Electrochemical heat flow calorimeter


Citar

Texto integral

Acesso aberto Acesso aberto
Acesso é fechado Acesso está concedido
Acesso é fechado Somente assinantes

Resumo

A device designed for research of heat phenomena occurring in chemical power sources (CPS) is described. The device includes two functional blocks: electrochemical and calorimetrical, operating under single control, which allows simultaneously performing electrochemical and calorimetric measurements. The calorimetric block is a heat flow calorimeter. The calorimetric chamber design provides the possibility of studying thermal processes in laboratory electrochemical cells and CPS of planar, disk, and prismatic design. The absolute measurement error of the heat flow is ±50 μW at the resolution of 1 μW. The operating temperature range of the calorimetric chamber is 0–90°C. The basis of the electrochemical block is a module of a four–range potentiostat–galvanostat. The maximum polarizing current of the potentiostat is ±200 mA at the maximum voltage on the auxiliary electrode of ±10 V. Multiuser remote access from the user computers over Ethernet to the device is provided for control and treatment of experimental data. Digital deconvolution filters allowing to compensate the response rate of the heat flow meter are used for processing primary data of calorimetric measurements.

Sobre autores

S. Mochalov

Ufa Institute of Chemistry

Email: kolos@arb.ru
Rússia, Oktyabrya pr. 71, Ufa, 450054

A. Nurgaliev

Ufa Institute of Chemistry

Email: kolos@arb.ru
Rússia, Oktyabrya pr. 71, Ufa, 450054

A. Antipin

Ufa Institute of Chemistry

Email: kolos@arb.ru
Rússia, Oktyabrya pr. 71, Ufa, 450054

E. Kuz’mina

Ufa Institute of Chemistry

Email: kolos@arb.ru
Rússia, Oktyabrya pr. 71, Ufa, 450054

V. Kolosnitsyn

Ufa Institute of Chemistry

Autor responsável pela correspondência
Email: kolos@arb.ru
Rússia, Oktyabrya pr. 71, Ufa, 450054

Arquivos suplementares

Arquivos suplementares
Ação
1. JATS XML

Declaração de direitos autorais © Pleiades Publishing, Ltd., 2016