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Electrocatalytic CO_(2)reduction for the selective production of liquid oxygenates 被引量:2
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作者 Jiapeng Ji Junnan Chen +2 位作者 Juxia Xiong Xiaolong Zhang Hui-Ming Cheng 《Journal of Energy Chemistry》 2025年第4期568-600,共33页
Electrocatalytic CO_(2)reduction(ECR)to produce value-added fuels and chemicals using renewable electricity is an emerging strategy to mitigate global warming and decrease reliance on fossil fuels.Among various ECR pr... Electrocatalytic CO_(2)reduction(ECR)to produce value-added fuels and chemicals using renewable electricity is an emerging strategy to mitigate global warming and decrease reliance on fossil fuels.Among various ECR products,liquid oxygenates(Oxys)are especially attractive due to their high energy density,high safety and transportability that could be adapted to the existing infrastructure and transportation system.However,efficiently generating these highly reduced oxygen-containing products by ECR remains challenging due to the complexity of coupled proton and electron transfer processes.In recent years,in-depth studies of reaction mechanisms have advanced the design of catalysts and the regulation of reaction systems for ECR to produce Oxys,Here,by focusing on the production of typical Oxys,such as methanol,acetic acid,ethanol,acetone,n-propanol,and isopropanol,we outline various reaction paths and key intermediates for the electrochemical conversion of CO_(2)into these target products.We also summarize the current research status and recent advances in catalysts based on their elemental composition,and consider recent studies on the change of catalyst geometry and electronic structure,as well as the optimization of reaction systems to increase ECR performance.Finally,we analyze the challenges in the field of ECR to Oxys and provide an outlook on future directions for high-efficiency catalyst prediction and design,as well as the development of advanced reaction systems. 展开更多
关键词 Electrocatalytic CO_(2)reduction Geometry and electronic structure Parameters and system configurations liquid oxygenates
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Ionic Liquid Enhanced Proton Transfer for Neutral Oxygen Evolution Reaction
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作者 Ming-Xing Chen Nian Liu +2 位作者 Zi-He Du Jing Qi Rui Cao 《电化学(中英文)》 北大核心 2025年第7期27-36,共10页
The development of highly active catalyst in pH-neutral media for oxygen evolution reaction(OER)is critical in the field of renewable energy storage and conversion.Nevertheless,the slow kinetics of proton-coupled elec... The development of highly active catalyst in pH-neutral media for oxygen evolution reaction(OER)is critical in the field of renewable energy storage and conversion.Nevertheless,the slow kinetics of proton-coupled electron transfer(PCET)hinders the overall OER efficiency.Herein,we report an ionic liquid(IL)modified CoSn(OH)_(6)nanocubes(denoted as CoS-n(OH)_(6)-IL),which could be prepared through a facile strategy.The modified IL would not change the structural character-istics of CoSn(OH)_(6),but could effectively regulate the local proton activity near the active sites.The CoSn(OH)_(6)-IL exhibited higher intrinsic OER performances than the pristine CoSn(OH)_(6)in neutral media.For example,the current density of CoS-n(OH)_(6)-IL at 1.8 V versus reversible hydrogen electrode(RHE)was about 4 times higher than that of CoSn(OH)_(6).According to the pH-dependent kinetic investigations,operando electrochemical impedance spectroscopic,chemical probe tests,and deuterium kinetic isotope effects,the interfacial layer of IL could be utilized as a proton transfer mediator to promote the proton transfer,which enhances the surface coverage of OER intermediates and reduces the activation barrier.Consequent-ly,the sluggish OER kinetics would be efficiently accelerated.This study provides a facile and effective strategy to facilitate the PCET processes and is beneficial to guide the rational design of OER electrocatalysts. 展开更多
