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| 1 | Liquid-FEP-based U-tube triboelectric nanogenerator for harvesting water-wave energy显示文摘收获周围的机械精力是为认识到自我动力的电子学的一种关键技术。与稳定性和耐久性的优点, liquid-solid-based 摩擦电 nanogenerator (TENG ) 最近引起了许多注意。然而, TENG 表演和相关工作原则上的液体性质的影响仍然是不清楚的。我们此处基于液体固体模式装配了 U 试管 TENG 并且使用了 11 液体在 TENG 输出性能上学习液体性质的效果。结果证实影响产量的关键因素是极性,绝缘的常数,和与氟化的乙烯丙烯(FEP ) 的亲密关系。在 11 液体之中,纯以水为基的U试管 TENG 与开电路的电压展出了最好的产量( V 81.7 V 和电线走火电流的 oc )(我 为摇晃的模式( 0.5 Hz )的 0.26 A 的 sc ),它能推进增加到 93.0 V 和 0.48 A ,分别地为水平变模式( 1.25 Hz )。U 试管 TENG 能与比 92% 高的精确性为一个水的答案作为一个自我动力的集中传感器(部件集中或 metalion 集中) 被利用。最后,升级的像三明治的 water-FEP U 试管 TENG 被使用收获水波浪精力,显示出有 V 350 V 的 oc ,我 1.75 A 的 sc ,和 2.04 W/m 3 的力量密度。我们成功地照亮了 60 LEDs 并且动力一温度湿度米。给它的高输出性能, water-FEP U 试管 TENG 是为为自我动力的电子学收获水波浪精力的一条很有希望的途径。 | Lun Pan Jiyu Wang Peihong Wang Ruijie Gao Yi-Cheng Wang Xiangwen Zhang Ji-Jun zou Zhong Lin Wang | 2018 | Nano Research2018,11,8: | 10 |
| 2 | Removal of formaldehyde over Mn_xCe_(1- x)O_2 catalysts: Thermal catalytic oxidation versus ozone catalytic oxidation显示文摘MnxCe1-xO2(x:0.3–0.9)prepared by Pechini method was used as a catalyst for the thermal catalytic oxidation of formaldehyde(HCHO).At x=0.3 and 0.5,most of the manganese was incorporated in the fluorite structure of Ce O2to form a solid solution.The catalytic activity was best at x=0.5,at which the temperature of 100%removal rate is the lowest(270°C).The temperature for 100%removal of HCHO oxidation is reduced by approximately 40°C by loading 5 wt.%Cu Oxinto Mn0.5Ce0.5O2.With ozone catalytic oxidation,HCHO(61 ppm)in gas stream was completely oxidized by adding 506 ppm O3over Mn0.5Ce0.5O2catalyst with a GHSV(gas hourly space velocity)of 10,000 hr-1at 25°C.The effect of the molar ratio of O3to HCHO was also investigated.As O3/HCHO ratio was increased from 3 to 8,the removal efficiency of HCHO was increased from 83.3%to 100%.With O3/HCHO ratio of 8,the mineralization efficiency of HCHO to CO2was 86.1%.At 25°C,the p-type oxide semiconductor(Mn0.5Ce0.5O2)exhibited an excellent ozone decomposition efficiency of 99.2%,which significantly exceeded that of n-type oxide semiconductors such as Ti O2,which had a low ozone decomposition efficiency(9.81%).At a GHSV of 10,000 hr-1,[O3]/[HCHO]=3 and temperature of 25°C,a high HCHO removal efficiency(≥81.2%)was maintained throughout the durability test of 80 hr,indicating the long-term stability of the catalyst for HCHO removal. | Jia Wei Li Kuan Lun Pan Sheng Jen Yu Shaw Yi Yan Moo Been Chang | 2014 | Journal of Environmental Sciences2014,26,12: | 9 |
| 3 | Removal of VOCs from gas streams with double perovskite-type catalysts显示文摘Double perovskite-type catalysts including La2 CoMnO_6 and La_2 CuMnO_6 are first evaluated for the effectiveness in removing volatile organic compounds(VOCs), and single perovskites(La CoO_3, LaMnO_3, and La Cu O3) are also tested for comparison. All perovskites are tested with the gas hourly space velocity(GHSV) of 30,000 hr^(-1), and the temperature range of100–600°C for C_7H_8 removal. Experimental results indicate that double perovskites have better activity if compared with single perovskites. Especially, toluene(C_7H_8) can be completely oxidized to CO_2 at 300°C as La2 Co MnO_6 is applied. Characterization of catalysts indicates that double perovskites own unique surface properties and are of higher amounts of lattice oxygen,leading to higher activity. Additionally, apparent activation energy of 68 k J/mol is calculated using Mars-van Krevelen model for C7 H8 oxidation with La2 Co Mn O6 as catalyst. For durability test, both La2 Co Mn O6 and La_2 CuMnO_6 maintain high C7 H8 removal efficiencies of 100% and98%, respectively, at 300°C and 30,000 hr^(-1), and they also show good resistance to CO_2(5%) and H2 O(g)(5%) of the gas streams tested. For various VOCs including isopropyl alcohol(C_3H_8 O),ethanal(C_2H_4O), and ethylene(C_2H_4) tested, as high as 100% efficiency could be achieved with double perovskite-type catalysts operated at 300–350°C, indicating that double perovskites are promising catalysts for VOCs removal. | Kuan Lun Pan Guan Ting Pan Siewhui Chong Moo Been Chang | 2018 | Journal of Environmental Sciences2018,30,7: | 8 |
