Titanium Based Mono polar Sodium Chlorate Electrolyzer Equipment

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Price:RUB 15,163.60 - RUB 250,199.40

Quantity:


Product Overview

Description

Model

FG-II20-B

FG-II25-B

FG-II30-B

FG-II60-B

FG-II80-B

FG-II120-B

Electrolytic Area

10M2

12.5M2

15M2

30M2

40M2

60 M2

Anode Material

Noble Metal Oxide Coating + High Purity Titanium

Cathode Material 

Extreme Low Carbon Steel 

Design Current Density

2200-2500A/M2

Inter Electrode Distance

2.5mm~3mm

Anode Coating

Quintuple Noble Metal Nano-structured Coating

Anode Service Life

>6 Years

>6 Years

>6 Years

>6 Years

>6 Years

>6 Years

Oxygen Content

<3%

<3%

<3%

<3%

<3%

<3%

Current Efficiency

>92%(Secondary Refined Brine)

Shell Material

Carbon Steel, Titanium

Chlorate Output

110MT/Year

130 MT/Year

160 MT/Year

300 MT/Year

400 MT/Year

600 MT/Year

DC Power Consumption

<5100kw/MT

Working Temperature

80°C~85°C

 

Name: Titanium Based Mono-polar Sodium Chlorate Electrolyzer Equipment

Item No.: FG-II20-B 

 

Features:

1. Electrolyzers for producing sodium chlorate and potassium chlorate.

2. Low consumption power.

3. High working efficiency.1

 

Application:

Electrochemistry.

1. Effluent treatment

2. Organic electrosynthesis

3. Oxidant production and regeneration such as perchloride, iodate, chromic anhydride and persulphate etc.

4. Industrial electroplating such as Zn and Cr plating etc.

 

Introduction:  

An electrolytic cell decomposes chemical compounds by means of electrical energy, in a process called electrolysis; the Greek word lysis means to break up. The result is that the chemical energy is increased. Important examples of electrolysis are the decomposition of water into hydrogen and oxygen, and bauxite into aluminium and other chemicals.

An electrolytic cell has three component parts: an electrolyte and two electrodes (a cathode and an anode). The electrolyte is usually a solution of water or other solvents in which ions are dissolved. Molten salts such as sodium chloride are also electrolytes. When driven by an external voltage applied to the electrodes, the electrolyte provides ions that flow to and from the electrodes, where charge-transferring, or faradaic, or redox, reactions can take place. Only for an external electrical potential (i.e. voltage) of the correct polarity and large enough magnitude can an electrolytic cell decompose a normally stable or inert chemical compound in the solution. The electrical energy provided undoes the effect of spontaneous chemical reactions.


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Process Flow:

 

MPCE Process 1

 

MPCE Process 2

0.0884 s.