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Recent progress in rechargeable alkali metal-air batteries 被引量:14
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作者 Xin Zhang Xin-Gai Wang +1 位作者 Zhaojun Xie Zhen Zhou 《Green Energy & Environment》 SCIE 2016年第1期4-17,共14页
Rechargeable alkali metal-air batteries are considered as the most promising candidate for the power source of electric vehicles(EVs) due to their high energy density. However, the practical application of metal-air b... Rechargeable alkali metal-air batteries are considered as the most promising candidate for the power source of electric vehicles(EVs) due to their high energy density. However, the practical application of metal-air batteries is still challenging. In the past decade, many strategies have been purposed and explored, which promoted the development of metal-air batteries. The reaction mechanisms have been gradually clarified and catalysts have been rationally designed for air cathodes. In this review, we summarize the recent development of alkali metal-air batteries from four parts: metal anodes, electrolytes, air cathodes and reactant gases, wherein we highlight the important achievement in this filed. Finally problems and prospective are discussed towards the future development of alkali metal-air batteries. 展开更多
关键词 metal-air batteries Alkali metal anodes Electrolytes Ionic liquids Air cathodes
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Micro-nanostructural designs of bifunctional electrocatalysts for metal-air batteries 被引量:8
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作者 Fang Shi Xuefeng Zhu Weishen Yang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第3期390-403,共14页
Water-based rechargeable metal-air batteries play an important role in the storage and conversion of renewable electric energy.However,the sluggish kinetics of the oxygen reduction reaction(ORR)and oxygen evolution re... Water-based rechargeable metal-air batteries play an important role in the storage and conversion of renewable electric energy.However,the sluggish kinetics of the oxygen reduction reaction(ORR)and oxygen evolution reaction(OER)have limited the practical application of rechargeable metal-air batteries.Most of reviews were focused on single functional electrocatalysts while few on bifunctional electrocatalysts.It is indispensable but challenging to design a bifunctional electrocatalyst that is active and stable to the two reactions.Recently,attempts to develop high active bifunctional electrocatalysts for both ORR and OER increase rapidly.Much work is focused on the micro-nano design of advanced structures to improve the performance of bifunctional electrocatalyst.Transition-metal materials,carbon materials and composite materials,and the methods developed to prepare micro-nano structures,such as electrochemical methods,chemical vapor deposition,hydrothermal methods and template methods are reported in literatures.Additionally,many strategies,such as adjustments of electronic structures,oxygen defects,metal-oxygen bonds,interfacial strain,nano composites,heteroatom doping etc.,have been used extensively to design bifunctional electrocatalysts.To well understand the achievements in the recent literatures,this review focuses on the micro-nano structural design of materials,and the related methods and strategies are classed into two groups for the improvement of intrinsic and apparent activities.The fine adjustment of nano structures and an in-depth understanding of the reaction mechanism are also discussed briefly. 展开更多