| 4 | Review on the Relationship Between Liquid Aerospace Fuel Composition and Their Physicochemical Properties显示文摘The development of advanced air transportation has raised new demands for high-performance liquid hydrocarbon fuels.However,the measurement of fuel properties is time-consuming,cost-intensive,and limited to the operating conditions.The physicochemical properties of aerospace fuels are directly infl uenced by chemical composition.Thus,a thorough investigation should be conducted on the inherent relationship between fuel properties and composition for the design and synthesis of high-grade fuels and the prediction of fuel properties in the future.This work summarized the eff ects of fuel composition and hydrocarbon molecular structure on the fuel physicochemical properties,including density,net heat of combustion(NHOC),low-temperature fl uidity(viscosity and freezing point),fl ash point,and thermal-oxidative stability.Several correlations and predictions of fuel properties from chemical composition were reviewed.Additionally,we correlated the fuel properties with hydrogen/carbon molar ratios(n H/C)and molecular weight(M).The results from the least-square method implicate that the coupling of H/C molar ratio and M is suitable for the estimation of density,NHOC,viscosity and eff ectiveness for the design,manufacture,and evaluation of aviation hydrocarbon fuels. | Xiaoyu Wang Tinghao Jia Lun Pan Qing Liu Yunming Fang Ji-Jun Zou Xiangwen Zhang | 2021 | Transactions of Tianjin University2021,27,2: | 6 |
| 5 | Catalytic removal of phenol from gas streams by perovskite-type catalysts显示文摘Three perovskite-type catalysts prepared by citric acid method are applied to remove phenol from gas streams with the total flow rate of 300 mL/min, corresponding to a GHSV of10,000/hr. LaMnO_3 catalyst is first prepared and further partially substituted with Sr and Cu to prepare La_(0.8)Sr_(0.2)MnO_3 and La_(0.8)Sr_(0.2)Mn_(0.8)Cu_(0.2)O_3, and catalytic activities and fundamental characteristics of these three catalysts are compared. The results show that phenol removal efficiency achieved with La_(0.8)Sr_(0.2)Mn_(0.8)Cu_(0.2)O_3 reaches 100% with the operating temperature of 200°C and the rate of mineralization at 300°C is up to 100%, while the phenol removal efficiencies achieved with La_(0.8)Sr_(0.2)MnO_3 and LaMnO_3 are up to 100% with the operating temperature of 300°C and 400°C, respectively. X-ray photoelectron spectroscopy(XPS) analysis shows that the addition of Sr and Cu increases the lattice oxygen of La_(0.8)Sr_(0.2)Mn_(0.8)Cu_(0.2)O_3, and further increases mobility or availability of lattice oxygen. The results indicate that La_(0.8)Sr_(0.2)Mn_(0.8)Cu_(0.2)O_3 has the best activity for phenol removal among three catalysts prepared and the catalytic activity of phenol oxidation is enhanced by the introduction of Sr and Cu into LaMnO_3. Apparent activation energy of 48 k J/mol is calculated by Mars–Van Krevelen Model for phenol oxidation with La_(0.8)Sr_(0.2)Mn_(0.8)Cu_(0.2)O_3 as catalyst. | Dai Ling Chen Kuan Lun Pan Moo Been Chang | 2017 | Journal of Environmental Sciences2017,29,6: | 5 |
