Abstract:
An electrolyte for iron-air batteries, which is able to increase the discharge capacity of iron-air batteries without concentration control, and an iron-air battery using the electrolyte. The electrolyte for iron-air batteries having an anode containing an iron element may comprise an aqueous solution comprising a discharge reaction promoter containing at least one kind of anion selected from the group consisting of SCN− anions, S2O32− anions and (CH3)2NCSS− anions.
Abstract:
An exhaust gas purification system of the present disclosure includes a first exhaust gas purification device that purifies exhaust gas discharged from an internal combustion engine and a second exhaust gas purification device that additionally purifies the exhaust gas purified by the first exhaust gas purification device, wherein the exhaust gas is exhaust gas with a gaseous composition in which an amount of reducing agents is in excess compared to a stoichiometric gaseous composition and a gaseous composition in which an amount of oxidants is in excess compared to the stoichiometric gaseous composition are alternately switched between, the first exhaust gas purification device includes a three-way catalyst, and the second exhaust gas purification device includes an exhaust gas purification catalyst containing spinel-type MgAlxFe2.00−xO4.00 supporting particles on which Rh is supported, where 0.00
Abstract:
An electrolyte for metal-air batteries, which is able to inhibit the self-discharge of metal-air batteries, and a metal-air battery using the electrolyte. The electrolyte for metal-air batteries having an anode containing at least one kind of metal element selected from aluminum and magnesium, may comprise an aqueous solution comprising a self-discharge inhibitor containing at least one kind of ion selected from the group consisting of an H2P2O72− anion and a Ca2+ cation and at least one kind of ion selected from the group consisting of a CH3S− anion, an S2O32− anion and an SCN− anion.
Abstract:
An electrolyte for iron-air batteries, which is able to increase the discharge capacity of iron-air batteries without concentration control, and an iron-air battery using the electrolyte. The electrolyte for iron-air batteries having an anode containing an iron element may comprise an aqueous solution comprising a discharge reaction promoter containing at least one kind of anion selected from the group consisting of SCN− anions, S2O32− anions and (CH3)2NCSS− anions.
Abstract:
An electrolyte for metal-air batteries, which is able to inhibit the self-discharge of metal-air batteries, and a metal-air battery using the electrolyte. The electrolyte for metal-air batteries having an anode containing at least one kind of metal element selected from aluminum and magnesium, may comprise an aqueous solution comprising a self-discharge inhibitor containing at least one kind of ion selected from the group consisting of an H2P2O72− anion and a Ca2+ cation and at least one kind of ion selected from the group consisting of a CH3S− anion, an S2O32− anion and an SCN− anion.
Abstract translation:能够抑制金属 - 空气电池的自放电的金属 - 空气电池的电解质和使用电解质的金属 - 空气电池。 具有含有选自铝和镁的至少一种金属元素的阳极的金属 - 空气电池的电解质可以包含含有自放电抑制剂的水溶液,所述自放电抑制剂含有至少一种选自H 2 P 2 O 7 - 阴离子和Ca 2+阳离子和选自CH3S-阴离子,S2O32-阴离子和SCN-阴离子的至少一种离子。