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Enhancing CO_(2) transport with plasma-functionalized ionic liquid membranes
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作者 舒茹晨 许卉 +5 位作者 裴晨霄 王楠 刘新刚 侯剑源 袁圆 张仁熙 《Plasma Science and Technology》 SCIE EI CAS CSCD 2024年第7期74-81,共8页
The ionic liquid(IL) 1-butyl-3-methylimidazolium tetrafluoroborate treated with radiofrequency plasma is proposed for functionalization and immobilization on polyethersulfone supports to form supported ionic liquid me... The ionic liquid(IL) 1-butyl-3-methylimidazolium tetrafluoroborate treated with radiofrequency plasma is proposed for functionalization and immobilization on polyethersulfone supports to form supported ionic liquid membranes for CO_(2) separation.The effects of treatment time and transmembrane pressure difference on CO_(2) permeance were evaluated.The best gas permeation performance was obtained with a treatment time of 10 min and the transmembrane pressure difference was 0.25 MPa.Characterization of the materials by Fourier transform infrared spectroscopy,x-ray photoelectron spectroscopy and nuclear magnetic resonance spectroscopy demonstrates that the IL is grafted with carboxyl groups and deprotonated through plasma treatment.A preliminary mechanism for the plasma treatment and facilitated transport of CO_(2)has been proposed on this basis. 展开更多
关键词 ionic liquids carbon dioxide supported ionic liquid membranes facilitated transport radiofrequency plasma
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Smart Cellulose‑Based Janus Fabrics with Switchable Liquid Transportation for Personal Moisture and Thermal Management
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作者 Jianfeng Xi Yanling Lou +5 位作者 Liucheng Meng Chao Deng Youlu Chu Zhaoyang Xu Huining Xiao Weibing Wu 《Nano-Micro Letters》 SCIE EI CAS 2025年第1期333-347,共15页
The Janus fabrics designed for personal moisture/thermal regulation have garnered significant attention for their potential to enhance human comfort.However,the development of smart and dynamic fabrics capable of mana... The Janus fabrics designed for personal moisture/thermal regulation have garnered significant attention for their potential to enhance human comfort.However,the development of smart and dynamic fabrics capable of managing personal moisture/thermal comfort in response to changing external environments remains a challenge.Herein,a smart cellulose-based Janus fabric was designed to dynamically manage personal moisture/heat.The cotton fabric was grafted with N-isopropylacrylamide to construct a temperature-stimulated transport channel.Subsequently,hydrophobic ethyl cellulose and hydrophilic cellulose nanofiber were sprayed on the bottom and top sides of the fabric to obtain wettability gradient.The fabric exhibits anti-gravity directional liquid transportation from hydrophobic side to hydrophilic side,and can dynamically and continuously control the transportation time in a wide range of 3–66 s as the temperature increases from 10 to 40℃.This smart fabric can quickly dissipate heat at high temperatures,while at low temperatures,it can slow down the heat dissipation rate and prevent the human from becoming too cold.In addition,the fabric has UV shielding and photodynamic antibacterial properties through depositing graphitic carbon nitride nanosheets on the hydrophilic side.This smart fabric offers an innovative approach to maximizing personal comfort in environments with significant temperature variations. 展开更多
关键词 Directional water transport Cotton fabric Anti-gravity directional liquid transportation Janus wettability
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Transforming liquid flow fuel cells to controllable reactors for highlyefficient oxidation of 5-hydroxymethylfurfural to 2, 5-furandicarboxylic acid at low temperature
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作者 Ye Qiang Xi Liu +2 位作者 Denghao Ouyang Zhao Jiang Xuebing Zhao 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2024年第3期621-631,I0014,共12页
