The invention relates to a process for recycling gold from a high-
arsenic and high-
sulfur difficultly treated
gold ore. The process comprises the following steps of: separating natural gold and
arsenopyrite from a raw ore through an ore
grinding and grading table to obtain gold concentrate 1,
tailings 1 or
tailings 2; wherein when the content of
sulfur in the
tailings is low, the tailings 1 are obtained,
processing the tailings 1, and directly conveying the tailings 1 to a tailing warehouse; when the content of
sulfur in the tailings is high, the tailings 2 are obtained, performing ore
grinding floatation on the tailings 2 to obtain sulfur concentrate and the tailings 1; further performing sulfur fine
grinding floatation on the ore in the table, wherein the floatation tailings are sulfur concentrate, and the flotation concentrate is gold concentrate 2 or gold-containing sulfur concentrate; when the gold-containing grade of the flotation concentrate is relatively high, obtaining the gold concentrate 2; and when the gold-containing grade of the flotation concentrate is relatively low, obtaining the gold-containing sulfur concentrate, and after ore grinding and grading, further collecting through the table to obtain the gold concentrate 2, wherein the tailings are sulfur concentrate. The grade of the gold concentrate is greatly improved in a
processing way that repeated selectionand floatation are combined in the new process; and a large amount of
arsenic is collected into the gold concentrate simultaneously, so the
utilization rate of sulfur is improved. When an ore sample of which the
pyrite grade is relatively high and gold with a large amount is distributed in the
pyrite is treated, qualified gold concentrate with certain amount can be still obtained.