On the basis of pre-test, systematically investigate the test of the influence of various factors on the flotation index, which is called the flotation condition test. The article introduces “how to control†from eight aspects: “grinding fineness test, pH adjuster test, inhibitor test, collector test, slurry concentration test, slurry temperature test, flotation time test, and selected testâ€. Test conditions", with "grinding fineness test results" illustrations and "different grinding fineness flotation test records" insert, and "product grade, recovery rate" calculation formula. This article can be used as technical guidance for practitioners related to “ mineralization test conditionsâ€, and can also provide reference for mining enterprise administrative and technical management personnel. On the basis of pre-test, systematically investigate the test of the influence of various factors on the flotation index, which is called the flotation condition test. According to the test results, the influence of various factors on the flotation process was analyzed, and the optimal conditions of each factor were finally determined. Conditional test items include: grinding fineness, chemical system (mineral pH value, inhibitor dosage, activator dosage, collector dosage, foaming agent dosage), flotation time, slurry concentration, pulp temperature, selected medium ore Processing, comprehensive verification tests, etc. The test sequence is also generally the same. The focus is on the grinding fineness and the testing of the pharmaceutical system. Other items should be determined according to the nature of the ore and the requirements for the purpose of the sample. It is not necessary to test all the items. I. Grinding fineness test The grinding operation before flotation is aimed at dissociating the minerals in the ore and grinding the ore to a particle size suitable for flotation. According to the identification results of the mineral inlay particle size characteristics, the fineness of the grinding can be estimated initially, but it must be determined through experiments. The dissociation of minerals in ore is a prerequisite for the separation of any mineral. Therefore, the conditional tests generally start from the grinding fineness test. But for complex multi-metal ore and refractory ore, due to the greater impact on the flotation reagent system processes, so often before to find the most suitable reagent system, it is difficult to identify the impact of a fineness of grinding, then It is necessary to check the fineness of the grinding after another condition; or to do the grinding fineness test at the beginning, but to select a finer particle size than the mineral basic monomer according to the ore embedding characteristics. Grinding is carried out, and other conditions are tested first. After the main conditions are determined, the grinding fineness test is performed. The routine practice of grinding fineness test is to take more than 3 samples, keep other conditions the same, grind at different times (for example, 10, 12, 15, 20, 30 min), then carry out flotation, compare As a result, several samples were taken in parallel, and the ore was also milled at the above different times, and the grinding products were sieved to find out the relationship between the grinding time and the fineness of the grinding. Sometimes only one or two samples with better results are sieved. The foam was scraped in two batches during flotation. In the rough selection, the concentrate, the amount of collector, foaming agent and flotation time should be the same in all tests; the middle mine in the sweeping, the amount of collector and the flotation time can be different, the purpose is to make The flotation of the minerals is completely flotation to give the tailings as poor as possible. If it is difficult to judge the end point of the flotation from the appearance, the flotation time and dosage of the medium ore should remain the same in each test. In order to determine the sieve analysis sample required for the grinding time and the fineness of the grinding, the grinding product is taken up after drying, and the quantity is generally about 100 g. The screening method is carried out by a combined method, that is, first wet-sieving on a 200-mesh (75 μm) sieve, the product is dried on the sieve, and then sieved on a 200-mesh sieve or a sieve, and less than 200 mesh materials are combined and weighed. The content of the -200 mesh level in the grinding product was calculated. Then, the grinding time (min) is taken as the abscissa, and the grinding fineness (content of -200 mesh level, %) is plotted on the ordinate, and the relationship between the two is plotted. The flotation products are respectively dried, weighed, sampled, and sent for chemical analysis, and then the test results are filled in a record sheet, and a graph is drawn. The format of the table varies with the nature of the test and the composition of the ore. The general requirements are clear and easy to analyze. Table 1 is one of the commonly used recording formats for single metal ore flotation tests. The common conditions in a set of tests are generally described in the form of text on the table or under the table, or directly in the remarks column of the table. Table 1 Different grinding fineness flotation test record
Test number | Product name | Weight / g | Yield γ/% | Copper grade β/% | Yield × grade γ × β | Copper recovery rate ε/% | Test conditions | Remarks |
1 | Concentrate mine tailings | 131 63 806 | 13.1 6.3 80.6 | 9.06 9.03 0.41 | 118.69 56.89 33.05 | 56.9 27.3 15.8 | -200 mesh accounts for 60% | pH=9 |
Raw ore | 1000 | 100.0 | 2.09 | 208.63 | 100.0 | |||
2 | Concentrate mine tailings | 133 134 733 | 13.3 13.4 73.3 | 12.1 1.0 0.33 | 160.93 13.40 30.76 | 81.1 6.7 12.2 | -200 mesh accounts for 75% | pH=8.5 |
Raw ore | 1000 | 100.0 | 1.99 | 198.52 | 100.0 |
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