Highly-efficient oxidation of 5-hydroxymethylfurtural(HMF) to 2,5-furandicarboxylic acid(FDCA) at low temperature with air as the oxidant is still challenging.Herein,inspired by the respirato ry electron transport cha... Highly-efficient oxidation of 5-hydroxymethylfurtural(HMF) to 2,5-furandicarboxylic acid(FDCA) at low temperature with air as the oxidant is still challenging.Herein,inspired by the respirato ry electron transport chain(ETC) of living cells mediated by electron carriers,we constructed artificial ETCs and transformed liquid flow fuel cells(LFFCs) to flexible reactors for efficient oxidation of HMF to produce FDCA under mild conditions.This LFFC reactor employed an electrodeposition modified nickel foam as an anode to promote HMF oxidation and(VO_(2))_(2)SO_(4) as a cathode electron carrier to facilitate the electron transfer to air.The reaction rate could be easily controlled by selecting the anode catalyst,adjusting the external loading and changing the cathodic electron carrier or oxidants.A maximal power density of 44.9 mW cm^(-2) at room temperature was achieved,while for FDCA production,short-circuit condition was preferred to achieve quick transfer of electrons.For a single batch operation with 0.1 M initial HMF,FDCA yield reached 97.1%.By fed-batch operation,FDCA concentration reached 144.5 g L^(-1) with a total yield of 96%.Ni^(2+)/Ni^(3+) redox couple was the active species mediating the electron transfer,while both experimental and DFT calculation results indicated that HMFCA pathway was the preferred reaction mechanism. 展开更多
关键词 5-HYDROXYMETHYLFURFURAL 2 5-Furandicarboxylic acid ELECTRODEPOSITION Electron transport chain liquid flow fuel cell
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Advances in Liquid Crystal Epoxy:Molecular Structures,Thermal Conductivity,and Promising Applications in Thermal Management
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作者 Wenying Zhou Yun Wang +6 位作者 Fanrong Kong Weiwei Peng Yandong Wang Mengxue Yuan Xiaopeng Han Xiangrong Liu Bo Li 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2024年第4期315-343,共29页
Traditional heat conductive epoxy composites often fall short in meeting the escalating heat dissipation demands of large-power,high-frequency,and highvoltage insulating packaging applications,due to the challenge of ... Traditional heat conductive epoxy composites often fall short in meeting the escalating heat dissipation demands of large-power,high-frequency,and highvoltage insulating packaging applications,due to the challenge of achieving high thermal conductivity(k),desirable dielectric performance,and robust thermomechanical properties simultaneously.Liquid crystal epoxy(LCE)emerges as a unique epoxy,exhibiting inherently high k achieved through the self-assembly of mesogenic units into ordered structures.This characteristic enables liquid crystal epoxy to retain all the beneficial physical properties of pristine epoxy,while demonstrating a prominently enhanced k.As such,liquid crystal epoxy materials represent a promising solution for thermal management,with potential to tackle the critical issues and technical bottlenecks impeding the increasing miniaturization of microelectronic devices and electrical equipment.This article provides a comprehensive review on recent advances in liquid crystal epoxy,emphasizing the correlation between liquid crystal epoxy’s microscopic arrangement,organized mesoscopic domain,k,and relevant physical properties.The impacts of LC units and curing agents on the development of ordered structure are discussed,alongside the consequent effects on the k,dielectric,thermal,and other properties.External processing factors such as temperature and pressure and their influence on the formation and organization of structured domains are also evaluated.Finally,potential applications that could benefit from the emergence of liquid crystal epoxy are reviewed. 展开更多
