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Simulation of deuterium pellet ablation and deposition in the EAST tokamak with HPI2 code
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作者 李大正 张洁 +2 位作者 侯吉磊 李懋 孙继忠 《Chinese Physics B》 SCIE EI CAS CSCD 2024年第4期561-569,共9页
Pellet injection is a primary method for fueling the plasma in magnetic confinement devices.For that goal the knowledges of pellet ablation and deposition profiles are critical.In the present study,the pellet fueling ... Pellet injection is a primary method for fueling the plasma in magnetic confinement devices.For that goal the knowledges of pellet ablation and deposition profiles are critical.In the present study,the pellet fueling code HPI2 was used to predict the ablation and deposition profiles of deuterium pellets injected into a typical H-mode discharge on the EAST tokamak.Pellet ablation and deposition profiles were evaluated for various pellet injection locations,with the aim at optimizing the pellet injection to obtain a deep fueling depth.In this study,we investigate the effect of the injection angle on the deposition depth of the pellet at different velocities and sizes.The ablation and deposition of the injected pellet are mainly studied at each injection position for three different injection angles:0°,45°,and 60°.The pellet injection on the high field side(HFS)can achieve a more ideal deposition depth than on the low field side(LFS).Among these angles,horizontal injection on the middle plane is relatively better on either the HFS or the LFS.When the injection location is 0.468 m below the middle plane on the HFS or 0.40 m above the middle plane of the LFS,it can achieve a similar deposition depth to the one of its corresponding side.When the pre-cooling effect is taken into account,the deposition depth is predicted to increase only slightly when the pellet is launched from the HFS.The findings of this study will serve as a reference for the update of pellet injection systems for the EAST tokamak. 展开更多
关键词 pellet injection pellet ablation HPI2 pellet deposition
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High-chromium vanadium-titanium magnetite all-pellet integrated burden optimization and softening-melting behavior based on flux pellets
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作者 Bojian Chen Tao Jiang +4 位作者 Jing Wen Guangdong Yang Tangxia Yu Fengxiang Zhu Peng Hu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2024年第3期498-507,共10页
High-chromium vanadium-titanium magnetite(HVTM)is a crucial polymetallic-associated resource to be developed.The allpellet operation is a blast furnace trend that aims to reduce carbon dioxide emissions in the future.... High-chromium vanadium-titanium magnetite(HVTM)is a crucial polymetallic-associated resource to be developed.The allpellet operation is a blast furnace trend that aims to reduce carbon dioxide emissions in the future.By referencing the production data of vanadium-titanium magnetite blast furnaces,this study explored the softening-melting behavior of high-chromium vanadium-titanium magnetite and obtained the optimal integrated burden based on flux pellets.The results show that the burden with a composition of 70wt%flux pellets and 30wt%acid pellets exhibits the best softening-melting properties.In comparison to that of the single burden,the softening-melting characteristic temperature of this burden composition was higher.The melting interval first increased from 307 to 362℃and then decreased to 282℃.The maximum pressure drop(ΔPmax)decreased from 26.76 to 19.01 kPa.The permeability index(S)dropped from 4643.5 to 2446.8 kPa·℃.The softening-melting properties of the integrated burden were apparently improved.The acid pellets played a role in withstanding load during the softening process.The flux pellets in the integrated burden exhibited a higher slag melting point,which increased the melting temperature during the melting process.The slag homogeneity and the TiC produced by over-reduction led to the gas permeability deterioration of the single burden.The segregation of the flux and acid pellets in the HVTM proportion and basicity mainly led to the better softening-melting properties of the integrated burden. 展开更多
