Effects of Fe2O3 addition and mechanical activation on thermochemical heat storage properties of the Co3O4/CoO system

سال انتشار: 1397
نوع سند: مقاله ژورنالی
زبان: انگلیسی
مشاهده: 338

فایل این مقاله در 10 صفحه با فرمت PDF قابل دریافت می باشد

استخراج به نرم افزارهای پژوهشی:

لینک ثابت به این مقاله:

شناسه ملی سند علمی:

JR_JPST-4-1_002

تاریخ نمایه سازی: 22 تیر 1398

چکیده مقاله:

Effects of Fe2O3 addition (2-20 wt%) with 1 h mechanical activation on redox reactions of Co3O4 were studied by TG/DSC, SEM, and XRD analyses. The results showed that a Fe2O3 addition from 2 to 15 wt% increases the oxygen release from 1.4 to 3.4 wt% and decreases the reduction onset temperature from 1030 to 960 °C, while it increases the oxygen uptake value and re-oxidation onset temperature respectively from 1.5 to 3.3 wt% and from 930 to 1010 °C. The increase in iron oxide to 20 wt% resulted in loss of heat storage properties due to significant reduction in oxygen release and uptake. Moreover, TG/DSC analyses revealed that reduction enthalpy of as-received Co3O4, 1 h ball milled Co3O4, and 1 h ball milled Co3O4-15% Fe2O3 are 622, 496, and 895 kJ/kg, respectively. Phase identification and TG experiments under argon atmosphere demonstrated that Fe2O3 participates in the reduction process. Furthermore, adding 15 wt% of iron oxide to cobalt oxide and 1 h mechanical activation improved the redox cyclability of cobalt oxide.

نویسندگان

Nariman Nekokar

Department of Metallurgy and Materials Engineering, Hamadan University of Technology, Hamadan, Iran

Mehdi Pourabdoli

Department of Metallurgy and Materials Engineering, Hamadan University of Technology, Hamadan, Iran

Ahmad Ghaderi Hamidi

Department of Metallurgy and Materials Engineering, Hamadan University of Technology, Hamadan, Iran

مراجع و منابع این مقاله:

لیست زیر مراجع و منابع استفاده شده در این مقاله را نمایش می دهد. این مراجع به صورت کاملا ماشینی و بر اساس هوش مصنوعی استخراج شده اند و لذا ممکن است دارای اشکالاتی باشند که به مرور زمان دقت استخراج این محتوا افزایش می یابد. مراجعی که مقالات مربوط به آنها در سیویلیکا نمایه شده و پیدا شده اند، به خود مقاله لینک شده اند :
  • L. Andre, S. Abanades, G. Flamant, Screening of thermochemical systems ...
  • A.J. Carrillo, J. Moya, A. Bayon, P. Jana, V.A. de ...
  • N.P. Siegel, Thermal energy storage for solar power production, Wires ...
  • S. Kuravi, J. Trahan, Y. Goswami, M.M. Rahman, E.K. Stefanakos, ...
  • T. M. I. Mahlia, T.J. Saktisahdan, A. Jannifar, M.H. Hasan, ...
  • P. Pardo, A. Deydier, Z. Anxionnaz-Minvielle, S. Rougé, M. Cabassud, ...
  • T. Yan, R.Z. Wang, T.X. Li, L.W. Wang, I.T. Fred, ...
  • C. Agrafiotis, A. Becker, M. Roeb, C. Sattler, D. Zentrum, ...
  • M. Romero, A. Steinfeld, Concentrating solar thermal power and thermochemical ...
  • L. Cabeza, Advances in Thermal Energy Storage System, Cambridge, UK, ...
  • C. Agrafiotis, M. Roeb, M. Schmucker, C. Sattler, Exploitation of ...
  • J.E. Funk, R.M. Reinstrom, Energy requirements in production of hydrogen ...
  • F. Schaube, A. Wörner, and R. Tamme, High temperature thermochemical, ...
  • B. Wong, Thermochemical heat storage for concentrated solar power. In: ...
  • R. Chacartegui, A. Alovisio, C. Ortiz, J.M. Valverde, V. Verda, ...
  • F. Schaube, L. Koch, A. Wörner, H. Müller-Steinhagen, A thermodynamic ...
  • M. Schmidt, C. Szczukowski, C. Roßkopf, M. Linder, A. Wörner, ...
  • J. Yan, C.Y. Zhao, Experimental study of CaO/Ca(OH)2 in a ...
  • M. Tmar, C. Bernard, M. Ducarroir, Local storage of solar ...
  • K. Lovegrove, A. Luzzi, I. Soldiani, H. Kreetz, Developing ammonia ...
  • M. Rydén, H. Leion, T. Mattisson, A. Lyngfelt, Combined oxides ...
  • K.N. Hutchings, M. Wilson, P.A. Larsen, R.A. Cutler, Kinetic and ...
  • C. Agrafiotis, M. Roeb, M. Schmücker, C. Sattler, Exploitation of ...
  • M. Neises, S. Tescari, L. de Oliveira, M. Roeb, C. ...
  • A.P. Muroyama, A.J. Schrader, P.G. Loutzenhiser, Solar electricity via an ...
  • A.J. Carrillo, D. Sastre, D.P. Serrano, P. Pizarroab, J.M. Coronado, ...
  • A.J. Carrillo, D.P. Serrano, P. Pizarro, J.M. Coronado, Thermochemical heat ...
  • M. Wokon, A. Kohzer, A. Benzarti, T. Bauer, M. Linder, ...
  • E. Alonso, C. Pérez-Rábago, J. Licurgo, E. Fuentealba, C.A. Estrada, ...
  • T. Block, M. Schmücker, Metal oxides for thermochemical energy storage: ...
  • S.M. Babiniec, E.N. Coker, J.E. Miller, A. Ambrosini, Investigation of ...
  • S.M. Babiniec, E.N. Coker, J.E. Miller, A. Ambrosini, Doped calcium ...
  • K.J. Albrecht, G.S. Jackson, R.J. Braun, Thermo-dynamically consistent modeling of ...
  • B. Wong, L. Brown, F. Schaube, R. Tamme, C. Sattler, ...
  • C. Agrafiotis, S. Tescari, M. Roeb, M. Schmucker, C. Sattler, ...
  • S. Tescari, C. Agrafiotis, S. Breuer, L. De Oliveira, M. ...
  • G. Karagiannakis, C. Pagkoura, A. Zygogianni, S. Lorentzou, A.G. Konstandopoulos, ...
  • B. Ehrhart , E. Coker, N. Siegel, A. Weimer, Thermochemical ...
  • Y.S. Lin, Q. Yang, J. Ida, High temperature sorption of ...
  • T. Block, N. Knoblauch, M. Shmücker, The cobalt-oxide/iron-oxide binary system ...
  • C. Pagkoura, G. Karagiannakis, A. Zygogianni, S. Lorentzou, M. Kostoglou, ...
  • V. Varin, T. Czujko, S. Wronski, Nanomaterials for Solid State ...
  • P.R. Soni, Mechanical Alloying: Fundamentals and Applications, first ed., Cambridge ...
  • P. Balaz, Extractive Metallurgy of Activated Minerals, Elsevier, Amsterdam, 2000. ...
  • C. Suryanarayana, Mechanical Alloying and Milling, first ed., Marcel Dekker, ...
  • N. Nekokar, M. Pourabdoli, A. Ghaderi Hamidi, D. Uner, Effect ...
  • نمایش کامل مراجع