This study presents a comprehensive comparison of the electro-osmosis treatments of heavy metal contaminated soil using electrokinetic geosynthetics(EKG)and iron electrodes in terms of both theoretical analysis and ex...This study presents a comprehensive comparison of the electro-osmosis treatments of heavy metal contaminated soil using electrokinetic geosynthetics(EKG)and iron electrodes in terms of both theoretical analysis and experimental research.The variation in the electrical parameters was analyzed,and the results show linear relationships between temperature and conductivity and between the soil and pore water conductivities.The average cathode contact resistance of iron is60%smaller than that of EKG,whereas the average anode contact resistance of EKG is56%smaller than that of iron.The values of the power consumption per unit mass of contaminants for EKG and iron are1.895and1.989kJ/g,respectively.After electro-osmosis,the number of soil pores increased,but the average area decreased,with an average area of0.9100–1.0504μm^2.Based on microstructure analysis,we obtained higher electroosmotic efficiency and realized the effective analysis and utilization between macroscopic and microscopic parameters.展开更多
This study examines the intricate occurrences of thermal and solutal Marangoni convection in three-layered flows of viscous fluids,with a particular emphasis on their relevance to renewable energy systems.This researc...This study examines the intricate occurrences of thermal and solutal Marangoni convection in three-layered flows of viscous fluids,with a particular emphasis on their relevance to renewable energy systems.This research examines the flow of a three-layered viscous fluid,considering the combined influence of heat and solutal buoyancy driven Rayleigh-Bénard convection,as well as thermal and solutal Marangoni convection.The homotopy perturbation method is used to examine and simulate complex fluid flow and transport phenomena,providing important understanding of the fundamental physics and assisting in the optimization of various battery configurations.The inquiry examines the primary elements that influence Marangoni convection and its impact on battery performance,providing insights on possible enhancements in energy storage devices.The findings indicate that the velocity profiles shown graphically exhibit a prominent core zone characterized by the maximum speed,which progressively decreases as it approaches the walls of the channel.This study enhances our comprehension of fluid dynamics and the transmission of heat and mass in intricate systems,which has substantial ramifications for the advancement of sustainable energy solutions.展开更多
基金Project(51378469)supported by the National Natural Science Foundation of ChinaProject(2017C33034)supported by the Application Research of Public Welfare Technology in Zhejiang Province,China+1 种基金Project(LQ18E080001)supported by the Zhejiang Provincial Natural Science Foundation,ChinaProject(12017A610304)supported by the Natural Science Foundation of Ningbo City,China
文摘This study presents a comprehensive comparison of the electro-osmosis treatments of heavy metal contaminated soil using electrokinetic geosynthetics(EKG)and iron electrodes in terms of both theoretical analysis and experimental research.The variation in the electrical parameters was analyzed,and the results show linear relationships between temperature and conductivity and between the soil and pore water conductivities.The average cathode contact resistance of iron is60%smaller than that of EKG,whereas the average anode contact resistance of EKG is56%smaller than that of iron.The values of the power consumption per unit mass of contaminants for EKG and iron are1.895and1.989kJ/g,respectively.After electro-osmosis,the number of soil pores increased,but the average area decreased,with an average area of0.9100–1.0504μm^2.Based on microstructure analysis,we obtained higher electroosmotic efficiency and realized the effective analysis and utilization between macroscopic and microscopic parameters.
基金Project(52276068)supported by the National Natural Science Foundation of China。
文摘This study examines the intricate occurrences of thermal and solutal Marangoni convection in three-layered flows of viscous fluids,with a particular emphasis on their relevance to renewable energy systems.This research examines the flow of a three-layered viscous fluid,considering the combined influence of heat and solutal buoyancy driven Rayleigh-Bénard convection,as well as thermal and solutal Marangoni convection.The homotopy perturbation method is used to examine and simulate complex fluid flow and transport phenomena,providing important understanding of the fundamental physics and assisting in the optimization of various battery configurations.The inquiry examines the primary elements that influence Marangoni convection and its impact on battery performance,providing insights on possible enhancements in energy storage devices.The findings indicate that the velocity profiles shown graphically exhibit a prominent core zone characterized by the maximum speed,which progressively decreases as it approaches the walls of the channel.This study enhances our comprehension of fluid dynamics and the transmission of heat and mass in intricate systems,which has substantial ramifications for the advancement of sustainable energy solutions.