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It can be made into 4 gasoline and diesel fuel, and there is currently no equipment for processing it.
Jinan Youbang Hengyu Technology Development Co., Ltd., Tsinghua University, Shandong Huaneng Rubber Pyrolysis Research Institute jointly developed automatic industrial continuous waste tire pyrolysis device, automatic industrial continuous waste plastic pyrolysis device, rotary automatic production pyrolysis unit, concentrated the most advanced technology in one, the world's leading level of remote constant temperature heating process and low temperature depolymerization cracking process, and the use of low temperature and high efficiency sulfur transfer cracking catalyst, It is a major breakthrough in the application of atmospheric pyrolysis oilification of waste tires and pyrolysis oilification of waste plastics in the world. Due to the use of constant temperature dynamic heating and dynamic heating, it solves the major problems of poor safety, low oil yield, low thermal efficiency, poor oil quality, especially the short service life of the equipment caused by the decarburization, oxidation and deformation of the equipment formed by local high temperature.
1. Annual processing capacity of a single set of devices:
RAA Series: Fully Automatic Industrial Continuous Waste Rubber Pyrolysis Plant; Capacity) tonnes per year.
PAA Series: Fully Automatic Industrial Continuous Waste Plastic Pyrolysis Plant, Processing Capacity: * Annual Processing ) Tons per Year;
2. Product rate:
Fuel oil: 45% 50% Carbon Black: 35% 38%.
Steel wire: 9% 11% Combustible gas: 3% 5% (self-use).
3. Production safety:
The above series of equipment, due to the realization of remote constant temperature heating, the use of low-temperature depolymerization and cracking processes, and the realization of automatic feeding, automatic discharge, so as to ensure the safe, efficient, reliable and stable uninterrupted normal operation of the whole set of processes and devices.
At present, the equipment is exported to the United States, Malaysia, Thailand, Australia and other countries, and in June 2009, it signed a 10,000-ton waste tire processing production line with Germany, marking the first time that China's waste tire pyrolysis technology equipment entered the European market.
For more information, please contact: 0531-86196302 0531-86196301
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Plastic is a polymer compound synthesized from petroleum, and when energy is applied to cut the atomic chain, a substance similar to the structure of oil molecules can be obtained. Using this principle, petroleum fuels such as gasoline and diesel can be obtained by using technologies such as pyrolysis and distillation, and this process is called the oilification of plastics (note that gasoline and diesel are not petroleum. The technology is only available in a few developed countries in the conversion of plastics into oil, and it is still in the laboratory, and it seems that only India has it in developing countries).
55%-65% of the mixture converted from plastic oiling is gasoline, which is not profitable, and the rest is diesel, but due to technical limitations, the safety of the obtained diesel is not guaranteed. Therefore, the oil obtained from the oiling of plastics can usually only be used as oil for oil-fired boilers.
In general, there is equipment for plastic carburetor (no processed into oil), although it can be said to be one of the most environmentally friendly plastic methods, but the technical difficulty is large, the cost is high, and the effect is low. Even developed countries cannot reach it.
In China, it is not recommended to invest in this area, and I am afraid that only ** and a very small number of enterprises will engage in research in this area.
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What kind of oil is refined from waste plastic refining is pyrolysis oil, also known as fuel oil, and its main uses are as follows:
1. Sold as fuel oil to cement plants, glass factories, power plants, steel mills, boiler factories and other factories that need fuel oil;
2. It can also be used for heavy oil generator power generation;
3. Decolorization and deodorization equipment can also be used to process plastic oil into non-standard diesel. (Non-standard diesel can be used in trucks, tractors, etc.) )
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Plastics can be refined.
Plastics are plasticizers made of resins (or monomers polymerized during processing) as important components.
Additives such as fillers, lubricants, and colorants are the auxiliary ingredients. Common waste plastics are mainly plastic household waste, according to the composition of waste plastics, waste plastics can be refined. After catalytic cracking technology, plastic oil and carbon black can be obtained after treatment by waste plastic oil refining equipment.
The oil can be used for heating in cement plants, glass factories, ceramic factories, power plants, steel mills, boiler factories, etc. The resulting carbon black is refined and ground to N220, N330, N550 or N6660 for use in the tire manufacturing industry.
The following are references to the oil yield of different plastics:
Pure PE plastic.
The oil yield can reach about 95%.
The oil yield of pure PP PS plastic is about 90%.
Pure ABS plastic.
The oil yield is 40%.
The oil yield of pure white plastic sheeting can reach 70%.
The oil yield of plastic household waste is 30-50%.
The specific cracking and refining process is as follows: through heating or adding a certain catalyst, the molecular chain of the macromolecular plastic polymer is broken to generate mixed hydrocarbons with small molecular weight, which are distilled and separated into petroleum products (diesel, gasoline, fuel gas, etc.).
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Waste plastics can be refined, the principle of plastic refining is that plastic is a polymer material, through the plastic heat treatment, the molecular bonds of the polymer are broken into small molecules, the plastic is converted from a solid state to a liquid state and a small amount of gaseous state, the plastic itself is a petrochemical product, so it is converted into oil and combustible gas through cracking.