关键词 Oxygen reduction reaction Oxygen evolution reaction Rechargeable metal-air batteries Bifunctional electrocatalysts Micro-nano structure
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A review on system and materials for aqueous flexible metal-air batteries 被引量:7
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作者 Lixue Jiang Xiaoxuan Luo Da‐Wei Wang 《Carbon Energy》 SCIE CSCD 2023年第3期138-159,共22页
The exploration of aqueous flexible metal-air batteries with high energy density and durability has attracted many research efforts with the demand for portable and wearable electronic devices.Aqueous flexible metal-a... The exploration of aqueous flexible metal-air batteries with high energy density and durability has attracted many research efforts with the demand for portable and wearable electronic devices.Aqueous flexible metal-air batteries feature Earth-abundant materials,environmental friendliness,and operational safety.Each part of one metal-air battery can significantly affect the overall performance.This review starts with the fundamental working principles and the basic battery configurations and then highlights on the common issues and the recent advances in designing high-performance metal electrodes,solid-state electrolytes,and air electrodes.Bifunctional oxygen electrocatalysts with high activity and long-term stability for constructing efficient air electrodes in flexible metal-air batteries are summarized including metal-free carbon-based materials and nonprecious Co/Fe-based materials(alloys,metal oxides,metal sulfites,metal phosphates,metal nitrates,single-site metal-nitrogen-carbon materials,and composites).Finally,a perspective is provided on the existing challenges and possible future research directions in optimizing the performance and lifetime of the flexible aqueous solid-state metal-air batteries. 展开更多
关键词 ACTIVITY air electrodes flexible metal-air batteries oxygen electrocatalysts solid‐state electrolytes stability
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Recent advances in solid-state metal-air batteries 被引量:5
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作者 Qi Sun Lei Dai +3 位作者 Tingting Luo Ling Wang Feng Liang Shan Liu 《Carbon Energy》 SCIE CSCD 2023年第2期148-170,共23页
Solid-state metal-air batteries have emerged as a research hotspot due to their high energy density and high safety.Moreover,side reactions caused by infiltrated gases(O_(2),H_(2)O,or CO_(2))and safety issues caused b... Solid-state metal-air batteries have emerged as a research hotspot due to their high energy density and high safety.Moreover,side reactions caused by infiltrated gases(O_(2),H_(2)O,or CO_(2))and safety issues caused by liquid electrolyte leakage will be eliminated radically.However,the solid-state metal–air battery is still in its infancy,and many thorny problems still need to be solved,such as the large resistance of the metal/electrolyte interface and catalyst design.This review will summarize some important progress and key issues for solid-state metal-air batteries,especially the lithium-,sodium-,and zinc-based metal-air batteries,clarify some core issues,and forecast the future direction of the solid-state metal-air batteries. 展开更多
