Compared with the traditional production process, the “pool dip process†has the first, second and third process steps similar to those of the traditional mining profession in the mining of mineral resources; the third, fourth and fifth process processes are similar to the traditional ones. each operation step in mineral processing and hydrometallurgical professional combination; since each step after the fifth step of the process channel, belonging to each job traditional wet metallurgy process. Among them, the “leaching pool†in the third process plays a role in linking with traditional mining and mineral processing operations, similar to the “original mine†of the mine selection plant; and the “sedimentation tank†in the fifth process, It plays a role in connection with traditional mineral processing and hydrometallurgical operations, similar to the “raw material†of hydrometallurgical enterprises.
Therefore, the main sorting process similar to the traditional beneficiation profession is completed in the “leaching tankâ€, and as the intermediate product of the process, the rare earth-containing mother liquor is obtained here; and the typical wet metallurgy specialty is wet. The metallurgical process is mainly carried out in the “sedimentation tankâ€, and thus the primary product of “rare earth concentrateâ€--“mixed rare earth†is obtained; after the burning treatment, the “rare earth concentrate†final product can be obtained. --REO ≥ 92% of mixed rare earth oxides.
In other words, in the above-mentioned operation process, "intermediate products", "primary products" and "final products" were obtained in three typical operations. That is, in the "leaching tank", the mother liquor containing the rare earth is obtained by ion exchange; in the "sedimentation tank", the mixed rare earth is prepared by precipitation; in the "burning", the mixed rare earth oxide is obtained. . Therefore, in order to ensure the quality of ionic rare earth products, it is important to close the technology from these three key operations.
In this process, the “rare earth concentrate†product obtained is no longer a “rare earth concentrate†mineral product in the traditional concept, but a “mixed rare earth oxide†product with relatively high purity. Strictly speaking, the final grade products obtained from ionic rare earth mines are no longer subordinated to “mineral products†but to hydrometallurgical products. Obviously, its product grade has been greatly improved by a step beyond the traditional mining products.
The above process flow structure is a brand-new process in the development and utilization of rare earth mineral resources. It completely breaks the traditional process of rare earth resource development, and integrates various professions and processes into one, and directly produces high-purity mixed rare earth oxide products in the mine. The application of this production process, and the quality index of the products produced is difficult to achieve before the rare earth production process. It can be seen that using this product as a raw material is very advantageous for further deep processing of rare earth smelting.
However, everything in the world often has "duality." The ionic rare earth has a very advantageous side, and at the same time it determines its unsatisfactory side due to its characteristics and process characteristics. Along with the industrial production of the “pool dip processâ€, some very sharp and prominent problems have arisen: First, the ecological environment is greatly damaged. Since the ionic rare earth is widely distributed in the shallow surface of the earth, the distribution area is large, and the "pool dip process" itself requires that the production process is actually a "moving mountain movement". According to statistics, for every ton of mixed rare earth oxides produced, about 1,201-2,001 tons of ore will be consumed, and 1,200-2,000 tons of tailings will be produced, and the sanding area will be about 1 mu. Second, resource utilization is low and resources are wasted. In order to facilitate the mining, transportation and tailings discharge of ore, reduce costs and save investment, the “leaching pool†of many mines is built in the middle and lower part of the hillside ore body, and the ore-bearing ore body below the “leaching pool†The construction of the production system "pressure mine", especially if covered by tailings, is more difficult to mine. According to the data, the resource utilization rate in the process table is generally less than 50%, and the low is only about 25-30%.
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