INFORMATION ANALYSIS OF INNOVATIVE TECHNOLOGIES OF UTILIZATION RECYCLING OF AUTOMOBILE BATTERIES


Cite item

Full Text

Abstract

The article considers the crucial task of determining a strategy for effective and ecologically friendly utilization of automobile accumulator batteries (AAB) being one of the most dangerous for the environment recoverable vehicle components. For this purpose, basing on the descriptions of invention patents, the authors carried out the general information analysis of known innovative AAB utilization technologies and considered the technological procedures of AAB recycling utilization represented in descriptions of national patents for inventions of methods and technical devices used for their implementation. Moreover, a patent search was performed and the numbers of patents and patent applications for inventions on this topic of leading Western countries were identified. They include both the methods and technical devices for AAB utilization separation into individual constituent components – plumbiferous (zinc-containing), electrolyte solutions, polymeric housing elements, and the direct utilization recycled processing of each noted AAB constituent element. There is a great variety of well-known technological procedures for utilization processing of plumbiferous battery scrap that are based on the implementation of various thermochemical transformations in order to get raw materials suitable for reuse. The procedures of utilization processing of AAB electrolyte solutions and polymeric housing elements are represented least of all. Obviously, it is caused by the demand and economic interest in obtaining a much more valuable commodity product from plumbiferous (zinc-containing) scrap. At the same time, the more stringent environmental legislation forces AAB developers and manufacturers to create more efficient technological procedures of utilization processing of all AAB components. The authors highlighted the feasibly prospective way of development of ecologically friendly disposal of polymeric solid waste, which is based on materials recycling resulting into production of corresponding semi finished polymeric crushed fragments which can be used as the effective sound-absorbing substances within different types of noise reducing device constructions.

About the authors

Mikhail Il’ich Fesina

Togliatti State University, Togliatti

Author for correspondence.
Email: Michailfes@yandex.ru

PhD (Engineering), Professor of Chair “Management of industrial and environmental safety”

Russian Federation

Alexandr Valentinovich Krasnov

Togliatti State University, Togliatti

Email: kaw@narod.ru

PhD (Engineering), associate professor of Chair “Management of industrial and environmental safety”

Russian Federation

Larisa Nikolaevna Gorina

Togliatti State University, Togliatti

Email: Gorina@tltsu.ru

Doctor of Sciences (Pedagogy), Professor, Head of Chair “Management of industrial and environmental safety”

Russian Federation

Elena Nikolaevna Shutova

Togliatti State University, Togliatti

Email: Safety@tltsu.ru

graduate student of Chair “Management of industrial and environmental safety”

Russian Federation

References

  1. Petrov R.L., Sedugin V.I. Economic and ecological aspects of recycling of time-expired vehicles in Europe. Zhurnal avtomobilnykh inzhenerov, 2013, no. 4, pp. 7–13.
  2. Mechel F.P., ed. Formulas of Acoustics. Springer, 2001, 1175 p.
  3. Harris C.M. Handbook of Noise Control. 2nd ed. New York, McCraw-Hill, 1979. 1052 p.
  4. Helmut V. Fuchs. Schallabsorber und Schalldämpfer: Innovative akustische Konzepte und Bauteile mit praktischen Anwendungen in konkreten Beispielen. Springer, 2007, 546 p.
  5. Everest F.A. Master Handbook of Acoustics. 5th ed. New York, McGraw-Hill, 1994, 528 p.
  6. Fesina M.I., Krasnov A.V., Gorina L.N. Bezopasnost’ i ekologichnost’ avtotransportnykh sredstv [Safety and environmental friendliness of motor vehicles]. Tolyatti, TGU Publ., 2010, 202 p.
  7. Fesina M.I., Krasnov A.V., Gorina L.N. Avtomobilnye akusticheskie materialy. Proektirovanie i issledovanie nizkoshumnykh konstruktsiy avtotransportnykh sredstv [Automobile sound proof materials. Development and research of low noise designs of motor vehicles]. Tolyatti, TGU Publ., 2010, part 2, 352 p.
  8. Fesina M.I., Krasnov A.V., Gorina L.N. Prakticheskie priemy povysheniya zvukopogloshchayushchikh svoystv materialov i konstruktsiy detaley mashin [Practical methods of improvement of sound-proof properties of materials and vehicle parts]. Tolyatti, TGU Publ., 2012, 228 p.
  9. Krasnov A.V., Fesina M.I., Gorina L.N. Acoustic efficiency of Shredded nonporous polymeric materials as a part of bulk noise-attenuating modules. Bezopasnost’ v tekhnosfere, 2013, vol. 2, no. 5, pp. 42–51.
  10. Fesina M.I., Krasnov A.V., Gorina L.N. Results of experimental investigations sound absorbing properties crushing porous structure of materials. Vektor nauki Tolyattinskogo gosudarstvennogo universiteta, 2013, no. 2, pp. 163–172.
  11. Krasnov A.V., Fesina M.I., Baluev A.A. Integrally molded noise-absorbing structures for improvement of acoustical comfort of motor vehicles. Sbornik trudov mezhdunar. nauchno-tekhn. konf. “Dinamika i vibroakustika mashin”. Samara, 2012, vol. 2, pp. 130–131.
  12. Krasnov A.V., Fesina M.I., Baluev A.A. Development of population of universal noise-absorbing modules. Sbornik trudov mezhdunar. nauchno-tekhn. konf. “Dinamika i vibroakustika mashin”. Samara, 2012, vol. 2, pp. 132–133.
  13. Krasnov A.V., Fesina M.I. Multi-layer acoustic structures for reduction of sound energy radiation of energy machines and vehicles. Materialy dokladov mezhdunar. nauchno-tekhn. konf. “Problemy i perspektivy razvitiya dvigatelestroeniya”. Samara, 2011, part 1, pp. 139–146.

Supplementary files

Supplementary Files
Action
1. JATS XML

Copyright (c)



This website uses cookies

You consent to our cookies if you continue to use our website.

About Cookies