关键词 ELECTROCATALYSIS oxygen evolution reaction Ionic liquid Proton transfer CoSn(OH)_(6)nanocube
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Hierarchical BiOBr microspheres with oxygen vacancies synthesized via reactable ionic liquids for dyes removal 被引量:3
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作者 Zhi-Dong Wei Rui Wang 《Chinese Chemical Letters》 SCIE CAS CSCD 2016年第5期769-772,共4页
Hierarchical BiOBr microspheres with oxygen vacancies, which can be used for the dyes removal, have been synthesized successfully in the presence of different kinds of ionic liquids. It was revealed that BiOBr prepare... Hierarchical BiOBr microspheres with oxygen vacancies, which can be used for the dyes removal, have been synthesized successfully in the presence of different kinds of ionic liquids. It was revealed that BiOBr prepared by the ionic liquids with short chain length exhibited higher photocatalytic activity in the degradation of methyl orange (MO) under visible light. The experimental results showed that the phenomenon of the photocatalytic degradation of MO can be explained by the photoluminescence spectra. 展开更多
关键词 BiOBr Dyes removal Photocatalytic Ionic liquids oxygen vacancies
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Simulation and Experiment for Oxygen-enriched Combustion Engine Using Liquid Oxygen to Solidify CO_(2) 被引量:5
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作者 LIU Yongfeng JIA Xiaoshe +3 位作者 PEI Pucheng LU Yong YI Li SHI Yan 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2016年第1期188-194,共7页
For capturing and recycling of CO_(2)in the internal combustion engine,Rankle cycle engine can reduce the exhaust pollutants effectively under the condition of ensuring the engine thermal efficiency by using the techn... For capturing and recycling of CO_(2)in the internal combustion engine,Rankle cycle engine can reduce the exhaust pollutants effectively under the condition of ensuring the engine thermal efficiency by using the techniques of spraying water in the cylinder and optimizing the ignition advance angle.However,due to the water spray nozzle need to be installed on the cylinder,which increases the cylinder head design difficulty and makes the combustion conditions become more complicated.In this paper,a new method is presented to carry out the closing inlet and exhaust system for internal combustion engines.The proposed new method uses liquid oxygen to solidify part of cooled CO_(2)from exhaust system into dry ice and the liquid oxygen turns into gas oxygen which is sent to inlet system.The other part of CO_(2)is sent to inlet system and mixed with oxygen,which can reduce the oxygen-enriched combustion detonation tendency and make combustion stable.Computing grid of the IP52FMI single-cylinder four-stroke gasoline-engine is established according to the actual shape of the combustion chamber using KIVA-3V program.The effects of exhaust gas recirculation(EGR)rate are analyzed on the temperatures,the pressures and the instantaneous heat release rates when the EGR rate is more than 8%.The possibility of enclosing intake and exhaust system for engine is verified.The carbon dioxide trapping device is designed and the IP52FMI engine is transformed and the CO_(2)capture experiment is carried out.The experimental results show that when the EGR rate is 36%for the optimum EGR rate.When the liquid oxygen of 35.80-437.40 g is imported into the device and last 1-20 min,respectively,21.50-701.30 g dry ice is obtained.This research proposes a new design method which can capture CO_(2)for vehicular internal combustion engine. 展开更多
关键词 internal combustion Rankle cycle engine CO_(2)emission reduction carbon-sequestration with liquid oxygen KIVA-3V program oxygen-enriched combustion numerical simulation experiments
