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Al_(2)O_(3)/TiO_(2)/Na_(2)O对石灰在炼钢渣中溶解的影响
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作者 皮溅清 王明理 +3 位作者 张延玲 赵宏博 余阚 李更 《有色金属科学与工程》 北大核心 2025年第1期1-7,共7页
含有Al_(2)O_(3)、TiO_(2)、Na_(2)O组元的赤泥基熔剂对传统的炼钢渣系具有显著的助熔作用,研究炼钢炉渣中石灰的溶解机理及影响其溶解速率的因素,对促进炼钢中无氟熔剂的发展有很大意义。本实验采用圆柱旋转法测定了石灰在含Al_(2)O_(3... 含有Al_(2)O_(3)、TiO_(2)、Na_(2)O组元的赤泥基熔剂对传统的炼钢渣系具有显著的助熔作用,研究炼钢炉渣中石灰的溶解机理及影响其溶解速率的因素,对促进炼钢中无氟熔剂的发展有很大意义。本实验采用圆柱旋转法测定了石灰在含Al_(2)O_(3)、TiO_(2)、Na_(2)O的炼钢渣系中的溶解速率,对其熔化过程矿相变化进行分析论证。结果表明,在1400℃时,石灰溶解的促进系数按Na_(2)O>TiO_(2)>Al_(2)O_(3)的顺序下降,添加10%的Na_(2)O能使石灰溶解的促进系数提高7倍。此外文章探究了Al_(2)O_(3)、TiO_(2)、Na_(2)O对CaO在熔渣中的扩散以及边界层上石灰分解反应的影响,阐明了该条件下石灰的溶解机理。发现同时包含Al_(2)O_(3)/TiO_(2)/Na_(2)O的赤泥基熔剂可以作为合适的炼钢熔剂。 展开更多
关键词 石灰溶解 al_(2)o_(3)/tio_(2)/Na_(2)o 炼钢渣
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大气等离子喷涂Al_(2)O_(3)-TiO_(2)-Ni5Al复合涂层的性能及应用 被引量:1
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作者 胡林荣 所彭帮 +4 位作者 龙金 张凤梅 滕李虎 吴迪 朱春丽 《电镀与精饰》 北大核心 2025年第6期28-34,共7页
以Al_(2)O_(3)-3%TiO_(2)粉末和Ni5Al粉末为原料,通过在Al_(2)O_(3)-3%TiO_(2)粉末中混合不同质量比为0、20%、40%、60%的Ni5Al粉末,采用大气等离子喷涂在高温合金GH4169基体表面制备了Al_(2)O_(3)-TiO_(2)-Ni5Al复合涂层,对涂层的显微... 以Al_(2)O_(3)-3%TiO_(2)粉末和Ni5Al粉末为原料,通过在Al_(2)O_(3)-3%TiO_(2)粉末中混合不同质量比为0、20%、40%、60%的Ni5Al粉末,采用大气等离子喷涂在高温合金GH4169基体表面制备了Al_(2)O_(3)-TiO_(2)-Ni5Al复合涂层,对涂层的显微组织、结合强度、显微硬度、表面状态等方面进行了分析,研究了Ni5Al成分的变化对Al_(2)O_(3)-TiO_(2)-Ni5Al复合涂层性能的影响,对涂层做出了性能优化并在某航空发动机封严篦齿上进行了工程化应用。结果表明:随着Ni5Al含量的增加,Ni5Al呈层片状均匀弥散分布于Al_(2)O_(3)-TiO_(2)-Ni5Al复合涂层中,且涂层孔径逐渐增大;Ni5Al含量的增加可以提高Al_(2)O_(3)-TiO_(2)-Ni5Al复合涂层的结合强度、表面粗糙度,同时降低涂层的显微硬度,涂层表面颜色由灰蓝色逐渐向金属灰色转变;增加粘接层Ni5Al可以提高Al_(2)O_(3)-TiO_(2)-Ni5Al复合涂层与封严篦齿的结合强度及涂层的抗热震性能。 展开更多
关键词 al_(2)o_(3)-tio_(2)-Ni5al 显微组织 结合强度 显微硬度 封严篦齿
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Superplastic behavior of fine-grained Ti-10V-2Fe-3Al alloy fabricated by friction stir processing 被引量:1
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作者 Kai Wang Wenjing Zhang +3 位作者 Takuya Ogura Yoshiaki Morisada Xinqing Zhao Hidetoshi Fujii 《Journal of Materials Science & Technology》 2025年第3期26-36,共11页
Ti-10V-2Fe-3Al alloy with fine-grainedβphases was fabricated by friction stir processing with opti-mized processing parameters.The superplastic behavior of the specimens was investigated by tensile deformation at dif... Ti-10V-2Fe-3Al alloy with fine-grainedβphases was fabricated by friction stir processing with opti-mized processing parameters.The superplastic behavior of the specimens was investigated by tensile deformation at different strain rates and temperatures,and an optimal superplastic elongation of 634%was achieved at 700℃ and 3×10^(-4)/s.An annealing treatment at 650℃ for 60 min showed a mi-crostructure withαprecipitates distributed in theβmatrix in the friction stir specimen.Such pre-heat treatment improves the superplasticity of the specimen,achieving an elongation of up to 807%at 750℃ and 3×10^(-4)/s.The influences of tensile temperatures and strain rates on the microstructural evolution,such as grain size variation,grain morphology,and phase transformations,were discussed.The super-plastic deformation behavior of fine-grained Ti-10V-2Fe-3Al alloy is controlled by grain boundary sliding and accompanied by dynamic phase transformation and recrystallization. 展开更多
关键词 Ti-10V-2Fe-3al alloy Friction stir processing SUPERPLASTICITY Microstructural evolution Pre-heat treatment