关键词 intrinsically thermal conductive epoxy liquid crystal unit ordered structure phonon transport thermal conductivity
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Synthesis of New Aza-crown Ethers Containing Pyridine Ring and their Liquid Membrane Transport of Alkali Cations 被引量:3
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作者 Bin ZHAO Feng Qin WANG +1 位作者 Min XIA Lai Jin TIAN 《Chinese Chemical Letters》 SCIE CAS CSCD 2001年第1期31-34,共4页
Five new aza-crown ethers have been prepared by the condensation of 2,6-bis[(2-formylphenyl)oxymethyl] pyridine with different diamino compounds in hot methanol, the bis-Schiff bases without isolation were reduced wit... Five new aza-crown ethers have been prepared by the condensation of 2,6-bis[(2-formylphenyl)oxymethyl] pyridine with different diamino compounds in hot methanol, the bis-Schiff bases without isolation were reduced with NaBH4 to afford the corresponding aza-crown ethers. The liquid membrane transport or alkali cations using the five new macrocycles as the ion-carriers was also studied. 展开更多
关键词 Aza-crown ether MACROCYCLE RECEPTOR liquid membrane transport PICRATE
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Tb(III) Transport in Dispersion Supported Liquid Membrane System with D2EHPA as Carrier in Kerosene 被引量:2
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作者 PEI Liang YAO Bing-hua +1 位作者 WANG Li-ming MA Zhan-ying 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2011年第1期132-139,共8页
The transport of Tb(III) in dispersion supported liquid membrane(DSLM) with polyvinylidene fluoride membrane(PVDF) as the support and dispersion solution including HCl solution as the stripping solution and di(... The transport of Tb(III) in dispersion supported liquid membrane(DSLM) with polyvinylidene fluoride membrane(PVDF) as the support and dispersion solution including HCl solution as the stripping solution and di(2-ethylhexyl) phosphoric acid(D2EHPA) dissolved in kerosene as the membrane solution, has been studied. The effects of pH value, initial concentration of Tb(III) and different ionic strength in the feed phase, volume ratio of membrane solution to stripping solution, concentration of HCl solution, concentration of carrier, different stripping agents in the dispersion phase on the transport of Tb(III) have also been investigated, respectively. As a result, the optimum transport conditions of Tb(III) were obtained, i.e., the concentration of HCl solution was 4.0 mol/L, the concentration of D2EHPA was 0.16 mol/L, the volume ratio of membrane solution to stripping solution was 30:30 in the dispersion phase and pH value was 4.5 in the feed phase. Ionic strength had no obvious effect on the transport of Tb(III). Under the optimum conditions, the transport percentage of Tb(III) was up to 96.1% in a transport time of 35 min when the initial concentration of Tb(IIl) was 1.0× 10 -4 mol/L. The diffusion coefficient of Tb(III) in the membrane and the thickness of diffusion layer between feed phase and membrane phase were obtained and the values were 1.82×10 -8 m2/s and 5.61 um, respectively. The calculated results were in good agreement with the literature data. 展开更多
关键词 Dispersion supported liquid membrane Di(2-ethylhexyl) phosphoric acid Terbium(III) Dispersion phase transport flux transport percentage
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Study of Transport and Separation of Rare Earth Ions through the Emulsion Liquid Membrane of Bis(2,4,4-trimethylpentyl)phosphinic Acid-Span 80-Toluene 被引量:3
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作者 李克安 邹长英 +1 位作者 姚晓华 童沈阳 《Journal of Rare Earths》 SCIE EI CAS CSCD 1993年第4期241-245,共5页