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Gas film/regenerative composite cooling characteristics of the liquid oxygen/liquid methane (LOX/LCH4) rocket engine 被引量:2
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作者 Xinlin LIU Jun SUN +3 位作者 Zhuohang JIANG Qinglian LI Peng CHENG Jie SONG 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2024年第8期631-649,共19页
The thermal protection of rocket engines is a crucial aspect of rocket engine design.In this paper,the gas film/regenerative composite cooling of the liquid oxygen/liquid methane(LOX/LCH4)rocket engine thrust chamber ... The thermal protection of rocket engines is a crucial aspect of rocket engine design.In this paper,the gas film/regenerative composite cooling of the liquid oxygen/liquid methane(LOX/LCH4)rocket engine thrust chamber was investigated.A gas film/regenerative composite cooling model was developed based on the Grisson gas film cooling efficiency formula and the one-dimensional regenerative cooling model.The accuracy of the model was validated through experiments conducted on a 6 kg/s level gas film/regenerative composite cooling thrust chamber.Additionally,key parameters related to heat transfer performance were calculated.The results demonstrate that the model is sufficiently accurate to be used as a preliminary design tool.The temperature rise error of the coolant,when compared with the experimental results,was found to be less than 10%.Although the pressure drop error is relatively large,the calculated results still provide valuable guidance for heat transfer analysis.In addition,the performance of composite cooling is observed to be superior to regenerative cooling.Increasing the gas film flow rate results in higher cooling efficiency and a lower gas-side wall temperature.Furthermore,the position at which the gas film is introduced greatly impacts the cooling performance.The optimal introduction position for the gas film is determined when the film is introduced from a single row of holes.This optimal introduction position results in a more uniform wall temperature distribution and reduces the peak temperature.Lastly,it is observed that a double row of holes,when compared to a single row of holes,enhances the cooling effect in the superposition area of the gas film and further lowers the gas-side wall temperature.These results provide a basis for the design of gas film/regenerative composite cooling systems. 展开更多
关键词 liquid oxygen/liquid methane(LOX/LCH4)rocket engine Gas film cooling Regenerative cooling Heat transfer characteristics
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Analysis of Magnetic Positioning for Liquid Oxygen Under Microgravity Condition
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作者 ZHONG Dinghan LIU Hongbo LU Xiang 《Transactions of Nanjing University of Aeronautics and Astronautics》 EI CSCD 2022年第6期750-758,共9页
Due to the paramagnetic property of liquid oxygen,the Kelvin force can be induced in liquid oxygen under non-uniform magnetic field.Based on the volume of fluid(VOF)model,the positioning effect of the force in liquid ... Due to the paramagnetic property of liquid oxygen,the Kelvin force can be induced in liquid oxygen under non-uniform magnetic field.Based on the volume of fluid(VOF)model,the positioning effect of the force in liquid oxygen tanks is analyzed under various Bond numbers(Bo)and magnetic Bond numbers(Bom).The results show that the magnetic field has the effect of repositioning the liquid oxygen in the tank when the gravity field is not enough or absent.Additionally,the gas-liquid interface has a periodic fluctuation during the process due to the inhomogeneous Kelvin force distribution,and more effective suppression of fluctuation can be achieved under the condition of a larger Bom.The new method of controlling gas-liquid interface of liquid oxygen tank under micro gravity condition is hoped to be developed in the future. 展开更多
关键词 magnetic field microgravity environment liquid oxygen gas-liquid interface
