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Electrolysis anode

Electrochemical methods are very useful in structural studies but are barely applicable for preparative aims. The cause is the limited stability of cation radicals. It is difficult to do low-temperature preparative electrolysis, and the main problem is to dispose of the large amount of heat generated during the electrode work. That is, not much current can be passed through an ordinary-sized electrode without generating too much heat. When potential and temperature control are necessary, only small quantities of a material can be obtained in a reasonable period of time. When potential and temperature control are not necessary, as in Kolbe electrolysis, anodic oxidation is indeed useful as a preparative method. [Pg.94]

DEGRADATION MECHANISMS IN SOLID OXIDE ELECTROLYSIS ANODES Cr POISONING AND CATION INTERDIFFUSION... [Pg.139]

Degradation mechanisms in solid oxide electrolysis anodes Cr poisoning and cation interdiffusion... [Pg.139]

Keywords Hydrogen production, Sulftir-based hybrid cycle, Electrolysis, Anode material. Electronic... [Pg.365]

A large variety of cell constructions, often using gas diffusion electrodes, have been developed or tested [5-7]. Widespread technologies using natural salt matrices for oxidant production in a flow-through regime (Fig. lb) are known as inline electrolysis, tube electrolysis, anodic oxidation, low-amperic electrolysis, electrochemical water activation, or by brand names. In addition, immersion constructions have been reported. Fixed installations and mobile systems are in use (Fig. 2). [Pg.336]

Explain what each of these terms means electrolysis anode cathode... [Pg.79]

Electrolysis Anodic coupling Diarylamines from ar. amines s. 28,703 suppl. 29... [Pg.399]


See other pages where Electrolysis anode is mentioned: [Pg.664]    [Pg.90]    [Pg.293]    [Pg.293]    [Pg.665]    [Pg.12]    [Pg.384]    [Pg.84]   
See also in sourсe #XX -- [ Pg.900 , Pg.902 ]




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