The CIP gold extraction process is roughly as follows: Preparation of raw material ground to the ancient gold cyanide suitable size, generally require less than 28 mesh, and remove sawdust and other impurities by dewatering the slurry so that the leaching concentration of 45% 50% is appropriate. For conventional cyanidation leach same ...
Cyanide is a lixiviant, or reagent that is used to leach, often in tanks, gold from a solid matrix and form a gold cyanide complex. The gold cyanide complex is then extracted from the pulp or slurry by adsorption onto activated carbon. CIL stands for carbon in leach. This is a gold extraction process called cyanidation where carbon is added to ...
Gold CIP Production Line. Process Introduction. CIP process is a high efficient method to leaching and recovering gold from gold ore, The most different from CIL process is in CIP process, gold leaching and adsorption are separated, first leaching, and then adsorption.
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The above is the main working process of the CIP gold processing plant. The carbon slurry process can efficiently improve the gold grade and gold recovery rate. In the actual production process, all links must be strictly controlled to maximize economic benefits. The next article is about the introduction of commonly used equipment in the CIP gold processing plant. Last: What Are The Placer Gold Mining Methods? Next: What Factors Will Influence Ball Mill Grinding Efficiency?
The nature and chemistry of an ore deposit determine the processing method used in gold production. There are many processing techniques for gold ore. The most common is cyanidation in carbon in leach , carbon in pulp or carbon in column circuits. Neles has a wide range of valves ideal for CIL, CIP, and CIC processing.
2. Gold CIP method is not very sensitive to the problems in production, and there are very few operating parameters to be strictly controlled. It is easy to start and stop the CIP reactor. 3. The products obtained by gold CIP method are of high quality and can often be directly melted into ingots. 4.