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Novel thermal interface materials based on mesocarbon microbeads with a high through-plane thermal conductivity
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作者 SUN Zhi-peng MA Cheng +2 位作者 WANG Ji-tong QIAO Wen-ming LING Li-cheng 《新型炭材料(中英文)》 北大核心 2025年第2期440-455,共16页
The rapid development of the information era has led to in-creased power consumption,which generates more heat.This requires more efficient thermal management systems,with the most direct ap-proach being the developme... The rapid development of the information era has led to in-creased power consumption,which generates more heat.This requires more efficient thermal management systems,with the most direct ap-proach being the development of su-perior thermal interface materials(TIMs).Mesocarbon microbeads(MCMBs)have several desirable properties for this purpose,includ-ing high thermal conductivity and excellent thermal stability.Although their thermal conductivity(K)may not be exceptional among all carbon materials,their ease of production and low cost make them ideal filler materials for developing a new generation of carbon-based TIMs.We report the fabrication of high-performance TIMs by incorporating MCMBs in a polyimide(PI)framework,producing highly graphitized PI/MCMB(PM)foams and anisotropic polydimethylsiloxane/PM(PDMS/PM)composites with a high thermal conductivity using directional freezing and high-temperature thermal annealing.The resulting materials had a high through-plane(TP)K of 15.926 W·m^(−1)·K^(−1),4.83 times that of conventional thermally conductive silicone pads and 88.5 times higher than that of pure PDMS.The composites had excellent mechanical properties and thermal stability,meeting the de-mands of modern electronic products for integration,multi-functionality,and miniaturization. 展开更多
关键词 Thermal interface material Mesocarbon microbeads Through-plane thermal conductivity
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Constructing graphite-CeO_(2)interfaces to enhance the photothermal activity for solar-driven dry reforming of methane
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作者 LI Ruitao GONG Kun +3 位作者 DAI Yuanyuan NIU Qiang LIN Tiejun ZHONG Liangshu 《燃料化学学报(中英文)》 北大核心 2025年第8期1137-1147,共11页
CeO_(2) based semiconductor are widely used in solar-driven photothermal catalytic dry reforming of methane(DRM)reaction,but still suffer from low activity and low light utilization efficiency.This study developed gra... CeO_(2) based semiconductor are widely used in solar-driven photothermal catalytic dry reforming of methane(DRM)reaction,but still suffer from low activity and low light utilization efficiency.This study developed graphite-CeO_(2) interfaces to enhance solar-driven photothermal catalytic DRM.Compared with carbon nanotubes-modified CeO_(2)(CeO_(2)-CNT),graphite-modified CeO_(2)(CeO_(2)-GRA)constructed graphite-CeO_(2) interfaces with distortion in CeO_(2),leading to the formation abundant oxygen vacancies.These graphite-CeO_(2) interfaces with oxygen vacancies enhanced optical absorption and promoted the generation and separation of photogenerated carriers.The high endothermic capacity of graphite elevated the catalyst surface temperature from 592.1−691.3℃,boosting light-to-thermal conversion.The synergy between photogenerated carriers and localized heat enabled Ni/CeO_(2)-GRA to achieve a CO production rate of 9985.6 mmol/(g·h)(vs 7192.4 mmol/(g·h)for Ni/CeO_(2))and a light-to-fuel efficiency of 21.8%(vs 13.8%for Ni/CeO_(2)).This work provides insights for designing graphite-semiconductor interfaces to advance photothermal catalytic efficiency. 展开更多
关键词 dry reforming of methane photothermal catalysis Ceo_(2) GRAPHITE interfaceS
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Designing Conformal Electrode-electrolyte Interface by Semi-solid NaK Anode for Sodium Metal Batteries
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作者 YIN Chunsen CHEN Zeyuan WANG Xiuli 《材料科学与工程学报》 北大核心 2025年第2期191-201,共11页
