Lead acid battery recovery and regeneration system

Lufeng company adopts the most advanced Lead Acid Battery Recovery And Regeneration System process at home and abroad. Our core technology is to adopt an automatic crushing and sorting system with high automation, low energy consumption. Lead paste, lead grid and plastic can be selected separately. Then carry out lead paste pre desulfurization treatment, acid purification, crystallization, etc; Finally, the obtained lead paste is put into converter smelting, lead pot refining, ingot casting, etc. The whole process is simple, mature, efficient, energy-saving, environmental protection and other advantages. The waste water in the whole production process can be converted and recycled to achieve the standard discharge of industrial "three wastes".

Lufeng can complete the crushing and sorting of waste lead-acid batteries to the ingot of refined lead, and realize the Lead Acid Battery Recovery And Regeneration System.

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  • metal & metallurgy machinery lead smelting pot cover insulated stainless steel hot pot cover Lead pot cover The cover plate is composed of 10mm thick steel plates 5) Furnace insulation cover (movable): outer layer 6mm, inner layer 60mm Heat insulation (the furnace insulation cover is formed by one-time stamping, Manual lifting, capable of 360 degree rotation) Cover for lead pot The utility model discloses a lead pot cover that is convenient for removing slag from lead liquid, and relates to the technical field of battery production. The utility model includes a lead pot cover and a slag removal device; The lead pot cover includes a cover ring and a cover plate; The upper surface of the cover plate is provided with a radially arranged rectangular groove; The bottom surface of the rectangular groove is provided with a slag removal port; One side of the slag removal port is fixedly connected with a conduit side by side; The slag removal device includes a fixed rod that matches the surface inside the conduit; Two fixing rods are fixedly connected with a handle on the upper and lower sides through a connecting block; A Rectangular cuboid slag leakage box is fixedly connected with the side faces of the lower ends of the two fixed rods through a connecting block. The utility model seals the lead pot by setting a lead pot cover matched with the lead pot, which solves the problem that the lead liquid in the existing lead pot is easy to contact with oxygen to produce lead slag, which affects the product quality; At the same time, the slag removal device can perform the slag removal operation without removing the lead pot cover, providing convenience for the slag removal of lead liquid and effectively ensuring the quality of lead liquid。

  • slag dragging machine semiautomatic slag extractor for lead smelting refining furnace Salvaging slag machine The horizontal groove of the slag extractor is welded from steel plates and profiles, and is divided into two layers: upper and lower. The upper tank is equipped with cooling water, the bottom is paved with wear-resistant steel plate for hot slag cooling granulation, and the lower layer is paved with Diabase wear-resistant cast plate. The upper tank of the slag extractor is generally connected to a closed door to seal the bottom and improve the thermal efficiency of the boiler. The ash scraped by the scraper chain will be discharged through the inclined upward section of the chute to reduce the water content of the slag and ensure that it does not exceed 25%. The upper and lower chutes of the inclined upward section are laid with wear-resistant cast plates, with a service life of no less than 30 years.

  • electrolytic copper rod polishing machine stainless steel polishing machine metal & metallurgy machinery. Hexagonal drum polishing machine Working principle and use of a hexagonal drum polishing machine. 1. Adopting the principle of centrifugal motion, the rust removal, polishing, and deburring periods are short. A cylindrical gear reducer with a speed ratio of 40.17 is used, and the working speed of the drum is between 28-35r/min, which can be completed in about half an hour. Improve work efficiency, save time and effort. 2. The abrasives are mainly river sand and steel sand, which are easy to obtain and cost-effective. 3. * Major advantages: no acid cleaning, dry rust removal oil, polishing, automatic screening, one-time screening, no impurities inside the drum except for small metals. 4. Especially suitable for surface finishing of easily deformed workpieces. After being polished by this type of grinder, the parts not only maintain their original shape and position accuracy, but also improve the surface roughness of the parts by 1-2 levels. 5. Grinding batch parts, medium or large-sized parts, with good results. 6. It has the advantages of low noise and easy operation. 7. The barrel is lined with rubber to prevent workpiece collision, suitable for copper, iron, thin-walled parts, stainless steel parts, etc 8. There is no covered inner lining inside the barrel, which is suitable for materials that are not easily deformed such as steel balls and steel products. Due to the cutting force, it promotes greater effectiveness. 9. It is a simple and convenient model in the grinding machine series, suitable for processing. 10. It can be divided into specifications such as 100-1000L according to its capacity, and can be customized according to needs.

  • Desulfurization tank for lead battery scrap recycle system Desulfurization technology The flue gas desulfurization technology, also known as the dual alkali flue gas desulfurization technology, was developed to overcome the disadvantage of easy scaling in the limestone lime method. There are dozens of types, and according to whether water is added during the desulfurization process and the dry and wet forms of desulfurization products, flue gas desulfurization can be divided into three major categories: wet, semi dry, and dry desulfurization processes. Wet desulfurization technology is relatively mature, efficient, and easy to operate. The traditional limestone/lime gypsum flue gas desulfurization process uses calcium based desulfurizers to absorb sulfur dioxide and generate calcium sulfite and calcium sulfate. Due to their low solubility, scaling and blockage phenomena are easily formed in the desulfurization tower and pipeline.

  • slag casting machine for new lead battery recycling plant Salvaging slag machine The horizontal groove of the slag extractor is welded from steel plates and profiles, and is divided into two layers: upper and lower. The upper tank is equipped with cooling water, the bottom is paved with wear-resistant steel plate for hot slag cooling granulation, and the lower layer is paved with Diabase wear-resistant cast plate. The upper tank of the slag extractor is generally connected to a closed door to seal the bottom and improve the thermal efficiency of the boiler. The ash scraped by the scraper chain will be discharged through the inclined upward section of the chute to reduce the water content of the slag and ensure that it does not exceed 25%. The upper and lower chutes of the inclined upward section are laid with wear-resistant cast plates, with a service life of no less than 30 years.

  • Desulfurization tank for lead copper recycle machine system Desulfurization technology The flue gas desulfurization technology, also known as the dual alkali flue gas desulfurization technology, was developed to overcome the disadvantage of easy scaling in the limestone lime method. There are dozens of types, and according to whether water is added during the desulfurization process and the dry and wet forms of desulfurization products, flue gas desulfurization can be divided into three major categories: wet, semi dry, and dry desulfurization processes. Wet desulfurization technology is relatively mature, efficient, and easy to operate. The traditional limestone/lime gypsum flue gas desulfurization process uses calcium based desulfurizers to absorb sulfur dioxide and generate calcium sulfite and calcium sulfate. Due to their low solubility, scaling and blockage phenomena are easily formed in the desulfurization tower and pipeline.