关键词 cathode structure interface stability metal anode metal-air batteries solid electrolyte
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Advances in Porous Perovskites:Synthesis and Electrocatalytic Performance in Fuel Cells and Metal-Air Batteries 被引量:8
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作者 Jie Yu Ran Ran +3 位作者 Yijun Zhong Wei Zhou Meng Ni Zongping Shao 《Energy & Environmental Materials》 2020年第2期121-145,共25页
With a rising energy demand and anabatic environmental crisis arising from the fast growth in human population and society economics,numerous efforts have been devoted to explore and design plentiful multifunctional m... With a rising energy demand and anabatic environmental crisis arising from the fast growth in human population and society economics,numerous efforts have been devoted to explore and design plentiful multifunctional materials for meeting highefficiency energy transfer processes,which happen in various developed energy conversion and storage systems.As a special kind of multi-metal oxides,perovskite with attractive physical and chemical properties,is becoming a rapidly rising star on the horizon of high-performance catalytic materials with substantial research behaviors worldwide.The porous nanostructure in targeted catalysts is favorable to the catalytic activity and thus improves the overall efficiency of these energy-related installations.In this review paper,recent advances made in the porous perovskite nanostructures for catalyzing several anodic or cathodic reactions in fuel cells and metal-air batteries are comprehensively summarized.Plenty of general preparation methods employed to attain porous perovskite-type oxides are provided,followed by a further discussion about the influence of various strategies on structures and catalytic properties of the porous perovskites.Furthermore,deep insights gathered in the future development of porous perovskite-based materials for energy conversion and storage technologies are also provided. 展开更多
关键词 fuel cells metal-air batteries oxygen evolution reaction oxygen reduction reaction porous perovskite-type oxides
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Defective/Doped Graphene-Based Materials as Cathodes for Metal-Air Batteries 被引量:1
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作者 Qinming Zhang Chengyi Wang +1 位作者 Zhaojun Xie Zhen Zhou 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2022年第4期1103-1116,共14页
Graphene,as a proof-of-concept two-dimensional material,has proven to have excellent physical and chemical properties.Its derivatives,such as defective or doped graphene,are also applied as catalytic materials for met... Graphene,as a proof-of-concept two-dimensional material,has proven to have excellent physical and chemical properties.Its derivatives,such as defective or doped graphene,are also applied as catalytic materials for metal-air batteries(MABs).MABs have been recognized as possible candidates for new-generation energy storage systems due to their ultra-high theoretical energy density.So far,graphene and its derivatives