Solid-state Na metal batteries(SSNBs),known for the low cost,high safety,and high energy density,hold a significant position in the next generation of rechargeable batteries.However,the urgent challenge of poor interf... Solid-state Na metal batteries(SSNBs),known for the low cost,high safety,and high energy density,hold a significant position in the next generation of rechargeable batteries.However,the urgent challenge of poor interfacial contact in solid-state electrolytes has hindered the commercialization of SSNBs.Driven by the concept of intimate electrode-electrolyte interface design,this study employs a combination of sodium-potassium(NaK)alloy and carbon nanotubes to prepare a semi-solid NaK(NKC)anode.Unlike traditional Na anodes,the paintable paste-like NKC anode exhibits superior adhesion and interface compatibility with both current collectors and gel electrolytes,significantly enhancing the physical contact of the electrode-electrolyte interface.Additionally,the filling of SiO_(2) nanoparticles improves the wettability of NaK alloy on gel polymer electrolytes,further achieving a conformal interface contact.Consequently,the overpotential of the NKC symmetric cell is markedly lower than that of the Na symmetric cell when subjected to a long cycle of 300 hrs.The full cell coupled with Na_(3)V_(2)(PO_(4))_(2) cathodes had an initial discharge capacity of 106.8 mAh·g^(-1) with a capacity retention of 89.61%after 300 cycles,and a high discharge capacity of 88.1 mAh·g^(-1) even at a high rate of 10 C.The outstanding electrochemical performance highlights the promising application potential of the NKC electrode. 展开更多
关键词 Solid-state Na metal battery NaK alloy Gel electrolyte Electrode-electrolyte interface dendrite free anode
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Shear mechanical properties and debonding failure mechanisms of bolt-resin-rock anchoring system with anisotropic interfaces
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作者 NIE Xin-xin YIN Qian +7 位作者 TAO Zhi-gang GUO Long-ji RIABOKON Evgenii ZHU De-fu XIE Liang-fu ZHA Wen-hua WANG Lin-feng REN Ya-jun 《Journal of Central South University》 2025年第7期2535-2552,共18页
This study investigates the shear mechanical responses and debonding failure mechanisms of anchoring systems comprising three anisotropic media and two anisotropic interfaces under controlled boundary conditions of co... This study investigates the shear mechanical responses and debonding failure mechanisms of anchoring systems comprising three anisotropic media and two anisotropic interfaces under controlled boundary conditions of constant normal load(F_(s)),constant normal stiffness(K),and shear rate(v).A systematic analysis of shear mechanical properties,the evolution of maximum principal strain field,and damage characteristics along shear failure surface is presented.Results from direct shear tests demonstrate that initial shear slip diminishes with increasing F_(s)and K,attributed to the normal constraint strengthening effect,while an increase in v enhances initial shear slip due to attenuated deformation coordination and stress transfer.As F_(s)increases from 7.5 to 120 kN,K from 0 to 12 MPa/mm,and v from 0.1 to 2 mm/min,the peak shear load increases by 210.32%and 80.16%with rising F_(s)and K,respectively,while decreases by 38.57%with increasing v.Correspondingly,the shear modulus exhibits,respectively,a 135.29%and 177.06%increase with rising F_(s)and K,and a 37.03%decrease with larger v.Initial shear dilation is identified as marking the formation of shear failure surface along anisotropic interfaces,resulting from the combined shear actions at the resin bolt interface,where resin undergoes shear by bolt surface protrusions,and the resin-rock interface,where mutual shear occurs between resin and rock.With increasing F_(s)and K and decreasing v,the location of the shear failure surface shifts from the resin-rock interface to the resin-bolt interface,accompanied by a transition in failure mode from tensile rupture of resin to shear off at the resin surface. 展开更多