| 6 | CoP nanoparticles embedded in P and N co-doped carbon as efficient bifunctional electrocatalyst for water splitting显示文摘Noble-metal-free hydrogen/oxygen evolution reaction(HER/OER) electrocatalysts, especially bifunctional electrocatalysts, are essential for overall water splitting, but their performance is impeded by many factors like poor electrical conductivity. Herein, we fabricated cobalt phosphide(Co P) nanoparticles embedded in P and N co-doped carbon(PNC) matrix(Co P@PNC) to fully realize the high activity of Co P by maximizing its conductivity. Simply a carbonization coupled phosphidation approach was utilized where Co ions and organic ligands of Co-MOF were transferred into Co P and P and N co-doped carbon. The synthesized material shows an ideal electrical conductivity, excellent HER(overpotential of-84 m V and-120 m V @10 m A cm^(-2) in acidic and alkaline medias, respectively) and OER(overpotential of 330 m V@10 m A cm^(-2) in alkaline media) performances. Further, Co P@PNC acts as a superior catalyst for both anode and cathode to catalyze overall water splitting and only requires an voltage of 1.52 V to deliver a current density of 10 m A cm^(-2), superior to the noble-metal catalysts system(Pt/C//IrO_2) and the reported noble-metal-free bifunctional electrocatalysts. | Zeqi Zhou Nasir Mahmood Yongchao Zhang Lun Pan Li Wang Xiangwen Zhang Ji-Jun Zou | 2017 | Journal of Energy Chemistry2017,26,6: | 4 |
| 7 | Framework Zr Stabilized PtSn/Zr-MCM-41 as a Promising Catalyst for Non-oxidative Ethane Dehydrogenation显示文摘Non-oxidative ethane dehydrogenation is a promising route to produce ethene.Herein,PtSn supported catalysts were investigated to achieve better ethane dehydrogenation performance by introduction of different Zr promoters,i.e.,framework Zr and ZrO_(2),to mesoporous MCM-41.In-situ XRD,TEM and CO chemisorption show that aggregation of metal particles and phase segregation of Pt_(3)Sn to Pt and PtSn_(3) at high temperature occur for PtSn/M,leading to bad ethane dehydrogenation activity.Strong interaction be-tween ZrO_(2) and PtSn species,as proved by XPS,results in restrained metal particles,which promotes the initial reactivity.However,Pt phase generated on surface is disadvantageous for the desorption of produced ethene as indicated by CO-IR and C_(3)H_(6)-TPD,and pyridine-IR and NH_(3)-TPD indicate strong acidity generated.Both deactivate the catalyst rapidly by deep dehydrogenation and coking.Moderate interaction between PtSn species and Si-O-Zr with much weaker acidity is formed when framework Zr is incorporated into MCM-41,which benefits the dispersion of metal particles,formation of Pt_(3)Sn/Pt species and stabilization of metal species from phase segregation.Outstanding initial ethane conversion and ethene selectivity of ca.99%were achieved for the optimal PtSn/ZrM,which is more coking-tolerant and stable by generating graphitic carbon mainly on support instead of active metals. | Jisheng Xu Chengxiang Shi Shuguang Zhang Qiancheng Zheng Lun Pan Xiangwen Zhang Ji-Jun Zou | 2022 | Chinese Journal of Chemistry2022,40,8: | 2 |
| 8 | Development of High-Energy-Density Liquid Aerospace Fuel:A Perspective显示文摘Aerospace aircraft has significantly improved the life quality of human beings and extended the capability of space explosion since its appearance in 1903,in which liquid propellants or fuels provide the key power source.For jet fuels,its property of energy density plays an important role in determining the flight range,load,and performance of the aircraft.Therefore,the design and fabrication of high-energy-density(HED)fuels attract more and more attention from researchers all over the world.Herein,we briefly introduce the development of liquid jet fuels and HED fuels and demonstrate the future development of HED fuels.To further improve the energy density of fuel,the approaches of design and construction of multi-cyclic and stained molecule structures are proposed.To break through the density limit of hydrocarbon fuels,the addition of energetic nanoparticles in HED fuels to produce nanofluid or gelled fuels may provide a facile and effective method to significantly increase the energy density.This work provides the perspective for the development of HED fuels for advanced aircrafts. | Jiaorong Nie Tinghao Jia Lun Pan Xiangwen Zhang Ji-Jun Zou | 2022 | Transactions of Tianjin University2022,28,1: | 2 |