关键词 high-chromium vanadium-titanium magnetite softening-melting properties all pellets integrated burden flux pellets
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Effect of titanium on the sticking of pellets based on hydrogen metallurgy shaft furnace:Behavior analysis and mechanism evolution
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作者 Jinge Feng Jue Tang +4 位作者 Zichuan Zhao Mansheng Chu Aijun Zheng Xiaobing Li Xiao’ai Wang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2024年第2期282-291,共10页
Direct reduction based on hydrogen metallurgical gas-based shaft furnace is a promising technology for the efficient and low-carbon smelting of vanadium-titanium magnetite.However,in this process,the sticking of pelle... Direct reduction based on hydrogen metallurgical gas-based shaft furnace is a promising technology for the efficient and low-carbon smelting of vanadium-titanium magnetite.However,in this process,the sticking of pellets occurs due to the aggregation of metal-lic iron between the contact surfaces of adjacent pellets and has a serious negative effect on the continuous operation.This paper presents a detailed experimental study of the effect of TiO2 on the sticking behavior of pellets during direct reduction under different conditions.Results showed that the sticking index(SI)decreased linearly with the increasing TiO2 addition.This phenomenon can be attributed to the increase in unreduced FeTiO3 during reduction,leading to a decrease in the number and strength of metallic iron interconnections at the sticking interface.When the TiO2 addition amount was raised from 0 to 15wt%at 1100°C,the SI also increased from 0.71%to 59.91%.The connection of the slag phase could be attributed to the sticking at a low reduction temperature,corresponding to the low sticking strength.Moreover,the interconnection of metallic iron became the dominant factor,and the SI increased sharply with the increase in re-duction temperature.TiO2 had a greater effect on SI at a high reduction temperature than at a low reduction temperature. 展开更多
关键词 TITANIUM sticking index hydrogen metallurgy direct reduction pelletS
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Diffusion and reaction mechanism of limestone and quartz in fluxed iron ore pellet roasting process
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作者 Yufeng Guo Jinlai Zhang +5 位作者 Shuai Wang Jianjun Fan Haokun Li Feng Chen Kuo Liu Lingzhi Yang 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2024年第3期485-497,共13页
The increase to the proportion of fluxed pellets in the blast furnace burden is a useful way to reduce the carbon emissions in the ironmaking process.In this study,the interaction between calcium carbonate and iron or... The increase to the proportion of fluxed pellets in the blast furnace burden is a useful way to reduce the carbon emissions in the ironmaking process.In this study,the interaction between calcium carbonate and iron ore powder and the mineralization mechanism of fluxed iron ore pellet in the roasting process were investigated through diffusion couple experiments.Scanning electron microscopy with energy dispersive spectroscopy was used to study the elements’diffusion and phase transformation during the roasting process.The results indicated that limestone decomposed into calcium oxide,and magnetite was oxidized to hematite at the early stage of preheating.With the increase in roasting