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Sustainable entrepreneurship via energy saving: energy harvester exploiting seebeck effect in traditional domestic boiler

Author

Listed:
  • Stefano Barberis

    (University of Genova, Italy)

  • Lorenzo Di Fresco

    (University of Genova, Italy)

  • Vincenzo Alessandro Santamaria

    (Techcom Srl, Italy)

  • Alberto Traverso

    (University of Genova, Italy)

Abstract

In this paper, energy saving solutions are being elaborated, i.e. A system to harvest waste heat and convert it into electrical energy is presented; such a system is based on thermoelectric generators (teg) modules exploiting the seebeck effect. A technical and economic feasibility study of the system is presented, the most convenient applications of thermal energy residuals recovery in residential environment (detached house, condos, isolated off-the grid house) are evaluated according to the electrical supply of typical domestic low consumption devices (i.e. Led lighting); the total yearly production of thermoelectric generator is considered in different techno-economic scenarios.

Suggested Citation

  • Stefano Barberis & Lorenzo Di Fresco & Vincenzo Alessandro Santamaria & Alberto Traverso, 2014. "Sustainable entrepreneurship via energy saving: energy harvester exploiting seebeck effect in traditional domestic boiler," Entrepreneurship and Sustainability Issues, VsI Entrepreneurship and Sustainability Center, vol. 2(2), pages 86-97, December.
  • Handle: RePEc:ssi:jouesi:v:2:y:2014:i:2:p:86-97
    DOI: 10.9770/jesi.2014.2.2(4)
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    References listed on IDEAS

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    1. Hsu, Cheng-Ting & Huang, Gia-Yeh & Chu, Hsu-Shen & Yu, Ben & Yao, Da-Jeng, 2011. "An effective Seebeck coefficient obtained by experimental results of a thermoelectric generator module," Applied Energy, Elsevier, vol. 88(12), pages 5173-5179.
    2. Wang, Yuchao & Dai, Chuanshan & Wang, Shixue, 2013. "Theoretical analysis of a thermoelectric generator using exhaust gas of vehicles as heat source," Applied Energy, Elsevier, vol. 112(C), pages 1171-1180.
    3. Žanna Caurkubule & Aleksandrs Rubanovskis, 2014. "Sustainable entrepreneurship through motivation: case of Latvian companies," Entrepreneurship and Sustainability Issues, VsI Entrepreneurship and Sustainability Center, vol. 2(1), pages 43-48, September.
    4. Champier, D. & Bedecarrats, J.P. & Rivaletto, M. & Strub, F., 2010. "Thermoelectric power generation from biomass cook stoves," Energy, Elsevier, vol. 35(2), pages 935-942.
    5. Nuwayhid, R.Y. & Rowe, D.M. & Min, G., 2003. "Low cost stove-top thermoelectric generator for regions with unreliable electricity supply," Renewable Energy, Elsevier, vol. 28(2), pages 205-222.
    6. Harb, Adnan, 2011. "Energy harvesting: State-of-the-art," Renewable Energy, Elsevier, vol. 36(10), pages 2641-2654.
    7. Gunnar Prause, 2014. "A holistic concept for the sustainable evaluation of company shares," Entrepreneurship and Sustainability Issues, VsI Entrepreneurship and Sustainability Center, vol. 2(1), pages 37-42, September.
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    Cited by:

    1. Mohamed Ramadan A. Rezk & Haiam Helmy Ibrahim & Manuela Tvaronavičienė & Mahmoud M. Sakr & Leonardo Piccinetti & Leonardo Piccinetti, 2015. "Measuring innovations in Egypt: case of industry," Entrepreneurship and Sustainability Issues, VsI Entrepreneurship and Sustainability Center, vol. 3(1), pages 47-55, September.
    2. Edouard Dezellus & Letícia Ferreira & Nélson Pereira & Rima Vasiliūnaitė, 2015. "Entrepreneurship conditions: energy resources’ Prices and energy consumprion peculiarities in developed countries," Entrepreneurship and Sustainability Issues, VsI Entrepreneurship and Sustainability Center, vol. 2(3), pages 163-170, March.

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    More about this item

    Keywords

    sustainable entrepreneurship; energy saving; Seebeck effect;
    All these keywords.

    JEL classification:

    • R11 - Urban, Rural, Regional, Real Estate, and Transportation Economics - - General Regional Economics - - - Regional Economic Activity: Growth, Development, Environmental Issues, and Changes
    • O40 - Economic Development, Innovation, Technological Change, and Growth - - Economic Growth and Aggregate Productivity - - - General
    • O31 - Economic Development, Innovation, Technological Change, and Growth - - Innovation; Research and Development; Technological Change; Intellectual Property Rights - - - Innovation and Invention: Processes and Incentives
    • M10 - Business Administration and Business Economics; Marketing; Accounting; Personnel Economics - - Business Administration - - - General
    • Q40 - Agricultural and Natural Resource Economics; Environmental and Ecological Economics - - Energy - - - General

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