关键词 anchoring system anisotropic interfaces shear mechanical properties strain field evolution debonding failure
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Failure behavior of rock and steel slag cemented paste backfill composite structures under uniaxial compression:Effects of interface angle and steel slag content
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作者 HAO Jian-shuai ZHOU Zi-han +1 位作者 CHEN Zhong-hui CHE Zeng-hui 《Journal of Central South University》 2025年第7期2679-2695,共17页
The stability of the“surrounding rock-backfill”com posite system is crucial for the safety of mining stopes.This study systematically investigates the effects of steel slag(SS)content and interface angle on the stre... The stability of the“surrounding rock-backfill”com posite system is crucial for the safety of mining stopes.This study systematically investigates the effects of steel slag(SS)content and interface angle on the strength and failure characteristics of rock and SS-cemented paste backfill composite specimens(RBCS)through uniaxial compression strength tests(UCS),acoustic emission systems(AE),and 3 D digital image correlation monitoring technology(3 D-DIC).The intrinsic mechanism by which SS content influences the strength of SS-CPB was revealed through an analysis of its hydration reaction degree and microstructural characteristics under varying SS content.Moreover,a theoretical strength model incorporating different interface angles was developed to explore the impact of interface inclination on failure modes and mechanical strength.The main conclusions are as follows:The incorporation of SS enhances the plastic characteristics of RBCS and reduces its brittleness,with the increase of SS content,the stress-strain curve of RBCS in the“staircase-like”stag e becomes smoother;When the interface angle is 45°,the RBCS stress-strain curve exhibits a bimodal feature,and the failure mode changes from Y-shaped fractures to interface and axial splitting;The addition of SS results in a reduction of hydration products such as Ca(OH)_(2) in the backfill cementing system and an increase in harmful pores,which weakens the bonding performance and strength of RBCS,and the SS content should not exceed 45%;As the interface angle increases,the strength of RBCS decreases,and the critical interface slip angle decreases first and then increases with the increase in the E S/E R ratio.This study provides technical references for the large-scale application of SS in mine backfill. 展开更多
关键词 steel slag-cemented paste backfill interface angle rock-backfill composite structures failure mode
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Preparation and interface state of phosphate tailing-based geopolymers 被引量:2
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作者 ZHANG Shou-xun XIE Xian +4 位作者 XIE Rui-qi TONG Xiong WU Yu-yao LI Jia-wen LI Yue 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第6期1900-1914,共15页
The long-term storage of phosphate tailings will occupy a large amount of land,pollute soil and groundwater,thus,it is crucial to achieve the harmless disposal of phosphate tailings.In this study,high-performance geop... The long-term storage of phosphate tailings will occupy a large amount of land,pollute soil and groundwater,thus,it is crucial to achieve the harmless disposal of phosphate tailings.In this study,high-performance geopolymers with compressive strength of 38.8 MPa were prepared by using phosphate tailings as the main raw material,fly ash as the active silicon-aluminum material,and water glass as the alkaline activator.The solid content of phosphate tailings and fly ash was 60%and 40%,respectively,and the water-cement ratio was 0.22.The results of XRD,FTIR,SEM-EDS and XPS show that the reactivity of phosphate tailings with alkaline activator is weak,and the silicon-aluminum material can react with alkaline activator to form zeolite and gel,and encapsulate/cover the phosphate tailings to form a dense phosphate tailings-based geopolymer.During the formation of geopolymers,part of the aluminum-oxygen tetrahedron replaced the silicon-oxygen tetrahedron,causing the polycondensation reaction between geopolymers and increasing the strength of geopolymers.The leaching toxicity test results show that the geopolymer has a good solid sealing effect on heavy metal ions.The preparation of geopolymer from phosphate tailings is an important way to alleviate the storage pressure and realize the resource utilization of phosphate tailings. 展开更多