It is indicated from a study of transport of rare earth ions through the emulsion liquid mem- brane of bis(2,4,4-trimethylpentyl)phosphinic acid-Span 80-toluene that transporting rare earth ions com- pletely and rapid... It is indicated from a study of transport of rare earth ions through the emulsion liquid mem- brane of bis(2,4,4-trimethylpentyl)phosphinic acid-Span 80-toluene that transporting rare earth ions com- pletely and rapidly was realized under the optimum experimental conditions:1.0×10^(-3)~3.0×10^(-3)mol/L bis(2,4,4-trimethylpentyl)phosphinic acid and 2%~4%(W/V)Span 80 in toluene solution as membrane phase,0.50~2.0 mol/L HCl as inner phase,rare earth ion solutions with pH 3.5~5.0 as outer phase.Ac- cording to the differences of transport behavior for rare earth ions,it is possible to separate rare earth ions from mixed solutions of rare earth ions by this liquid membrane system. 展开更多
关键词 Emulsion liquid membrane Ionic transport Rare earth separation Bis(2 4 4-trimethylpentyl)phosphinic acid(Cyanex 272)
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Synthesis of Bis-substituted Calix[4]arenes and Mechanism of Substituents Effect on K^+ and Hg^(2+) Ions Transports through Liquid Membrane 被引量:3
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作者 陶旭晨 李磊 何瑾馨 《Journal of Donghua University(English Edition)》 EI CAS 2011年第6期621-623,共3页
New calix[4]arene derivatives containing nitro,amino and benzoyl in the upper and lower rims of molecule were successfully synthesized.Their effectiveness towards K+ and Hg2+ across bubbling liquid membrane(BLM) was e... New calix[4]arene derivatives containing nitro,amino and benzoyl in the upper and lower rims of molecule were successfully synthesized.Their effectiveness towards K+ and Hg2+ across bubbling liquid membrane(BLM) was examined.For K+ ion transfer,preserving phenolic hydroxyl in the lower rim of calix[4]arene could enhance its transport ability.When benzoyl replaced phenolic hydroxyl,the transport would fall off,because benzoyl caused steric hindrance on the K+ transfer.The study also revealed that the group having the electron-withdrawing conjugative effect on phenolic hydroxyl,-NO2 in the upper rim of calix[4]arene,made transport ability of calix[4]arene fall off.On the contrary,-NH2 that had electron-repulsive conjugative effect enhanced the transport ability of the compound.For Hg2+ ion,only -NH2 in the upper rim of calix[4]arenes had high affinity for it and contributed to Hg2+ transfer.Transport amount of Hg2+ ion increased with increasing calix[4]arene5 concentration and ΔpH in BLM. 展开更多
关键词 arene derivatives substituting groups liquid mettubrane transport polymer MECHANISM
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Germanium transport across supported liquid membrane with Cyanex 923: Mathematical modeling 被引量:1
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作者 Hossein KAMRAN HAGHIGHI Mehdi IRANNAJAD Ana MARIA SASTRE 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2019年第9期1956-1966,共11页
A mathematical model was developed to monitor the facilitated transport of germanium(IV) from oxalic acid solutions through a flat sheet supported liquid membrane(FSSLM) containing four trialkylphosphine oxides(Cyanex... A mathematical model was developed to monitor the facilitated transport of germanium(IV) from oxalic acid solutions through a flat sheet supported liquid membrane(FSSLM) containing four trialkylphosphine oxides(Cyanex 923). The FSSLM modeling was based on the extraction constant(Kext) calculated from the liquid-liquid extraction(LLX) modeling. The LLX model presented a reliable calculation of the extraction constant(Kex= 2.057×103 L/mol4). The FSSLM model was solved using Matlab■ software according to extraction constant, Fick’s law, and diffusional principles. The model predicts the overall mass transfer coefficient(Korg) to be 3.84 cm/s. Using this value, diffusion coefficients(Dm) for various Cyanex 923 concentrations of 0.126, 0.252, 0.378, 0.505, 0.631 and 0.757 mol/L are found to be 8.50×10^-4, 4.30×10^-4, 1.87×10^-4, 5.87×10^-5, 2.57×10^-5, 2.09×10^-5 cm2/s, respectively. The results show that the diffusion rate of the current study is approximately more than that of similar FSSLM systems containing Cyanex 923 used to transport various metals. The modeling values are in good agreement with the experimental data, showing the good reliability of the mathematical model. 展开更多
