强度最优,28 d抗压强度达到40.9 MPa,且矿粉掺量为影响其抗压强度的第一要素。微观分析表明,胶凝材料的水化产物主要为弗里德尔盐、方解石、C-S-H和C-A-S-H,它们相互连接形成致密的空间网络结构,这不但有助于提高胶凝材料的力学性能,还能实现对重金属元素的物理固封和离子交换吸附固化。胶凝材料对主要重金属的胶结固化率大于83%,重金属浸出液浓度符合生活饮用水卫生标准(GB5749-2006)的要求。 展开更多
关键词 铅冶炼渣 生态胶凝材料 抗压强度 水化产物 重金属 浸出液浓度
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单组分电炉镍渣基地聚物修补材料制备与性能调控
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作者 吴文达 张栋梁 +1 位作者 王景杨 王雪芳 《福州大学学报(自然科学版)》 CAS 北大核心 2024年第3期322-328,共7页
为利用具有潜在活性的固体废弃物电炉镍渣,制备单组分电炉镍渣基地聚物修补砂浆.基于正交实验和极差分析,通过掺入掺合料并改变碱模数和碱当量等关键影响因素,对地聚物砂浆各项修补性能进行调控,获取满足修补性能的最优配合比,确定各因... 为利用具有潜在活性的固体废弃物电炉镍渣,制备单组分电炉镍渣基地聚物修补砂浆.基于正交实验和极差分析,通过掺入掺合料并改变碱模数和碱当量等关键影响因素,对地聚物砂浆各项修补性能进行调控,获取满足修补性能的最优配合比,确定各因素对修补性能的影响主次.结果表明,最优配比是矿渣掺量为30%,粉煤灰掺量为30%,碱模数为1.2,碱当量为6.5%,其28 d抗压、抗折强度分别为90.29、9.23 MPa,干燥收缩率为0.56×10-3,14 d拉伸粘结强度为3.64 MPa,满足修补砂浆规范要求.经比较,矿渣掺量对修补砂浆性能调控影响最为显著. 展开更多
关键词 电炉镍渣 地聚物修补材料 正交实验 单组分 配合比 性能调控
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煤气化细渣水热合成多孔材料及对氨氮的吸附性能研究
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作者 涂亚楠 胡雨杉 +5 位作者 刘旺 黄钦涵 高影 王宇佳 王浩强 康建 《煤炭工程》 北大核心 2024年第7期205-212,共8页
为了拓展煤气化细渣高值化利用途径,采用碱溶水热法制备多孔复合吸附材料。通过调控碱浓度、水热时间、温度、搅拌时间等因素探究其对复合材料结构性能的影响规律,并通过分析不同制备条件下复合吸附材料的物相组成、表观形貌、孔隙结构... 为了拓展煤气化细渣高值化利用途径,采用碱溶水热法制备多孔复合吸附材料。通过调控碱浓度、水热时间、温度、搅拌时间等因素探究其对复合材料结构性能的影响规律,并通过分析不同制备条件下复合吸附材料的物相组成、表观形貌、孔隙结构,明晰复合材料与其对氨氮吸附能力的构效关系。结果表明:复合材料生成了以P型沸石为主要晶相的沸石结构。当碱浓度为2 mol/L、水热时间为30 h,水热温度为100℃,搅拌时间为10 min制备的复合材料的氨氮吸附量最高,当氨氮初始浓度为100 mg/L、吸附时间为5 h时,复合材料对氨氮的平衡吸附量达到15.65 mg/g。吸附材料对氨氮的等温吸附特性符合Langmuir方程,且反应过程符合准二级动力学方程。热力学分析表明煤气化细渣对氨氮的吸附为自发、吸热及熵增反应。 展开更多
关键词 煤气化细渣 水热合成 氨氮 吸附 多孔材料
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早强型钢渣基胶凝材料的制备及其水化机理研究
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作者 张浩 马伟克 +3 位作者 叶雁飞 申振伟 司乐琦 胡道庆 《化工矿物与加工》 CAS 2024年第7期47-52,共6页
