<p dir="ltr">File name: Figure 1a: Cumulative intruded mercury volume and incremental intrusion as a function of the pore diameter for YSZ-56</p><p dir="ltr">File name: Figure 1b: Cumulative intruded mercury volume and incremental intrusion as a function of the pore diameter for YSZ-66</p><p dir="ltr">File name: Figure 1c: Cumulative intruded mercury volume and incremental intrusion as a function of the pore diameter for YSZ-60(ZRA)</p><p dir="ltr">File name: Figure 1d: Cumulative intruded mercury volume and incremental intrusion as a function of the pore diameter for CGO</p><p dir="ltr">File name: Figure 4YSZ-56: CO2 permeances as a function of temperature for YSZ-56</p><p dir="ltr">File name: Figure 4YSZ-66: CO2 permeances as a function of temperature for YSZ-66</p><p dir="ltr">File name: Figure 4YSZ-60: CO2 permeances as a function of temperature for YSZ-60(ZRA)</p><p dir="ltr">File name: Figure 4CGO: CO2 permeances as a function of temperature for CGO</p><p><br></p><p dir="ltr">The CO2 permeances used in Figure 6 come from the same data as in Figure 4. The literature data have been taken from the corresponding references.</p><p><br></p>
Funding
European Research Council under the European Union's Seventh Framework Program (FP/2007-2013)/ERC Grant Agreement Number 320725
Engineering & Physical Sciences Research Council [grant numbers EP/P009050/1, EP/P007767/1, EP/M01486X/1, EP/V047078/1, EP/W03395X/1, EP/Y034961/1]
Spanish Government (PID2022-139663OB-100 and CEX2021-001230-S grants funded by MCIN/AEI/10.13039/501100011033)
Generalitat Valenciana (CIPROM/2022/10 grant)
Royal Academy of Engineering under the Research Fellowship scheme