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{
  "$type": "site.standard.document",
  "description": "Provided is a method for load following operation of a fuel cell system in which reliable reforming and the prevention of flow blockage and anode degradation are possible. Functions F = f(P) and P = f(F) of an electrical output P and a fuel flow rate F required to output P are beforehand obtained…",
  "path": "/patents/1002646",
  "publishedAt": "2012-05-09T00:00:00.000Z",
  "site": "at://did:plc:oql6ds5vnff4ugar6rruliwd/site.standard.publication/3mn3ohu7oxx5w",
  "tags": [
    "C01B3/38",
    "JX NIPPON OIL & ENERGY CORP [JP]"
  ],
  "textContent": "Provided is a method for load following operation of a fuel cell system in which reliable reforming and the prevention of flow blockage and anode degradation are possible. Functions F = f(P) and P = f(F) of an electrical output P and a fuel flow rate F required to output P are beforehand obtained. Reforming catalyst layer temperatures Tand reformable fuel flow rates Gat Tare predetermined. Gcorresponding to the maximum Tthat is equal to or less than the measured temperature T of the catalyst layer is set as F. When F< F(minimum F), electric power generation is stopped. When F≥ F, 1 is performed if an output demand value P≤ a maximum output P, and 2 is performed if P> P. 1) In the case of f(P) ≤ F, the output is set to Pand the fuel flow rate is set to f(P). In the case of f(P) > F, the output is set to a value that is less than Pand the maximum among P calculated by P = f(FR), and the fuel flow rate is set to F. 2) In the case of f(P) ≤ F, the output is set to Pand the fuel flow rate is set to f(P). In the case of f(P) > F, the output is set to the maximum value of P calculated from P = f(F), and the fuel flow rate is set to F.",
  "title": "METHOD FOR LOAD FOLLOW-UP OPERATION OF FUEL CELL SYSTEM"
}