钢渣是炼钢过程中产生的主要废弃物,具有用途单一、产生量大、污染环境等特点。本文使用钢渣微粉、42.5普通硅酸盐水泥分别与增强剂Ⅰ、增强剂Ⅱ混合制备早强型钢渣基胶凝材料,通过测定原料化学成分、矿物组成,测试胶凝材料的力学性能,... 钢渣是炼钢过程中产生的主要废弃物,具有用途单一、产生量大、污染环境等特点。本文使用钢渣微粉、42.5普通硅酸盐水泥分别与增强剂Ⅰ、增强剂Ⅱ混合制备早强型钢渣基胶凝材料,通过测定原料化学成分、矿物组成,测试胶凝材料的力学性能,分析其热稳定性、微观形貌来揭示胶凝材料的水化机理。研究结果表明:胶凝材料的早期抗压强度大幅提高,后期抗压强度良好;这是因为增强剂能促进Ca(OH)2消耗并提高水化反应速率,Ca(OH)2水解出的OH-能促进钢渣微粉中玻璃体溶出硅酸盐,与Ca^(2+)生成C-S-H凝胶;增强剂含有的硫酸盐能与胶凝材料生成钙矾石AFt,并填充于凝胶孔隙中,增强了材料的密实度。早强型钢渣基胶凝材料的最优配比为钢渣微粉125 g、增强剂Ⅱ用量10 g。研究成果为早强型钢渣基胶凝材料的制备提供了新思路,也可为钢渣综合利用研究提供借鉴。 展开更多
关键词 钢渣微粉 增强剂 早强 胶凝材料 水化机理
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利用电石渣替代水泥开发固碳胶凝材料
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作者 许雪艳 贾英杰 《材料科学与工程学报》 CAS CSCD 北大核心 2024年第1期123-128,136,共7页
本研究利用电石渣替代部分水泥,制备新型固碳胶凝材料,研究了不同电石渣含量的胶凝材料对600 kg/m3等级泡沫混凝土的基础性能及固碳性能的影响。研究表明:电石渣的掺入导致泡沫混凝土气孔变大,28 d抗压强度先升高后降低,保温性能提高;... 本研究利用电石渣替代部分水泥,制备新型固碳胶凝材料,研究了不同电石渣含量的胶凝材料对600 kg/m3等级泡沫混凝土的基础性能及固碳性能的影响。研究表明:电石渣的掺入导致泡沫混凝土气孔变大,28 d抗压强度先升高后降低,保温性能提高;当电石渣取代10%水泥,制备出的泡沫混凝土干密度为595 kg/m3,28 d抗压强度比未掺加电石渣的提高4.2%,达5.0 MPa;当电石渣取代50%水泥,制备出的泡沫混凝土导热系数比未掺加电石渣的降低17.1%,为1.131 W·m-1·K-1。电石渣掺加有利于改善泡沫混凝土收缩,当电石渣掺量增加,泡沫混凝土先呈现收缩减小后出现膨胀。碳化养护不仅能够固化封存CO_(2),还能提高泡沫混凝土的力学性能与保温性能。电石渣掺量越高,泡沫混凝土固碳能力越强,电石渣掺量为50%时,CO_(2)的捕获量达到46.02 wt%。 展开更多
关键词 电石渣 固碳胶凝材料 泡沫混凝土 气孔结构 导热系数 力学性能
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电石渣的资源化利用现状 被引量:3
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作者 邵岚 马丽萍 +4 位作者 杨杰 戴取秀 谢龙贵 罗越涛 曾玲珑 《现代化工》 CAS CSCD 北大核心 2024年第3期79-83,共5页
阐述了电石渣综合利用的研究状况。传统资源化方式包括制备建筑材料和改善环境,如以电石渣制造水泥、地聚物以及其他建筑材料等;电石渣呈强碱性,可以处理酸性废水、废气,达到以废治废、保护环境的目的。总结了电石渣资源化在化学、冶金... 阐述了电石渣综合利用的研究状况。传统资源化方式包括制备建筑材料和改善环境,如以电石渣制造水泥、地聚物以及其他建筑材料等;电石渣呈强碱性,可以处理酸性废水、废气,达到以废治废、保护环境的目的。总结了电石渣资源化在化学、冶金和碳捕集方面的新机遇。电石渣不仅是良好的钙基资源,也拥有良好的经济性,电石渣的资源化利用具有重要意义。 展开更多
关键词 电石渣 建筑材料 环境治理 化工材料 CO_(2)捕获
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