关键词 phosphate tailing GEoPoLYMER interface state toxicity leaching
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Optimization of mechanical and safety properties by designing interface characteristics within energetic composites
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作者 Guijun Wang Yanqing Wu +2 位作者 Kun Yang Quanzhi Xia Fenglei Huang 《Defence Technology(防务技术)》 SCIE EI CAS CSCD 2024年第12期59-72,共14页
The interfacial structure has an important effect on the mechanical properties and safety of the energetic material.In this work,a mesostructure model reflecting the real internal structure of PBX is established throu... The interfacial structure has an important effect on the mechanical properties and safety of the energetic material.In this work,a mesostructure model reflecting the real internal structure of PBX is established through image digital modeling and vectorization processing technology.The microscopic molecular structure model of PBX is constructed by molecular dynamics,and the interface bonding energy is calculated and transferred to the mesostructure model.Numerical simulations are used to study the influence of the interface roughness on the dynamic compression and impact ignition response of PBX,and to regulate and optimize the mechanical properties and safety of the explosive to obtain the optimal design of the surface roughness of the explosive crystal.The results show that the critical hot spot density of PBX ignition under impact loading is 0.68 mm^(-2).The improvement of crystal surface roughness can improve the mechanical properties of materials,but at the same time it can improve the impact ignition sensitivity and reduce the safety of materials.The optimal friction coefficient range for the crystal surface that satisfies both the mechanical properties and safety of PBX is 0.06-0.12.This work can provide a reference basis for the formulation design and production processing of energetic materials. 展开更多
关键词 Polymer-bonded explosives interface roughness Mechanical properties Hot spot Mesostructure optimization
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In-situ thermal Raman mapping and stress analysis of CNT/CF/epoxy interfaces
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作者 HE Jing-zong CHEN Shi +2 位作者 MA Zheng-kun LU Yong-gen WU Qi-lin 《新型炭材料(中英文)》 SCIE EI CAS CSCD 北大核心 2024年第4期703-714,共12页
A study of the interfacial behavior and internal thermal stress distribution in fiber-reinforced composites is essential to assess their performance and reliability.CNT/carbon fiber(CF)hybrid fibers were constructed u... A study of the interfacial behavior and internal thermal stress distribution in fiber-reinforced composites is essential to assess their performance and reliability.CNT/carbon fiber(CF)hybrid fibers were constructed using electrophoretic deposition.The interfacial properties of CF/epoxy and CNT/CF/epoxy composites were statistically investigated and compared using in-situ thermal Raman mapping by dispersing CNTs as a Raman sensing medium(CNT_(R))in a resin.The associated local thermal stress changes can be simulated by capturing the G'band position distribution of CNT_(R) in the epoxy at different temperatures.It was found that the G'band shifted to lower positions with increasing temperature,reaching a maximum difference of 2.43 cm^(−1) at 100℃.The interfacial bonding between CNT/CF and the matrix and the stress distribution and changes during heat treatment(20-100℃)were investig-ated in detail.This work is important for studying thermal stress in fiber-reinforced composites by in-situ thermal Raman mapping technology. 展开更多