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The effect of temperature on ionic liquid modified Fe-N-C catalysts for alkaline oxygen reduction reaction
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作者 Thomas Wolker Kai Brunnengräber +4 位作者 Ioanna Martinaiou Nick Lorenz Gui-Rong Zhang Ulrike I.Kramm Bastian J.M.Etzold 《Journal of Energy Chemistry》 SCIE EI CAS CSCD 2022年第5期324-329,共6页
Modifying solid catalysts with an ionic liquid layer is an effective approach for boosting the performance of both Pt-based and non-precious metal catalysts toward the oxygen reduction reaction. While most studies ope... Modifying solid catalysts with an ionic liquid layer is an effective approach for boosting the performance of both Pt-based and non-precious metal catalysts toward the oxygen reduction reaction. While most studies operated at room temperature it remains unclear whether the IL-associated boosting effect can be maintained at elevated temperature, which is of high relevance for practical applications in low temperature fuel cells. Herein, Fe-N-C catalysts were modified by introducing small amounts of hydrophobic ionic liquid, resulting in boosted electrocatalytic activity towards the alkaline oxygen reduction reaction at room temperature. It is demonstrated that the boosting effect can be maintained and even strengthened when increasing the electrolyte temperature up to 70℃. These findings show for the first time that the incorporation of ionic liquid is a suited method to obtain advanced noble metal-free electrocatalysts that can be applied at operating temperature condition. 展开更多
关键词 oxygen reduction reaction Non-precious metal catalyst Ionic liquid Fe-N-C catalyst Temperature effect
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INTERACTION OF PLASMA—LIQUID IN AN OXYGEN GLOW DISCHARGE Ⅲ.OXIDATION DESULFURIZATION OF ETHYL—THIOETHER
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作者 Wan Ying LIU Wei LU Zheng Lan LEI Jin Kun WANG Chengdu Institute of Organic Chemistry,Academia Sinica Chengdu 610015 《Chinese Chemical Letters》 SCIE CAS CSCD 1993年第10期883-884,共2页
A few factors affecting plasma oxidation desulfurization of ethyl- thioether were investigated.Under the typical conditions,the conversion and degree of desulfurization of ethyl-thioether can be achieved up to 88% and... A few factors affecting plasma oxidation desulfurization of ethyl- thioether were investigated.Under the typical conditions,the conversion and degree of desulfurization of ethyl-thioether can be achieved up to 88% and 79% respectively. 展开更多
关键词 OC OXIDATION DESULFURIZATION OF ETHYL THIOETHER INTERACTION OF PLASMA liquid IN AN oxygen GLOW DISCHARGE
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Study on fluid-structure interaction in liquid oxygen feeding pipe systems using finite volume method
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作者 Xin Wei Bing Sun 《Acta Mechanica Sinica》 SCIE EI CAS CSCD 2011年第5期706-712,共7页
The fluid-structure interaction may occur in space launch vehicles,which would lead to bad performance of vehicles,damage equipments on vehicles,or even affect astronauts' health.In this paper,analysis on dynamic beh... The fluid-structure interaction may occur in space launch vehicles,which would lead to bad performance of vehicles,damage equipments on vehicles,or even affect astronauts' health.In this paper,analysis on dynamic behavior of liquid oxygen (LOX) feeding pipe system in a large scale launch vehicle is performed,with the effect of fluid-structure interaction (FSI) taken into consideration.The pipe system is simplified as a planar FSI model with Poisson coupling and junction coupling.Numerical tests on pipes between the tank and the pump are solved by the finite volume method.Results show that restrictions weaken the interaction between axial and lateral vibrations.The reasonable results regarding frequencies and modes indicate that the FSI affects substantially the dynamic analysis,and thus highlight the usefulness of the proposed model.This study would provide a reference to the pipe test,as well as facilitate further studies on oscillation suppression. 展开更多