| 9 | High-energy-density gelled fuels with high stability and shear thinning performance显示文摘Gelled fuels are the very promising propellants for new-generation rocket and ramjet propulsion.Here we report a new type of low-molecular mass organic gellant(Z),and prepared four kinds of stable gelled fuels based on HD-01,HD-03,RP-3 and QC liquid fuels,with the critical gellant concentration less than 1%(mass).The characterizations show that the gellant can form 3D network structure,via hydrogen bonding,π-πstacking and van der Waals forces,to fix fuel molecules during the formation of gelled fuels.So,the gelled fuels show high stability,with the remaining gel mass of 0.25%(mass)Z/HD-01 more than 90%even at high centrifugal speed of 7500 r·min^(-1),but the rheological property test shows that all gelled fuels have obvious shear thinning property,which benefits its storage in gelled state while supply in liquid state.The gelation of liquid fuels by gellant Z can increase the volumetric net heat of combustion(for HD-01,it increases from 39.58 MJ·L^(-1) to 40.76 MJ·L^(-1) with 1%(mass)Z),and liquefied gelled fuels show the comparable ignition delay time with the pristine liquid fuels.So,the gelled fuels made by gellant Z have better stability,shear thinning and combustion performances,which have great potential for the practical application. | Yang Liu Hongzhi Zhang Lun Pan Kang Xue Xiangwen Zhang Ji-Jun Zou | 2022 | Chinese Journal of Chemical Engineering2022,35,3: | 2 |
| 10 | Influence of Continuous Bending Process on Texture Evolution and Mechanical Properties of AZ31 Magnesium Alloy显示文摘Mg–3Al–1Zn alloy sheets have been deformed by continuous bending(CB) to investigate the effects of pro cessing parameters(bending angle and repetitive passes) on the texture and formability. The samples exhibited a bimoda microstructure with abnormal growth grains in the surface region and fine grains distributed in the center after CB process followed by annealing. The texture evolution measured by XRD indicated that the basal poles were rotated from ND toward RD, and the texture intensity decreased with the bending angle decreasing and repetitive passes increasing Compared with the as-received sample, the yield strength of CBA-120-2 sample significantly decreased from 183 to112 MPa, and a smaller r-value and a larger n-value were obtained. The formability of CB processed samples in annealing condition was significantly enhanced with the highest of Erichsen value of 5.4 mm, increased by about 135%. The improvement of formability was likely attributed to the weakened and RD-tilt basal texture and coarse grains in the surface part. | Ting-Zhuang Han Guang-Sheng Huang Lun Huang Bin Jiang Guan-Gang Wang Ai-Tao Tang Fu-Sheng Pan | 2018 | Acta Metallurgica Sinica(English Letters)2018,31,3: | 2 |
| 11 | Modeling diurnal variation of ground thermal radiance images using energy balance model and endmember composing technique显示文摘Modeling and analyzing dynamic changes of land thermal radiance scenes play an important role in thermal remote sensing.In this paper,the diurnal variation of ground surface thermal scene is mainly discussed.Firstly,based on the land surface energy balance equation,the diurnal variation of land surface temperatures(LSTs) over bare land covers were simulated by an analytical thermal model with second harmonic terms,and the diurnal LST variation of vegetation canopy was simulated using the Cupid model.Secondly,normalized difference vegetation index(NDVI),normalized difference water index(NDWI),and ratio resident-area index(RRI) were used to evaluate the endmember abundance of four land cover types including vegetation,bare soil,impervious and water area,which were calculated from IKONOS visible and near infrared(VNIR) bands.Finally,the thermal radiance scenes at various times and view angles were modeled based on the linear-energy-mixing hypothesis.The results showed that the simulated daily LST variations for vegetated and bare surfaces are correlated with the measured values with a maximum standard deviation of 2.7°C,that land thermal radiant textures with high-resolution are restored from the linear-energy-mixing method,and that the information abundance of the scene are related to the distribution of land cover,the imaging time,and the view angle. | ZHAO LiMin GU XingFa YU Tao WAN Wei XIONG Pan XIE YanHua ZHANG Lun | 2012 | Science China(Technological Sciences)2012,55,11: | 2 |
