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| 1 | Synergistic effects of lanthanum oxide on a novel intumescent flame retardant polypropylene system显示文摘 | Yantao Li Bin Li Jinfeng Dai He Jia Suliang Gao | 2007 | Polymer Degradation and Stability2007,,1: | 2 |
| 2 | Investigation on ultimate bearing capacity of recycled aggregate concrete-filled steel tubular short columns under axial compressive load 显示文摘 | Zhang Zhaoqiang Xiao Suliang Lei Jinsong | 2010 | Advanced Materials Research2010,,: | 1 |
| 3 | Experimental Research of Thermoacoustic Prime Mover 显示文摘 | ZHOU Suliang Matsubara Y | 1998 | Cryogenics1998,38,8: | 1 |
| 4 | Grey forecasting model for active Vibration control systems显示文摘 | Zou Lihua Dai Suliang John Butterworth Xing Ma Bo Dong Aiping Liu | 2009 | Journal of Sound and Vibration2009,322,45: | 1 |
| 5 | Effect of polysiloxane and silane-modified SiO2 on a novel intumescent flame retardant polypropylene system 显示文摘 | GAO Suliang LI Bin BAI Peng | 2010 | Polym Adv Technol2010,21,10: | 1 |
| 6 | Investigation on flame retardancy and antidripping of new intumescent flame retardant polypropylene film显示文摘 | Peng Bai Bin Li Suliang Gao | 2010 | Polymers & Polymer Composites2010,18,: | 1 |
| 7 | Investigation on flame retardancy and antidripping of new intumescent flame retardant polypropylene film显示文摘 | Peng Bai Bin Li Suliang Gao | 2010 | Polymers and Polymer Composites2010,18,: | 1 |
| 8 | Effect of polysiloxane and silane-modified SiO2 on a novel intumescent flame retardant polypropylene system显示文摘 | GAO Suliang LI Bin BAI Peng | | 0,,: | 1 |
| 9 | Investigation on flame retardancy and antidripping of new intumescent flame retardant polypropylene film显示文摘 | BAI Peng LI Bin GAO Suliang | | 0,,: | 1 |
| 10 | Mycoplasma pneumoni- ae 23S rRNA Gene Mutations and Mechanisms of Ma- crolide Resistance 显示文摘 | Yun Ye Suliang Li Yajun Li | 2013 | Laboratory Medicine2013,44,1: | 1 |
| 11 | Effect of polysiloxane and silane-modified SiO2 on a novel intumescent flame retardant polypropylene system 显示文摘 | GAO Suliang LI Bin BAI Peng | 2010 | Polym Adv Technol2010,21,10: | 1 |
| 12 | Mycop- lasma pneumoniae 23S rRNA Gene Mut- ations and Mechanisms of Macrolide Re- sistance 显示文摘 | Yun Y Suliang LY Li TS | 2013 | Laboratory Medicine2013,44,1: | 1 |
| 13 | Investigation on flame retardancy and antidripping of new intumescent flame retardant polypropylene film 显示文摘 | BAI Peng LI Bin GAO Suliang | 2010 | Polym Polym Compos2010,18,9: | 1 |
| 14 | Investigation on flame retardancy and antidripping of new intumescent flame retardant polypropylene film显示文摘 | Bai Peng Li Bin Gao Suliang | 2010 | Polymers &Polymer Composites2010,18,: | 1 |
| 15 | Grey forecasting model for active vibration control systems显示文摘 | Zou Lihua Dai Suliang John Butterworth Xing Ma Bo Dong Aiping Liu | 2009 | Journal of Sound and Vibration2009,322,45: | 1 |
| 16 | Vector Control of the Single-Phase Inverter Based on the Extended and Virtual Circuits显示文摘A vector control based on the extended equivalent circuit and virtual circuits is proposed for the single-phase inverter.By the extended circuit,the other two phase voltages can be extended by the output voltage of the single-phase inverter so as to construct the voltage vector.The voltage outer-loop is to control the voltage vector in dq coordinate system,and the output voltage can track the target value without deviation in steady state.By designing the virtual circuit,the voltage inner-loop can achieve approximate decoupling and improve the dynamic response under the changeable load.Compared with the traditional dual closed-loop control,the proposed dual closed-loop control scheme only needs to detect and control the voltage without the current.It not only can achieve good control effect,but also reduce the complexity of the hardware.Finally,the simulation and experimental results show that the single-phase inverter has good static and dynamic characteristics regardless of stable load or changeable load. | Tao Xu Ming Yang Naizhe Diao Xianrui Sun Suliang Wu Zhuangzhuang Shen Hongzhi Chen Chonghui Song | 2018 | CES Transactions on Electrical Machines and Systems2018,2,3: | 0 |
