A dielectric barrier discharge(DBD) reactor is introduced to generate H2O2 by non-thermal plasma with a mixture of oxygen and water mist produced by an ultrasonic atomizer.The results of our experiment show that the...A dielectric barrier discharge(DBD) reactor is introduced to generate H2O2 by non-thermal plasma with a mixture of oxygen and water mist produced by an ultrasonic atomizer.The results of our experiment show that the energy yield and concentration of the generated H2O2 in the pulsed discharge are much higher than that in AC discharge,due to its high energy efficiency and low heating effect.Micron-sized liquid droplets produced by an ultrasonic atomizer in water mist have large specific surface area,which greatly reduces mass transfer resistance between hydroxyl radicals and water liquids,leading to higher energy yield and H2O2 concentration than in our previous research.The influence of applied voltage,discharge frequency,and environmental temperature on the generated H2O2 is discussed in detail from the viewpoint of the DBD mechanism.The H2O2 concentration of 30 mg l^-1,with the energy yield of 2 gkW^-1h^-1 is obtained by pulsed discharge in our research.展开更多
文章以某款增程式电动汽车(range-extended electric vehicle,REEV)为研究对象,设计了整车控制策略,借助整车性能仿真软件CRUISE和多学科设计优化软件Isight搭建了整车性能仿真和优化模型,并采用改进的非支配排序遗传算法(non-dominated...文章以某款增程式电动汽车(range-extended electric vehicle,REEV)为研究对象,设计了整车控制策略,借助整车性能仿真软件CRUISE和多学科设计优化软件Isight搭建了整车性能仿真和优化模型,并采用改进的非支配排序遗传算法(non-dominated sorting genetic algorithm,NSGA-Ⅱ)对增程器控制参数进行多目标优化。优化结果表明,在满足整车能量需求的前提下,优化后的增程器总发电量减少了7.34%,汽车百公里燃油消耗量降低了8.28%。展开更多
文摘A dielectric barrier discharge(DBD) reactor is introduced to generate H2O2 by non-thermal plasma with a mixture of oxygen and water mist produced by an ultrasonic atomizer.The results of our experiment show that the energy yield and concentration of the generated H2O2 in the pulsed discharge are much higher than that in AC discharge,due to its high energy efficiency and low heating effect.Micron-sized liquid droplets produced by an ultrasonic atomizer in water mist have large specific surface area,which greatly reduces mass transfer resistance between hydroxyl radicals and water liquids,leading to higher energy yield and H2O2 concentration than in our previous research.The influence of applied voltage,discharge frequency,and environmental temperature on the generated H2O2 is discussed in detail from the viewpoint of the DBD mechanism.The H2O2 concentration of 30 mg l^-1,with the energy yield of 2 gkW^-1h^-1 is obtained by pulsed discharge in our research.