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Desorption Electrolytic Equipment Complex for Gold Extraction

Desorption Electrolytic Equipment Complex for Gold Extraction photo-1
Desorption Electrolytic Equipment Complex for Gold Extraction photo-2
Desorption Electrolytic Equipment Complex for Gold Extraction photo-3
US$ 7,500 - 200,000 MOQ: 1 Set
Key Specifications
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Place of Origin:
Shandong, China
Brand Name:
JINPENG
Model Number:
JPG
Payment & Shipping
Payment Methods:
Port of Shipment:
Qingdao or other ports
Delivery Detail:
Delivery time depends on order quantity.
Place of Origin Shandong, China
Brand Name JINPENG
Model Number JPG
Condition New
After-sales Service Provided Engineers available to service machinery overseas

Yantai Jinpeng Mining Machinery CO., LTD

Professional mineral processing design, equipment production,installation and conmissioning institue.

Tel: 0086-535-3410108

 

Desorption Electrolytic Equipment Complex for gold extraction

 

Desorption Electrolytic Equipment Complex for gold extraction

 

Desorption Electrolytic Equipment Complex for gold extraction

This system mainly consists of desorption part, electrolytic part, instrumental control part,pipeline,and valves. These parts are integrated with each other and form an integral system.

Main equipment of this system includes desorption column, filter, electrolytic bath, circulating pump, electric heater, heat exchanger, stripping liquid storage tank, carbon storage tank, electric control

cabinet, and rectification cabinet, etc.

Description

Model

Q’ty

Desorption column

JDJ0728

1

Filter

YM400×550

1

Electrolyte tank

DJC1615

1

Electric heater

JDDR-24

2

Stripping liquid storage tank

BJW1000

1

Heat exchanger

JDR0413

1

Carbon storage tank

CTC1000

1

Liquid storage tank

CYC1515

1

 

 

Principle of desorption

After the gold in cyanide solution is adsorbed by activated carbon, a reversible equilibrium state is established in the cyaniding system between the gold on the surface of gold-loaded carbon and the gold in cyanide solution. The gold-loaded carbon is also in the similar equilibrium state when it is desorbed. When adding CN- or OH- to the desorption system, as these anions are more easily adsorbed by the activated carbon, Au(CN-)2 already adsorbed will be recovered, and the reversible equilibrium of gold adsorption is interrupted and develops adversely against gold adsorption. This is gold desorption. The process of gold desorption is shown as follows:

Desorption Electrolytic Equipment Complex for gold extraction

 

We can presume that desorption of gold from gold-loaded carbon is essentially trying to destroy the equilibrium of activated carbon adsorption, and causing the process to develop adversely against gold adsorption. Therefore, increasing the cyanide density, increasing alkalinity, raising the temperature, boosting the pressure or adding organic solvent will accelerate desorption of gold from the activated carbon.

 

Principle of electrolysis

 

The pregnant solution obtained through desorption of gold-loaded carbon contains gold undoubtedly. The gold contained in pregnant solution can be recovered by electrolytic method. Because no new substance is added into the solution in the process of electrolysis, pure gold sediments can be obtained, which facilitates the further treatment. Therefore, electrolytic method is adopted by most of the gold mines.

Gold exists in the desorbed pregnant solution in the form of Au (CN-) 2. Precipitation of gold, silver and little copper is done by the cathode in the electrolysis process, and so it is with hydrogen due to water deoxidization. Oxygen is separated out by the anode, resulting in ionic oxidation, where carbon dioxide and nitrogen are separated.

Here are the reactions:

Cathode reactions:

 

 Desorption Electrolytic Equipment Complex for gold extraction

 Anode reactions:

 

 Desorption Electrolytic Equipment Complex for gold extraction

 Reactions of bulk solution:

 

 Desorption Electrolytic Equipment Complex for gold extraction

Other reactions also occur in the electrolysis process. However, these three kinds of reactions mentioned above are principal.

Tests and research show that, under normal electrolytic conditions, main control procedures of gold electrolysis depends on the velocity of Au(CN)2¯ diffusing to cathode surface, and the gold deposition velocity is only subject to the control of mass transfer process. The electrolytic efficiency can be represented by the following formula:

 

Log(CO/C1)=KmtS/2.3F

Of which: Km=P/δ-----mass transfer coefficient; P----diffusion coefficient of discharging particle (Au(CN)2¯); δ----thickness of diffusion layer; CO----primary gold concentration; Ct----gold concentration after electrolysis; t----time of electrolysis; S----surface area of cathode

 

 

 

Technological flow

 

Here is the technological flow chart:

Desorption Electrolytic Equipment Complex for gold extraction

 

Used in the following gold CIP flowchart.

 

 

Desorption Electrolytic Equipment Complex for gold extraction

 

 

 

Used onsite

Desorption Electrolytic Equipment Complex for gold extraction

  

Desorption Electrolytic Equipment Complex for gold extraction

 

 Desorption Electrolytic Equipment Complex for gold extraction

 Desorption Electrolytic Equipment Complex for gold extraction

 

Provide ore dressing experiment,process design and onsite engineering service.

 

 

Welcome to visit our lab, design institute and factory!

 

 

 

 

 

 

 

 

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Business Type
Manufacturer, Trading Company
Year Established
2006
Factory Size
30,000-50,000 square meters
Total Employees
201 - 300 People