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In my journal paper I explore waste and plastic pyrolysis as “Energy from Waste” and I have already commented with others in comment 2 about the relevance with what I discuss in my journal paper and the term “plastics to fuel”. I used the term “plastics to fuel” in the blog only because it is a non-scientific, buzz-word-type title.
Waste pyrolysis plant can turn waste into fuel oil and carbon black, which will bring investors great benefits. It is widely used to process waste tyres , plastic , oil sludge , rubber , etc . That's to say, pyrolysis technology is also beneficial to solving the environmental problem.
Plastic pyrolysis plant converts plastic waste to liquid fuel. The systems use a continuous liquefaction technology alongside a unique catalytic breakdown process that turns waste materials into gases and liquids. The end products can be used in any standard diesel engine or generator with little or no modifications.
Niutech Environment Technology Corporation, specialized in High Polymer Waste, such as waste tyre, waste plastic, oil sludge, waste oil, biomass, hazard waste and municipal sludge, Pyrolysis technology R&D, equipment manufacture and product sales. Truly realize harmless, reductive and resourceful utilize of waste disposal.
Plastic pyrolysis involves subjecting plastic to high temperature of 400 to 450 degree Celsius, in absence of oxygen. In case of oxygen is present plastic will start burning. During pyrolysis plastic breaks down into smaller molecules of pyrolysis oil, pyrolysis gas and carbon black. Pyrolysis is great a way of recycling waste plastics. This plant can also used for waste tire recycling.
A small pilot scale pyrolysis reactor was commissioned and used for the conversion of plastic waste into liquid oil and char . The reactor was made of stainless steel and covered with a loop of an electric heater that allows to achieve a maximum temperature of 600 °C.
Chemical recycling is an attractive way to address the explosive growth of plastic waste and disposal problems. Pyrolysis is a chemical recycling process that can convert plastics into high quality oil, which can then be utilised in internal combustion engines for power and heat generation.
Therefore, it is possible to convert waste plastic into fuels. The main objectives of this study were to understand and optimize the processes of plastic pyrolysis for maximizing the diesel range products, and to design a continuous pyrolysis apparatus as a semi-scale commercial plant.
Some benefits of pyrolysis are that the process does not generate harmful pollutants and that the by-products can be used as fuel for running the plant. In the case of plastic, some of the valuable fuels and solvents that can be extracted through waste plastic pyrolysis are fuels like gasoline, kerosene, diesel, and high-value ones like benzene ...
Beston Group always aims to turn waste to wealth and save energy, so Beston has produced waste pyrolysis plant to make waste plastic generate value and reduce the harm to people. Using the principal of pyrolysis, the waste plastic can be converted into fuel oil, combustible gas, and carbon black through our continuous plastic pyrolysis plant, and it can fully realize automation and continuity.