temperature,the diffusion rate of Fe and Ca was obviously accelerated,while the diffusion rate of Si was relatively slow.The order of magnitude of interdiffusion coefficient of Fe_(2)O_(3)-CaO diffusion couple was 10^(−10) m^(2)·s^(−1) at a roasting temperature of 1200℃for 9 h.Ca_(2)Fe_(2)O_(5) was the initial product in the Fe_(2)O_(3)-CaO-SiO_(2) diffusion interface,and then Ca_(2)Fe_(2)O_(5) continued to react with Fe_(2)O_(3) to form CaFe_(2)O_(4).With the expansion of the diffusion region,the sillico-ferrite of calcium liquid phase was produced due to the melting of SiO_(2) into CaFe_(2)O_(4),which can strengthen the consolidation of fluxed pellets.Furthermore,andradite would be formed around a small part of quartz particles,which is also conducive to the consolidation of fluxed pellets.In addition,the principle diagram of limestone and quartz diffusion reaction in the process of fluxed pellet roasting was discussed. 展开更多
关键词 fluxed iron ore pellet LIMESTONE HEMATITE QUARTZ diffusion reaction
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Persicaria lanigera (Polygonaceae) leaf extract exhibits antiulcerogenic and antiproliferative activities against acetic acid-induced ulcerative colitis and cotton pellet-induced granuloma tissue in rats
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作者 Meshack Antwi-Adjei Ernest Obese +5 位作者 Emmanuel Awintiig Adakudugu Benjamin Aboagye Daniel Anokwah Akua Afriyie Karikari Roberta Antwi-Adjei Elvis Ofori Ameyaw 《Asian Pacific Journal of Tropical Biomedicine》 SCIE CAS 2024年第7期269-278,共10页
Objective:To assess the effect of leaf extract of Persicaria lanigera on cotton pellet-induced granuloma tissue formation and acetic acid-induced ulcerative colitis.Methods:Rats were randomly divided into six groups:n... Objective:To assess the effect of leaf extract of Persicaria lanigera on cotton pellet-induced granuloma tissue formation and acetic acid-induced ulcerative colitis.Methods:Rats were randomly divided into six groups:normal control,negative control,positive control(dexamethasone or sulfasalazine)as well as Persicaria lanigera(100-600 mg/kg)-treated groups.The effects of the extracts on body weight,antioxidant,and hematological parameters,as well as mast cell proliferation,were assessed.In addition,a histological evaluation was conducted.Results:Persicaria lanigera extract significantly decreased the mean exudate amount and suppressed granuloma tissue formation in a concentration-dependent manner in rats(P<0.05).Additionally,the extract significantly increased body weight,improved hematological profile,reduced the disease activity index score and malondialdehyde level,as well as enhanced catalase and superoxide dismutase activities(P<0.05).Histological evaluation showed Persicaria lanigera extract alleviated acetic acid-induced colonic damages,as evidenced by decreased cell necrosis,edema,and inflammatory cell infiltration.Conclusions:Persicaria lanigera extract possesses antiproliferative,antioxidative,and anti-colitis activities.However,its underlying mechanisms of action need further investigation. 展开更多
关键词 Colitis Persicaria lanigera Antioxidant Cotton pellets Mast cells Granuloma tissue formation
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Probing deactivation by coking in catalyst pellets for dry reforming of methane using a pore network model 被引量:2
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作者 Yu Wang Qunfeng Zhang +3 位作者 Xinlei Liu Junqi Weng Guanghua Ye Xinggui Zhou 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2023年第3期293-303,共11页