关键词 Thermal Raman mapping Stress distribution Carbon fiber Carbon nanotube interface
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Experimental and numerical analysis on interface damage ofslab track under freeze-thaw cycles
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作者 REN Juan-juan DU Wei +2 位作者 YE Wen-long XU Xue-shan DENG Shi-jie 《Journal of Central South University》 SCIE EI CAS CSCD 2024年第10期3782-3806,共25页
The interface of slab track laid in cold regions is prone to debonding under the coupling of freeze-thaw cyclesand temperature loads.Based on the composite specimen tests,the parameters of cohesive zone model were obt... The interface of slab track laid in cold regions is prone to debonding under the coupling of freeze-thaw cyclesand temperature loads.Based on the composite specimen tests,the parameters of cohesive zone model were obtained andused in a simulation model of CRTS III prefabricated slab track to study the interlayer damage.The results show that 1)the digital image correlation(DIC)technique can accurately capture the strain field changes on the interface of compositespecimens under splitting and shear loading;2)when the temperature gradient is−40℃/m−60℃/m,the interfacedamage of the slab track is minimal and presents different patterns of expansion under positive and negative temperaturegradients,each corresponding to damage of the cohesive element dominated by shear stress and normal tensile stress,respectively;3)the reduction of the elastic modulus at the concrete base after freeze-thaw inhibits interface damage andleads to a higher starting temperature gradient load,but cracking can occur on the concrete base after 150 freeze-thaws.For this reason,in the light of damage control of both the interface and concrete base,the elastic modulus of the concretebase is 54%or over that without freeze-thaw cycles. 展开更多
关键词 CRTS III prefabricated slab track freeze-thaw cycle bonding performance cohesive zone model interface damage
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Designing Conformal Electrode-electrolyte Interface by Semi-solid NaK Anode for Sodium Metal Batteries
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作者 YIN Chunsen CHEN Zeyuan WANG Xiuli 《材料科学与工程学报》 CAS CSCD 北大核心 2024年第4期533-543,共11页
Solid-state Na metal batteries(SSNBs),known for its low cost,high safety,and high energy density,hold a significant position in the next generation of rechargeable batteries.However,the urgent challenge of poor interf... Solid-state Na metal batteries(SSNBs),known for its low cost,high safety,and high energy density,hold a significant position in the next generation of rechargeable batteries.However,the urgent challenge of poor interfacial contact in solid-state electrolytes has hindered the commercialization of SSNBs.Driven by the concept of intimate electrode-electrolyte interface design,this study employs a combination of NaK alloy and carbon nanotubes to prepare a semi-solid NaK(NKC)anode.Unlike traditional Na anodes,the paintable paste-like NKC anode exhibits superior adhesion and interface compatibility with both current collectors and gel electrolytes,significantly enhancing the intimate contact of electrode-electrolyte interface.Additionally,the filling of SiO_(2)nanoparticles improves the wettability of NaK alloy on gel polymer electrolytes,further achieving a conformal interface contact.Consequently,the overpotential of the NKC symmetric cell is markedly lower than that of the Na symmetric cell when subjected to a long cycle of 300 h.The full cell coupled with Na_(3)V_(3)(PO_(4))_(2)cathodes had an initial discharge capacity of 106.8 mAh·g^(-1)with a capacity retention of 89.61%after 300 cycles,and a high discharge capacity of 88.1 mAh·g^(-1)even at a high rate of 10 C.The outstanding electrochemical performance highlights the promising application potential of the NKC electrode. 展开更多