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Colorless/Black Switching Electrochromic Device Based on WO_(3)·xH_(2)O and Reversible Metal Electrodeposition
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作者 WAN Xinyi WANG Wenqi +3 位作者 LI Jiacheng ZHAO Junliang MA Dongyun WANG Jinmin 《无机材料学报》 北大核心 2025年第10期1163-1172,I0001,I0002,共12页
Electrochromic(EC)smart windows utilizing a reversible metal electrodeposition device(RMED)offer a compelling alternative for dynamically regulating transmissions of optical and thermal energy.An EC device(ECD)is cons... Electrochromic(EC)smart windows utilizing a reversible metal electrodeposition device(RMED)offer a compelling alternative for dynamically regulating transmissions of optical and thermal energy.An EC device(ECD)is constructed by reversible metal electrodeposition(RME)of Bi/Cu on WO_(3)·xH_(2)O film electrodeposited onto fluorine-doped tin oxide(FTO)transparent conductive glass.The electrolyte consists of CuCl_(2),BiCl_(3),KCl and HCl aqueous solution,supplying necessary components for both electrochemical and electrodeposition processes.The ECD shows ability to rapidly transition between colorless and black states,which achieves a large optical modulation of 77.0%at 570 nm.In the black state,the ECD exhibits a near-zero transmittance in the wavelength range of 400-1100 nm while maintaining 96.6%of its initial optical modulation after coloration/bleaching cycling of 60000 s,exhibiting good cyclic stability.This RMED has relatively high stability under open-circuit voltage and also possesses excellent heat insulation performance.The results offer a solution to overcome the poor cyclic stability of RMEDs and improve the optical modulation of ECDs. 展开更多
关键词 reversible metal electrodeposition electrochromic Wo_(3)·xH_(2)o
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Z-scheme heterojunction Zn_(3)(OH)_(2)(V_(2)O_(7))(H_(2)O)_(2)/V-Zn(O,S)for enhanced visible-light photocatalytic N2 fixation via synergistic heterovalent vanadium states and oxygen vacancy defects
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作者 Pengkun Zhang Qinhan Wu +7 位作者 Haoyu Wang Dong-Hau Kuo Yujie Lai Dongfang Lu Jiqing Li Jinguo Lin Zhanhui Yuan Xiaoyun Chen 《Chinese Journal of Catalysis》 2025年第7期279-293,共15页
Herein,we established a Zn_(3)(OH)_(2)(V_(2)O_(7))(H_(2)O)_(2)/V-Zn(O,S)Z-scheme heterojunction labeled ZnVO/V-Zn(O,S)with a heterovalent V^(4+)/V^(5+)states and oxygen vacancies in both phases via a one-step in-situ ... Herein,we established a Zn_(3)(OH)_(2)(V_(2)O_(7))(H_(2)O)_(2)/V-Zn(O,S)Z-scheme heterojunction labeled ZnVO/V-Zn(O,S)with a heterovalent V^(4+)/V^(5+)states and oxygen vacancies in both phases via a one-step in-situ hydrolysis method.The NaBH_(4) regulated the ZnVO/V-Zn(O,S)-3 with rich Vo and suitable n(V^(4+))/n(V^(5+))ratio achieved an excellent photocatalytic nitrogen fixation activity of 301.7μmol/(g×h)and apparent quantum efficiency of 1.148%at 420 nm without any sacrificial agent,which is 11 times than that of V-Zn(O,S).The Vo acts as the active site to trap and activate N_(2) molecules and to trap and activate H_(2)O to produce the H for N_(2) molecules photocatalytic reduction.The rich Vo defects can also reduce the competitive adsorption of H_(2)O and N_(2) molecules on the surface active site of the catalyst.The heterovalent vanadium states act as the photogenerated electrons,quickly hopping between V^(4+)and V^(5+)to transfer for the photocatalytic N_(2) reduction reaction.Additionally,the Z-scheme heterojunction effectively minimizes photogenerated carrier recombination.These synergistic effects collectively boost the photocatalytic nitrogen fixation activity.This study provides a practical method for designing Z-scheme heterojunctions for efficient photocatalytic N_(2) fixation under mild conditions. 展开更多
