scholarly journals Thermal destruction of polymers: analysis of the process physicochemical parameters

2021 ◽  
Vol 4 (10(112)) ◽  
pp. 31-37
Author(s):  
Oleksii Sezonenko ◽  
Oleksii Vasechko ◽  
Viktor Aleksyeyenko

This experimental study has confirmed that during thermal decomposition of polymeric waste samples at a temperature of 850 °C, without oxygen access, there is a 90 % drop in the mass of this waste with the release of a large volume of gaseous products. This feature should be taken into consideration in the engineering calculations of reaction chambers, reactors, and connecting gas pipelines. The analytical study was carried out by a method of thermodynamic analysis using the universal estimation system Astra (TERRA). It has been shown that with an increase in reaction temperature there is a change in the composition of the products of thermal destruction of polymeric waste by reducing the mole fraction of СН4 and increasing the proportion of Н2. The calorific value was calculated according to Mendeleev’s empirical formula. The experimental study (a pyrolysis-gas chromatography method) has confirmed the calculation results regarding an increase in the proportion of hydrogen in the gaseous products of destruction with an increase in process temperature. As a result, due to the lower volumetric heat of hydrogen combustion, the total caloric content of the synthesis gas obtained is significantly reduced. For the experiments, a laboratory installation of low-temperature pyrolysis of polymers with external supply of thermal energy was built, and synthesis gas was used as an energy carrier. At the experimental-industrial installation, by a low-temperature pyrolysis method, the synthesis gas of a stable composition with a lower heat of combustion of 24.8 kJ/m3 was obtained. The reliability of the results of the proposed estimation method to the results of instrumental measurements has been shown. Promising areas of further studies have been determined, including the optimization of processes of thermal destruction of chlorine-containing polymer waste; the effective use of hydrogen from the composition of the synthesis gas obtained.

2021 ◽  
Vol 25 (1) ◽  
pp. 9-13
Author(s):  
R.R. Gimaletdinov ◽  
M.R. Usmanov ◽  
S.F. Valeev ◽  
F.R. Zainullov ◽  
A.V. Sulimov

The results of a comprehensive study of the process of thermal destruction of household waste and industrial polymeric materials in a mixture with petroleum feedstock at a pilot coking unit are presented. A mixture containing polyethylene, polypropylene, polystyrene and polyethylene terephthalate was used as household polymeric waste. Industrial waste was represented by a mixture of polyethylene and polypropylene. The qualitative and quantitative composition of the resulting products was investigated. It is shown that the involvement of polymer waste in an amount of up to 8% by weight in the raw material of the coking plant will make it possible to efficiently process polymer waste without changing the technological regime and quality of the products obtained. It has been established that the impurities of inorganic components present in the polymer raw material do not affect the coking process.


2021 ◽  
Vol 158 (5) ◽  
pp. 27-37
Author(s):  
B.V. Korinenko ◽  
◽  
A.P. Ranskyi ◽  
O.S. Khudoyarova ◽  
◽  
...  

2019 ◽  
Vol 26 (4) ◽  
pp. 149-154
Author(s):  
Anna Lesnau ◽  
Mirosław Tyliszczak

AbstractThanks to their numerous advantages, plastics are becoming more and more widely used in all branches of industry. The quantities of products, their packaging and, consequently, the amount of synthetic polymer waste are steadily increasing, what poses a high risk to the environment due to their long decomposition time. To reduce waste production is practically impossible, therefore it is very important to constantly implement new and improve existing methods of waste treatment. The following article presents one of the alternative methods for synthetic polymer waste treatment, which is low-temperature pyrolysis. Two pyrolysis processes were carried out. During the first experiment a polyethylene plastic material was used, in the second experiment a mixture of typical household recycling waste of codes 1, 2, 4, 5, 6, and 7 were tested. During the thermal processing, the input material undergoes a chemical transformation due to breaking of long hydrocarbon chains. At the same time, high-energy density products, such as petroleum products and gas, are produced. The main advantage of the presented method is that it allows reducing preliminary technological processes to a minimum and it is easily automated, as it reduces the process to one compact installation. The reduction of the amount of stored waste and the recovery of petroleum derivatives, are additional advantages of pyrolysis implementation. That, in consequence allows reducing consumption of fossil fuel resources.


2009 ◽  
Author(s):  
Qirong Fu ◽  
Dimitris Argyropolous ◽  
Lucian Lucia ◽  
David Tilotta ◽  
Stan Lebow

2014 ◽  
Vol 29 (2) ◽  
pp. 137-142
Author(s):  
Jiao-Zhu YU ◽  
Lin LI ◽  
Xin JIN ◽  
Ling-Hua DING ◽  
Tong-Hua WANG

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