| 12 | Evaluation of Climatic Comfort of Living Environment based on Age Differentials in Beijing-Tianjin-Hebei Area显示文摘Somatosensory comfort is mainly determined by the Temperature and Humidity Index(THI)with Wind Efficiency Index(WEI),but this conventional usage of these indicators does not capture the age-related differentials.Here we resolved this gap with a modification of the climatic comfort definition and method in a national standard,denoted as the Relative Climate Sensitive Index(RCSI),which incorporated the age-related vulnerability scores determined through online questionnaires with a scoring method,for each of the age-related and adaptive climatic comfort responses to changes in residence with Beijing-Tianjin-Hebei(BTH)region as an example.First,the result showed that the human comfort of living environment decreased with age in the BTH region,implicating age obviously impacted comfort,and weak adaptability made the elderly the relatively most high-risk group-their suitable region was less than a quarter of the whole study region.Second the adverse effects of persistent hot weather on comfort,indicating global warming as the leading driver of dwindling comfort over recent years.As the warming was more significant in the southeastern part,all these forces combined had there a hotspot,appealing for extra attention.Last this improved evaluation accorded with actual situation to captured high-risk groups with their distributions. | Siyu Liu Buju Long Zhihua Pan Fei Lun Yu Song Weiying Yuan Na Huang Ziyuan Zhang Shangqian Ma | 2020 | Ecosystem Health and Sustainability2020,6,1: | 1 |
| 13 | Review on design, preparation and performance characterization of gelled fuels for advanced propulsion显示文摘With the increasing demand for high-performance and safe fuels in aerospace propulsion systems,gelled fliels have attracted increasing attention.Because of their unique structure,gelled fuels exhibit the advantages of both solid and liquid fliels,such as high energy density,controllable thrust and storage safety.This review provides an overview on design,preparation and performance characterization of gelled fuels.The composition,preparation process and gelation mechanism of gelled high-energy-density fuels are described.Considering these aspects,the rheology and flow behavior of gelled fuels is summarized in terms of the shear thinning property,dynamic viscoelasticity and thixotropy.Moreover,the progress of atomization of gelled fuels is reviewed with a focus on the effect of atomizing nozzles.In addition,the experiments and theoretical models of single droplet combustion and combustor combustion are described.Finally,research directions for the development and application of gelled fuels are suggested. | Kang Xue Jinwen Cao Lun Pan Xiangwen Zhang Ji-Jun Zou | 2022 | Frontiers of Chemical Science and Engineering2022,16,6: | 1 |
| 14 | 2020 Roadmap on gas-involved photo-and electro-catalysis显示文摘Green reactions not only provide us chemical products without any pollution,but also offer us the viable technology to realize difficult tasks in normal conditions.Photo-,photoelectro-,and electrocatalytic reactions are indeed powerful tools to help us to embrace bright future.Especially,some gas-involved reactions are extremely useful to change our life environments from energy systems to liquid fuels and cost-effective products,such as H2 evolution(H2 production),02 evolution/reduction,CO2 reduction,N2 reduction(or N2 fixation) reactions.We can provide fuel cells clean H2 for electric vehicles from H2 