关键词 Zn_(3)(oH)_(2)(V_(2)o_(7))(H_(2)o)_(2) Z-scheme heterojunction Heterovalent valence states oxygen vacancy Photocatalytic N_(2)fixation
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Rational construction of S-scheme CdS quantum dots/In_(2)O_(3) hollow nanotubes heterojunction for enhanced photocatalytic H_(2)evolution
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作者 Yong-Hui Wu Yu-Qing Yan +3 位作者 Yi-Xiang Deng Wei-Ya Huang Kai Yang Kang-Qiang Lu 《Chinese Journal of Catalysis》 2025年第3期333-340,共8页
The rapid recombination of photogenerated carriers poses a significant limitation on the use of CdS quantum dots(QDs)in photocatalysis.Herein,the construction of a novel S-scheme heterojunction between cubic-phase CdS... The rapid recombination of photogenerated carriers poses a significant limitation on the use of CdS quantum dots(QDs)in photocatalysis.Herein,the construction of a novel S-scheme heterojunction between cubic-phase CdS QDs and hollow nanotube In_(2)O_(3)is successfully achieved using an electrostatic self-assembly method.Under visible light irradiation,all CdS-In_(2)O_(3)composites exhibit higher hydrogen evolution efficiency compared to pure CdS QDs.Notably,the photocatalytic H_(2)evolution rate of the optimal CdS-7%In_(2)O_(3)composite is determined to be 2258.59μmol g^(−1)h^(−1),approximately 12.3 times higher than that of pure CdS.The cyclic test indicates that the CdS-In_(2)O_(3)composite maintains considerable activity even after 5 cycles,indicating its excellent stability.In situ X-ray photoelectron spectroscopy and density functional theory calculations confirm that carrier migration in CdS-In_(2)O_(3)composites adheres to a typical S-scheme heterojunction mechanism.Additionally,a series of characterizations demonstrate that the formation of S-scheme heterojunctions between In_(2)O_(3)and CdS inhibits charge recombination and accelerates the separation and migration of photogenerated carriers in the CdS QDs,thus achieving enhanced photocatalytic performance.This work elucidates the pivotal role of S-scheme heterojunctions in photocatalytic H_(2)production and offers novel insights into the construction of effective composite photocatalysts. 展开更多
关键词 CdS In2o3 Quantum dot Photocatalytic H_(2)evolution S-scheme heterojunction
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工艺参数对Al_(2)O_(3)-C耐火材料抗氧化性和抗水化性的影响
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作者 张瑞 孙旭东 +5 位作者 魏瀚 袁彪 王俊涛 袁林 刘士范 陈松林 《耐火材料》 北大核心 2025年第1期65-69,共5页
为了研究各因素对Al_(2)O_(3)-C耐火材料抗氧化和抗水化性能的影响,以优化其制备工艺,以板状刚玉、Al粉、电熔锆刚玉、活性氧化铝粉、鳞片石墨为主要原料,使用热固性酚醛树脂为结合剂,采用液压成型制成?50 mm×50 mm的圆柱体试样,... 为了研究各因素对Al_(2)O_(3)-C耐火材料抗氧化和抗水化性能的影响,以优化其制备工艺,以板状刚玉、Al粉、电熔锆刚玉、活性氧化铝粉、鳞片石墨为主要原料,使用热固性酚醛树脂为结合剂,采用液压成型制成?50 mm×50 mm的圆柱体试样,在埋碳气氛下对试样进行了热处理。选取Al粉加入量(加入质量分数分别为6%、9%和12%)、石墨加入量(加入质量分数分别为5%、15%和25%)、热处理温度(680、950、1 500℃)和保温时间(3、6、9 h)为研究因素,每个因素选取3个水平进行正交设计,分析了其对Al_(2)O_(3)-C耐火材料抗氧化和抗水化性能的影响。结果表明:1)Al粉加入量和石墨加入量为影响抗氧化性能的主要因素,而热处理温度和保温时间为次要因素;2)Al粉加入量和热处理温度是影响抗水化性能的主要因素,而石墨加入量和保温时间为次要因素;3)综合考虑,最优工艺为:Al粉加入量9%(w),石墨加入量5%(w),热处理温度1 500℃,保温时间6 h,制备的试样中存在柱状的Al_(4)O_(4)C,能够显著提高材料的抗氧化和抗水化性能。 展开更多