关键词 supported liquid membrane Cyanex 923 GERMANIUM transport mathematical modeling
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Semi-interpenetrating-network all-solid-state polymer electrolyte with liquid crystal constructing efficient ion transport channels for flexible solid lithium-metal batteries 被引量:1
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作者 Qinghui Zeng Yu Lu +9 位作者 Pingping Chen Zhenfeng Li Xin Wen Wen Wen Yu Liu Shuping Zhang Hailei Zhao Henghui Zhou Zhi-xiang Wang Liaoyun Zhang 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第4期157-167,共11页
The development of the solid-state polymer electrolytes (SPEs) for Li-ion batteries (LIBs) can effectively address the hidden safety issues of commercially used liquid electrolytes.Nevertheless,the unsatisfactory room... The development of the solid-state polymer electrolytes (SPEs) for Li-ion batteries (LIBs) can effectively address the hidden safety issues of commercially used liquid electrolytes.Nevertheless,the unsatisfactory room temperature ion conductivity and inferior mechanical strength for linear PEO-based SPEs are still the immense obstacles impeding the further applications of SPEs for large-scale commercialization.Herein,we fabricate a series of semi-interpenetrating-network (semi-IPN) polymer electrolytes based on a novel liquid crystal (C6M LC) and poly(ethylene glycol) diglycidyl ether (PEGDE) via UV-irradiation at the first time.The LCs not only highly improve the mechanical properties of electrolyte membranes via the construction of network structure with PEGDE,but also create stable ion transport channels for ion conduction.As a result,a free-standing flexible SPE shows outstanding ionic conductivity(5.93×10^(-5) S cm^(-1) at 30℃),a very wide electrochemical stability window of 5.5 V,and excellent thermal stability at thermal decomposition temperatures above 360℃ as well as the capacity of suppressing lithium dendrite growth.Moreover,the LiFePO_(4)/Li battery assembled with the semi-IPN electrolyte membranes exhibits good cycle performance and admirable reversible specific capacity.This work highlights the obvious advantages of LCs applied to the electrolyte for the advanced solid lithium battery. 展开更多
关键词 Solid-state polymer electrolyte liquid crystal Semi-interpenetrating-network Ion transport channels Lithium battery
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Transports of K^+,Ca^(2+) Ions in Liquid Membrane with Calixarene Derivatives as Carriers 被引量:1
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作者 李磊 朱琪琪 +1 位作者 咸春颖 郑利民 《Journal of Donghua University(English Edition)》 EI CAS 2006年第3期67-70,共4页
A few derivatives of calixarenes have been synthesized and characterized by IR, ^1H NNtR, thermal and elemental analysis. The transport of potassium or calcium ion through the liquid membrane, in which the derivatives... A few derivatives of calixarenes have been synthesized and characterized by IR, ^1H NNtR, thermal and elemental analysis. The transport of potassium or calcium ion through the liquid membrane, in which the derivatives act as carriers, has been studied. The electron-effect of the substituent on the upper rim of calixarene possesses important effect on the net transport of metal ions. The p- tert-butylcalix[4]arene is the best carrier of calcium ion, compared with p-tert-calix[4]arene(n = 4, 6, 8). The ptert-butylcalix[4]arene acid is better than p-tert-butylcalix [4]arene. The calixr43crown is the best carrier of calcium ions of all the carriers. The pH gradient between the source and receiving phase, and the concentration of K^+ , Ca^2+ ions in the source phase affect mainly transport. After the transport, the pH value of the source phase is found to be decreased, once the calix [n ] arene derivatives act as carrier. But it is not the case for the calix[n] crowns. It might be interpreted as the result of their different mechanisms. 展开更多
关键词 CALIXARENE liquid membrane transport electrorreffect.