with optimized structures have been widely explored to improve the electrochemical performance in MABs.Generally speaking,perfect graphene crystalline is inert for many catalytic processes,while defects and heteroatoms can endow graphene with high activity for many electrocatalytic reactions.Under this circumstance,recent progress is summarized for defective/doped graphene as air cathodes in aqueous or organic MABs,which are actually different electrochemical systems with distinct requirements for air cathodes.Also,the relationship is clarified between graphene defects/doping and electrocatalytic mechanisms that can be the guidance for catalyst design.Future directions are also prospected for the development of graphene-based MAB cathodes. 展开更多
关键词 defective/doped graphene ELECTROCATALYSTS metal-air batteries OER ORR
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Self-assembled three-dimensional carbon networks with accessorial Lewis base sites and variational electron characteristics as efficient oxygen reduction reaction catalysts for alkaline metal-air batteries
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作者 Qiyu Wang Zhian Zhang +3 位作者 Mengran Wang Jie Li Jing Fang Yanqing Lai 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2018年第7期1210-1218,共9页
Heteroatom-doped carbon has been demonstrated to be one of the most promising non-noble metal catalysts with high catalytic activity and stability through the modification of the electronic and geometric structures.In... Heteroatom-doped carbon has been demonstrated to be one of the most promising non-noble metal catalysts with high catalytic activity and stability through the modification of the electronic and geometric structures.In this study,we develop a novel solvent method to prepare interconnected N,S co-doped three-dimensional(3D)carbon networks with tunable nanopores derived from an asso-ciated complex based on melamine and sodium dodecylbenzene sulfonate(SDBS).After the intro-duction of silica templates and calcination,the catalyst exhibits 3D networks with interconnected 50-nm pores and partial graphitization.With the increase of the number of Lewis base sites caused by the N doping and change of the carbon charge and spin densities caused by the S doping,the designed N,S co-doped catalyst exhibits a similar electrochemical activity to that of the commercial 20-wt%Pt/C as an oxygen reduction reaction catalyst.In addition,in an aluminum-air battery,the proposed catalyst even outperforms the commercial 5-wt%Pt/C catalyst.Both interconnected porous structures and synergistic effects of N and S contribute to the superior catalytic perfor-mance.This study paves the way for the synthesis of various other N-doped and co-doped carbon materials as efficient catalysts in electrochemical energy applications. 展开更多
关键词 Carbon networks N S co-doped Lewis base sites Charge and spin densities Oxygen reduction reaction Alkaline metal-air batteries
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基于CFD−DPM的空气幕协同排风罩增效除尘研究
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作者 丁厚成 许婉萍 +2 位作者 邓权龙 陈圳杨 朱强 《安徽工业大学学报(自然科学版)》 2025年第1期62-71,共10页
