The invention relates to a 
coupling gold-extracting process for high-
sulfur and high-iron 
arsenic-containing 
refractory gold concentrates. The 
coupling gold-extracting process is carried out accordingto the following steps and conditions that 
biological oxidation is conducted, specifically, pulp-mixing is conducted, a 9k iron-free culture medium and mineral leaching microorganisms of a high-acid-resistant and 
arsenic-
resistant strain are added, then, two-stage 
biological oxidation is conducted, and the temperature and the oxidation time are controlled; dense washing is conducted, specifically, second-stage 
biological oxidation mineral pulp is subjected to dense washing, countercurrent washing with the grade being 3-4 is conducted, and 
lime milk overflows into an oxidation solution to conduct a neutral reaction; flotation is conducted, specifically, 
sodium lignin sulfonate and 
xanthate are added for flotation; and cyaniding is conducted, specifically, 
lime milk, 
sodium cyanide and 
activated carbon are added in the gold flotation concentrates, the cyaniding pH value, the 
carbon density and the cyaniding time are controlled, gold-loading carbon and 
cyanide slag are obtained, and thegold-loading carbon is put into a gold-loading carbon refining 
system for extracting gold. According to the 
coupling gold-extracting process, the situation that part of unoxidized 
sulfide enters a cyaniding 
system can be avoided, and the situation that 
cyanide and thiocyanide enter a biological oxidation working section to recycle the part of gold-containing unoxidized 
sulfide is eliminated; and the coupling gold-extracting process has the advantages that the production cost is low, the investment is less, the equipment is simple, the process is coupled simply, biological oxidation operation is stable, the gold comprehensive 
recovery is high, and environmental friendliness is achieved, and is suitable for application of extracting gold from the high-
sulfur and high-iron 
arsenic-containingrefractory gold concentrates.