As an energy storage medium,hydrogen has drawn the attention of research institutions and industry over the past decade,motivated in part by developments in renewable energy,which have led to unused surplus wind and p...As an energy storage medium,hydrogen has drawn the attention of research institutions and industry over the past decade,motivated in part by developments in renewable energy,which have led to unused surplus wind and photovoltaic power.Hydrogen production from water electrolysis is a good option to make full use of the surplus renewable energy.Among various technologies for producing hydrogen,water electrolysis using electricity from renewable power sources shows greatpromise.To investigate the prospects of water electrolysis for hydrogen production,this review compares different water electrolysis processes,i.e.,alkaline water electrolysis,proton exchange membrane water electrolysis,solid oxide water electrolysis,and alkaline anion exchange membrane water electrolysis.The ion transfer mechanisms,operating characteristics,energy consumption,and industrial products of different water electrolysis apparatus are introduced in this review.Prospects for new water electrolysis technologies are discussed.展开更多
采用高压塑片的方法制备了一种PbO2电极,用X衍射、扫描电镜、火焰原子吸收分光光度法对该电极性能进行了考察,并探讨了该电极降解硝基苯的机理和工艺条件.结果表明,该电极与普通石墨电极相比,CODCr去除率更高,电解5 h CODCr去除率最高可...采用高压塑片的方法制备了一种PbO2电极,用X衍射、扫描电镜、火焰原子吸收分光光度法对该电极性能进行了考察,并探讨了该电极降解硝基苯的机理和工艺条件.结果表明,该电极与普通石墨电极相比,CODCr去除率更高,电解5 h CODCr去除率最高可达65%.由于PbO2电极具有较高的析氧电位,在阳极极化下,PbO2电极表面易生成.OH,这是其电解效率高的主要原因.该电极电解硝基苯的最适条件:ρ(硝基苯)为501.5 mg/L,电极间距为3 cm,溶液pH为7.利用该电极处理含磷酸盐和氯离子的硝基苯废水效果尤为突出,但由于阴极的还原作用,电解过程中硝基苯不能被完全氧化.展开更多
基金supported by the Joint Fund of National Natural Science Foundation of China (U1664259)the National Natural Science Foundation of China (91434106)+1 种基金 the State Grid Fund (SGTYHT/15-JS-193)the Beijing municipal science and technology commission project (Z171100002017024)~~
文摘As an energy storage medium,hydrogen has drawn the attention of research institutions and industry over the past decade,motivated in part by developments in renewable energy,which have led to unused surplus wind and photovoltaic power.Hydrogen production from water electrolysis is a good option to make full use of the surplus renewable energy.Among various technologies for producing hydrogen,water electrolysis using electricity from renewable power sources shows greatpromise.To investigate the prospects of water electrolysis for hydrogen production,this review compares different water electrolysis processes,i.e.,alkaline water electrolysis,proton exchange membrane water electrolysis,solid oxide water electrolysis,and alkaline anion exchange membrane water electrolysis.The ion transfer mechanisms,operating characteristics,energy consumption,and industrial products of different water electrolysis apparatus are introduced in this review.Prospects for new water electrolysis technologies are discussed.
文摘采用高压塑片的方法制备了一种PbO2电极,用X衍射、扫描电镜、火焰原子吸收分光光度法对该电极性能进行了考察,并探讨了该电极降解硝基苯的机理和工艺条件.结果表明,该电极与普通石墨电极相比,CODCr去除率更高,电解5 h CODCr去除率最高可达65%.由于PbO2电极具有较高的析氧电位,在阳极极化下,PbO2电极表面易生成.OH,这是其电解效率高的主要原因.该电极电解硝基苯的最适条件:ρ(硝基苯)为501.5 mg/L,电极间距为3 cm,溶液pH为7.利用该电极处理含磷酸盐和氯离子的硝基苯废水效果尤为突出,但由于阴极的还原作用,电解过程中硝基苯不能被完全氧化.