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| 1 | Accelerated methane storage in clathrate hydrates using surfactantstabilized suspension with graphite nanoparticles显示文摘In this study,enhanced kinetics of methane hydrate formation in the sodium dodecyl sulfate(SDS)solution with different concentrations of suspended graphite nanoparticles(GNPs)were investigated at 6.1-9.0 MPa and 274.15 K.The GNPs with rough surfaces and excellent thermal conductivity not only provided a considerable number of microsites for hydrate nucleation but also facilitated the fast hydrate heat transfer in the suspension system.At a relatively low pressure of 6.1 MPa,the suspension with 0.4 wt%of GNPs exhibited the minimum induction time of 22 min and maximum methane uptake of 126.1 cm3·cm-3.However,the methane storage performances of the suspensions with higher and lower concentrations of GNPs were not satisfactory.At the applied pressure,the temperature increase arising from the hydrate heat in the suspension system with the optimized concentration(0.4 wt%)of GNPs was more significant than that in the traditional SDS solution.Furthermore,compared with those of the system without GNPs,enhanced hydration rate and storage capacity were achieved in the suspensions with GNPs,and the storage capacities were increased by 3.9%-17.0%.The promotion effect of GNPs on gas hydrate formation at low pressure is much more obvious than that at high pressure. | Liang Yang Xin Wang Daoping Liu Guomin Cui Binlin Dou Juan Wang Shuqing Hao | 2020 | Chinese Journal of Chemical Engineering2020,28,4: | 4 |
| 2 | Thermodynamic Analysis of Packed Bed Thermal Energy Storage System显示文摘A packed-bed thermal energy storage(PBTES) device, which is simultaneously restricted by thermal storage capacity and outlet temperatures of both cold and hot heat transfer fluids, is characterized by an unstable operation condition, and its calculation is complicated. To solve this problem, a steady thermodynamics model of PBTES with fixed temperatures on both ends was built. By using this model, the exergy destruction, thermocline thickness, thermal storage capacity, thermal storage time, and other key parameters can be calculated in a simple way. In addition, the model explained the internal reason for the change of thermocline thickness during thermal storage and release processes. Furthermore, the stable operation of the PBTES device was analyzed, and it was found that higher inlet temperature of hot air, and lower temperature difference between cold and hot air can produce less exergy destruction and achieve a larger cycle number of stable operation. The work can be employed as the basis of the design and engineering application of PBTES. | GUO Huan XU Yujie GUO Cong CHEN Haisheng WANG Yifei YANG Zheng HUANG Ye DOU Binlin | 2020 | Journal of Thermal Science2020,29,2: | 3 |
| 3 | High temperature CO2 capture using calcium oxide sorbent in a fixed-bed reactor显示文摘 | Dou Binlin Song Yongchen Liu Yingguang | | 0,,1: | 1 |
| 4 | Removal of toxic mercury ( II) from aquatic solutions by synthesized Ti02 nanoparticles 显示文摘 | DOU Binlin CHEN Haisheng | 2011 | Desalination2011,269,1: | 1 |
| 5 | Prediction of SO2 removal efficiency for wet Flue Gas Desulfurization显示文摘 | Binlin Dou Weiguo Pan Qiang Jin | 2009 | Energy Conversion and Management2009,,50: | 1 |
| 6 | Prediction of SO 2 removal efficiency for wet Flue Gas Desulfurization显示文摘 | Binlin Dou Weiguo Pan Qiang Jin Wenhuan Wang Yu Li | 2009 | Energy Conversion and Management2009,,10: | 1 |
| 7 | Adsorption of alkali metal vapor from high-temperature coal-derived gas by solid sorbents显示文摘 | Dou Binlin Shen Wenqin Gao Jinsheng | 2003 | Fuel Processing Technology2003,82,: | 1 |
| 8 | Removal of toxic mercury(II) from aquatic solutions by synthesized TiO 2 nanoparticles显示文摘 | Binlin Dou Haisheng Chen | 2010 | Desalination2010,,1: | 1 |
| 9 | Hydrogen Produc- tion by Sorption-Enhanced Steam Reforming of Glycerol 显示文摘 | Dou Binlin Dupont V Rickett G | 2009 | Bioresour Technol2009,100,14: | 1 |
| 10 | Steam Reforming of Crude Glycerol with in Situ CO2 Sorption 显示文摘 | Dou Binlin Rickett G Dupont V | 2010 | Bioresour Tech- nol2010,101,7: | 1 |