以某机械厂打磨车间为研究对象,利用Solidworks软件建立带有空气幕协同排风罩除尘的打磨车间模型,基于气固两相流理论,采用计算流体力学离散颗粒模型(CFD−DPM)模拟分析空气幕送风速度、射流角度和射流宽度对除尘效率的影响,选取空气幕... 以某机械厂打磨车间为研究对象,利用Solidworks软件建立带有空气幕协同排风罩除尘的打磨车间模型,基于气固两相流理论,采用计算流体力学离散颗粒模型(CFD−DPM)模拟分析空气幕送风速度、射流角度和射流宽度对除尘效率的影响,选取空气幕的最优参数;在此基础上,对比分析未开启排风罩、开启排风罩、同时开启排风罩与空气幕3种工况的风速分布、粉尘运移轨迹及粉尘质量浓度分布,探讨空气幕协同排风罩除尘的效果。结果表明:粉尘最大浓度、呼吸带粉尘浓度随空气幕送风速度、射流宽度的增大而减小,但不随空气幕射流角度的变化而变化;粉尘浓度随地面高度的增大先增后减,不同高度处粉尘浓度变化趋势基本一致;当空气幕射流宽度30 mm、射流角度30°、送风速度3 m/s时,通风除尘效果最佳,除尘效率高达94.2%。相比于仅开启排风罩,排风罩与空气幕协同作用下的除尘效率提高了38.8%,空气幕协同排风罩对车间除尘具有较好的增效作用。 展开更多
关键词 打磨车间 金属粉尘 排风罩 空气幕 计算流体力学(CFD) 离散颗粒模型(DPM) 除尘 职业健康
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Advanced noble-metal-free bifunctional electrocatalysts for metal-air batteries 被引量:3
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作者 Wenhao Tang Boya Li +7 位作者 Kewei Teng Xiaodong Wang Ruiping Liu Mengwei Wu Lei Zhang Pengfei Ren Junqing Zhang Ming Feng 《Journal of Materiomics》 SCIE 2022年第2期454-474,共21页
The sluggish reaction kinetics at the oxygen cathode is one of the important issues hindering the commercialization of the metal-air batteries.Although the noble metal can be used as the high-efficiency electrocatalys... The sluggish reaction kinetics at the oxygen cathode is one of the important issues hindering the commercialization of the metal-air batteries.Although the noble metal can be used as the high-efficiency electrocatalyst to solve the problems to some extent,the high cost and scarcity of these noble-metal catalysts have limited their application in electrocatalysis.In this review,we discussed the mecha-nisms of the ORR and OER,and proposed the principles for the bifunctional electrocatalysts firstly,and then the state-of-the-art bifunctional catalysts,including carbon-based materials and transition-metal-based materials.On the basis of that,the self-supporting 3D noble-metal-free bifunctional ORR/OER catalysts were also discussed.Finally,the perspectives for the bifunctional electrocatalysts were discussed. 展开更多
关键词 Bifunctional electrocatalyst Noble-metal free Carbon Transition metal metal-air battery
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One-step,in situ formation of WN-W_(2)C heterojunctions implanted on N doped carbon nanorods as efficient oxygen reduction catalyst for metal-air battery 被引量:3
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作者 Yue Du Wenxue Chen +7 位作者 Lina Zhou Rui Hu Shizhu Wang Xueqing Li Yunlong Xie Lun Yang Yisi Liu Zhenhui Liu 《Nano Research》 SCIE EI CSCD 2023年第7期8773-8781,共9页
Transition metal nitrides and carbides have attracted intensive attentions in metal-air battery application due to their metallic electron transport behavior and high chemical stability toward the oxygen reduction rea... Transition metal nitrides and carbides have attracted intensive attentions in metal-air battery application due to their metallic electron transport behavior and high chemical stability toward the oxygen reduction reaction(ORR).Herein,the polyoxometalate@polyaniline composite derived WN-W_(2)C heterostructured composite(WN-W_(2)C@pDC)has been fabricated through an in situ nitriding-carbonization strategy,with WN-W_(2)C nanoparticles implanted on N doped carbon nanorods.Asfabricated WN-W_(2)C@pDC demonstrates prominent electrocatalytic performance towards ORR and excellent cycling stability in metal-air battery,which possesses positive half-wave potential and large diffusion limiting current density(0.81 V and 5.8 mA·cm^(-2)).Moreover,it demonstrates high peak power density of 157.4 mW·cm^(-2)as Al-air primary cathode and excellent stability at the discharge-charge test(>500 h)of Zn-air secondary battery.The excellent activity and durability of WNW_(2)C@pDC catalyst should be attributed to the combined effect of intimate WN-W_(2)C heterointerfaces,unique embedded nanoparticles structure,and excellent electrical media of N doped carbon,confirmed by a series of contrast experiments. 展开更多
