3.8 Article

Current and Future Trend Opportunities of Thermoelectric Generator Applications in Waste Heat Recovery br

Journal

GAZI UNIVERSITY JOURNAL OF SCIENCE
Volume 35, Issue 3, Pages 896-915

Publisher

GAZI UNIV
DOI: 10.35378/gujs.934901

Keywords

Thermoelectric generator; Waste heat; Energy harvesting; Seebeck effect; Sustainable energy

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With the increase of industrialization, the waste heat emitted by industrial machines also increases, leading to a decrease in energy efficiency and contributing to global climate change. Governments are implementing incentive policies to address this issue, while scientists and engineers are working towards cleaner and more efficient energy solutions. Thermoelectric generators (TEGs) play a significant role in recovering a certain amount of waste heat and contributing to energy efficiency and sustainable energy production. However, the efficiency and cost of TEGs remain as challenges. Academicians and engineers are continuously researching to overcome these obstacles and aim to convert waste heat into electrical energy in the future.
Today, with the increase of industrialization, the waste heat emitted by the industrial machines used has started to increase. Therefore, the energy efficiency of these devices also decreases. In addition, this waste heat remains a bad factor that plays a role in the world's climate change. Governments are implementing incentive policies to increase energy efficiency and reduce greenhouse gas emissions. Therefore, both scientists and engineers strive for a cleaner environment and energy. Thermoelectric generators (TEGs) are one of the devices that contribute to energy efficiency and sustainable energy production by ensuring the recovery of a certain part of the waste heat emitted by these machines to the environment. The TEGs have found traditional uses from the waste heat of microprocessors to the waste heat of stoves. However, their proliferation is limited by their efficiency less than 10% and their high purchasing costs. Academicians and engineers continue to work without slowing down to overcome these. The semiconductors with low thermal conductivity and high electrical conductivity are the main subjects studied in this field. With overcoming these difficulties, it is aimed to use thermoelectric generators in the future to convert the waste heat of almost all devices into electrical energy. Therefore, the main purpose of this study is to investigate the current innovations of TEGs and to determine the future trend. Among the main findings of this study, it is predicted that TEGs will be widely used in areas where there is a need for silent and maintenance-free energy in the future.

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