关键词 al_(2)o_(3)-C耐火材料 al_(4)o_(4)C 抗水化性能 抗氧化性能
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Prediction of macroscopic abnormally coarse grain during solid solution of Ti-10V-2Fe-3Al alloy based on dynamic recrystallization kinetics
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作者 ZHANG Yu-sen CHEN Lei +4 位作者 GAO Xiao-peng GUO Cong-de CAI Xing-zhou JIN Miao MA Xiao-cong 《Journal of Central South University》 2025年第11期4228-4247,共20页
After the hot deformation sample of Ti-10V-2Fe-3Al alloy was treated by solid solution in theα+βtwo-phase region,the coarseβgrains that often appeared in theβsingle phase region were observed in the local region,i... After the hot deformation sample of Ti-10V-2Fe-3Al alloy was treated by solid solution in theα+βtwo-phase region,the coarseβgrains that often appeared in theβsingle phase region were observed in the local region,indicating that the abnormal grain growth occurred in the local microstructural region,and the macrostructure also showed abnormally coarse grains(ACGs).The dynamic recrystallization(DRX)behavior of Ti-10V-2Fe-3Al titanium alloy was systematically investigated through hot compression tests on the Gleeble-3800 system.The DRX model ofβgrains was established,and the quantitative correlation between DRX characteristics and the appearance of ACG was clarified.Based on these results,a numerical simulation platform was developed to realize the visual prediction of ACG distribution.The results show that the increase of deformation temperature and the decrease of strain rate both contribute to a significant increase in the grain size(d_(DRX)))and volume fraction(X_(DRX))of DRXed grains.However,the proper X_(DRX)and smaller d_(DRX))at low deformation temperature and high strain rate make the macro and microstructure show ACGs after solid solution.Interestingly,if the DRX degree is excessive or insufficient,ACGs cannot be produced,indicating that ACGs are solid solution products based on the appropriate DRX degree.According to the flow curves and statistical results of microstructure,the quantitative model of DRX kinetics and DRX grain size model were constructed,and the quantitative criterion model that is related to the formation of ACG with grain size(d_(DRX)))and volume fraction(X_(DRX))of DRXed grains as the key parameters was established,i.e.,d_(DRX)≤2.60µm,72.5%≤X_(DRX)≤87.9%.By integrating the subroutine of coarse grain criterion,the isothermal compression process of cylindrical samples and the actual die forging process of H-shaped parts were simulated by DEFORM-3D software of finite element(FE),respectively,and the visual prediction of the distribution of macroscopic ACGs was realized.There is a good consistency between the tested results and the simulated results,indicating a strong correlation between macroscopic ACGs and microscopic DRX. 展开更多
关键词 Ti-10V-2Fe-3al alloy abnormally coarse grain dynamic recrystallization finite element simulation visualization model
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Enhanced photoelectrochemical performance of TiO_(2)/Sb_(2)S_(3) nanorod arrays by annealing in Ar ambience
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作者 SUI Meirong GU Xiuquan 《Optoelectronics Letters》 2025年第7期385-390,共6页