关键词 WN-W_(2)C heterojunctions polyoxometalate@polyaniline composite oxygen reduction reaction metal-air battery
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Facile Route to Constructing Ternary Nanoalloy Bifunctional Oxyegn Cathode for Metal-Air Batteries 被引量:2
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作者 WANG Huanfeng LI Junfeng +2 位作者 LI Fei LI Jingjing XU Jijing 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2020年第6期1153-1160,共8页
Highly stable and efficient bifunctional air cathode catalyst is crucial to rechargeable metal-air batteries.Herein,a ternary nanoalloy layer composed of noble and base metal coated on a three-dimensional porous Ni sp... Highly stable and efficient bifunctional air cathode catalyst is crucial to rechargeable metal-air batteries.Herein,a ternary nanoalloy layer composed of noble and base metal coated on a three-dimensional porous Ni sponge as the bifunctional cathode is synthesized through in-situ anchoring strategy,which can effectively keep the multimetal nanoparticles from agglomeration and improve the density of active sites and catalytic activity.The prepared catalyst displays an excellent catalytic performance with lower overpotential and long-term stability.The Zn-air batteries with the as-prepared cathodes possess a large power density of 170 mW/cm2,long cycling stability up to 230 cycles,and a high specific capacity of 771 mA h/g.Furthermore,the corresponding Li-air batteries deliver a discharge capacity of 22429 mA h/g.These superior properties of the metal-air batteries can be attributed to the combined influence of design and composition of electrode,which is of great significance to improve the electrochemical catalytic activity,providing great potential of wide application in expanded rechargeable energy systems. 展开更多
关键词 metal-air battery Bifunctional cathode Self-standing NANOSHEET Electrochemical performance
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Application of metal-organic frameworks,covalent organic frameworks and their derivates for the metal-air batteries 被引量:6
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作者 Yunyun Xu Hairong Xue +6 位作者 Xijuan Li Xiaoli Fan Peng Li Tengfei Zhang Kun Chang Tao Wang Jianping He 《Nano Research Energy》 2023年第2期130-150,共21页
Metal-organic frameworks(MOFs)and covalent organic frameworks(COFs)as the novel porous materials have the merits of diverse,adjustable functionality,high porosity and surface area,which have great application prospect... Metal-organic frameworks(MOFs)and covalent organic frameworks(COFs)as the novel porous materials have the merits of diverse,adjustable functionality,high porosity and surface area,which have great application prospects in the gas storage,separation and catalysis.In addition,their derivates make up for