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Zhengzhou Hengxing Heavy Equipment Co., Ltd. is a joint stock corporation integrating research and manufacture sale with the targt at the large and medium sized series of heavy equipment for mine machinery, wall materies, formed coal, metallurgy and etc. The company is located at No. 8 Hongye Road, West Hehuan Street, High-Tech Development Zone, Zhengzhou, China. Since establishment, our company has gathered a group of scientific elites with modernized management system and accurate production as well ...
Quartz stone, also known as silica sand, is a common non-metallic material, which can be made into high-purity quartz sand after separation and purification, widely used in glass, ceramics, metallurgy, casting and refractories and other industries. So, what are the common quartz mining processes at present?
Usually, there are iron oxide, clay, mica, organic impurities, etc., in the quartz stone except for SiO2. The purpose of the quartz mining process is to remove a small amount or trace impurities in quartz stone, then obtain the refined quartz stone. At present, the common quartz mining processes mainly include the physical quartz mining process and the chemical quartz mining process. Among them, the physical quartz mining process includes washing, classifying and desliming process, scrubbing process, magnetic separation process and flotation process. The chemical quartz mining process is the acid leaching process.
The grade of SiO2 in the quartz stone is reduced with the thinner of quartz grain size, while the grade of mineral impurities (such as iron and aluminum impurities) is increased, this kind of phenomenon is especially obvious in the quartz stone containing a lot of the clay minerals. Therefore, the spiral washing machine, drum sieve, hydrocyclone, desliming bucket and hydraulic classifier are often used to the water concentration of quartz stone, it is very necessary to carry out the classification and desliming in the quartz processing plant. As a pretreatment method before the ore separation, the washing, classifying and desliming are applied earlier and widely in the quartz washing plant, but this quartz mining process doesn't have the obvious removal effect for the thin-film iron and adhesive impurity minerals on the surface of quartz stone.
Scrubbing process is mainly to remove the thin film iron, bond and muddy impurity mineral on the surface of quartz stone with the help of mechanical force and the grinding force among sand particles, and further wipe up the non-monolithic mineral aggregation, and then achieve the further quartz processing effect through the classification operation.
At present, the quartz stone scrubbing process mainly includes rod friction washing and mechanical scrubbing. For the mechanical scrubbing method, the factors affecting the scrubbing effect are mainly the structural characteristics and configuration form of the mineral scrubber, followed by technological factors (scrubbing time and scrubbing concentration).
The study shows that the scrubbing concentration of quartz stone shall be between 50% and 60%, but it also increases the difficulty of quartz processing to some extent. In principle, the scrubbing time shall be based on the requirements of preliminary product quality, not too long. Too long scrubbing time will increase the equipment wear, improve energy consumption, and increase the cost of beneficiation. For some quartz minerals, the mechanical scrubbing and wiping effect are not ideal, adding the reagents when necessary can increase the electrical repulsion on the surface of impurity minerals and quartz particles, enhance the separation effect between impurity minerals and quartz particles.
The magnetic separation process can remove the weakly magnetic impurity minerals as possible, such as hematite, limonite and biotite, etc. High-intensity magnetic separation usually adopts the wet high-intensity magnetic separator or high gradient magnetic separator. Generally speaking, the wet high-intensity magnetic separator (large than 10000 Oe) can deal with the quartz containing the weakly magnetic impurity minerals (such as limonite, hematite and biotite). It is better to use a weak magnetic separator or a medium magnetic separator to separate the quartz containing the strong magnetic impurity minerals (magnetite).
The studies show that the frequency of magnetic separation and magnetic field strength has an important effect on the iron removal effect of the magnetic separation process. With the increase of magnetic separation times, the iron content is gradually decreased. Under a certain magnetic field strength, most of the iron can be removed, while the iron removal rate has a little change even if the magnetic field strength is larger than the certain limit. In addition, the finer the particle size of quartz sand, the better the iron removal effect. The reason is that the fine quartz sand contains a high amount of iron impurity minerals. When there are more impurity minerals in the quartz sand, it is impossible to purify the quartz sand into high purity sand only by scrubbing, desliming and magnetic separation.
The flotation process is mainly to remove the non-magnetic associated impurities in quartz sand, such as feldspar, mica. The quartz sand flotation process mainly includes fluorine flotation and fluorine-free flotation process. Among them, the fluoride flotation process is carried out in the acidic pH range with the cationic collector and hydrofluoric acid activator. But the fluorine-containing wastewater causes serious environmental pollution, which needs to be discharged after treatment. The fluorine-free flotation process is to take advantage of the differences in quartz and feldspar structure, rationally mix the ratio and dosage of anion and anion mixed collector, and make use of their different Zeta potentials to preferentially float the feldspar and achieve the separation.