关键词 Solid-state Na metal battery NaK alloy Gel electrolyte electrode-electrolyte interface dendrite free anode
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Single-Entity Collisional Electrochemistry at the Micro-and/or Nano-Interface Between Two Immiscible Electrolyte Solutions
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作者 Li-Fang Yang Jun-Jie Chen +7 位作者 Ling-Yu Chen Si-Qi Jin Tao-Xiong Fang Si-Jia He Liang-Jun Shen Xin-Jian Huang Xiao-Hang Sun Hai-Qiang Deng 《电化学(中英文)》 CAS 北大核心 2024年第11期1-16,I0001,共17页
Single-entity collisional electrochemistry(SECE)is a branch of single-entity electrochemistry.It can directly characterize entities/particles with single particle resolution through random collisions between particles... Single-entity collisional electrochemistry(SECE)is a branch of single-entity electrochemistry.It can directly characterize entities/particles with single particle resolution through random collisions between particles and electrodes in a solution,and obtain rich physicochemical information,thus becoming one of the frontiers of electroanalytical chemistry in the past two decades.Interestingly,the(micro/nanoscale)sensing electrodes have evolved from a polarizable liquid/liquid(mercury/liquid)interface to a solid/liquid interface and then to a liquid/liquid interface(i.e.,an interface between twoimmiscible electrolyte solutions,ITIES),as if they have completed a cycle(but in fact they have not).ITIES has become the latest sensing electrode in the booming SECE due to its polarizability(up to 1.1 V at the water/a,a,a-trifluorotoluene interface)and high reproducibility.The four measurement modes(direct electrolysis,mediated electrolysis,current blockade,and charge displacement)developed in the realm of SECE at solid/liquid interfaces have also been fully realized at the miniature ITIES.This article will discuss these four modes at the ITIES from the perspectives of basic concepts,operating mechanisms,and latest developments(e.g.,discovery of ionosomes,blockade effect of Faradaic ion transfer,etc.),and look forward to the future development and direction of this emerging field. 展开更多
关键词 Single-entity collisional electrochemistry interface between two immiscible electrolyte solutions Charge transfer
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Interface engineering of FAPbI_(3) for passivating defects and improving stability with lead chalcogenides
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作者 LI Yun-hao FENG Xiang-xiang +3 位作者 LONG Meng-qiu CAI Meng-qiu YANG Jun-liang LIU Biao 《Journal of Central South University》 CSCD 2024年第12期4625-4637,共13页
Interface engineering is widely employed to enhance the performance of formamidinium lead triiodide(FAPbI_(3))perovskite solar cells.In this study,six different FAPbI_(3)/PbX(X=S,Se and Te)heterostructures are constru... Interface engineering is widely employed to enhance the performance of formamidinium lead triiodide(FAPbI_(3))perovskite solar cells.In this study,six different FAPbI_(3)/PbX(X=S,Se and Te)heterostructures are constructed,including the PbI interface and I interface perovskite.In addition,the lead vacancies(V-Pb)and iodine vacancies(V-I)are designed at the perovskite interface.The results show that the PbI interface is more stable than I interface in the heterostructures.The PbX covering layer on the surface of the FAPbI_(3) perovskite stabilizes the perovskite octahedral structure by interface interactions and charge reconstruction that are beneficial to passivate perovskite interface defects and inhibit the phase transition.It shows that the PbTe covering layer exhibits the best passivation effect for lead vacancy defects,while PbS covering layer shows the best passivation effect for iodine vacancy defects.Additionally,appropriate structural stress can strengthen the thermal stability of defective perovskite.This work reveals the FAPbI_(3)/PbX interface engineering,and offers new insights into effectively passivating defects and improving the stability of FAPbI_(3). 展开更多