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CFD simulation of effect of anode configuration on gas–liquid flow and alumina transport process in an aluminum reduction cell 被引量:3
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作者 詹水清 李茂 +2 位作者 周孑民 杨建红 周益文 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2482-2492,共11页
Numerical simulations of gas–liquid two-phase flow and alumina transport process in an aluminum reduction cell were conducted to investigate the effects of anode configurations on the bath flow, gas volume fraction a... Numerical simulations of gas–liquid two-phase flow and alumina transport process in an aluminum reduction cell were conducted to investigate the effects of anode configurations on the bath flow, gas volume fraction and alumina content distributions. An Euler–Euler two-fluid model was employed coupled with a species transport equation for alumina content. Three different anode configurations such as anode without a slot, anode with a longitudinal slot and anode with a transversal slot were studied in the simulation. The simulation results clearly show that the slots can reduce the bath velocity and promote the releasing of the anode gas, but can not contribute to the uniformity of the alumina content. Comparisons of the effects between the longitudinal and transversal slots indicate that the longitudinal slot is better in terms of gas–liquid flow but is disadvantageous for alumina mixing and transport process due to a decrease of anode gas under the anode bottom surface. It is demonstrated from the simulations that the mixing and transfer characteristics of alumina are controlled to great extent by the anode gas forces while the electromagnetic forces(EMFs) play the second role. 展开更多
关键词 aluminum reduction cell anode configuration gas–liquid flow alumina transport process simulation alumina content distribution
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Effects of water on the structure and transport properties of room temperature ionic liquids and concentrated electrolyte solutions
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作者 Jinbing Zhang Qiang Wang Zexian Cao 《Chinese Physics B》 SCIE EI CAS CSCD 2020年第8期24-32,共9页
Transport properties and the associated structural heterogeneity of room temperature aqueous ionic liquids and especially of super-concentrated electrolyte aqueous solutions have received increasing attention,due to t... Transport properties and the associated structural heterogeneity of room temperature aqueous ionic liquids and especially of super-concentrated electrolyte aqueous solutions have received increasing attention,due to their potential application in ionic battery.This paper briefly reviews the results reported mainly since 2010 about the liquid-liquid separation,aggregation of polar and apolar domains in neat RTILs,and solvent clusters and 3D networks chiefly constructed by anions in super-concentrated electrolyte solutions.At the same time,the dominating effect of desolvation process of metal ions at electrode/electrolyte interface upon the transport of metal ions is stressed.This paper also presents the current understanding of how water affects the anion-cation interaction,structural heterogeneities,the structure of primary coordination sheath of metal ions and consequently their transport properties in free water-poor electrolytes. 展开更多
