Title :
Cost Effective Synthesis of Bulk Thermoelectric Higher Manganese Silicide for Waste Heat Recovery and Environmental Protection
Author :
Shi, Xinghua ; Zamanipour, Zahra ; Dehkordi, Arash Mehdizadeh ; Ede, Kenneth F. ; Krasinski, Jerzy S. ; Vashaee, Daryoosh
Author_Institution :
Helmerich Adv. Technol. Res. Center, Oklahoma State Univ., Tulsa, OK, USA
Abstract :
Higher manganese silicide (HMS) is a useful thermoelectric material for waste heat recovery in medium to high temperature range. It is made from two of the most abundant materials on earth. Moreover, it is non-toxic and environmentally responsible. A low-cost, scalable, and quick method of synthesizing bulk thermoelectric higher manganese silicide is proposed for its industrial manufacturing. Heat treatment alloying of higher manganese silicide powder is proposed for producing its large quantity in a cost effective way. The process involves heat treatment of the elemental powders at 1050 °C for 1 hour. Thermoelectric properties of the resultant samples were studied and compared with the samples made by mechanical alloying. In comparison, both methods result in similar trends in thermoelectric properties however with significant cost reduction and ease of fabrication for the proposed method.
Keywords :
costing; heat recovery; manganese compounds; mechanical alloying; thermoelectricity; MnSi; bulk thermoelectric higher manganese silicide; cost effective synthesis; cost reduction; environmental protection; heat treatment alloying; industrial manufacturing; mechanical alloying; temperature 1050 degC; thermoelectric material; thermoelectric properties; time 1 hour; waste heat recovery; Alloying; Conductivity; Heat treatment; Manganese; Powders; Silicides; Thermal conductivity;
Conference_Titel :
Green Technologies Conference, 2012 IEEE
Conference_Location :
Tulsa, OK
Print_ISBN :
978-1-4673-0968-4
Electronic_ISBN :
2166-546X
DOI :
10.1109/GREEN.2012.6200930