{
"$type": "site.standard.document",
"coverImage": {
"$type": "blob",
"ref": {
"$link": "bafkreifyku3g6n5rhgi3hgury3u5kgoenho7tnupy6ccpxspifh6bavyae"
},
"mimeType": "image/png",
"size": 108371
},
"description": "Provided is a method for shutting down an indirect internal reforming SOFC, in which reliable reforming, prevention of anode oxidative degradation, fuel saving and time saving are possible. Reforming catalyst layer temperature T is measured, and FkCALC is calculated; when FkCALC ‰¥ FkE, T is…",
"path": "/patents/997695",
"publishedAt": "2012-10-03T00:00:00.000Z",
"site": "at://did:plc:oql6ds5vnff4ugar6rruliwd/site.standard.publication/3mn3ohu7oxx5w",
"tags": [
"G05D7/00",
"JX NIPPON OIL & ENERGY CORP [JP]"
],
"textContent": "Provided is a method for shutting down an indirect internal reforming SOFC, in which reliable reforming, prevention of anode oxidative degradation, fuel saving and time saving are possible. Reforming catalyst layer temperature T is measured, and FkCALC is calculated; when FkCALC ‰¥ FkE, T is measured, and FkCALC and FkMinCALC are calculated; if FkMinCALC ‰¥ FkE, then the flow rate of the fuel supplied to the reformer is set to FkE and the method moves on to step D; if FkCALC ‰¤ FkMinCALC < FkE, then C6 to C9 are performed in order; C6) the temperature of the reforming catalyst layer is increased; C7) T is measured, and FkCALC and FkMinCALC are calculated; C8) if FkCALC < FkE, then the flow rate of the fuel supplied to the reformer is set to FkMinCALC and the method returns to C6; C9) if FkCALC ‰¥ FkE, then the flow rate of the fuel supplied to the reformer is set to FkE and the method moves on to D; D) the method waits for the anode temperature to fall below an oxidative degradation temperature. FkE and the like are defined in the specification.",
"title": "METHOD FOR STOPPING INDIRECT INTERNAL REFORMING TYPE SOLID OXIDE FUEL CELL"
}