Redox-active oxide materials for thermal energy storage
Thermochemical storage materials having the general formula A x A′ 1-x B y B′ 1-y O 3-δ , where A=La, Sr, K, Ca, Ba, Y and B=Mn, Fe, Co, Ti, Ni, Cu, Zr, Al, Y, Cr, V, Nb, Mo, are disclosed. These materials have improved thermal storage energy density and reaction kinetics compared to previous materials. Concentrating solar power thermochemical systems and methods capable of storing heat energy by using these thermochemical storage materials are also disclosed.
1. A composition, comprising:
a perovskite material having a formula A x A′ 1-x B y B′ 1-y O 3-δ , where B or B′=Mn, Fe, Co, Ti, Ni, Cu, Zr, Al, Y, Cr, V, Nb, Mo, and 0≤x≤1, 0≤y≤1 and 0≤δ≤1;
wherein potassium is substituted in the A site at an amount greater than zero and up to 10 percent; and
wherein B and B′ are different elements; and
wherein A is La or Ca and A′ is Sr or Y.
2. The composition of claim 1 , wherein B y is Co, Al or Ti, and B′ 1-y is Fe or Mn.
3. A composition, comprising:
a perovskite material having a formula La x Sr 1-x-z K z Co y M 1-y O 3-δ , where M=Mn or Fe and 0≤x≤1, 0≤y≤1, 0≤z≤0.1 and 0≤δ≤1;
wherein potassium is substituted in the La and/or Sr sites.
4. The composition of claim 3 , wherein the composition is La 0.2 Sr 0.7 K 0.1 Co 0.9 Mn 0.1 O 3-δ .
5. A composition, comprising:
a perovskite material having a formula Ca x A′ 1-x B y B′ 1-y O 3-δ , where A′=La, Sr, K, Ba, Y and B or B′=Mn, Fe, Co, Ti, Ni, Cu, Zr, Al, Y, Cr, V, Nb, Mo, and 0≤x≤1, 0≤y≤1 and 0≤δ≤1;
wherein potassium is substituted for Ca and the A′ site at an amount greater than zero and up to 10 percent; and
wherein B and B′ are different elements.