POWER PLANT FOR PROCESSING AGRO-INDUSTRIAL WASTE INTO MOTOR FUEL

Author:

Baltikov D. F.1,Shaikhlislamova A. F.1,Leont’ev D. S.1,Harisov D. D.1

Affiliation:

1. Bashkir State Agrarian University

Abstract

In the Russian Federation, the predominant direction in the field of waste management is not recycling, but burial and storage, both authorized and unauthorized. Various types of products, food waste, glass, textiles, polymer production waste are buried in landfills. Plastic bags, various packaging materials, rubber products decompose for tens and hundreds of years, polluting the environment. (Research purpose) The research purpose is developing an energy plant for the production of motor fuel and fertilizers by processing agro-industrial waste based on pyrolysis. (Materials and methods) Applied methods of numerical analysis, in theoretical studies used the basic provisions and laws of heat balance and mathematics. The experimental data obtained were processed by methods of mathematical statistics using electronic computers. (Results and discussion) We have developed a technology for recycling used rubber products with associated generation of thermal and electrical energy. The characteristics of the power plant operation during the processing of rubber products, as well as the composition of pyrolysis gas were determined: CO – 25, CO2 – 18, CH – 17 percent, pyrolysis temperature – 700-800 degrees Celsius. Taking into account the characteristics of rubber products, an experimental sample of a power plant was assembled as fuel. It was determined that the average payback period of this power plant is approximately 1.5-2 years. (Conclusions) This technology makes it possible to solve the problem of recycling car tire waste both from an environmental point of view and from an economic feasibility. During recycling, additional thermal and electrical energy is generated, which is directed to the needs of the production of its own economy.

Publisher

FSBI All Russian Research Institute for Mechanization in Agriculture (VIM)

Subject

General Medicine

Reference18 articles.

1. Baltikov D.F., Akhmetshin A.T., Ibatullina A.F. Energoobespecheniye ptitsevodcheskikh khozyaystv [Energy supply of poultry farms]. Izvestiya Orenburgskogo gosudarstvennogo agrarnogo universiteta. 2022. N2(94). 170-175 (In Russian).

2. 2. Baltikov D.F. Gazogeneratornaya ustanovka maloy moshchnosti dlya energoobespecheniya proizvodstvennykh protsessov malykh molochno-tovarnykh ferm [Low-power gas generator set for power supply of production processes of small dairy farms]. Trudy GOSNITI. 2015. Vol. 118. 91-94 (In Russian).

3. 3. Gabitov I.I. Razrabotka energeticheskoy ustanovki dlya utilizatsii otkhodov i energoobespecheniya ptitsevodcheskikh ferm [Development of a power plant for waste disposal and energy supply of poultry farms]. Tekhnicheskiy servis mashin. 2021. Vol. 59. N2(143). 21-28 (In Russian).

4. 4. Gabitov I.I., Baltikov D.F., Ibatullina A.F. Energoobespecheniye ptitsevodcheskikh khozyaystv s ispol’zovaniyem gazogeneratornoy ustanovki [Energy supply of poultry farms using a gas generator set]. Tekhnicheskiy servis mashin. 2022. Vol. 60. N1(146). 87-94 (In Russian).

5. 5. Gabitov I.I., Baltikov D.F. Energeticheskiy kompleks s gazogeneratornoy ustanovkoy dlya malykh sel’skokhozyaystvennykh proizvodstv [Energy complex with gas generator set for small agricultural production] // Tekhnologii i tekhnicheskiye sredstva mekhanizirovannogo proizvodstva produktsii rasteniyevodstva i zhivotnovodstva. 2017. N91. 14-23 (In Russian).

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