Dry reforming of methane(DRM) is an attractive technology for utilizing the greenhouse gases(CO_(2) and CH_(4)) to produce syngas. However, the catalyst pellets for DRM are heavily plagued by deactivation by coking, w... Dry reforming of methane(DRM) is an attractive technology for utilizing the greenhouse gases(CO_(2) and CH_(4)) to produce syngas. However, the catalyst pellets for DRM are heavily plagued by deactivation by coking, which prevents this technology from commercialization. In this work, a pore network model is developed to probe the catalyst deactivation by coking in a Ni/Al_(2)O_(3) catalyst pellet for DRM. The reaction conditions can significantly change the coking rate and then affect the catalyst deactivation. The catalyst lifetime is higher under lower temperature, pressure, and CH_(4)/CO_(2) molar ratio, but the maximum coke content in a catalyst pellet is independent of these reaction conditions. The catalyst pellet with larger pore diameter, narrower pore size distribution and higher pore connectivity is more robust against catalyst deactivation by coking, as the pores in this pellet are more difficult to be plugged or inaccessible.The maximum coke content is also higher for narrower pore size distribution and higher pore connectivity, as the number of inaccessible pores is lower. Besides, the catalyst pellet radius only slightly affects the coke content, although the diffusion limitation increases with the pellet radius. These results should serve to guide the rational design of robust DRM catalyst pellets against deactivation by coking. 展开更多
关键词 Deactivation by coking Dry reforming of methane Pore network model Diffusion limitation Catalyst pellet
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An internal circulation iron-carbon micro-electrolysis reactor for aniline wastewater treatment:Parameter optimization,degradation pathways and mechanism
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作者 Yanhe Han Han Xu +4 位作者 Lei Zhang Xuejiao Ma Yang Man Zhimin Su Jing Wang 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2023年第11期96-107,共12页
Aniline is a vital industrial raw material.However,highly-toxic aniline wastewater usually deteriorated effluent quality,posed a threat to human health and ecosystem safety.Therefore,this study reported a novel intern... Aniline is a vital industrial raw material.However,highly-toxic aniline wastewater usually deteriorated effluent quality,posed a threat to human health and ecosystem safety.Therefore,this study reported a novel internal circulation iron-carbon micro-electrolysis(ICE)reactor to treat aniline wastewater.The effects of reaction time,pH,aeration rate and iron-carbon(Fe/C)ratio on the removal rate of aniline and the chemical oxygen demand were investigated using single-factor experiments.This process exhibited high aniline degradation performance of approximately 99.86% under optimal operating conditions(reaction time=20 min,pH=3,aeration rate=0.5 m3·h^(-1),and Fe/C=1:2).Based on the experimental results,the response surface method was applied to optimize the aniline removal rate.The Box–Behnken method was used to obtain the interaction effects of three main factors.The result showed that the reaction time had a dominant effect on the removal rate of aniline.The highest aniline removal rate was obtained at pH of 2,aeration rate of 0.5 m^(3)·h^(-1)and reaction time of 30 min.Under optional experimental conditions,the aniline content of effluent was reduced to 3 mg·L^(-1)and the removal rate was as high as 98.24%,within the 95% confidence interval(97.84%-99.32%)of the predicted values.The solution was treated and the reaction intermediates were identified by high-performance liquid chromatography,ultraviolet-visible spectroscopy,Fourier-transform infrared spectroscopy,gas chromatography-mass spectrometry,and ion chromatography.The main intermediates were phenol,benzoquinone,and carboxylic acid.These were used to propose the potential mechanism of aniline degradation in the ICE reactor.The results obtained in this study provide optimized conditions for the treatment of industrial wastewater containing aniline and can strengthen the understanding of the degradation mechanism of iron-carbon micro-electrolysis. 展开更多