关键词 super-concentrated electrolyte solutions room temperature ionic liquids water effect structural heterogeneity transport property
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Poly(Ionic Liquid) as an Anion Exchange Membrane for a 3.3 V Copper–Lithium Battery
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作者 Kaiming Xue Yu Zhao +1 位作者 Pui-Kit Lee Denis Y.W.Yu 《Energy & Environmental Materials》 SCIE EI CAS CSCD 2023年第4期89-97,共9页
Metal–metal battery bears great potential for next-generation large-scale energy storage system because of its simple manufacture process and low production cost.However,the cross-over of metal cations from the catho... Metal–metal battery bears great potential for next-generation large-scale energy storage system because of its simple manufacture process and low production cost.However,the cross-over of metal cations from the cathode to the anode causes a loss in capacity and influences battery stability.Herein,a coating of poly(ionic liquid)(PIL)with poly(diallyldimethylammonium bis(trifluoromethanesulfonyl)imide)(PDADMA^(+)TFSI^(−))on a commercial polypropylene(PP)separator serves as an anion exchange membrane for a 3.3 V copper–lithium battery.The PIL has a positively charged polymer backbone that can block the migration of copper ions,thus improving Coulombic efficiency,long-term cycling stability and inhibiting self-discharge of the battery.It can also facilitate the conduction of anions through the membrane and reduce polarization,especially for fast charging/discharging.Bruce-Vincent method gives the transport number in the electrolyte to be 0.25 and 0.04 for PP separator without and with PIL coating,respectively.This suggests that the PIL layer reduces the contribution of the internal current due to cation transport.The use of PIL as a coating layer for commercial PP separator is a cost-effective way to improve overall electrochemical performance of copper–lithium batteries.Compared to PP and polyacrylic acid(PAA)/PP separators,the PIL/PP membrane raises the Coulombic efficiency to 99%and decreases the average discharge voltage drop to about 0.09 V when the current density is increased from 0.1 to 1 mA cm^(−2). 展开更多
关键词 anion exchange membrane copper cathode cycle stability ion transport metal-metal battery poly(ionic liquid)
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单气泡气液传质系数测量实验系统开发
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作者 蔡子琦 王锐婷 +1 位作者 包雨云 马鑫 《实验室研究与探索》 CAS 北大核心 2024年第8期1-4,共4页
传递过程原理是化学工程与工艺专业的核心课程之一,其中质量传递相关知识是该课程的重点和难点,而理论和实践相结合的方法是提升课堂教学效果的可行途径。设计并开发了一套基于方腔流的单气泡气液传质系数测量实验系统。将质量传递的基... 传递过程原理是化学工程与工艺专业的核心课程之一,其中质量传递相关知识是该课程的重点和难点,而理论和实践相结合的方法是提升课堂教学效果的可行途径。设计并开发了一套基于方腔流的单气泡气液传质系数测量实验系统。将质量传递的基础理论知识和计算机图像识别技术充分结合,探索气液传质过程的影响因素。实验结果表明,增大循环体积流量和提高温度均有利于气液传质。该实验可作为传递过程原理课程理论学习的有益补充,培养学生对化工过程典型现象的科学思考和分析能力。 展开更多
关键词 气液传质 传递过程原理 气泡 方腔流 实验教学
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上海软黏土的非水相有机液体固结渗透仪渗透试验