the insufficient of electronic conductivity and chemical stability of MOFs and COFs,and provide a new ideal for accurate control of material structure.Up to now,many efficient electrocatalysts have been designed based on MOFs,COFs and their derivates for O_(2)reduction/evolution reactions(ORR/OER)and CO_(2)reduction/evolution reactions(CO_(2)RR/CO_(2)ER)in the metal-air batteries.In this review,the latest development of MOFs,COFs and their derivates in the metal-air batteries is summarized,and we discuss the structural characteristics of these materials and their corresponding mechanisms of action.By comprehensively reviewing the advantages,challenges and prospects of MOFs and COFs,we hope that the organic framework materials will shed more profound insights into the development of electrocatalysis and energy storage in the future. 展开更多
关键词 metal-organic frameworks covalent organic frameworks the derivates ELECTROCATALYSIS metal-air batteries
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环境暴露与肌少症的关系研究进展
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作者 董小菲 张飞 王佳贺 《实用老年医学》 2025年第1期8-11,共4页
随着社会飞速发展,环境污染的危害日益凸显。人口老龄化加剧的背景下,肌少症病人的数量不断增加,加剧了国家公共卫生负担。本文综述了常见环境暴露如空气污染、重金属暴露、噪音污染等对肌少症的影响及机制,阐明环境污染导致机体的线粒... 随着社会飞速发展,环境污染的危害日益凸显。人口老龄化加剧的背景下,肌少症病人的数量不断增加,加剧了国家公共卫生负担。本文综述了常见环境暴露如空气污染、重金属暴露、噪音污染等对肌少症的影响及机制,阐明环境污染导致机体的线粒体功能障碍和慢性炎症等一系列分子生物学机制与肌少症的发生进展有着密不可分的联系,强调重金属暴露的危害,旨在为肌少症的临床诊治和科学研究提供新思路。 展开更多
关键词 环境暴露 肌少症 重金属暴露 空气污染
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金属碳酸盐改性固态胺吸附剂捕集空气中CO_(2)
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作者 王轶隽 王禹轩 +2 位作者 刘逸航 李新令 黄震 《化工环保》 北大核心 2025年第1期79-87,共9页
以SBA-15分子筛为载体,采用浸渍法制备了金属碳酸盐负载、聚乙烯亚胺(PEI)功能化的复合吸附剂,对其进行了表征,考察了金属碳酸盐类型及负载量、PEI负载量对吸附剂吸附CO_(2)性能的影响,评价了复合吸附剂的重复使用性能。结果表明:在K_(2... 以SBA-15分子筛为载体,采用浸渍法制备了金属碳酸盐负载、聚乙烯亚胺(PEI)功能化的复合吸附剂,对其进行了表征,考察了金属碳酸盐类型及负载量、PEI负载量对吸附剂吸附CO_(2)性能的影响,评价了复合吸附剂的重复使用性能。结果表明:在K_(2)CO_(3)负载量(w)5%、PEI负载量(w)50%的条件下制得的K_(5)P_(50)SBA吸附剂对CO_(2)的吸附性能最佳,在温度35℃、CO_(2)体积分数400×10^(-6)、气体流量100 mL/min的条件下吸附180 min后,K_(5)P_(50)SBA对CO_(2)的吸附量为1.92 mmol/g;在SBA-15上负载适量K_(2)CO_(3)有利于扩大吸附剂的孔径,加速CO_(2)在吸附剂内部的扩散,K_(2)CO_(3)表面的碱性位点能够与PEI发生协同作用,增加对CO_(2)的吸附量;K_(5)P_(50)SBA经100次循环使用后,吸附量降低至1.61 mmol/g,降幅9.03%,表现出良好的重复使用性能。 展开更多
关键词 直接空气捕集 固态胺吸附剂 金属碳酸盐改性 吸附-解吸循环
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环境暴露对认知障碍影响的研究进展
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作者 王思亚 殷实 《实用老年医学》 2025年第1期22-25,共4页
近年来,环境暴露对人类健康尤其是认知障碍的影响备受关注。本文综述了生活生产中常见的空气污染物(包括颗粒物、臭氧、二氧化硫、氮氧化物和一氧化碳等)以及金属(如铅、镉、汞、砷等)暴露对认知障碍影响的研究进展,阐述了各种污染物及... 近年来,环境暴露对人类健康尤其是认知障碍的影响备受关注。本文综述了生活生产中常见的空气污染物(包括颗粒物、臭氧、二氧化硫、氮氧化物和一氧化碳等)以及金属(如铅、镉、汞、砷等)暴露对认知障碍影响的研究进展,阐述了各种污染物及金属影响认知障碍的相关表现及潜在机制。 展开更多
关键词 环境暴露 认知障碍 空气污染 金属暴露
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不同干制柴达木枸杞重金属含量测定及健康风险评价
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作者 师敏 安妮 +2 位作者 吴冀东 甄国强 肖明 《食品安全质量检测学报》 2025年第4期299-308,共10页
目的对柴达木诺木洪农场不同干制枸杞中的As、Cd、Cr、Cu、Ni、Pb的含量进行检测分析,并评价枸杞经食用途径摄入的重金属对人体的健康风险。方法使用电感耦合等离子体发射光谱仪,对枸杞中的6种重金属元素含量进行测定;采用单因子指数法... 目的对柴达木诺木洪农场不同干制枸杞中的As、Cd、Cr、Cu、Ni、Pb的含量进行检测分析,并评价枸杞经食用途径摄入的重金属对人体的健康风险。方法使用电感耦合等离子体发射光谱仪,对枸杞中的6种重金属元素含量进行测定;采用单因子指数法、均值污染指数法、污染因子分析法、内梅罗综合污染指数对枸杞重金属的污染程度进行全面的分析评价;采用目标危险系数法对枸杞进行单一及复合重金属摄入健康风险评价。结果该地区枸杞中的6种重金属单项污染指数均小于1,综合污染指数均小于0.7,锁鲜组均值污染指数小于0.1,为未污染状态,晒干、烘干、吊干组均值污染指数小于0.2,为轻微污染状态,其中Cu、Cd为主要污染因子;通过相关性和主成分分析,枸杞干制过程中的重金属污染源具有多样化且多种途径的特征,经过锁鲜处理和吊干处理的枸杞重金属含量安全系数更高;经食用枸杞人体所摄入的单一重金属或复合重金属对儿童或成人均不造成健康风险。结论该地区枸杞重金属的污染程度低,含量符合中国药典2020的限量要求,不同干制对枸杞的重金属含量存在一定的影响,本研究可为干制中枸杞的重金属污染防治提供参考依据。 展开更多