关键词 interface engineering FAPbI_(3) PBX PSCs STABILITY
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Improvement in Performance of Carbon-based Perovskite Solar Cells through Interface Modification with CTAC
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作者 SHEN Siming TIAN Chuanjin +5 位作者 JU Zhiyang ZHU Liangping JIANG Wenying WANG Chang'an XIE Zhipeng ZHAO Wenyan 《陶瓷学报》 CAS 北大核心 2024年第6期1136-1144,共9页
Carbon-based perovskite solar cells have attracted much attention,due to their low cost,simple preparation process and high chemical stability.However,the devices exhibit low photoelectric conversion efficiency,owing ... Carbon-based perovskite solar cells have attracted much attention,due to their low cost,simple preparation process and high chemical stability.However,the devices exhibit low photoelectric conversion efficiency,owing to the presence of defects and interface impedance between the perovskite active layer and the contact interface.In order to minimize the interfacial defects and improve the charge transfer performance between the perovskite layer and the contact interface,cetyltrimethylammonium chloride(CTAC)was introduced into the lower interface of HTL-free carbon-based perovskite solar cells,because CTAC can be used as interface modification material to passivate the buried interface of perovskite and promote grain growth.It was found that CTAC can not only passivate the interface defects of perovskite,but also improve the crystalline quality of perovskite.As a result,the photovoltaic conversion efficiency of reaches 17.18%,which is 12.5%higher than that of the control group.After 20 days in air with 60%RH humidity,the cell can still maintain more than 90%of the initial efficiency,which provides a new strategy for interfacial passivation of perovskite solar cells. 展开更多
关键词 carbon-based perovskite solar cells hole transport layer-free interface modification photovoltaic conversion efficiency stability
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膜曝气生物膜反应器污水处理过程N_(2)O排放特性及减排策略 被引量:1
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作者 王亚宜 贺泰来 +3 位作者 李佳 吴巧玉 汪涵 赵立功 《北京工业大学学报》 北大核心 2025年第3期350-358,共9页
膜曝气生物膜反应器(membrane aerated biofilm reactor,MABR)作为一种新型的污水处理技术,因其高效的氮去除能力和较低的N_(2)O排放水平而受到广泛关注。传统污水处理脱氮过程中,硝化反硝化阶段主要通过羟胺氧化、AOB反硝化、异养反硝... 膜曝气生物膜反应器(membrane aerated biofilm reactor,MABR)作为一种新型的污水处理技术,因其高效的氮去除能力和较低的N_(2)O排放水平而受到广泛关注。传统污水处理脱氮过程中,硝化反硝化阶段主要通过羟胺氧化、AOB反硝化、异养反硝化以及化学变化途径产生N_(2)O。MABR处理市政污水较传统曝气方式具有更低的N_(2)O排放潜力,主要得益于MABR特殊的底物异向扩散模式和无泡曝气方式,这会减少N_(2)O产生潜力及排放水平。该文总结了MABR在运行过程中N_(2)O产生与降低途径,讨论了N_(2)O产生和排放的影响因素及控制策略,并对今后研究MABR体系中N_(2)O排放进行了展望,以期说明MABR进一步工程应用在碳减排方面的优势。 展开更多
关键词 膜曝气生物膜反应器(membrane aerated biofilm reactor MABR) N_(2)o 污水处理 温室气体 碳减排 生物脱氮
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诺丽精油O/W型微乳的制备及其性能和抑菌活性研究
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作者 王丹 汪雪凤 +8 位作者 范佐旺 江芊 胡璇 王凯 谢小丽 黄英 黄梅 周香珍 于福来 《化学研究与应用》 北大核心 2025年第10期3182-3189,共8页
为了提高诺丽精油(Noni Essential Oil,NEO)的稳定性,将其进行微乳包埋,制备O/W型诺丽精油微乳(NEO Microemulsion,NEOM)。本研究以NEO为油相,以葩麻油聚氧乙烯醚40(EL-40)为表面活性剂,采用水滴定法制备NEOM,通过拟三元相图计算微乳区... 为了提高诺丽精油(Noni Essential Oil,NEO)的稳定性,将其进行微乳包埋,制备O/W型诺丽精油微乳(NEO Microemulsion,NEOM)。本研究以NEO为油相,以葩麻油聚氧乙烯醚40(EL-40)为表面活性剂,采用水滴定法制备NEOM,通过拟三元相图计算微乳区面积结合微乳表观变化,考察助表面活性剂、Km值(表面活性剂与助表面活性剂的质量比)、组分及比例对微乳液形成的影响,并测定NEOM的粒径、构型、电导率、水溶性、稳定性及抑菌活性。结果表明,EL-40为表面活性剂,丙二醇为助表面活性剂,Km为3时,NEO与混合表面活性剂质量比为7:3,0/W型水相的含水量为70%时,可以形成的微乳稳定、透明澄清,且平均粒径在(25.53±3.09)nm,PDI为0.180±0.03的0/W型微乳液。同时,NE0M具有良好的贮藏稳定性、离心稳定性和盐离子浓度稳定性,适宜在偏酸性环境下以及45℃以下使用。NEOM对白色念珠菌的抑菌作用优于NEO。 展开更多
关键词 诺丽精油 微乳 葩麻油聚氧乙烯醚40 o/W型 稳定性 抑菌活性
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基于主动学习代理模型的采气井口O形密封圈可靠性分析
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作者 张耀明 王春生 +3 位作者 马俊原 魏军会 周涛涛 赵密锋 《润滑与密封》 北大核心 2025年第8期164-171,共8页