| 11 | High temperature CO2capture using calcium oxide sorbent in a fixed-bed reactor显示文摘 | Dou Binlin Song Yongchen Liu Yingguang | 2010 | Journal of Hazardous Materials2010,183,1: | 1 |
| 12 | Prediction of SO 2 removal efficiency for wet Flue Gas Desulfurization显示文摘 | Binlin Dou Weiguo Pan Qiang Jin Wenhuan Wang Yu Li | 2009 | Energy Conversion and Management2009,,10: | 1 |
| 13 | Catalytic cracking of tar component from high-temperature fuel gas显示文摘 | Binlin Dou Jinsheng Gao Xingzhong Sha | 2003 | Applied thermal engineering2003,23,: | 1 |
| 14 | Prediction of SO2 removal efficiency for Wet FlueGas Desulfurization显示文摘 | Binlin Dou Weiguo Pan Qiang Jin | 2009 | Energy Conversion andManagement2009,,50: | 1 |
| 15 | The regulation mechanism and heat transfer enhancement of composite mixed paraffin and copper foam phase change materials显示文摘Phase change materials(PCMs)have remarkable energy storage capacity and promising applications in the field of thermal control of electronic products.The problem of thermal property improvement and heat transfer of PCMs in metal-foam heatsinks is an important task for thermal management of electronic components.Mixed paraffin samples were prepared by mixing appropriate proportions of paraffin(mass)at various temperatures.Differential scanning calorimetry analysis revealed that the maximum enthalpy of 206.3 J/g is obtained by mixing 20%of 17°C liquid paraffin and 80%of 29℃ solid paraffin.Heating and cooling cycling tests revealed that mixed paraffin exhibits excellent thermal stability and that the regulation method marginally affects thermal stability.Moreover,composites were prepared by embedding PCM into a copper foam by melt impregnation.The thermal conductivity of the composites increased to 4.35 W/(m K),corresponding to 20 times its original value.In addition,density functional theory and experimental results were in good agreement,indicating that the regulation method is practical and effective. | YANG HanXue ZHANG GuanHua DOU BinLin CUI GuoMin YAN XiaoYu LU Wei WANG ZiLong | 2023 | Science China(Technological Sciences)2023,66,8: | 1 |
| 16 | Prediction of SO 2 removal efficiency for wet Flue Gas Desulfurization显示文摘 | Binlin Dou Weiguo Pan Qiang Jin Wenhuan Wang Yu Li | 2009 | Energy Conversion and Management2009,,10: | 1 |
| 17 | Thermogrametric kinetics of MgSO3·6H2O byproduct from magnesia wet flue gas desulfurization显示文摘 | Chen Hui Ge Honghua Dou Binlin | 2009 | Energy & Fuels2009,23,5: | 1 |
| 18 | Flue gas desulfurization with an electrostatic spraying absorber显示文摘 | Binlin Dou | 2008 | Energy and Fuels2008,22,: | 1 |
| 19 | Hydrogen Production from Catalytic Steam Reforming of Biodiesel Byproduct Glycerol:Issues and Challenges显示文摘 | Dou Binlin Song Yongchen Wang Chao | 2014 | Renew Sust Energy Rev2014,30,: | 1 |
| 20 | Phase Equilibrium Characteristics of CO_(2)and Ionic Liquids with[FAP]-Anion Used for Absorption-Compression Refrigeration Working Pairs显示文摘The study of the phase equilibrium characteristics of CO_(2)-ionic liquids(ILs)as new absorption-compression type refrigeration working pairs is of great importance.Three kinds of ILs,i.e.,[emim][FAP],[bmim][FAP]and[hmim][FAP],were chosen as potential absorbents.The solubility of CO_(2)in these ILs was measured experimentally within 0 to 5.0 MPa at temperatures of 293.15 K to 333.15 K,and the effects of temperature,pressure,IL anion and cation structure and stirring action on CO_(2)solubility were also discussed and analyzed.The results showed that the longer alkyl chains in an identical IL family,the alkyl fluoride group in IL anions and the stirring action by a magnetic stirrer had positive effects on the solubility of CO_(2).In the three ILs,[hmim][FAP]possessed the best performance for CO_(2)absorption;the solubility of CO_(2)reached 0.7641 at a pressure of 5 MPa and temperature of 293.15 K,the maximum solubility measured in this work.The CO_(2)-[hmim][FAP]binary mixture is recommended as a potentially applicable working pair for CO_(2)absorption-compression refrigeration systems. | WU Weidong WANG Li LI Xiang LIU Hui ZHANG Hua DOU Binlin | 2021 | Journal of Thermal Science2021,30,1: | 1 |