关键词 枸杞 晒干 烘干 吊干 锁鲜 重金属含量 健康风险
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基于磁热耦合的超大容量干式空心限流电抗器金属结构件温度场研究及试验验证
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作者 杨黎 陈意龙 +3 位作者 张月华 张德金 张猛 王银岭 《变压器》 2025年第1期35-40,共6页
针对500kV/6000A的干式空心限流电抗器金属结构件发热问题,依托于上海远东-亭卫500kV变电站加装串抗工程,采用磁热耦合仿真分析与试验验证相结合的方法,研究了额定电流6000A,单台阻抗7Ω,单台容量252MVar的大容量限流电抗器金属结构件... 针对500kV/6000A的干式空心限流电抗器金属结构件发热问题,依托于上海远东-亭卫500kV变电站加装串抗工程,采用磁热耦合仿真分析与试验验证相结合的方法,研究了额定电流6000A,单台阻抗7Ω,单台容量252MVar的大容量限流电抗器金属结构件温度场分布特性。研究结果表明:一是限流电抗器的金属结构件温升试验与仿真结果基本吻合,验证了仿真计算的准确性;二是采用特殊结构设计的铝吊臂通流,热点温升为92K,满足超大容量限流电抗器长期通流的使用要求;三是采用低涡流设计结构的不锈钢支撑结构件,热点温升不超过100K,满足支撑强度要求。 展开更多
关键词 空心电抗器 限流电抗器 金属结构件温升 磁热耦合
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聚乙烯亚胺/聚丙烯腈复合纤维薄膜的制备及其功能化应用 被引量:1
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作者 王浩然 于影 +4 位作者 左雨欣 顾志清 卢海龙 陈洪立 柯俊 《纺织学报》 EI CAS CSCD 北大核心 2024年第9期26-32,共7页
针对金属-空气电池阴极易腐蚀的问题,将聚乙烯亚胺(PEI)和聚丙烯腈(PAN)共混,基于静电纺丝方法制备PEI/PAN复合纤维薄膜,抑制CO_(2)对空气阴极的侵蚀。借助计算机模拟方法计算PEI/PAN复合纤维薄膜的最佳成分配比,采用扫描电子显微镜、... 针对金属-空气电池阴极易腐蚀的问题,将聚乙烯亚胺(PEI)和聚丙烯腈(PAN)共混,基于静电纺丝方法制备PEI/PAN复合纤维薄膜,抑制CO_(2)对空气阴极的侵蚀。借助计算机模拟方法计算PEI/PAN复合纤维薄膜的最佳成分配比,采用扫描电子显微镜、傅里叶变换红外吸收光谱仪、同步热分析仪等对PEI/PAN复合纤维薄膜的物理特性、CO_(2)吸附性能进行表征和分析。以铝-空气电池为例,通过电池测试系统分析了PEI/PAN复合纤维薄膜对电池电化学性能的影响情况。结果表明:基于静电纺丝技术可成功将PEI嵌入PAN纤维中,所制备的PEI/PAN复合纤维薄膜纤维直径均一且表面光滑;当PEI/PAN复合纤维薄膜中的PEI质量分数为50%时,在100 kPa条件下其CO_(2)吸附量可达1.86 mmol/g;在金属-空气电池阴极添加PEI/PAN复合纤维薄膜,相较于传统铝-空气电池,其比容量提升19.5%,放电时间延长20.4%。 展开更多
关键词 复合纤维薄膜 CO_(2)吸附 聚乙烯亚胺 聚丙烯腈 空气阴极腐蚀 金属-空气电池 静电纺丝
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电活性聚乳酸纳纤膜的形态调控及高效捕集PM_(0.3)性能 被引量:3
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作者 黄荣廷 朱桂英 +6 位作者 李欣雨 唐道远 张勇 王斌 朱金佗 何新建 徐欢 《高等学校化学学报》 SCIE EI CSCD 北大核心 2024年第1期154-163,共10页
通过静电喷雾沸石咪唑框架-8(ZIF-8)分散液对同步电纺聚乳酸(PLA)纳米纤维进行表面功能化,以增强PLA/ZIF-8纳米纤维膜(简称纳纤膜)表面的电荷俘获及储存能力,从而提高静电吸附效果和过滤性能.通过在分散液中添加不同量的ZIF-8来调控锚... 通过静电喷雾沸石咪唑框架-8(ZIF-8)分散液对同步电纺聚乳酸(PLA)纳米纤维进行表面功能化,以增强PLA/ZIF-8纳米纤维膜(简称纳纤膜)表面的电荷俘获及储存能力,从而提高静电吸附效果和过滤性能.通过在分散液中添加不同量的ZIF-8来调控锚定于纤维表面的ZIF-8负载量,探究ZIF-8含量与纤维膜形态和性能演变之间关系.采用扫描电子显微镜(SEM)对纤维膜的微观形态进行表征,并结合傅里叶变换红外光谱(FTIR)和X射线衍射谱(XRD)分析了纤维膜的化学性质、界面相互作用和晶体结构的演变机理.采用静电测试仪、电介质测试仪和静电计分别评价表面电势、相对介电常数和输出电压,表征纤维膜的电活性和摩擦电输出性能.通过万能试验机测试聚乳酸纳米纤维膜的力学性能,并使用自主搭建的空气过滤测试平台探究纤维膜高效过滤机理.结果表明,PLA/ZIF-8纳纤膜具有高电活性、高过滤效率、低空气阻力和优异的力学性能:其表面电势和最大开路输出电压分别可达5.9 kV和30.9 V,与纯PLA对比样相比分别提升5.6倍和5.3倍,同时拉伸强度和拉伸韧性增幅分别高达78%和111%.更重要的是,PLA/ZIF-8纳纤膜的PM0.3过滤性能得到大幅提升(增幅可达12.6%),且空气阻力有所降低(40 Pa,65 L/min).所制备的环境友好型PLA/ZIF-8纳纤膜在滤除超细颗粒物和阻断病毒气溶胶传播等领域具有广阔应用前景. 展开更多
关键词 聚乳酸 纳纤膜 金属-有机骨架功能化 电活性 空气过滤
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球形敏感单元微瞄准形成金属/空气/金属微观界面中的电子输运机理研究
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作者 边星元 赵东方 崔俊宁 《宇航计测技术》 CSCD 2024年第1期34-40,共7页
针对惯性陀螺和航空、航天发动机等高端/尖端仪器装备中,深孔、沟槽等内腔体结构的高精度测量对非接触传感方法提出的挑战性需求,展开球形敏感单元瞄准被测件形成金属/空气/金属微观界面中的敏感机理研究。从绝缘介质薄层电子输运机理... 针对惯性陀螺和航空、航天发动机等高端/尖端仪器装备中,深孔、沟槽等内腔体结构的高精度测量对非接触传感方法提出的挑战性需求,展开球形敏感单元瞄准被测件形成金属/空气/金属微观界面中的敏感机理研究。从绝缘介质薄层电子输运机理和绝缘介质性质改变而产生电子输运两个角度,对包括电子隧穿在内的电子输运机理进行形成条件和电流密度特性的分析,揭示球形敏感单元微瞄准形成的金属/空气/金属微观界面中,产生传感电流的电子输运主要机理为福勒-诺德海姆隧穿效应,为探索新原理的三维非接触式纳米传感方法奠定了基础。 展开更多
关键词 电子隧穿 金属空气金属微观界面 微球瞄准 纳米传感
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