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作者 高彦斌 居奕含 《同济大学学报(自然科学版)》 EI CAS CSCD 北大核心 2024年第10期1543-1550,共8页
在饱和黏性土的非水相有机液体(NAPL)渗透试验中,NAPL-土的相互作用易导致土样收缩而产生侧壁渗漏,影响试验结果的可靠性。采用固结渗透仪开展了上海淤泥质黏土的煤油渗透试验,研究竖向固结压力pv的大小和土样结构性对侧壁渗漏以及试验... 在饱和黏性土的非水相有机液体(NAPL)渗透试验中,NAPL-土的相互作用易导致土样收缩而产生侧壁渗漏,影响试验结果的可靠性。采用固结渗透仪开展了上海淤泥质黏土的煤油渗透试验,研究竖向固结压力pv的大小和土样结构性对侧壁渗漏以及试验结果的影响。研究结果表明,絮凝结构的原状土样在pv为50 kPa、200 kPa下均存在侧壁渗漏,测得的渗透系数偏大,在pv=400 kPa下可得到可靠的试验结果。对于分散结构的重塑土,在pv=400 kPa下仍然存在侧壁渗漏。根据原状土样的孔径分布以及在pv=400 kPa下的渗透试验结果,讨论了上海淤泥质黏土中NAPL渗透的基本特性,对了解沿海软黏土中NAPL类污染物的迁移特征有指导价值。 展开更多
关键词 非水相有机液体 渗透试验 饱和黏性土 侧壁渗漏 固结渗透仪
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液氢制-储-运-加关键技术发展现状及展望
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作者 张杰 罗雪鹏 《发电技术》 CSCD 2024年第5期888-898,共11页
【目的】液态储运是实现氢气大规模、远距离储运,保证氢能规模化应用的有效途径之一。目前,我国针对液氢制备、储运及加注领域的研究相对较少,为此,对该领域关键技术发展现状进行了分析。【方法】对比了高压气态、液态及固态储氢技术的... 【目的】液态储运是实现氢气大规模、远距离储运,保证氢能规模化应用的有效途径之一。目前,我国针对液氢制备、储运及加注领域的研究相对较少,为此,对该领域关键技术发展现状进行了分析。【方法】对比了高压气态、液态及固态储氢技术的优缺点;综述了液氢制备过程中的主要液化方法、液氢储存绝热技术与关键材料;分析了不同液氢运输方式与装备的特点;梳理了液氢加氢站建设情况,并对比了液氢加注技术;阐述了液氢主要应用领域和产业化模式,并对近年来我国液氢储运专利技术进行了统计分析。【结论】提出了我国液氢储运发展面临的“卡脖子”难点及亟需技术攻关的方向。研究结果可为液氢关键技术的研究与装备的研制提供参考。 展开更多
关键词 氢能 液氢 液化制取 液氢储运 液氢加注 储罐
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旋转水力提升多金属结核运动特性数值模拟
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作者 陈云 杜燕连 +2 位作者 李萌 梁栋 沈义俊 《矿冶工程》 CAS 北大核心 2024年第2期13-17,共5页
采用CFD-DEM耦合方法对多金属结核提升进行模拟,研究了垂直管道中不同旋转流场旋流比对水力提升多金属结核输运特性的影响。结果表明,随着旋转流场旋流比增大,旋转强度显著增强,流体流速最大值增大,颗粒群轴向平均速度增大。旋转流场的... 采用CFD-DEM耦合方法对多金属结核提升进行模拟,研究了垂直管道中不同旋转流场旋流比对水力提升多金属结核输运特性的影响。结果表明,随着旋转流场旋流比增大,旋转强度显著增强,流体流速最大值增大,颗粒群轴向平均速度增大。旋转流场的旋转强度明显影响管道内颗粒的速度分布:速度大的颗粒逐步分布在管壁周围,速度较小的颗粒分布在管道中心处。旋转流场可降低颗粒群局部浓度,有利于降低因颗粒滞留效应引起局部浓度升高造成的输送管堵塞风险。 展开更多
关键词 深海采矿 多金属结核 液固双相流 水力提升 管道输送 旋流比 CFD-DEM耦合
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液氢储运技术发展现状与展望 被引量:8
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作者 王鑫 陈叔平 朱鸣 《太阳能学报》 EI CAS CSCD 北大核心 2024年第1期500-514,共15页
液氢具有储运密度大、能量密度高的特点,应用前景广阔,受限于液氢的物理特性,低温储运技术制约了液氢大规模应用。该文对当前国内外固定及移动式液氢储存设备进行调研,针对目前所面临的技术难点,从储氢材料、低温绝热、热力特性、配套... 液氢具有储运密度大、能量密度高的特点,应用前景广阔,受限于液氢的物理特性,低温储运技术制约了液氢大规模应用。该文对当前国内外固定及移动式液氢储存设备进行调研,针对目前所面临的技术难点,从储氢材料、低温绝热、热力特性、配套设备、标准体系等方面总结液氢储运环节的关键技术,分析液氢储运现状与发展趋势,提出未来液氢储运技术重点发展方向,能有力促进中国高性能液氢储运设备研发,保障未来液氢规模化安全使用。 展开更多
关键词 液氢 储运技术 低温绝热 储氢容器 结构设计
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强迫振动下垂直管道固液两相流数值模拟研究 被引量:1
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作者 万初一 范祖相 +3 位作者 周岱 韩兆龙 朱宏博 包艳 《力学学报》 EI CAS CSCD 北大核心 2024年第3期586-596,共11页
粗颗粒固液两相流的管道输运适用于深海采矿工程.扬矿管道在流致振动作用下的内部固液两相流的输运机理尚未被完全探究.因此,采用计算流体动力学(CFD)与离散元(DEM)耦合的方法,分析不同粒径、不同振动频率与振幅和不同浓度工况下在强迫... 粗颗粒固液两相流的管道输运适用于深海采矿工程.扬矿管道在流致振动作用下的内部固液两相流的输运机理尚未被完全探究.因此,采用计算流体动力学(CFD)与离散元(DEM)耦合的方法,分析不同粒径、不同振动频率与振幅和不同浓度工况下在强迫振动管道中的粗颗粒动力学特性以及管内流场变化特性.其中,将管道的振动简化为一维径向振动,将实际工况中的柔性管道假定为刚体管道.研究表明,在管道振动过程中,大颗粒相比小颗粒的惯性更大,而流体也需要更大的速度产生更大的曳力推动大颗粒,导致更大的轴向流场速度以及更大的轴向颗粒速度.随着粒径增大,大颗粒对流场的扰动更大,导致流体与壁面间的作用力更大;并且大颗粒与壁面间的碰撞和摩擦作用力更大,因此壁面剪应力增大.同时,大颗粒与流体间摩擦损耗的能量也更大.因此管道需要更大的能量将其输运,导致振动管道内的压降增加.增大管道振动频率与振幅会导致颗粒在截面上的分布更加分散,同时对流场扰动更大,然而对轴向流场速度的影响相对较小.增大进料浓度使颗粒间、颗粒与流场间的作用更加频繁,导致颗粒分布发生变化,并导致更大的轴向流场速度和湍动能. 展开更多
关键词 深海采矿 CFD-DEM 固液两相流 管道输运 强迫振动
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