关键词 ANILINE iron-carbon micro-electrolysis Circulating fluidized bed Waste water DEGRADATION
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The Logistics of Production and Supply of Ag Pellets for Industrial Applications in Canada
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作者 Shahabaddine Sokhansanj Mahmood Ebadian +1 位作者 Hamid Rezaei Fahimeh Yazdanpanah 《Journal of Sustainable Bioenergy Systems》 CAS 2023年第1期40-55,共16页
In this work we analyze the supply of biomass from field to an in-land or port destination. The biomass is pelletized to increase its bulk density to extend its storage period and for ease of its transport. The pellet... In this work we analyze the supply of biomass from field to an in-land or port destination. The biomass is pelletized to increase its bulk density to extend its storage period and for ease of its transport. The pellet may be used for conversion to chemicals and animal bedding or for straight combustion. We analyzed supply chain in Saskatchewan where there are plenty of crop residues but widely dispersed and harvest seasons are short. We envisioned that the farmer collects bales from field and transports the bales to farmstead during the harvest season. The bales are then processed into pellets using small scale pellet equipment. A custom operator with expertise in pelletization may engage in handling and densifying the biomass. The business case for the mobile mill will be similar to the well established custom grain and forage harvesting operations. The pellets are stored in hopper bottom grain bins at the farmstead. From this point, the handling of pellets would be similar to the handling and marketing of grain. The farmer trucks a specified volume of pellets from farmstead to the nearest elevator where the pellets are transferred to larger bins or silos. Pellets are extracted from silos and loaded onto the rail cars. The Canadian freight rail companies (mainly CN) currently transport over 3 million dry tonne (dt) of wood pellets in rail cars. The pellets are hauled to marine ports on the West Coast or East Coast for export. The cost of delivering ag pellets to biorefinery or to the shipping port is $86.09/dt. This cost does not include the equivalent value of removing biomass from the farm (e.g. fertilizer replacement) and return on investment. The GHG emissions to produce and transport ag pellets add up to 185.9 kg of CO<sub>2</sub> per dt of biomass. The cost of producing pellets without drying feedstock is $35.05/dt and the corresponding GHG for palletization amounts $146.30/dt. 展开更多
关键词 CANADA pelletS Ag pellets Supply Chain LOGISTICS Cost GHG Emissions INFRASTRUCTURE
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Hydrochar Pelletization towards Solid Biofuel from Biowaste Hydrothermal Carbonization
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作者 Ao Li Kai Jin +5 位作者 Jinrui Qin Zhaowei Huang Yu Liu Rui Chen Tengfei Wang Junmin Chen 《Journal of Renewable Materials》 SCIE EI 2023年第1期411-422,共12页
Hydrothermal carbonization is highly applicable to high moisture biomass upgrading due to the fact that moist-ure involved can be directly used as reaction media under the subcritical-water region.With this,value-adde... Hydrothermal carbonization is highly applicable to high moisture biomass upgrading due to the fact that moist-ure involved can be directly used as reaction media under the subcritical-water region.With this,value-added utilization of hydrochar as solid fuel with high carbon and energy density is one of the important pathways for biomass conversion.In this review,the dewatering properties of hydrochar after the hydrothermal carbonization of biowaste,coalification degree with elemental composition and evolution,pelletization of hydrochar to enhance the mechanical properties and density,coupled with the combustion properties of hydrochar biofuel were discussed with various biomass and carbonization parameters.Potential applications for the co-combustion with coal,cleaner properties and energy balance for biowaste hydrothermal carbonization were presented as well as the challenges. 展开更多
