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      Thermochemical conversion of waste tyres-a review.

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          Abstract

          A review of the energy recovery from waste tyres is presented and focuses on the three thermochemical processes used to valorise waste tyres: pyrolysis, gasification, and combustion/incineration. After recalling the chemical composition of tyres, the thermogravimetric behaviours of tyres or their components under different atmospheres are described. Different kinetic studies on the thermochemical processes are treated. Then, the three processes were investigated, with a particular attention given to the gasification, due to the information unavailability on this process. Pyrolysis is a thermochemical conversion to produce a hydrocarbon rich gas mixture, condensable liquids or tars, and a carbon-rich solid residue. Gasification is a form of pyrolysis, carried out at higher temperatures and under given atmosphere (air, steam, oxygen, carbon dioxide, etc.) in order to yield mainly low molecular weight gaseous products. Combustion is a process that needs a fuel and an oxidizer with an ignition system to produce heat and/or steam. The effects of various process parameters such as temperature, heating rate, residence time, catalyst addition, etc. on the energy efficiency and the products yields and characteristics are mainly reviewed. These thermochemical processes are considered to be the more attractive and practicable methods for recovering energy and material from waste tyres. For the future, they are the main promising issue to treat and valorise used tyres. However, efforts should be done in developing more efficient technical systems.

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          Author and article information

          Journal
          Environ Sci Pollut Res Int
          Environmental science and pollution research international
          Springer Science and Business Media LLC
          1614-7499
          0944-1344
          Apr 2017
          : 24
          : 11
          Affiliations
          [1 ] Laboratory of Physical Chemistry of Materials (LCPM/PR2N), Faculty of Sciences, Lebanese University, Fanar, Jdeidet El Matn, 90656, Lebanon.
          [2 ] Institut de Sciences des Matériaux de Mulhouse, UMR CNRS 7361, UHA, 15 rue Jean Starcky, 68057, Mulhouse, France. mejdi.jeguirim@uha.fr.
          Article
          10.1007/s11356-016-7780-0
          10.1007/s11356-016-7780-0
          27796970
          d51bfa14-3fd0-4bb9-8a5d-b3f9a0334c86
          History

          Combustion,Energy recovery,Gasification,Incineration,Pyrolysis,Thermochemical process,Tyres

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