| 17 | Modeling and Simulation of Hydrogen Energy Storage System for Power-to-gas and Gas-to-power Systems显示文摘By collecting and organizing historical data and typical model characteristics,hydrogen energy storage system(HESS)-based power-to-gas(P2G)and gas-to-power systems are developed using Simulink.The energy transfer mechanisms and numerical modeling methods of the proposed systems are studied in detail.The proposed integrated HESS model covers the following system components:alkaline electrolyzer(AE),highpressure hydrogen storage tank with compressor(CM&H_(2) tank),and proton-exchange membrane fuel cell(PEMFC)stack.The unit models in the HESS are established based on typical U-I curves and equivalent circuit models,which are used to analyze the operating characteristics and charging/discharging behaviors of a typical AE,an ideal CM&H_(2) tank,and a PEMFC stack.The validities of these models are simulated and verified in the MicroGrid system,which is equipped with a wind power generation system,a photovoltaic power generation system,and an auxiliary battery energy storage system(BESS)unit.Simulation results in MATLAB/Simulink show that electrolyzer stack,fuel cell stack and system integration model can operate in different cases.By testing the simulation results of the HESS under different working conditions,the hydrogen production flow,stack voltage,state of charge(SOC)of the BESS,state of hydrogen pressure(SOHP)of the HESS,and HESS energy flow paths are analyzed.The simulation results are consistent with expectations,showing that the integrated HESS model can effectively absorb wind and photovoltaic power.As the wind and photovoltaic power generations increase,the HESS current increases,thereby increasing the amount of hydrogen production to absorb the surplus power.The results show that the HESS responds faster than the traditional BESS in the microgrid,providing a solid theoretical foundation for later wind-photovoltaic-HESS-BESS integration. | Jianlin Li Guanghui Li Suliang Ma Zhonghao Liang Yaxin Li Wei Zeng | 2023 | Journal of Modern Power Systems and Clean Energy2023,11,3: | 0 |
| 18 | Study on Systematic Separation Method for Plutonium and Its Fission Products Palladium,Silver,Cadmium,Tin,Antimony,Zirconium显示文摘Fission yield is the probability of a certain nuclide or a mass chain produced in the fission process.It characterizes the relationship between the nuclide(or mass chain)of a fission product generated in the fission process and the total fission number.It is usually expressed by the number of atoms of the fission product produced in each hundred fissions.So far,many techniques have been developed to measure fission yield,including radiochemistry,mass spectrometry and direct gamma-ray spectrometry.Among them,direct gamma-ray spectrometry can only measure nuclides with high fission yield. | YU Zhenhua WANG Xiufeng DING Youqian SONG Zhijun YANG Suliang YANG Zhihong ZHANG Shengdong | 2018 | 中国原子能科学研究院年报2018,,1: | 0 |
| 19 | Extraction of Actinide Ion by Asymmetrical N,N′-dimethyl-N,N′-dioctyl-diglycolamide显示文摘In order to develop sustainable nuclear energy,agreat effort has been made for designing new extractants to selectively separate all actinides from nitric acid solutions of dissolution of spent fuel.Among those,tetraalkyldiglycolamide(TRDGA)ligands,such as N,N,N′,N′-tetra-octyldiglycolamide(TODGA)and N,N,N′,N′-tetra-isobutyl diglycolamide(TiBDGA),have shown great promise. | YANG Suliang ZHANG Yan LIU Qian ZHOU Jin MA Siqi TIAN Guoxin | 2018 | 中国原子能科学研究院年报2018,,1: | 0 |
| 20 | Study on Coordination of Amidoxime Small Molecule Ligand with Uranyl Ion under Seawater Condition显示文摘It has been found that uranium concentration in seawater is consistent in various locations around the world,even at depths up to 5 000 feet,at 3 parts per billion(ppb).With constant uranium concentration of 3ppb in a total of 1.3×1022 liters of seawater,the estimated amount of uranium is about 4billion tons in the ocean,and uranium exists mainly in U(Ⅵ)oxidation state as uranyl carbonates,about 98%. | LIU Tingting TIAN Guoxin YANG Suliang LIU Qian MA Fuqiu XUE Yun | 2018 | 中国原子能科学研究院年报2018,,1: | 0 |