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Through catalytic cracking technology, waste plastics can be refined into plastic oil, carbon black and other products. At present, the waste plastic refining technology has been very mature, and the oil refined from waste plastic can be directly used in the fuel pump.
Catalytic cracking technology is also known as thermal cracking cracking, high-temperature cracking. It refers to the high-temperature decomposition reaction of organic substances under the condition of no oxygen or lack of oxygen, and the chemical reaction of one polymer compound into several other mainly low-molecular compounds. As a polymer compound, waste plastics are cracked to obtain several components such as plastic oil.
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What equipment is needed? For example, what kind of garbage in life can be used to refine oil?
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Waste plastics are basically made of olefins in petroleum as raw materials through polymerization reaction, which is a solid macromolecular material with strong plasticity, its chemical name is polyolefin, and the molecular weight is generally about 10,000; The principle of waste plastic refining is to use the method of cracking, which occurs under high temperature conditions, so that the polyolefin large clump leases the molecule chain and cracks it into very small molecules. The C5H12-C11H24 and so on in these small molecules are the gasoline components, and the C12H26-C20H42 are the diesel components. Figuratively speaking, waste plastic oil refining is "from the first to the first and back to the first".
Waste Chang plastic oil refining equipment.
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Waste plastics can be refined for oil.
The following are references to the oil yield of different plastics:
The oil yield of pure PE plastic can reach about 95%.
The oil yield of pure PP PS plastic is about 90%.
The oil yield of pure ABS plastic is 40%.
The oil yield of pure white plastic sheeting can reach 70%.
The oil yield of plastic household waste is 30-50%.
Henan Beigong waste plastic pyrolysis refining equipment is now installed.
After the waste plastic is refined by the oil refining equipment, there will be a certain amount of solid waste residue, which is about 5 10 of the weight of the waste plastic. The waste residue will cause pollution to the environment if it is thrown at will, the main component of these waste residues is crude carbon black, which has a combustible effect, and the combustion has a heat of 700 kcal, so these waste residues can be mixed into coal as fuel, and can also be used to mix with fly ash and be used as raw materials for the production of fly ash bricks. Therefore, waste plastic oil refining equipment basically has no residual products after oil refining, which is a good way to make use of waste plastics.
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Plastics are made by the petrochemical industry or chlor-alkali chemical industry, usually by polymerization of some type of small molecules, but the refining of waste plastics is a reverse process, and the cost of energy consumption and raw materials is unbearable. So it's not desirable and not worth it.
So waste plastics can be refined into oil, but not advisable.
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Waste plastics can be refined into oil.
Waste plastic is a kind of polymer compound, through pyrolysis technology, it can be converted into several low molecular compounds, these substances are mainly pyrolysis oil, carbon black. These products have good economic value and are used for the following purposes:
1. Pyrolysis oil.
1) It can directly replace fuel oil for industrial or boiler heating, such as cement plants, steel plants, glass factories, etc.;
2) Can be refined into diesel fuel for use in diesel fuel and power plants, agricultural machinery, etc.
2. Carbon black. 1) It can be used for industrial heating by pressing ball combustion, and its combustion calorific value is equivalent to that of coal, which can be directly used instead of coal;
2) It can be ground and refined into different standards for additives for paint pigments, rubber products, etc.
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Hello Waste plastic refining technology is a technology that uses waste plastics for resource utilization, and its basic principle is to heat, crack and separate waste plastics to convert them into renewable fuels and chemicals. The specific process includes the following steps:1
Pre-treatment: Waste plastics are washed to remove impurities and contaminants. 2.
Heating: Heat the cleaned waste plastic to a certain temperature to melt it. 3.
Pyrolysis: At high temperatures, the melted waste plastic is cracked and decomposed into small molecule compounds. 4.
Separation: The decomposed small molecule compounds are separated by a separator to obtain fuel and chemicals. 5.
Refining and cleaning: The obtained fuel is refined to remove impurities and impurities to obtain high-quality fuel. The waste plastic refining technology has significant advantages such as resource utilization, reducing waste pollution, and reducing energy consumption.
At the same time, this technology can also effectively alleviate the shortage of petroleum resources, and has broad application prospects.
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Waste plastic refining technology is a sustainable way to dispose of plastic waste, which is a renewable fuel product after specific processing and treatment of waste plastics. Waste plastic refining technology can generally be divided into the following steps:1
Sorting: Distinguish and classify waste plastics according to category, color, quality, etc. 2.
Crushing: The sorted plastic chips are crushed to make them easier to process. 3.
Pyrolysis: The crushed plastic is pyrolyzed at high temperature to decompose into gases, liquids and solid substances. 4.
Separation and purification: Through separation technology, gases, liquids and solids are separated and purified. 5.
Conversion treatment: The separated and purified substances are converted to obtain the final renewable energy products such as oil, liquefied gas and solid fuel. Waste plastic refining technology can effectively reduce plastic waste emissions and environmental pollution, and the generated renewable energy products can also replace traditional petroleum products, so as to achieve the dual benefits of environmental protection and resource reuse.
It should be noted that the refining technology of waste plastics is still in the stage of exploration and research and development, and has not yet achieved large-scale commercial application, and there are still some technical difficulties and environmental risks in the practical application of Jiling, which need to be solved through continuous collaboration and innovation.
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