关键词 BIOMASS hydrothermal carbonization hydrochar pelletIZATION
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Effect mechanism of aluminum occurrence and content on the induration characteristics of iron ore pellets
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作者 Hongyu Tian Deqing Zhu +3 位作者 Jian Pan Congcong Yang Weiqun Huang Mansheng Chu 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2023年第12期2334-2346,共13页
With the intensified depletion of high-grade iron ores,the increased aluminum content in iron ore concentrates has become unavoidable,which is detrimental to the pelletization process.Therefore,the effect mechanism of... With the intensified depletion of high-grade iron ores,the increased aluminum content in iron ore concentrates has become unavoidable,which is detrimental to the pelletization process.Therefore,the effect mechanism of aluminum on pellet quality must be identified.In this study,the influence of aluminum occurrence and content on the induration of hematite(H)and magnetite(M)pellets was investigated through the addition of corresponding Al-containing additives,including alumina,alumogoethite,gibbsite,and kaolinite.Systematic mineralogical analysis,combined with the thermodynamic properties of different aluminum occurrences and the quantitative characterization of consolidation behaviors,were conducted to determine the related mechanism.The results showed that the alumina from various aluminum occurrences adversely affected the induration characteristics of pellets,especially at an aluminum content of more than 2.0wt%.The thermal decomposition of gibbsite and kaolinite tends to generate internal stress and fine cracks,which hinder the respective microcrystalline bonding and recrystallization between Fe2O3particles.The adverse effect on the induration characteristics of fired pellets with different aluminum occurrences can be relieved to varying degrees through the formation of liquid phase bonds between the hematite particles.Kaolinite is more beneficial to the induration process than the other three aluminum occurrences because of the formation of more liquid phase,which improves pellet consolidation.The research results can further provide insights into the effect of aluminum occurrence and content in iron ore concentrates on downstream processing and serve as a guide for the utilization of high-alumina iron ore concentrates in pelletization. 展开更多
关键词 iron ore pellet aluminum occurrence consolidation behavior element migration
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Elucidating the suppression of lithium dendrite growth with a void-reduced anti-perovskite solid-state electrolyte pellet for stable lithium metal anodes
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作者 Yu YeXinyan Ye Haoxian Zhu +3 位作者 Juncao Bian Haibin Lin Jinlong Zhu Yusheng Zhao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2023年第2期62-69,I0003,共9页