The acids commonly used in the acid leaching process mainly include sulfuric acid, hydrochloric acid, nitric acid and hydrofluoric acid, the reducing agents mainly include sulfurous acid and its salts. The study shows that these acids have a good removal effect on the non-metallic impurities of quartz mineral. But the acid type and concentration have a significant effect on the different metal impurity. Generally, a variety of dilute acid has a significant effect on the removal of Fe and Al, while the relatively concentrated sulfuric acid and aqua regia or HF are often used in the removal of Ti and Cr. The mixed acid composed of the above acids is usually used for the acid leaching removal of impurity minerals. Since the HF has the dissolution effect on the quartz, the HF concentration is generally not more than 10%. In addition to the acid concentration, the acid amount, leaching time, temperature and slurry agitation can also affect the effect of acid leaching effect of quartz. The control of various factors shall be determined based on the final grade requirements of quartz, like reduce the concentration, temperature and dosage of acid as far as possible, decrease the time of acid leaching, so as to realize the quartz processing at a lower cost.
Due to the different amount, type and occurrence of impurities contained in quartz sand and different product quality requirements, a single quartz mining process may not be able to achieve the purpose of quartz sand purification, and sometimes the several quartz mining processes are required to form a combined beneficiation process. The common quartz mining processes are as follows:
In the weathering sedimentary and mineralization process of quartz sand, a large number of clayey minerals and iron form the cementation or adhesion minerals on the surface of the quartz. It is a common quartz mining process to adopt the scrubbing-classifying- desliming process to remove clay impurity minerals, argillaceous iron, and some thin-film iron. This quartz mining process is generally used as a pretreatment process before raw ore separation, which can effectively remove the argillaceous impurities.
Generally, the common impurity minerals in the quartz (such as the limonite, tourmaline, hematite and biotite and other weakly magnetic minerals, magnetite and other strongly magnetic minerals) can only be removed by a magnetic separation process. In the actual production, the wet strong magnetic separator with 13000 Oe of magnetic field strength is mostly used for separation.
After the washing, magnetic separation and flotation separation of raw ore, the impurity mineral particles with low occurrence (including monomer, aggregate) are basically cleared, the silica purity can generally reach 99.5%-99.9%, basically can meet the majority of industrial requirements of quartz sand. However, in order to obtain the ultra-high purity quartz, the impurities continuously adhere to the surface of quartz particles in the form of spots and inclusions must be treated with acid leaching. The mixed acid leaching with different concentrations and matching must be carried out according to the different requirements of impurity minerals (Fe, AL, Ti, Cr) in the different industries. The high purity quartz with silica content of 99.99% or more can be obtained by the rod milling washing - desliming - magnetic separation - flotation - acid leaching process.
By improving the structure of existing mineral scrubber, optimizing the technical parameters, add reagents for high-efficiency and strong scrubbing classifying and desliming can remove more than 80% of impurity iron and aluminum ore. The magnetic separation process is mainly to remove the iron-contained impurity minerals. Through this quartz mining process, the high-quality refined quartz sand (silicon dioxide 99.8%, iron oxide 0.023%, aluminum oxide 0.05%, titanium dioxide 0.02%) can be obtained, which has reached the requirements of primary optical glass sand, and the yield of fine quartz sand is as high as 73%, while the yield of rod friction washing is only 49%. After further flotation and acid leaching process, the high-purity quartz (silica 99.9%, ferric oxide 0.005%, aluminum oxide 0.05%, titanium dioxide 0.02%) can be obtained. This quartz mining process overcomes the shortcomings of secondary contamination of iron caused by rod friction washing and low yield.
In the practice, the selection of the quartz mining processes and flows is often determined based on the nature of quartz stone, conditions of the quartz processing plant, investment budget. It is suggested to choose a single or joint quartz mining process through the mineral processing test report, thus striving for the ideal technical and economic benefits.
In recent years, with the increasingly high-grade of glass, ceramics, metallurgy, foundry industry, there is more and moredemand on quartz sandstone. Quartz is a very common in sedimentary rocks and it is also present in variable amounts as an accessory mineral in most carbonate rocks. Additionally it is a standard constituent of schist, gneiss, quartzite and other metamorphic rocks. Because of its capacity weathering, its very common in stream sediments plus residual soils. Quartz sandstone Fe2O3 content is generally high; besides high quality quartz sandstone reserves are low. So the processing of quartz has highly valued by enterprises. Quartzmining process has made a number of technology transformations.
The main process in quartzite mining plant mainly includes crushing, grinding, grading, flotation. Due to the high demand on the quality of fine quartz sand, quartz prices are also rising. Quartzite ore mining process is directly related to the quality of quartz sand. We all know that, crushing and grinding process is important in quartz sand making process, glass and ceramics production line. Inquartzite mining plant, at first, quartzite is crushed by jaw crusher, and thenquartzite would enter into impact crusher or cone crusher for the second crushing process. After that, through vibrating screen, these quartzite particles are sizing according to different size. In quartzite grinding process, quartzite is grinded into powder by quartz grinding machine. Through the investigation of the world quartzite mining plant, we have combined with the actual situation of enterprises; we adopt the most advanced processing technology, in order to meet the quality requirements of fine quartz sand. Ball mill, vertical mill, ultrafine mill is usually used in this process. The finished quartzite powder can be upto 2500 mesh. SBM is a professional quartzite crushing and milling equipment manufacturer in China, which can supplies types of quartzite crushing machines, screen and belt conveyor for sale. SBM can provide high-efficiency crushing and milling production equipment for you.