关键词 Fluid-structure interaction · liquid oxygen · Finite volume method
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A high-performance liquid chromatography with circular dichroism detector for determination of stereochemistry of 6, 9-oxygen bridge dibenzocyclooctadiene lignans from kadsura coccinea 被引量:2
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作者 ZHU Hui XU Liang +1 位作者 YANG Shi-Lin LI He-Ran 《Chinese Journal of Natural Medicines》 SCIE CAS CSCD 2015年第10期791-795,共5页
The stereochemistry of two 6, 9-oxygen bridge dibenzocyclooctadiene lignans from Kadsura coccinea, are difficult to separate and very unstable. The present study was designed to develop a high-performance liquid chrom... The stereochemistry of two 6, 9-oxygen bridge dibenzocyclooctadiene lignans from Kadsura coccinea, are difficult to separate and very unstable. The present study was designed to develop a high-performance liquid chromatography using circular dichroism detection for the analysis of the stereochemistry. A new 6, 9-oxygen bridge dibenzocyclooctadiene lignans named Kadsulignan Q was firstly found with an S-biphenyl configuration. The other compound was identified as Kadsulignan L with an R- biphenyl configuration. In order to obtain kinetic data on their reversible interconversion, the stability was measured at different deuterated solvents such as deuterated methanol, deuterated chloroform and deuterated dimethylsulfoxide. The lignans were more unstable and converted more easily in deuterated methanol than in deuterated chloroform and deuterated dimethylsulfoxide. 展开更多
关键词 6 9-oxygen bridge dibenzocyclooctadiene lignans Kadsura coccinea High-performance liquid chromatography using circular dichroism detection(HPLC-CD) Kadsulignan Q Kadsulignan L
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Impregnation of ionic liquid into porous Fe-N-C electrocatalyst to improve electrode kinetics and mass transport for polymer electrolyte fuel cells 被引量:1
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作者 Siming Li Enyang Sun +8 位作者 Pengfei Wei Wei Zhao Suizhu Pei Ying Chen Jie Yang Huili Chen Xi Yin Min Wang Yawei Li 《Chinese Journal of Catalysis》 2025年第5期277-288,共12页
Developing efficient and stable non-precious metal catalysts is essential for replacing platinum-based catalysts in polymer electrolyte membrane fuel cells(PEMFCs).The transition metal and nitrogen co-doped carbon ele... Developing efficient and stable non-precious metal catalysts is essential for replacing platinum-based catalysts in polymer electrolyte membrane fuel cells(PEMFCs).The transition metal and nitrogen co-doped carbon electrocatalyst(M-N-C)is considered an effective alternative to precious metal catalysts.However,its relatively poor performance in acidic environments has always been a problem plaguing its practical application in PEMFCs.This study presents a sequential deposition methodology for constructing a composite catalytic system of Fe-N-C and ionic liquid(IL),which exhibits improved performance at both half-cell and membrane electrode assembly scales.The presence of IL significantly inhibits H_(2)O_(2)production,preferentially promoting the 4e–O_(2)reduction reaction,resulting in improved electrocatalytic activity and stability.Additionally,the enhanced PEMFC performance of IL containing electrodes is a direct result of the improved ionic and reactant accessibility of the pore confined Fe-N-C catalysts where the IL minimizes local resistive transport losses.This study establishes a strategic foundation for the practical utilization of non-precious metal catalysts in PEMFCs and other energy converting technologies. 展开更多
关键词 Fuel cell ELECTROCATALYSIS oxygen reduction reaction Ionic liquid Non-platinum group metal