evolution reaction(HER),at the same time,we also need highly efficient 02 reduction reaction(ORR) in fuel cells for improving the reaction kinetics.Moreover,we can get the clean oxidant O2 from water through O2 evolution reaction(OER),and carry out some reactions without posing any pollution to reaction systems.Furthermore,we can translate the greenhouse gas CO2 into useful liquid fuels through CO2 reduction reaction(CRR).Last but not the least,we can get ammonia from N2 reduction reaction(NRR),which can decrease energy input compared to the traditional Hubble process.These reactions,such as HER,ORR,OER,CRR and NRR could be realized through solar-,photoelectro-and electro-assisted ways.For them,the catalysts used play crucial roles in determining the efficiency and kinds of products,so we should consider the efficiency of catalysts.However,the cost,synthetic methods of catalysts should also be considered.Nowadays,significant progress has been achieved,however,many challenges still exist,reaction systems,catalysts underlying mechanisms,and so on.As extremely active fields,we should pay attention to them.Under the background,it has motivated us to contribute with a roadmap on ’GasInvolved Photo-and Electro-Catalysis’. | Yulu Yang Yang Tang Haomin Jiang Yongmei Chen Pingyu Wan Maohong Fan Rongrong Zhang Sana Ullah Lun Pan Ji-Jun Zou Mengmeng Lao Wenping Sun Chao Yang Gengfeng Zheng Qiling Peng Ting Wang Yonglan Luo Xuping Sun Alexander S.Konev Oleg V.Levin Panagiotis Lianos Zhuofeng Hu Zhurui Shen Qinglan Zhao Ying Wang Nadia Todorova Christos Trapalis Matthew V.Sheridan Haipeng Wang Ling Zhang Songmei Sun Wenzhong Wang Jianmin Ma | 2019 | Chinese Chemical Letters2019,30,12: | 1 |
| 15 | Thixotropic composite hydrogels based on agarose and inorganic hybrid gellants显示文摘Water can be used as oxidant in conjunction with metal particles to form metal-water propellant to increase the energy of propellant.For this application,water needs to be stored in form of solid and capable of becoming liquid when use.Stable and thixotropic hydrogel has good potential as water-retaining material and oxidant of metal-based propellant.In this study,we prepared organic/inorganic composite hydrogels by combining inorganic gellants hectorite and fumed silica with organic gellant agarose,respectively.The total content of the gellants can be reduced to less than 2%by adding agarose.The influence of agarose on water content,phase transition temperature,centrifugal stability and other basic physical properties of composite hydrogels were discussed.The results show that the composite hydrogels have better thixotropy and stability than pure inorganic hydrogels,and the gel-sol transformation can be realized by applying shear force or heating to the phase transition temperature.The composite hydrogels have good shear thinning ability and improved mechanical stability.Fumed silica/agarose hydrogels have better physical stability,while the thixotropy and shear thinning ability of hectorite/agarose hydrogels are better. | Hongzhi Zhang Huiyan Guo Yang Liu Chengxiang Shi Lun Pan Xiangwen Zhang Ji-Jun Zou | 2023 | Chinese Journal of Chemical Engineering2023,54,2: | 1 |
| 16 | Review of micro-expression spotting and recognition in video sequences显示文摘Facial micro-expressions are short and imperceptible expressions that involuntarily reveal the true emotions that a person may be attempting to suppress,hide,disguise,or conceal.Such expressions can reflect a person's real emotions and have a wide range of application in public safety and clinical diagnosis.The analysis of facial micro-expressions in video sequences through computer vision is still relatively recent.In this research,a comprehensive review on the topic of spotting and recognition used in micro expression analysis databases and methods,is conducted,and advanced technologies in this area are summarized.In addition,we discuss challenges that remain unresolved alongside future work to be completed in the field of micro-expression analysis. | Hang PAN Lun XIE Zhiliang WANG Bin LIU Minghao YANG Jianhua TAO | 2021 | Virtual Reality & Intelligent Hardware2021,3,1: | 1 |