In order to ensure the quality of quartz sand, sieving equipment in quartzite processing plant has a very obvious role. The vibrating screen is a kind of sieving equipment of international advanced level, which developed by our company on the basis of carrying on the advantages of traditional screening equipment and absorbing the outstanding technology from abroad. SBM vibrating screenare installed in about 130 countries of the global market.In the weathering and mining process of quartz sand, a large amount of clay minerals and iron minerals will form cement or adhesion minerals on the surface of silica. Therefore, we usually use screening equipment inquartzite processing plant to improve the quartzite ore quality. Thescreening process serves as pretreatment of sand separation, in which clay impurities will be cleaned efficiently. Choosing high-efficiency screening equipment in quartzite processing plantis the key in the production of high quality quartz sand.
Quartzite mining plant should have a flotation process which needs flotation machine with optimistic structure design. Now there are many kinds of flotation machines, such as agitator flotation machine, pneumatic flotation machine and pneumatic-agitator flotation machine. By using flotation machine, we can enhance the performance of scrubbing in the screening process. For further separation of quartz sand, the flotation process can dispose of feldspar, with hydrofluoric acid being the most commonly used liquid in overseas market. Flotation machine are mainly used in quartzite mining plant, selecting the valuable mine from gangue. Through the introduction above, we summed up the whole process of quartzitemining plant, which has an important influence on the comprehensive application ofquartzite.
[Improvement]: The jack-up device adopts the hydraulic jack-up device independently developed by Xinhai. When the ball mill is in maintenance, only handling the hydraulic station can make the hydraulic jack rise and fall. Compared with the ordinary jack-up device, Xinhai jack-up device is simple, convenient and easy to operate with lower maintenance costs.
The main component is a cylinder with diameter and length at a reasonable proportion. Driven by the transmission device, the cylinder rotates with the materials fed from the cylinder inlet and crushed by the falling impacts and autogenous grinding of the steel balls and ores in the cylinder. Due to the continuously feeding materials, the pressure pushes materials to the outlet and the grinded materials are discharged from the cylinder outlet. Qualified materials flow from the cylinder outlet. In wet grinding, the materials are taken out by the water flow.
Shaking Table, Mining Equipment, Gravity Table manufacturer / supplier in China, offering Shaking Table for Placer Gold Concentration Machine, Mobile Mining Processing Plant Movable Mining Plant Equipment Trommel Screen, Trommel Screen for Sand Gold Mineral Washing Machine and so on.
Jiangxi Gandong Mining Equipment Machinery Manufacturer is a large beneficiation service company specialized in designing, manufacturing, installing and debugging of mining equipment as well as providing flow sheet design and course training of beneficiation, now our factory is the largest manufacturer and supplier of gravity mining equipment in China. Our factory has 12 years experience in mining equipment manufacturing, two special factories directly under the factory specialized in the manufacture of ...
Quartz ball mill is a special type of ball mill machine series, it is named after the material quartz, but not limited to grinding quartz. It can also grind other ore similar to the physical and chemical properties of quartz, such as feldspar, sandstone, dolomite, shale. Capacity0.17~170t/h Discharge size0.074-0.89mm MaterialsQuartz, feldspar, etc.
The quartz sand ball mill is mainly composed of the cylinder body, feed end, discharge end, rotary part, transmission, and lubricating part. The lining plate in the cylinder can be adjusted according to needs, and the material has silica, wear-resistant rubber.
Because the dust of quartz sand is extremely fine, if the human body inhales the dust containing quartz sand for a long time, it may suffer from silicosis. Therefore, the new quartz sand ball mill developed by JXSC uses a fully enclosed structure, which effectively avoids the harm caused by flying dust to humans and improves the working environment.
2. The tapered design at the discharge end not only increases the volume, but also forces the quartz material and steel balls at the cone end to be classified. The closer to the exit, the smaller the diameter of the ball, the greater the grinding effect.
JXSC ball mill equipment has complete models and specifications, which can meet the production needs of different users. JXSC is a large-scale mining machine manufacturer, contact us for the first-hand factory price.
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Material: Hard rock gold deposit Capacity: 5TPH Country: Nigeria Feeding size: 0.6-1.3mm Raw mineral description: 1. Mineral type: rock gold deposit, gold in quartz rock 2. Mineral composition: Au. 43%; Ag. 19%; Fe. 3%; Zn. 5.6%. Customers requirements: increase the gold grade as much as possible.
JXSC has been focusing on mining equipment manufacturing since 1985. Products: rock crushers, gravity separator, electrostatic separator, flotation machine, washing equipment, ore feeder, screen & sieve, etc. Application: metallurgical, mineral processing, sand making, aggregate processing, etc. Contact us for quotation
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