In this work,the TiO_(2)/Sb_(2)S_(3) nanorod arrays(NRAs)were synthesized through a two-stage hydrothermal route for photoelectrochemical(PEC)water splitting.The effect of annealing treatment in Ar ambience on the PEC... In this work,the TiO_(2)/Sb_(2)S_(3) nanorod arrays(NRAs)were synthesized through a two-stage hydrothermal route for photoelectrochemical(PEC)water splitting.The effect of annealing treatment in Ar ambience on the PEC activity of TiO_(2)/Sb_(2)S_(3) composite sample was investigated by electrochemical impedance analysis,including Nyquist and Mott-Schottky(M-S)plots.It was demonstrated that vacuum annealing could crystallize Sb_(2)S_(3) component and change its color from red to black,leading to an increment of photocurrent density from 1.9 A/m^(2) to 4.25 A/m^(2) at 0 V versus saturated calomel electrode(VSCE).The enhanced PEC performance was mainly attributed to the improved visible light absorption.Moreover,annealing treatment facilitated retarding the electron-hole recombination occurred at the solid/liquid interfaces.Our work might provide a novel strategy for enhancing the PEC performance of a semiconductor electrode. 展开更多
关键词 electrochemical impedance analysisincluding visible light absorption tio_(2)/Sb_(2)S_(3)nanorod arrays nanorod arrays nras vacuum annealing annealing treatment increment o photoelectrochemical performance
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Utilization of steelwork off-gases through methanol synthesis:Sulfur-induced dynamic migration of ZnO_(x) over industrial Cu/ZnO/Al_(2)O_(3) catalyst and the poisoning mechanism
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作者 Yukun Tian Yu Zeng +5 位作者 Ziyang Chen Hua Tong Ming Chen Zhiyong Zhong Daiqi Ye Limin Chen 《Journal of Environmental Sciences》 2025年第12期659-673,共15页
The reduction of carbon emissions in the steel industry is a significant challenge,and utilizing CO_(2) from carbon intensive steel industry off-gases for methanol production is a promising strategy for decarbonizatio... The reduction of carbon emissions in the steel industry is a significant challenge,and utilizing CO_(2) from carbon intensive steel industry off-gases for methanol production is a promising strategy for decarbonization.However,steelwork off-gases typically contain various impurities,including H_(2)S,which can deactivate commercial methanol synthesis catalysts,Cu/ZnO/Al_(2)O_(3)(CZA).Reverse water-gas shift(RWGS)reaction is the predominant side reaction in CO_(2) hydrogenation to methanol which can occur at ambient pressure,enabling the decouple of RWGS from methanol production at high pressure.Then,a series of activated CZA catalysts has been in-situ pretreated in 400 ppm H_(2)S/Ar at 250℃and tested for both RWGS reaction at ambient pressure and CO_(2) hydrogenation to methanol at high pressure.An innovative decoupling strategy was employed to isolate the RWGS reaction from the methanol synthesis process,enabling the investigation of the evolution of active site structures and the poisoning mechanism through elemental analysis,X-ray Diffraction,X-ray Photoelectron Spectroscopy,Fourier Transform Infrared Spectroscopy,Temperature Programmed Reduction and CO_(2) Temperature Programmed Desorption.The results indicate that there are different dynamic migration behaviors of ZnO_(x) in the two reaction systems,leading to different poisoning mechanisms.These interesting findings are beneficial to develop sulfur resistant and durable highly efficient catalysts for CO_(2) hydrogenation to methanol,promoting the carbon emission reduction in steel industry. 展开更多