Solid-state lithium-metal batteries,with their high theoretical energy density and safety,are highly promising as a next-generation battery contender.Among the alternatives proposed as solid-state electrolyte,lithium-... Solid-state lithium-metal batteries,with their high theoretical energy density and safety,are highly promising as a next-generation battery contender.Among the alternatives proposed as solid-state electrolyte,lithium-rich anti-perovskite(Li RAP)materials have drawn the most interest because of high theoretical Li^(+)conductivity,low cost and easy processing.Although solid-state electrolytes are believed to have the potential to physically inhibit the lithium dendrite growth,lithium-metal batteries still suffer from the lithium dendrite growth and thereafter the short circuiting.The voids in practical Li RAP pellets are considered as the root cause.Herein,we show that reducing the voids can effectively suppress the lithium dendrite growth.The voids in the pellet resulted in an irregular Li^(+)flux distribution and a poor interfacial contact with lithium metal anode;and hence the ununiform lithium dendrites.Consequently,the lithium-metal symmetric cell with void-reduced Li_(2)OHCl-HT pellet was able to display excellent cycling performance(750 h at 0.4 m A cm^(-2))and stability at high current density(0.8 m A cm^(-2)for 120 h).This study provides not only experimental evidence for the impact of the voids in Li RAP pellets on the lithium dendrite growth,but also a rational pellet fabrication approach to suppress the lithium dendrite growth. 展开更多
关键词 Llithium-rich anti-perovskite Solid-state electrolytes Void-reduced pellets Lithium dendrites Lithium metal anodes
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The Application of Electron-Beam Welding in Pellet Mold Preparation
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作者 Zhanqi Liu Mingjiang Bian +1 位作者 Kun Li Qianru Lin 《Journal of Electronic Research and Application》 2023年第6期17-22,共6页
This paper provides insight into the application of electron-beam welding in pellet mold preparation,highlighting the importance of the combination of electron-beam welding and pellet mold preparation in the fields of... This paper provides insight into the application of electron-beam welding in pellet mold preparation,highlighting the importance of the combination of electron-beam welding and pellet mold preparation in the fields of microstructure joining and micro-and nanostructure preparation.Precise material joining and microstructure fabrication can be achieved by the precise control of electron-beam welding and the shape adjustment of pellet molds.These applications hold significant potential in the modern industrial field,providing robust support for the development of new materials and the growth of the petrochemical industry.This paper asserts that in the future,the ongoing development of electron-beam welding and pelletizing template technology will unlock new possibilities in the field of petrochemicals,fostering progress in science and technology. 展开更多
关键词 Electron-beam welding pellet mold MICROSTRUCTURE
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桉木屑颗粒燃料固体桥结构构建与燃烧特性研究
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作者 李伟振 刘华财 +3 位作者 姜洋 阴秀丽 许雪楠 洪浩 《农业机械学报》 EI CAS CSCD 北大核心 2024年第1期350-359,共10页
在成型燃料内部构建固体桥结构可有效改善其物理品质,利用不同粒径桉木屑构建了具有固体桥结构的颗粒燃料,并进一步研究了颗粒燃料的燃烧特性。提出的构建方法为同种原料不同粒径混配成型,在电子压力机上进行了粒径(0,1 mm]原料混配粒径... 在成型燃料内部构建固体桥结构可有效改善其物理品质,利用不同粒径桉木屑构建了具有固体桥结构的颗粒燃料,并进一步研究了颗粒燃料的燃烧特性。提出的构建方法为同种原料不同粒径混配成型,在电子压力机上进行了粒径(0,1 mm]原料混配粒径(4 mm, 5 mm]原料的颗粒压缩成型实验,结果显示混配量5%~10%时颗粒内部长粒径粒子的交叉缠绕,可形成适量的固体桥结构,短粒径粒子填充饱满,粒子间结合紧密。较佳的混配量为5%,颗粒具有较高的松弛密度,为1 074.79 kg/m^(3),最高的Meyer强度,为23.93 MPa,最低的比能耗,为27.06 kJ/kg,平衡含水率为11.65%,吸水速率k为0.015 3 min^(-1)。在热分析仪上进行了成型颗粒燃烧实验,颗粒燃烧过程较为平稳且有所延长,在升温速率10~40℃/min的范围内,着火温度Ti在246.60~265.00℃之间,最大失重速率(dm/dτ)_(1max)在-6.84~-29.10%/min之间,综合燃烧指数S在7.26×10^(-12)~1.09×10^(-10)min^(-2)·K^(-3)之间。在X射线荧光光谱仪上分析了颗粒灰分的元素组成,预测颗粒燃烧时具有中等或较高的结渣沾污趋势。 展开更多
关键词 生物质 成型燃料 固体桥结构 燃烧特性
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中国废旧军服面料回收利用的研究现状及发展前景 被引量:1
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作者 刘洋 姚响 +2 位作者 杨革生 郁秀峰 张耀鹏 《现代纺织技术》 北大核心 2024年第1期119-129,共11页