由于制造公差、载荷波动、材料特性等,在实际工程中O形圈的相关设计参数往往不再是一个确定值,可能在一定的范围内波动。考虑不确定性因素对O形圈密封性能的影响,提出基于主动学习Kriging模型的可靠性分析方法,用于高压采气井口O形橡胶... 由于制造公差、载荷波动、材料特性等,在实际工程中O形圈的相关设计参数往往不再是一个确定值,可能在一定的范围内波动。考虑不确定性因素对O形圈密封性能的影响,提出基于主动学习Kriging模型的可靠性分析方法,用于高压采气井口O形橡胶密封圈密封性能的可靠性分析。以高压采气井口某O形橡胶密封圈为分析对象,建立密封可靠性功能函数;使用Python进行Abaqus的二次开发仿真,将制造公差、载荷波动带来的不确定性纳入密封性能计算过程,并基于自适应性Kriging与Monte Carlo法相结合的方法(AK-MCS),对该O形橡胶密封圈的密封可靠性进行分析。结果表明:在考虑制造公差与载荷波动的情况下,该O形橡胶密封圈由于最大Mises应力导致的失效概率为0.013%;凹槽深度、槽棱圆角半径、内压对密封圈的最大Mises应力有着较大影响,其中内压、槽棱圆角半径与最大Mises应力呈正相关关系,凹槽深度与最大Mises应力呈负相关关系;最大接触应力导致的失效概率为0,凹槽深度对密封圈的最大接触应力有较大影响。使用基于主动学习Kriging模型的高压采气井口O形橡胶密封圈密封可靠性分析方法,可评估与O形橡胶密封圈相配合部件的危险结构与密封圈密封失效概率,为实际工程提供指导。 展开更多
关键词 o形橡胶圈 高压采气井口 Kriging代理模型 可靠性分析 主动学习
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新型倒置A^(2)/O耦联MBR组合工艺处理农村低C/N废水的研究
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作者 韩卫萍 盖磊 《水处理技术》 CAS 北大核心 2025年第1期114-119,共6页
针对农村低C/N污水污染物和营养盐去除率差的问题,以倒置A^(2)/O耦联膜生物反应器(MBR)组合工艺为探究对象,通过控制进水污染物浓度,在中温条件下考察了有机负荷(OLR)对倒置A^(2)/O耦联MBR组合工艺处理农村低C/N污水的影响。结果表明,OL... 针对农村低C/N污水污染物和营养盐去除率差的问题,以倒置A^(2)/O耦联膜生物反应器(MBR)组合工艺为探究对象,通过控制进水污染物浓度,在中温条件下考察了有机负荷(OLR)对倒置A^(2)/O耦联MBR组合工艺处理农村低C/N污水的影响。结果表明,OLR由150 mg/L提高至450 mg/L时,总氮(TN)和溶解性磷酸盐(SOP)去除率分别由67.6%和86.6%提高至72.4%和94.3%,进一步提高OLR降低了组合工艺对污染物和营养盐的去除。此外,OLR能影响新工艺内污泥特征,提高OLR促进了胞外聚合物(EPS)分泌,尤其在OLR为600 mg/L组别内,EPS含量提高至139.6 mg/g。进水OLR对缺氧池内EPS的影响要大于其对厌氧池内EPS的影响。OLR能影响新工艺内污染物和营养盐去除相关关键酶的活性,当OLR为450 mg/L时,污染物和营养盐去除相关关键活性酶最强。研究结果为农村低C/N污水的高效处理提供了理论依据和数据支撑。 展开更多
关键词 农村低C/N污水 倒置A^(2)/o MBR 胞外聚合物 关键酶
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倒置A^(2)/O+A生化法+膜法+磁混凝法污水处理工程实例
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作者 计建洪 耿学坚 +2 位作者 王丽聪 杭彩云 庄惠生 《印染》 北大核心 2025年第1期64-67,共4页
采用“倒置A^(2)/O+A生化法+膜法+磁混凝物化法”组合工艺处理污水,分析了工艺特点,并详述了主要构筑物及设备参数。该组合工艺处理效果优良,除磷脱氮效果好,出水COD、TP、NH_(3)-N、TN月均值分别为28、0.2、0.3、6.06mg/L,达到了DB32/1... 采用“倒置A^(2)/O+A生化法+膜法+磁混凝物化法”组合工艺处理污水,分析了工艺特点,并详述了主要构筑物及设备参数。该组合工艺处理效果优良,除磷脱氮效果好,出水COD、TP、NH_(3)-N、TN月均值分别为28、0.2、0.3、6.06mg/L,达到了DB32/1072—2018《太湖地区城镇污水处理厂及重点工业行业主要水污染物排放限值》其他区域污染物排放标准,其中COD、TP和NH_(3)-N三个指标达到了GB3838—2002《地表水环境质量标准》Ⅳ类水排放标准。 展开更多
关键词 废水处理 倒置A^(2)/o 除磷脱氮 磁混凝沉淀 膜法
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智能完井O形圈在双侧压力下的静密封分析
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作者 郑严 蔡午阳 +4 位作者 张辞 钟俊宇 顿志强 王龙 钱韦吉 《润滑与密封》 北大核心 2025年第4期24-30,共7页
O形橡胶密封圈结构简单,且具有自密封性能,多用于单侧受压的密封工况。然而在深水智能完井液控滑套的轴向静密封应用中,O形圈则同时承受内部控制压力与外部环境压力。为探究O形圈在双侧压力下的静密封性能,针对井下3 000 m的实际压力环... O形橡胶密封圈结构简单,且具有自密封性能,多用于单侧受压的密封工况。然而在深水智能完井液控滑套的轴向静密封应用中,O形圈则同时承受内部控制压力与外部环境压力。为探究O形圈在双侧压力下的静密封性能,针对井下3 000 m的实际压力环境(环境压力30 MPa),利用ABAQUS有限元分析软件建立O形圈的有限元模型,分析不同压缩率下内外介质压力相等和内外介质压力存在压差时的O形圈静密封性能。结果表明:当内外压相同时,不同压缩率下O形圈主密封面上的接触应力均大于介质压力,但当压缩率大于23.81%后,Mises应力与剪切应力显著增长;当内压大于外压时,O形圈主密封面上的接触应力仍然大于介质压力,但其有效接触长度显著减小,当压缩率低于23.81%且内外压差为5 MPa时,O形圈主接触面上的有效接触长度占比不足50%,因此应选用使密封圈压缩率为23.81%的沟槽尺寸。设计一款专用实验设备,对压缩率为23.81%的O形圈进行密封性能试验,试验结果表明,该压缩率下的O形圈在承受35 MPa内压与30 MPa的外压时满足密封性能。 展开更多
关键词 静密封性能 o形圈 轴向密封 智能完井 双侧受压
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黑龙江三合屯金矿床S-Pb-H-O-He-Ar同位素组成及矿床成因
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作者 刘宝山 李成禄 +5 位作者 程招勋 寇林林 刘桂香 张春鹏 丁健 李博文 《地质学报》 北大核心 2025年第10期3518-3532,共15页
三合屯金矿床位于黑龙江省嫩江县境内,矿体赋存于晚三叠世花岗质糜棱岩中,靠近下白垩统光华组火山岩与晚三叠世花岗质糜棱岩接触带附近。为探讨成矿流体的来源,对矿石样品S、Pb、H、O同位素和惰性气体He、Ar同位素组成进行了系统研究,... 三合屯金矿床位于黑龙江省嫩江县境内,矿体赋存于晚三叠世花岗质糜棱岩中,靠近下白垩统光华组火山岩与晚三叠世花岗质糜棱岩接触带附近。为探讨成矿流体的来源,对矿石样品S、Pb、H、O同位素和惰性气体He、Ar同位素组成进行了系统研究,稳定同位素结果表明:硫化物的δ^(34)S在4.4‰^(4).9‰之间,与陨石硫的δ^(34)S值接近,反映为深源地幔岩浆硫;黄铁矿的Pb同位素^(206)Pb/^(204)Pb=17.284~18.290,^( 207)Pb/^(204)Pb=15.505~15.561,^(208)Pb/^(204)Pb=37.656~38.116;石英中的^(206)Pb/^(204)Pb=18.206~18.449,^( 207)Pb/^(204)Pb=15.526~15.652,^( 208)Pb/^(204)Pb=38.050~38.648,成矿流体主要来自壳幔混源;H、O同位素石英的δD_(V-SMOW)值为77.5‰~96.3‰,δ^(18)O_(V-SMOW)为7.4‰~11.6‰,δ^(18)OH_(2)O为0.2‰^(4).8‰,反映成矿流体为大气降水和岩浆水混合;黄铁矿流体包裹体的~3He/^(4)He比值为l.19~1.54 R/R_a,高于地壳的~3He/^(4)He比值数十至百余倍,但明显低于地幔流体的~3He/^(4)He比值;^(40)Ar/^(36)Ar=608.5~922.6,高于地壳流体(^(40)Ar/^(36)Ar>295.5)氩的同位素组成;^(40)Ar^(*)/^(4)He比值0.14~1.56,平均值为0.95,其中SHT19样品数据^(40)Ar^(*)/^(4)He(0.14)接近地壳^(40)Ar^(*)/^(4)He(0.2)流体,其他样品^(40)Ar^(*)/^(4)He(0.88~1.56)远高于地幔(0.33~0.56)流体,说明成矿流体为地壳及深源地幔流体混合流体。综合研究表明,三合屯金矿床为早白垩世晚期浅成低温热液金矿床,成矿物质来源与早白垩世光华期火山岩浆活动密切相关。 展开更多
关键词 S、Pb、H、o、He、Ar同位素 浅成低温热液矿床 三合屯金矿床 黑龙江
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