关键词 Steelwork off-gases Co_(2)hydrogenation to methanol H_(2)S Cu/Zn o/al_(2)o_(3)catalysts Zno_(x)migration Deactivation and promotion mechanisms
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Preparation and performance characterization of Al_(2)O_(3)–C refractories with in-situ synthesis of β-Sialon
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作者 Chao-fan Yin Jun-rui Yang +5 位作者 Jian-jun Chen Li Wang Bin-bin Dong Xiang-cheng Li Hong-yu Bai Fan Bai 《Journal of Iron and Steel Research International》 2025年第10期3370-3380,共11页
β-Sialon has emerged as a promising material for enhancing the service life of Al_(2)O_(3)-C refractories due to its excellent physicochemical properties.The impact of varying concentrations of nanometer Al/Si alloy ... β-Sialon has emerged as a promising material for enhancing the service life of Al_(2)O_(3)-C refractories due to its excellent physicochemical properties.The impact of varying concentrations of nanometer Al/Si alloy on the in-situ synthesis of β-Sialon within Al_(2)O_(3)-C refractory materials,as well as its oxidation behavior,was investigated.The findings indicate that the presence of Al/Si alloy promotes the formation of AlN and SiC whiskers at 1300℃,which subsequently facilitate the production of plate-like β-Sialon at 1500℃.Density functional theory analysis reveals that the(020)crystal plane of β-Sialon exhibits the lowest adsorption energy for Al2O and AlO molecules under the influence of iron atoms,suggesting a solid-liquid-vapor growth mechanism for β-Sialon formation.The introduction of these ceramic phases significantly enhances the mechanical properties of Al_(2)O_(3)-C refractories.Specifically,the addition of 6 wt.%Al/Si alloy yielded specimens with the highest cold modulus of rupture and cold crushing strength at 1500℃,achieving values of 35.2 and 127.5 MPa,respectively--representing increases of 40.1%and 37.4%.Furthermore,during high-temperature oxidation,the formation of plate-like β-Sialon leads to the development of a dense protective layer on the surface.This impedes the diffusion pathways of oxygen and consequently enhances the oxidation resistance of the refractory. 展开更多
关键词 al_(2)o_(3)-C refractory al/Si alloy Β-SIaloN Density functional theory oxidation behavior
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Towards rational design of Cu-SSZ-13 catalysts with less N_(2)O formation in NH_(3)-SCR reaction:The effect of BrФsted acid sites
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作者 Jianqi Liu Jinpeng Du +9 位作者 Jingyi Wang Shichao Han Yulong Shan Yan Zhang Xuanhao Wu Shan Gao Yunbo Yu Zhongbiao Wu Wenpo Shan Hong He 《Journal of Environmental Sciences》 2025年第11期546-557,共12页