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Exceptional functionalized dual-acidic ionic liquid:High-efficiency catalytic reaction medium for oxidation desulfurization
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作者 Ran Liu Chang Wang +6 位作者 Qiang Yang Jing-Ran Yang Chen Liu Liberty Mguni Xin-Ying Liu Ya-Li Yao Fa-Tang Li 《Petroleum Science》 2025年第1期492-507,共16页
The development of highly active functionalized ionic liquids(ILs)as both extractants and catalysts for use in achieving deep desulfurization continues to pose challenges.In this study,a highly efficient oxidative des... The development of highly active functionalized ionic liquids(ILs)as both extractants and catalysts for use in achieving deep desulfurization continues to pose challenges.In this study,a highly efficient oxidative desulfurization system was constructed,composed of dual-acidic ionic liquids(DILs)and H_(2)O_(2)-AcOH.The investigation results of four DILs prepared from different metal chlorides([HSO_(3)C_(3)NEt_(3)]Cl-MnCl_(n),MnCl_(n)=AlCl_(3),ZnCl_(2),CuCl_(2),FeCl_(3))in oxidative desulfurization showed that[HSO_(3)C_(3)NEt_(3)]Cl-AlCl_(3)had an outstanding catalytic effect and significantly promoted the oxidation of sulfides.With a 0.2 g[HSO_(3)C_(3)NEt_(3)]Cl-AlCl_(3),the removal rate of dibenzothiophene(DBT)reached 100%in 10 mL model oil under mild conditions at 55℃for 20 min.The key is its ability to induce the dismutation of su-peroxide anions(·O_(2)^(-)),which facilitates the generation of singlet oxygen(1 O_(2)).The efficient oxidation of DBT is accomplished through a predominantly^(1)O_(2)-mediated_(n)on-radical mechanism.[HSO_(3)C_(3)NEt_(3)]Cl-AlCl_(3)serves as a favorable medium for contact to be made between^(1)O_(2)and sulfides,which indicates an efficient catalytic-adsorption synergy. 展开更多
关键词 Dual-acidic ionic liquid CATALYSIS Oxidation desulfurization Reactive oxygen species
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Construction of imidazole-based ionic liquid modified MoO_(3-x) for enhancing photocatalytic oxidation desulfurization in diesel
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作者 Suhang Xun Chenchao Hu +4 位作者 Bohan Yang Wei Jiang Minqiang He Wenshuai Zhu Huaming Li 《Green Energy & Environment》 2025年第7期1519-1530,共12页
Development of clean desulfurization process that combines both efficient and environmentally friendly remains a significant challenge for diesel production.The photocatalytic oxidation desulfurization technology is r... Development of clean desulfurization process that combines both efficient and environmentally friendly remains a significant challenge for diesel production.The photocatalytic oxidation desulfurization technology is regarded as a promising process depending on the superior electron transfer and visible light utilization of photocatalyst.Herein,the nonstoichiometry MoO_(3-x)with outstanding photoresponse ability is prepared and modified by imidazole-based ionic liquid[C_(12)mim]Cl to upgrade electronic structure.The interface H-bonding between MoO_(3-x)and[C_(12)mim]Cl regard as electronic transfer channel and the recombination of e^(-)-h^(+)pairs is effectively inhibited with the modification of[C_(12)mim]Cl.Deep desulfurization rate of 96.6%can be reached within 60 min and the MoO_(3-x)/[C_(12)mim]Cl(MoC_(12))photocatalyst demonstrated outstanding cyclic stability within 7 cycles in an extraction coupled photocatalytic oxidation desulfurization(ECPODS)system.The study provides a new perspective on enhancing photocatalytic desulfurization through defect engineering and surface modification. 展开更多
关键词 MoO_(3-x) Imidazole-based ionic liquid Electron channeling oxygen vacancy Photocatalytic oxidative desulfurization
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Oxygen heterocyclic compounds(OHCs)in lemon oils are important markers in targeted HPLC analyses for authentication
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作者 Siyu Liu Shiming Li Chi-Tang Ho 《Food Science and Human Wellness》 2025年第2期421-428,共8页