为促进废旧军服面料的高值化回收利用,总结了国内07式军服的种类及其面料特征,系统分析了目前开纤纺纱法、再生聚酯切片法、涤棉分离技术等废旧军服面料的回收利用方法,并对废旧军服面料回收再利用的发展前景进行展望。分析表明:目前废... 为促进废旧军服面料的高值化回收利用,总结了国内07式军服的种类及其面料特征,系统分析了目前开纤纺纱法、再生聚酯切片法、涤棉分离技术等废旧军服面料的回收利用方法,并对废旧军服面料回收再利用的发展前景进行展望。分析表明:目前废旧军服面料的回收利用主要聚焦于简单再利用或回收涤纶组分制备高值再生聚酯切片,较少关注军服面料中其余组分的高值回收利用。针对废旧军服面料中含量相对较高的涤棉混纺面料,采用有效的涤棉分离技术高效分离涤纶和棉纤维,并以此作为原料分别制备再生聚酯切片和再生溶解浆,进一步以再生棉浆粕为原料制备再生纤维素产品将非常有前景。因而,开发高效的涤棉分离、废旧涤纶和棉纤维的高值化利用技术是实现废旧军服面料综合利用的重要发展方向。 展开更多
关键词 废旧军服 涤棉分离 高值回收利用 再生聚酯切片 再生Lyocell纤维
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颗粒脂肪联合纳米脂肪移植治疗重睑术后上睑凹陷的临床应用
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作者 周娅妮 郑罡 +2 位作者 李晶冰 孟琪 苏本玄 《中国美容医学》 CAS 2024年第7期71-74,共4页
目的:探讨颗粒脂肪联合纳米脂肪移植治疗重睑术后上睑凹陷的临床疗效。方法:选取2018年7月-2022年2月笔者科室应用颗粒脂肪联合纳米脂肪移植治疗重睑术后上睑凹陷的13例患者(20只眼)。抽取脂肪后,处理成颗粒脂肪和纳米脂肪。每只眼注射... 目的:探讨颗粒脂肪联合纳米脂肪移植治疗重睑术后上睑凹陷的临床疗效。方法:选取2018年7月-2022年2月笔者科室应用颗粒脂肪联合纳米脂肪移植治疗重睑术后上睑凹陷的13例患者(20只眼)。抽取脂肪后,处理成颗粒脂肪和纳米脂肪。每只眼注射颗粒脂肪1.2~2.0 ml,纳米脂肪0.2~0.8 ml。结果:随访6~12个月,17只眼疗效良好;2只眼矫正不足,3个月后再次移植颗粒脂肪和纳米脂肪;1只眼眼尾分叉,6个月后行切开重睑修复,再次治疗后疗效均较好。结论:颗粒脂肪联合纳米脂肪移植治疗重睑术后上睑凹陷疗效好、创伤小、恢复快。 展开更多
关键词 颗粒脂肪 纳米脂肪 上睑凹陷 重睑成形术 脂肪移植
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预造球强化难制粒精矿烧结工艺
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作者 杨永斌 唐培垚 +3 位作者 王林 钟强 李骞 姜涛 《烧结球团》 北大核心 2024年第3期25-32,共8页
随着进口铁矿石价格的增长,充分利用廉价的难处理铁矿资源成为钢铁企业降本增效的关键。本文针对难制粒精矿在烧结中利用率低的问题,在复合造块法的基础上开发了预造球工艺,显著提高了难制粒精矿的配入量,有效改善了制粒效果与烧结产、... 随着进口铁矿石价格的增长,充分利用廉价的难处理铁矿资源成为钢铁企业降本增效的关键。本文针对难制粒精矿在烧结中利用率低的问题,在复合造块法的基础上开发了预造球工艺,显著提高了难制粒精矿的配入量,有效改善了制粒效果与烧结产、质量指标。研究表明,在难制粒精矿配比达到36%时,采用预造球制粒可以使准颗粒平均粒径提高1.53 mm,透气性指数提高0.17。在此基础上,垂直烧结速度提高13.97 mm/min,利用系数提高0.815 t/(m^(2)·h),转鼓强度提高3.39%。预造球烧结中,由于难制粒精矿的分离,常规制粒料部分的制粒性能得到优化,局部碱度得到提高,形成大量的针柱状铁酸钙。在常规制粒料与球团料交界处固相固结与液相固结同时存在,铁酸钙与铁氧化物相互交织,形成球团嵌入式分布的成品矿结构,具有良好的成矿效果和强度性能。 展开更多
关键词 烧结 制粒 预造球 复合造块法 难制粒精矿
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唐钢基于高比例球团冶炼的高炉设计与生产实践
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作者 陈永星 袁雪涛 段新民 《南方金属》 CAS 2024年第3期38-41,共4页
为贯彻“绿色、低碳”的发展理念,唐钢沿海钢铁基地炼铁系统从设计之初即针对球团矿的物化和冶金性能特点,从炉型结构、冷却壁设计等进行诸多优化。投产以来,通过提高焦炭质量、改善熔剂性球团低温还原粉化性能(RDI+6.3)、稳定炉料结构... 为贯彻“绿色、低碳”的发展理念,唐钢沿海钢铁基地炼铁系统从设计之初即针对球团矿的物化和冶金性能特点,从炉型结构、冷却壁设计等进行诸多优化。投产以来,通过提高焦炭质量、改善熔剂性球团低温还原粉化性能(RDI+6.3)、稳定炉料结构、优化操作制度等措施,在唐钢目前原燃料条件下,球团矿入炉比例稳定在40%以上,高炉实现长周期稳定顺行,燃料比、煤比分别控制在520 kg/t和170 kg/t左右。 展开更多
关键词 高炉 高比例球团 生产实践 操作制度
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锰矿粉球团烧结新工艺研究
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作者 朱德庆 杨聪聪 +2 位作者 潘建 郭正启 刘伟 《铁合金》 CAS 2024年第2期1-7,共7页
传统锰矿粉烧结工艺存在着固体燃耗高、锰矿烧结矿质量差等难题,开发锰矿粉造块新技术对于降低铁合金生产成本、扩大原料来源和促进铁合金行业低碳绿色发展具有重要意义。本文提出了一种锰矿粉球团烧结新工艺,并通过烧结杯实验与传统烧... 传统锰矿粉烧结工艺存在着固体燃耗高、锰矿烧结矿质量差等难题,开发锰矿粉造块新技术对于降低铁合金生产成本、扩大原料来源和促进铁合金行业低碳绿色发展具有重要意义。本文提出了一种锰矿粉球团烧结新工艺,并通过烧结杯实验与传统烧结工艺进行了对比。结果表明,相比于传统烧结工艺,球团烧结新工艺的烧结矿转鼓强度提高了4.35%,利用系数增加了16.22%,固体燃耗降低了21.79%;此外,锰矿球团烧结矿相比于普通锰矿烧结矿具有较好的抗热爆性能和高温软熔性能。本研究成果将为锰矿粉实现低碳烧结和强化矿热炉冶炼提供重要的参考。 展开更多
关键词 锰矿粉 烧结矿 球团烧结 低碳排放 冶金性能
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焦化除尘灰在球团回转窑生产中应用
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作者 付利俊 何晓义 +1 位作者 江鑫 解巍 《包钢科技》 2024年第2期6-9,共4页
通过开展球团回转窑使用焦化除尘灰研究,焦化除尘灰在球团回转窑生产使用的混合煤粉中的配比能够达到15%,回转窑工艺生产顺行,球团质量稳定。同时,解决了焦化除尘灰堆存造成的环境污染问题,为焦化除尘灰有效处理提供了新的途径。焦化除... 通过开展球团回转窑使用焦化除尘灰研究,焦化除尘灰在球团回转窑生产使用的混合煤粉中的配比能够达到15%,回转窑工艺生产顺行,球团质量稳定。同时,解决了焦化除尘灰堆存造成的环境污染问题,为焦化除尘灰有效处理提供了新的途径。焦化除尘灰配入混合煤粉有效降低了燃料成本,降低了球团的生产成本。 展开更多
关键词 焦化除尘灰 高效利用 球团
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生物质成型技术及LH-600型生物质颗粒成型机设计
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作者 狄明利 黄允魁 +3 位作者 陈月锋 高威 杨军太 李杨 《农业工程》 2024年第1期89-94,共6页
针对大型养殖场固体粪污、生物质秸秆、茶园茶梗、果园枝条、木屑及蘑菇渣等农业固体废弃物资源化利用过程中,生产生物质颗粒存在产量过低、设备故障率高、易堵塞模孔和成型率差等问题,研发设计了LH-600型生物质制粒成型机。对成型机喂... 针对大型养殖场固体粪污、生物质秸秆、茶园茶梗、果园枝条、木屑及蘑菇渣等农业固体废弃物资源化利用过程中,生产生物质颗粒存在产量过低、设备故障率高、易堵塞模孔和成型率差等问题,研发设计了LH-600型生物质制粒成型机。对成型机喂料装置、颗粒成型装置、动力传动机构进行了创新设计,并利用Solidworks软件进行辅助设计。试验、工程实践应用表明,成型机具有使用寿命长、维护成本低、传动机构润滑降温效果好及高效节能等优点,适合大中型饲料加工厂、养殖场及有机肥厂使用。 展开更多
关键词 农业废弃物 生物质 制粒成型技术 饲料颗粒成型机 平模 挤压辊轮
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