Ammonia Selective Catalytic Reduction(NHs-SCR)technology has been employed to eliminate NO_(x) from diesel engine exhaust,with Cu-SSZ-13 serving as the commercial catalyst.The greenhouse gas N_(2)O is produced as a by... Ammonia Selective Catalytic Reduction(NHs-SCR)technology has been employed to eliminate NO_(x) from diesel engine exhaust,with Cu-SSZ-13 serving as the commercial catalyst.The greenhouse gas N_(2)O is produced as a byproduct when using Cu-SSZ-13 as the NH_(3)-SCR catalyst.To achieve synergistic control of pollutants and greenhouse gases in diesel engine exhaust,rational design of Cu-SSZ-13 catalysts is required.In this study,the effect of Brønsted acid sites in Cu-SSZ-13 catalysts on the formation of N_(2)O was investigated.Mild thermal treatmentwas innovatively employed to prepare Cu-SSZ-13 catalysts with different amounts of Brønsted acid sites.EPR,H_(2)-TPR,NH_(3)-TPD,NMR were utilized to determine that the Brønsted acid sites were modified while the Cu species remained unchanged.Thereby an accurate assessment of the influence of Brønsted acid sites on N_(2)O formation could be achieved.Our results showed that Cu-SSZ-13 with more Brønsted acid sites produced less N_(2)O during the NH_(3)-SCR reaction.In the low-temperature region,the presence of framework acid sites facilitates the decomposition of the NH_(4)NO_(3)assisted by NO to form N_(2)and H_(2)O,reducing the formation of N_(2)O.In the high-temperature region,the Brønsted acid sites promote the decomposition of NH_(2)NO into N_(2)and H_(2)O.Meanwhile,the N_(2)O-SCR reaction can also be promoted by Brønsted acid sites,thereby decreasing N_(2)O emissions.This study suggests that in the future design and synthesis of Cu-SSZ-13 zeolites,attention should be paid to creating more Brønsted acid sites in Cu-SSZ-13 to reduce N_(2)O emissions. 展开更多
关键词 NH_(3)-SCR No_(x)abatement N_(2)o emission control Cu-SSZ-13 zeolite Brønsted acid sites
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Al/Ca(IO_(3))_(2 )/PVDF基高能杀菌“三明治”结构薄膜的构建及其燃烧性能机理 被引量:1
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作者 陈苏杭 唐魁 +5 位作者 谢晓 唐振华 柯香 秦钊 徐抗震 赵凤起 《火炸药学报》 北大核心 2025年第1期78-87,I0006,共11页
为了提高杀菌高能薄膜的燃烧性能和碘含量,使用Al/Ca(IO_(3))_(2)/30%PVDF膜(30PVDF)封装39%Al/Ca(IO_(3))/(5%或10%)PVDF铝热剂(5PVDF或10PVDF)得到“三明治”结构的3、5、7和9层薄膜,并通过燃速和火焰温度测试以及DSC-TG热分析研究了... 为了提高杀菌高能薄膜的燃烧性能和碘含量,使用Al/Ca(IO_(3))_(2)/30%PVDF膜(30PVDF)封装39%Al/Ca(IO_(3))/(5%或10%)PVDF铝热剂(5PVDF或10PVDF)得到“三明治”结构的3、5、7和9层薄膜,并通过燃速和火焰温度测试以及DSC-TG热分析研究了铝热剂层活性及其分布结构(层数和厚度)对“三明治”结构薄膜燃烧性能和释能效应的影响规律,同时探究了薄膜各组分间的反应温度和反应机理。结果表明,封装39%5PVDF铝热剂“三明治”结构薄膜比封装10PVDF的燃速高18%~35%,表现出更好的燃烧性能,其中5层薄膜具有最大燃速,二者分别为10.2 cm/s和8.6 cm/s,综合了30PVDF膜层的厚度、低燃速和膜-铝热剂层在界面的传质传热效率的影响;并且多层薄膜的平均火焰温度随着铝热剂厚度的减小而增加。DSC-TG结果表明,Al/Ca(IO_(3))_(2)/PVDF基多层薄膜主要在330~410℃发生Al-Ca(IO_(3))_(2)-PVDF释碘放热反应,Ca(IO_(3))_(2)/PVDF(质量为1.55∶1)在320~350℃的剧烈放热反应和燃烧产物中的AlF 3、CaF 2、CaO等进一步证实了该反应的发生。 展开更多
关键词 物理化学 杀菌多层薄膜 静电喷雾沉积 燃烧性能调控 al/Ca(Io_(3))_(2)/PVDF “三明治”结构 铝热剂
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纳米Al_(2)O_(3)增强铝基复合材料制备技术及力学性能研究进展 被引量:2
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作者 荣智峥 魏午 +4 位作者 赵宇 毕舰镭 高阳 黄晖 聂祚仁 《材料工程》 北大核心 2025年第5期130-144,共15页
纳米Al_(2)O_(3)/Al复合材料作为轻质高性能结构材料,可实现轻量化节能减排,在航空航天、汽车工业、船舶制造、国防及5G电子通讯等领域具有广阔的应用前景。本文主要介绍高能球磨粉末冶金法、超声辅助铸造法、搅拌摩擦法、增材制造法、... 纳米Al_(2)O_(3)/Al复合材料作为轻质高性能结构材料,可实现轻量化节能减排,在航空航天、汽车工业、船舶制造、国防及5G电子通讯等领域具有广阔的应用前景。本文主要介绍高能球磨粉末冶金法、超声辅助铸造法、搅拌摩擦法、增材制造法、原位反应法等国内外纳米Al_(2)O_(3)/Al复合材料制备技术。总结分析纳米Al_(2)O_(3)增强体、增强体与铝基体的界面微结构、增强体的尺寸和含量、铝基体的晶粒尺寸、增强体的分散性和微观构型设计对纳米Al_(2)O_(3)/Al复合材料力学性能的影响。概述了纳米Al_(2)O_(3)/Al复合材料中主要的强化机制。最后,展望了纳米Al_(2)O_(3)/Al复合材料未来在高增强体体积分数的大尺寸制备技术、非均质构型优化以及高强耐热结构功能一体化等方面的发展方向。 展开更多
关键词 纳米al2o3 铝基复合材料 制备方法 力学性能 强化机制
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TiO_2和α-Al_2O_3晶体的生长习性 被引量:24