Lemon oils are broadly used as flavoring agents in beverages,foods,cosmetics and pharmaceuticals,yet the adulteration of natural,particularly cold pressed lemon oils is very common in the industry due to its unmet dem... Lemon oils are broadly used as flavoring agents in beverages,foods,cosmetics and pharmaceuticals,yet the adulteration of natural,particularly cold pressed lemon oils is very common in the industry due to its unmet demand and high cost.Nowadays,most quality control(QC)analysis of lemon oils is conducted by gas chromatography(GC)analysis,which is far from a reliable method.Oxygen heterocyclic compounds(OHCs)in non-volatile fraction are gaining increasing attention in authentication process because of the nearly finger-printing profiles of OHCs in cold pressed citrus essential oils.Our goal in this study was to identify OHCs using high performance liquid chromatography(HPLC)in lemon oils,establish OHC profiles,perform stepwise logistic regression analysis(SLRA)and build effective predicting model and further determine adulterated lemon oils by referencing the OHC profiles and established models.After HPLC analyses,profiling and SLRA modeling of 154 OHCs samples of industrial lemon oils,we found that the combination of isopimpinellin and total OHC concentration are essential and robust predictors to differentiate authentic samples from adulterated lemon oils with a success rate of 98%from the 5-fold cross validation.This study provided a reliable and efficient method in determining the authenticity of lemon oils. 展开更多
关键词 Lemon oils oxygen heterocyclic compounds High performance liquid chromatography(HPLC) AUTHENTICITY Targeted analysis Quality control
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Three-fold optimization of Pt/ionomer interface by ionic liquid-modified MOF-808 in cathode of proton exchange membrane fuel cells
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作者 Huangli Yan Chengwen Yu +2 位作者 Xianming Zhang Meihua Tang Shengli Chen 《Chinese Journal of Catalysis》 2025年第8期84-94,共11页
The large-scale commercialization of proton exchange membrane fuel cells(PEMFCs)has been hindered by the high demand of platinum(Pt)in the cathode due to the sluggish kinetics of the oxygen reduction reaction.Reducing... The large-scale commercialization of proton exchange membrane fuel cells(PEMFCs)has been hindered by the high demand of platinum(Pt)in the cathode due to the sluggish kinetics of the oxygen reduction reaction.Reducing the amount of Pt would worsen the problems caused by the adsorption of perfluorinated sulfonic acid(PFSA)ionomers to Pt via the side chains,namely,blocking the active sites of Pt and inducing densely packed layers of fluorocarbon backbones on Pt surface to obstruct local O_(2)transport at the Pt/PFSA interfaces.This work aims at optimizing the Pt/ionomer interface to mitigate the sulfonate adsorption and in the meantime to reduce the local O_(2)transport resistance(R_(local)),by using a porous composite of 1-butyl-3-methylimidazolium hydrogen sulfate ionic liquid(IL)modified MOF-808(BMImHSO_(4)@MOF-808)as additive in cathodic catalyst layer(CCL).Through detailed physical,spectroscopic and electrochemical characterizations,we demonstrate a three-fold optimization mechanism of Pt/ionomer interface structure by BMImHSO_(4)@MOF-808:the unsaturated metal sites in MOF-808 effectively inhibit the sulfonate adsorption on Pt through coordination with the sulfonates of PFSA,thereby improving catalyst utilization;the pores in MOF-808 establish efficient transport channels for gaseous oxygen,significantly reducing R_(local);the IL modification layers facilitate the formation of continuous proton transport networks,increasing proton conductivity.The incorporation of BMImHSO_(4)@MOF-808 in a low-Pt CCL(0.1 mg_(Pt)cm^(-2))yields a peak power density of 1.9 W cm^(-2)for PEMFC under H_(2)-O_(2)condition,and ca.20%increase of power density under H_(2)-air condition as compared with conventional CCL,indicating the prospect of IL-MOF composites as an efficient additive to enhance the performance of PEMFCs. 展开更多