| 17 | Conversion of lignin oil and hemicellulose derivative into high-density jet fuel显示文摘Synthesizing high-density fuel from lignocellulose can not only achieve green and low-carbon development,but also expand the feedstock source of hydrocarbon fuel.Here,we reported a route of producing high-density fuel from lignin oil and hemicellulose derivative cyclopentanol through alkylation and hydrodeoxygenation,HY with SiO_(2)/Al_(2)O_(3) molar ratio of 5.3 was screened as the alkylation catalyst in the reaction of model phenolic compounds and mixtures,and the reaction conditions were optimized to achieve conversion of phenolic compounds higher than 87%and selectivity of bicyclic and tricyclic products higher than 99%.Then two phenolic pools simulating the composition of two typic lignin oils were studied to validate the alkylation and analyze the competition mechanism of phenolic compounds in mixture system.Finally,real lignin oil from depolymerized of beech powder was tested,and notably80%of phenolic monomers in the oil were converted into fuel precursor.After hydrodeoxygenation,the alkylated product was converted to fuel blend with a density of 0.91 g/mL at 20℃and a freezing point lower than-60℃,very promising as high density fuel.This work provides a facile and energyefficient way of synthesizing high-performance jet fuel directly from lignocellulosic derivatives,which decreases processing energy consumption and improve the utilization rate of feedstock. | Sichao Yang Chengxiang Shi Zhensheng Shen Lun Pan Zhenfeng Huang Xiangwen Zhang Ji-Jun Zou | 2023 | Journal of Energy Chemistry2023,,2: | 1 |
| 18 | Experimental and kinetic study on ignition delay times of DME/H2/02/Ar mixtures显示文摘 | Pan Lun Hu Er-jiang Zhang Jia-xiang | 2014 | Combustion and Flame2014,161,3: | 1 |
| 19 | Multilevel Reversible Data Hiding Using Modification of Prediction Er- rors显示文摘 | Pan Che - Lun Hong Wien Chen Tung - Shou | 2011 | Intemationul Journal of Innovative Computing In- formation and Control2011,7,9: | 1 |
| 20 | Photocatalytic Synthesis of High-Energy-Density Fuel:Catalysts,Mechanisms,and Challenges显示文摘High-energy-density liquid hydrocarbon fuels are generally synthesized using various chemical reactions to improve the performance(e.g.,range,load,speed)of aerospace vehicles.Compared with conventional fuels,such as aviation kerosene and rocket kerosene,these liquid hydrocarbon fuels possess the advantages of high-energy-density and high volumetric calorifi c value;therefore,the fuels have important application value.The photocatalytic process has shown great potential for the synthesis of a diverse range of fuels on account of its unique properties,which include good effi ciency,clean atomic economy,and low energy consumption.These characteristics have led to the emergence of the photocatalytic process as a promising complement and alternative to traditional thermocatalytic reactions for fuel synthesis.Extensive eff ort has been made toward the construction of catalysts for the multiple photocatalytic syntheses of high-energy-density fuels.In this review,we aim to summarize the research progress on the photocatalytic synthesis of high-energy-density fuel by using homogeneous and heterogeneous catalytic reactions.Specifi cally,the synthesis routes,catalysts,mechanistic features,and future challenges for the photocatalytic synthesis of high-energy-density fuel are described in detail.The highlights of this review not only promote the development of the photocatalytic synthesis of high-energy-density fuel but also expand the applications of photocatalysis to other fi elds. | Jie Xiao Jiaxiang Zhang Lun Pan Chengxiang Shi Xiangwen Zhang Ji-Jun Zou | 2021 | Transactions of Tianjin University2021,27,4: | 1 |