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作者 李汶军 郑燕青 +2 位作者 施尔畏 陈之战 殷之文 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2000年第6期968-976,共9页
通过水热法制备粉体的实验观察到金红石、锐钛矿和а-Al2O3晶体的生长习性.采用配位多面体生长习性法则合理地解释了TiO2和а-Al2O3的生长习性.其主要结果为а-Al2O3晶体的生长习性为平板{0001},其各晶... 通过水热法制备粉体的实验观察到金红石、锐钛矿和а-Al2O3晶体的生长习性.采用配位多面体生长习性法则合理地解释了TiO2和а-Al2O3的生长习性.其主要结果为а-Al2O3晶体的生长习性为平板{0001},其各晶面的生长速度为:V{0001}<V{1123}<V{0112}=V{1120}<V{0110}。金红石的生长习性为柱状,其各晶面的生长速度为:V<110><V<100>< V<101>< V<001>< V<111>;锐钛矿的生长习性为四面体,其各晶面的生长速度为K<010>=V<001>>V<010>>V<111>.而PBC理论很难合理地解释а-Al2O3晶体的生长习性. 展开更多
关键词 tio2 Α-al2o3 生长习性 水热法 晶体生长
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纳米TiO_2/Al_2O_3复合载体的制备与表征 被引量:19
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作者 施岩 崔国静 +2 位作者 王海彦 马骏 魏民 《石油学报(石油加工)》 EI CAS CSCD 北大核心 2005年第6期12-18,共7页
采用沉淀法、共沉淀法、溶胶凝胶法和改进的溶胶凝胶法制备出TiO2/Al2O3复合载体,并用XRD、TEM、FT-IR和BET等手段对其进行了表征。BET结果表明,共沉淀法和改进的溶胶凝胶法制得的TiO2/Al2O3载体具有较大的比表面积、孔容和较集中的孔... 采用沉淀法、共沉淀法、溶胶凝胶法和改进的溶胶凝胶法制备出TiO2/Al2O3复合载体,并用XRD、TEM、FT-IR和BET等手段对其进行了表征。BET结果表明,共沉淀法和改进的溶胶凝胶法制得的TiO2/Al2O3载体具有较大的比表面积、孔容和较集中的孔分布。XRD结果表明,复合载体经550℃焙烧后,TiO2和Al2O3分别以锐钛矿和-γAl2O3晶型存在,其中沉淀法和改进的溶胶凝胶法制得载体的锐钛矿特征峰宽而尖锐;共沉淀法和溶胶凝胶法制得的载体的锐钛矿特征峰不明显。TEM结果表明,TiO2以纳米级粒子均匀分布在Al2O3表面上,共沉淀法制备出的复合载体中的锐钛型TiO2粒子在-γAl2O3上以单层或亚单层分散;而改进的溶胶凝胶法制备出的复合载体中,锐钛型TiO2和-γAl2O3粒子以更为清晰的橄榄状和絮状形式存在。FT-IR结果表明,4种方法制备出的复合载体的酸性均主要为L酸,仅含微量的B酸。 展开更多
关键词 纳米tio2/al2o3复合载体 制备 表征 改进的溶胶-凝胶法
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泡沫镍负载TiO_2和TiO_2/Al_2O_3薄膜的光催化性能研究 被引量:13
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作者 胡海 肖文浚 +2 位作者 袁坚 施建伟 上官文峰 《无机材料学报》 SCIE EI CAS CSCD 北大核心 2007年第2期363-368,共6页
以泡沫镍为载体,Al2O3作为过渡中间层,用溶胶-凝胶法在泡沫镍上负载锐钛矿相的TiO2薄膜,制成泡沫金属基的TiO2和TiO2/Al2O3光催化剂,利用XRD和FE-SEM等测试手段对其性质进行表征,用乙醛气体的光催化降解测试其活性.研究表明:泡沫镍负... 以泡沫镍为载体,Al2O3作为过渡中间层,用溶胶-凝胶法在泡沫镍上负载锐钛矿相的TiO2薄膜,制成泡沫金属基的TiO2和TiO2/Al2O3光催化剂,利用XRD和FE-SEM等测试手段对其性质进行表征,用乙醛气体的光催化降解测试其活性.研究表明:泡沫镍负载的TiO2和TiO2/Al2O3薄膜具有良好的光催化活性,特别是TiO2/Al2O3薄膜具有更高的催化活性.这是由于负载的Al2O3过渡中间层增大了载体的比表面积,具有吸附浓缩作用,同时也增加了负载光催化剂的活性位数量.实验表明: TiO2/Al2O3薄膜的光催化活性和稳定性较单一的TiO2薄膜有非常显著的提高. 展开更多
关键词 光催化 泡沫镍 tio2/al2o3薄膜 乙醛降解
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等离子喷涂纳米Al_2O_3-13%TiO_2涂层组织与性能 被引量:19
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作者 王全胜 王富耻 +2 位作者 柳彦博 李轶昳 马壮 《稀有金属材料与工程》 SCIE EI CAS CSCD 北大核心 2007年第A02期530-532,共3页
采用大气等离子喷涂方法制备了纳米结构Al_2O_3-13%TiO_2(质量分数,下同)涂层,进行了SRV滑动磨损试验,通过扫描电镜对涂层的断口显微组织及磨损表面形貌进行了观察,并测定了涂层的显微硬度。结果表明,该纳米涂层具有独特的显微组织结构... 采用大气等离子喷涂方法制备了纳米结构Al_2O_3-13%TiO_2(质量分数,下同)涂层,进行了SRV滑动磨损试验,通过扫描电镜对涂层的断口显微组织及磨损表面形貌进行了观察,并测定了涂层的显微硬度。结果表明,该纳米涂层具有独特的显微组织结构特征,层片间具有冶金结合特征的界面较多,界面结合得到明显改善,其显微硬度明显高于微米涂层,具有优良的耐磨性能,其磨损面积仅为常规微米涂层的1/5,界面结合改善是耐磨性提高的主要原因。 展开更多
关键词 纳米al2o3-13% tio2涂层 滑动磨损 断口组织
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喷涂参数对Al_2O_3-13wt% TiO_2纳米涂层组织和性能的影响 被引量:18
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作者 张建新 阎殿然 +2 位作者 何继宁 董艳春 李香芝 《材料热处理学报》 EI CAS CSCD 北大核心 2008年第2期135-139,共5页
研究了等离子喷涂特征参数(CPSP)对Al2O3-13wt%TiO2纳米涂层相组成、微观组织和性能的影响。结果表明,纳米涂层含有α-Al2O3、γ-Al2O3和金红石结构TiO2,其微观组织由全熔柱状晶区域和纳米结构的部分熔化区域组成。部分熔化区形貌与CPS... 研究了等离子喷涂特征参数(CPSP)对Al2O3-13wt%TiO2纳米涂层相组成、微观组织和性能的影响。结果表明,纳米涂层含有α-Al2O3、γ-Al2O3和金红石结构TiO2,其微观组织由全熔柱状晶区域和纳米结构的部分熔化区域组成。部分熔化区形貌与CPSP有关,低CPSP时主要为球状和部分条状,高CPSP条件下基本上都是不规则条状或块状。随CPSP增加,纳米涂层的结构缺陷减少,致密度提高。不同CPSP获得的纳米涂层的显微硬度和韧性均高于传统涂层,但CPSP过低或过高时,涂层中结构缺陷或结晶相较多,导致硬度和韧性降低。纳米涂层的耐磨性也随CPSP的变化而改变,并与涂层的组织、硬度和韧性的变化相对应。 展开更多
关键词 等离子喷涂 al2o3-tio2 陶瓷涂层 纳米涂层
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