关键词 Proton exchange membrane fuel cells Pt/ionomer interface Local oxygen transport MOF-808 Ionic liquid Sulfonate adsorption
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基于静态模型的液氧甲烷发动机多因子故障辨识
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作者 张航 陈晖 +2 位作者 邢理想 武晓欣 张振臻 《火箭推进》 北大核心 2026年第1期28-35,共8页
提出了一种基于静态模型的液氧甲烷发动机多因子故障辨识方法。根据液氧甲烷发动机特点,建模过程中对冷却套温升与压降、汽蚀管等相关的数学模型进行了优化,并基于试验数据验证了模型的高准确性。针对某小推力开式循环液氧甲烷发动机多... 提出了一种基于静态模型的液氧甲烷发动机多因子故障辨识方法。根据液氧甲烷发动机特点,建模过程中对冷却套温升与压降、汽蚀管等相关的数学模型进行了优化,并基于试验数据验证了模型的高准确性。针对某小推力开式循环液氧甲烷发动机多故障因子辨识问题,提出5项故障因子,分别采用单因子和多因子故障辨识方法识别故障因子。结果表明:多因子故障辨识情况下参数偏差较单因子故障辨识更小,主要参数偏差最大为3.57%,多个参数偏差小于1%。 展开更多
关键词 液氧甲烷发动机 故障辨识 静态模型 多因子
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基于EEMD-HHT液氧相变致裂振动信号分析
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作者 王雁冰 王凯 +7 位作者 艾婵 郭福钟 魏正 颜磊 付代睿 张芳平 卢想 陈忠凯 《振动与冲击》 北大核心 2026年第5期217-228,264,共13页
为解决我国益庞大的环保需求和传统爆破技术需要逐渐转向更加环保,安全的问题。采用液氧相变破岩作为环保型、安全型的气体膨胀致裂技术,开展现场试验。通过爆破测振仪对地表振动响应实施动态监测,基于实测数据定量分析质点振动速度随... 为解决我国益庞大的环保需求和传统爆破技术需要逐渐转向更加环保,安全的问题。采用液氧相变破岩作为环保型、安全型的气体膨胀致裂技术,开展现场试验。通过爆破测振仪对地表振动响应实施动态监测,基于实测数据定量分析质点振动速度随爆心距的衰减变化规律。同时,运用集合经验模态分解-希尔伯特-黄变换(ensemble empirical mode decomposition-Hilbert-Huang transform,EEMD-HHT)这一非平稳信号处理方法,对速度振动信号进行时频分析,从时间、频率、能量多维度解析其耦合特征,旨在揭示液氧相变致裂振动信号的时频能量分布规律,为爆破工程安全评估与参数优化提供理论依据与数据支撑。研究结果表明,液氧相变致裂不同自由面几何平整度爆破振动信号所含能量在频谱上分布不同,随着自由面几何平整度增加其能量分布从高频向低频逐渐过渡,且频带宽度逐渐降低。同时自由面数量越多液氧相变致裂振动能量幅值也有明显下降;用EEMD与经验模态分解(empirical mode decomposition,EMD)后处理液氧相变致裂的振动信号后得到的各个本征模态函数分量能量分布与原信号的相关性均呈现正态分布特点,首尾模态低,中间模态高。其中EEMD得到的信号信噪比较大,均方根差更小,即EEMD对于液氧相变致裂信号重构去噪效果优于EMD;液氧相变振动信号的远区能量主要集中于0~25 Hz低频范围,少部分能量存在于25~40 Hz,近区能量主要集中于0~25 Hz低频范围,部分分布于25~80 Hz。远区边际能量谱中频带分布窄,呈现显著频域聚焦特性,实测信号边际能量谱呈现典型单峰特性。三种单段齐发液氧相变致裂振动信号持续时间均在0.3 s左右。液氧相变致裂破岩具有低频、远区振动信号频率集中、振动持续时间长的特点。 展开更多
关键词 液氧相变致裂 集合经验模态分解-希尔伯特-黄变换(EEMD-HHT) 信号去噪 频谱特性
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论空分装置建立健全后备系统的重要性
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作者 王涛 《低温与特气》 2026年第1期22-25,共4页
针对空分装置因非计划停车导致氧气、氮气供应中断,进而引发下游装置停工的问题,为了提升空分装置的运行可靠性和经济性,通过分析某空分装置后备系统的现状与缺陷,结合工艺流程对比与经济效益测算,提出了建立健全液氧与液氮后备系统的... 针对空分装置因非计划停车导致氧气、氮气供应中断,进而引发下游装置停工的问题,为了提升空分装置的运行可靠性和经济性,通过分析某空分装置后备系统的现状与缺陷,结合工艺流程对比与经济效益测算,提出了建立健全液氧与液氮后备系统的具体建议。结果表明,配备健全的后备系统可显著减少非计划停车带来的经济损失,年均避免利润损失约748.8万元,同时提高了系统安全性和运行稳定性。后备系统的建立应依据下游需求确定规模,并严格遵循安全规范进行设计与实施。 展开更多
关键词 空分装置 后备系统 可靠性 液氧储罐 自动控制
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微纳米气泡及其气-液界面特性
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作者 刘继坤 包若凝 +2 位作者 蓝兴英 徐春明 韩晔华 《化工学报》 北大核心 2026年第1期1-15,共15页
微纳米气泡(micro-nano bubbles,MNBs)是指分散于水相、油相或固体基质中,特征尺寸处于微米级至纳米级范围的气泡。与毫米级气泡相比,微纳米气泡具有高比表面积、优异稳定性以及自发产生活性氧(ROS)等独特性质。高比表面积赋予了微纳米... 微纳米气泡(micro-nano bubbles,MNBs)是指分散于水相、油相或固体基质中,特征尺寸处于微米级至纳米级范围的气泡。与毫米级气泡相比,微纳米气泡具有高比表面积、优异稳定性以及自发产生活性氧(ROS)等独特性质。高比表面积赋予了微纳米气泡体系极高的气-液界面密度,结合其优异稳定性可显著提高气-液传质效率,在化工过程强化、药物靶向输送及土壤修复等领域展现出巨大的应用潜力。微纳米气泡在气-液界面处自发产生的活性氧能够高效降解有机污染物,在废水处理领域展现出显著优势。此类活性氧还可进一步作为绿色合成反应中的活性中间体,在温和条件下实现多种高附加值化学品的高效合成。微纳米气泡从“强化传质”到“界面合成”的跨越,标志着该技术步入全新发展阶段。这一突破为开发清洁、绿色的化学工艺提供了新策略,具有重大的科学与工业价值。 展开更多
关键词 微纳米气泡 气-液界面 气-液传质 活性氧 绿色合成
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补水溶矿过程中达布逊湖北岸地下卤水氢氧同位素变化特征研究
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作者 舒家兴 苗卫良 +2 位作者 张西营 袁小龙 李雯霞 《盐湖研究》 2026年第1期66-75,共10页
通过人工补水行为溶采盐湖区浅部地层中赋存的易溶钾盐矿物是察尔汗盐湖目前钾盐资源开发的重要方式。而溶采过程中盐湖区浅部地层中的水文交互过程是深入认识地层中盐类矿物的溶解-结晶机制及钾盐矿物溶采效率的关键,迄今为止认识程度... 通过人工补水行为溶采盐湖区浅部地层中赋存的易溶钾盐矿物是察尔汗盐湖目前钾盐资源开发的重要方式。而溶采过程中盐湖区浅部地层中的水文交互过程是深入认识地层中盐类矿物的溶解-结晶机制及钾盐矿物溶采效率的关键,迄今为止认识程度仍较为薄弱。文章以溶采区内补水渠、采卤渠及6个水文观测孔不同深度的卤水为研究对象,基于水化学和氢氧同位素分析研究了溶采区地下卤水在固液转化过程中的水文交互过程及其影响因素。结果表明:(1)卤水离子浓度动态变化特征主要受石盐、钾石盐和光卤石三种矿物溶解-析出的制约;(2)湖水补给补水渠后受到蒸发作用及盐类矿物溶解的影响导致水体中氢氧同位素富集;(3)水体混合作用和盐类矿物溶滤作用的叠加是引起地下卤水氢氧同位素变化的主要因素;(4)氢氧同位素比值变化趋势可作为判断研究区液化开采过程中溶钾能力强弱的指标。综上,研究探究了地下卤水氢氧同位素动态变化特征和氢氧同位素比值作为液化开采过程的监测方法和手段的可能性,对降低开采成本、提高开采效率,保障钾资源的可持续供应具有重要意义。 展开更多
关键词 察尔汗盐湖 固液转化 卤水 氢氧同位素特征
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